** = Publications listed in SCI/SSCI/Pubmed
** Foßelteder, J; Brauchart, T; Schlacher, A; Sconocchia, T; Özkaya, E; Auinger, L; Schlenke, P; Sill, H; Zebisch, A; Reinisch, A
Engineered cytokine-expressing MSCs support ex vivo culture of human HSPCs and AML cells.
Exp Hematol. 2025; 104790
Doi: 10.1016/j.exphem.2025.104790
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** Hatzl, S; Geiger, C; Kriegl, L; Reinisch, A; Wölfler, A; Apfaltrer, G; Keldorfer, M; Rödl, S; Hoenigl, M; Eller, P; Krause, R
Pulmonary Coinfection of Pneumocystis jirovecii and Aspergillus Species.
Open Forum Infect Dis. 2025; 12(2): ofaf018
Doi: 10.1093/ofid/ofaf018
[OPEN ACCESS]
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** Renou, L; Sun, W; Friedrich, C; Galant, K; Conrad, C; Consalus, A; Plantier, E; Schallmoser, K; Krisch, L; Barroca, V; Devanand, S; Dechamps, N; Reinisch, A; Martinovic, J; Magnani, A; Faivre, L; Lewandowski, D; Calvo, J; Perie, L; Kosmider, O; Pflumio, F
Orchestration of human multi-lineage hematopoietic cell development by humanized in vivo bone marrow models.
Hemasphere. 2025; 9(4): e70120
Doi: 10.1002/hem3.70120
[OPEN ACCESS]
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** Hatzl, S; Geiger, C; Kriegl, L; Scholz, L; Reisinger, AC; Kreuzer, P; Fruhwald, S; Wölfler, A; Reinisch, A; von, Lewinski, D; Schilcher, G; Hoenigl, M; Eller, P; Krause, R
Performance of diagnostic algorithms in patients with invasive pulmonary aspergillosis.
Clin Infect Dis. 2024;
Doi: 10.1093/cid/ciae633
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** Scholz, L; Posch, F; Schulz, E; Gornicec, M; Wölfler, A; Reisinger, AC; Reinisch, A; Eller, P; Eisner, F; Kreuzer, P; Stradner, M; Rosenkranz, AR; Krammer, F; Schilcher, G; Krause, R; Hatzl, S
Ruxolitinib, IV Immunoglobulin, and High-Dose Glucocorticoids for Critically Ill Adults With Secondary Hemophagocytic Lymphohistiocytosis: A Single-Center Observational Pilot Study.
Crit Care Explor. 2024; 6(2): e1046
Doi: 10.1097/CCE.0000000000001046
[OPEN ACCESS]
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** Wurm, S; Waltersdorfer, M; Loindl, S; Moritz, JM; Herzog, SA; Bachmaier, G; Berghold, A; Kashofer, K; Beham-Schmid, C; Hoefler, G; Greinix, HT; Wölfler, A; Reinisch, A; Sill, H; Zebisch, A
Acute myeloid leukemia in the next-generation sequencing era : Real-world data from an Austrian tertiary cancer care center.
Wien Klin Wochenschr. 2024;
Doi: 10.1007/s00508-024-02463-w
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** Ay, C; Reinisch, A
Gene therapy: principles, challenges and use in clinical practice.
Wien Klin Wochenschr. 2024;
Doi: 10.1007/s00508-024-02368-8
[OPEN ACCESS]
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** Moritz, J; Schwab, A; Reinisch, A; Zebisch, A; Sill, H; Wölfler, A
Measurable Residual Disease Detection in Acute Myeloid Leukemia: Current Challenges and Future Directions.
Biomedicines. 2024; 12(3): 599
Doi: 10.3390/biomedicines12030599
[OPEN ACCESS]
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** Ujcic, K; Forstner, D; Lyssy, F; Kupper, N; Brugger, B; Neuper, L; Daxboeck, C; Krappinger, J; Wernitznig, S; Feichtinger, J; Reinisch, A; Markert, U; Gauster, M
EFFECTS OF PLACENTA-DERIVED FACTORS ON MATERNAL MEGAKARYOCYTES AND THROMBOPOIESIS
PLACENTA. 2024; 154: E56-E56.-International Federation of Placenta Associations (IFPA); SEP 2-6, 2024; Montreal, CANADA.
[Poster]
Web of Science
** Fan, AC; Nakauchi, Y; Bai, L; Azizi, A; Nuno, KA; Zhao, F; Köhnke, T; Karigane, D; Cruz-Hernandez, D; Reinisch, A; Khatri, P; Majeti, R
RUNX1 loss renders hematopoietic and leukemic cells dependent on interleukin-3 and sensitive to JAK inhibition.
J Clin Invest. 2023; e167053
Doi: 10.1172/JCI167053
[OPEN ACCESS]
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** Foßelteder, J; Pabst, G; Sconocchia, T; Schlacher, A; Auinger, L; Kashofer, K; Beham-Schmid, C; Trajanoski, S; Waskow, C; Schöll, W; Sill, H; Zebisch, A; Wölfler, A; Thomas, D; Reinisch, A
Human gene-engineered calreticulin mutant stem cells recapitulate MPN hallmarks and identify targetable vulnerabilities.
Leukemia. 2023; 37(4): 843-853.
Doi: 10.1038/s41375-023-01848-6
[OPEN ACCESS]
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** Sconocchia, T; Foßelteder, J; Auinger, L; Özkaya, E; Benezeder, T; Lang, M; Beham-Schmid, C; Hoefler, G; Zebisch, A; Wölfler, A; Sill, H; Wolf, P; Strobl, H; Reinisch, A
BRAFV600E promotes DC3/monocyte differentiation in human gene-engineered HSPCs and causes multisystem histiocytosis.
Leukemia. 2023; 37(11): 2292-2296.
Doi: 10.1038/s41375-023-02019-3
[OPEN ACCESS]
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** Sconocchia, T; Foßelteder, J; Köhnke, T; Majeti, R; Reinisch, A
Engineering Oncogenic Heterozygous Gain-of-Function Mutations in Human Hematopoietic Stem and Progenitor Cells.
J Vis Exp. 2023; (193): e64558
Doi: 10.3791/64558
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** Thomas, D; Wu, M; Nakauchi, Y; Zheng, M; Thompson-Peach, CAL; Lim, K; Landberg, N; Köhnke, T; Robinson, N; Kaur, S; Kutyna, M; Stafford, M; Hiwase, D; Reinisch, A; Peltz, G; Majeti, R
Dysregulated Lipid Synthesis by Oncogenic IDH1 Mutation Is a Targetable Synthetic Lethal Vulnerability.
Cancer Discov. 2023; 13(2): 496-515.
Doi: 10.1158/2159-8290.CD-21-0218
[OPEN ACCESS]
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** Thompson-Peach, CAL; Foßelteder, J; Reinisch, A; Thomas, D
Thrombopoietin-independent Megakaryocyte Differentiation of Hematopoietic Progenitor Cells from Patients with Myeloproliferative Neoplasms.
BIO-PROTOCOL. 2023; 13(2): e4592
Doi: 10.21769/BioProtoc.4592
[OPEN ACCESS]
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** Sconocchia, T; Foßelteder, J; Sconocchia, G; Reinisch, A
Langerhans cell histiocytosis: current advances in molecular pathogenesis.
Front Immunol. 2023; 14: 1275085
Doi: 10.3389/fimmu.2023.1275085
[OPEN ACCESS]
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** Lyssy, F; Lind, K; Zöscher, F; Zebisch, A; Wölfler, A; Pabst, G; Fosselteder, J; Reinisch, A; Sill, H; Dutta, S
Modelling drug resistance conferred by mono- and bi-allelic TP53 aberrations using isogenic AML cell lines
ONCOL RES TREAT. 2023; 46: 188-189.
[Poster]
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** Dutta, S; Moritz, J; Pregartner, G; Thallinger, GG; Brandstätter, I; Lind, K; Rezania, S; Lyssy, F; Reinisch, A; Zebisch, A; Berghold, A; Wölfler, A; Sill, H
Comparison of acute myeloid leukemia and myelodysplastic syndromes with TP53 aberrations.
Ann Hematol. 2022; 101(4):837-846
Doi: 10.1007/s00277-022-04766-2
[OPEN ACCESS]
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** Krstic, J; Reinisch, I; Schindlmaier, K; Galhuber, M; Riahi, Z; Berger, N; Kupper, N; Moyschewitz, E; Auer, M; Michenthaler, H; Nössing, C; Depaoli, MR; Ramadani-Muja, J; Usluer, S; Stryeck, S; Pichler, M; Rinner, B; Deutsch, AJA; Reinisch, A; Madl, T; Chiozzi, RZ; Heck, AJR; Huch, M; Malli, R; Prokesch, A
Fasting improves therapeutic response in hepatocellular carcinoma through p53-dependent metabolic synergism.
Sci Adv. 2022; 8(3):eabh2635
Doi: 10.1126/sciadv.abh2635
[OPEN ACCESS]
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** Nakauchi, Y; Azizi, A; Thomas, D; Corces, MR; Reinisch, A; Sharma, R; Cruz, Hernandez, D; Köhnke, T; Karigane, D; Fan, A; Martinez-Krams, D; Stafford, M; Kaur, S; Dutta, R; Phan, P; Ediriwickrema, A; McCarthy, E; Ning, Y; Phillips, T; Ellison, CK; Guler, GD; Bergamaschi, A; Ku, CJ; Levy, S; Majeti, R
The Cell Type-Specific 5hmC Landscape and Dynamics of Healthy Human Hematopoiesis and TET2-Mutant Preleukemia.
Blood Cancer Discov. 2022; 3(4): 346-367.
Doi: 10.1158/2643-3230.BCD-21-0143
[OPEN ACCESS]
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** Tvorogov, D; Thompson-Peach, CAL; Foßelteder, J; Dottore, M; Stomski, F; Onnesha, SA; Lim, K; Moretti, PAB; Pitson, SM; Ross, DM; Reinisch, A; Thomas, D; Lopez, AF
Targeting human CALR-mutated MPN progenitors with a neoepitope-directed monoclonal antibody.
EMBO Rep. 2022; 23(4):e52904
Doi: 10.15252/embr.202152904
[OPEN ACCESS]
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** Avdili, A; Auer, M; Bernecker, C; Reinisch, A; Schlenke, P; Dorn, I
GENERATION OF A CD43 FLUORESCENT REPORTER IPSC LINE TO TRACK HEMATOPOIETIC DEVELOPMENT
EXP HEMATOL. 2022; 111: S58-S58.
[Poster]
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** Fan, A; Azizi, A; Nuno, K; Nakauchi, Y; Zhao, FF; Cruz-Hernandez, D; Reinisch, A; Majeti, R
IL-3 SELECTIVELY RESCUES RUNX1-DEFICIENT HUMAN HSPCS WITH DYSREGULATED JAK/ STAT SIGNALING
EXP HEMATOL. 2022; 111: S84-S84.
[Poster]
Web of Science
** Berg, JL; Perfler, B; Hatzl, S; Mayer, MC; Wurm, S; Uhl, B; Reinisch, A; Klymiuk, I; Tierling, S; Pregartner, G; Bachmaier, G; Berghold, A; Geissler, K; Pichler, M; Hoefler, G; Strobl, H; Wölfler, A; Sill, H; Zebisch, A
Micro-RNA-125a mediates the effects of hypomethylating agents in chronic myelomonocytic leukemia.
Clin Epigenetics. 2021; 13(1): 1-1.
Doi: 10.1186/s13148-020-00979-2
[OPEN ACCESS]
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** Berg, JL; Perfler, B; Hatzl, S; Uhl, B; Reinisch, A; Pregartner, G; Berghold, A; Penz, T; Schuster, M; Geissler, K; Prokesch, A; Müller-Tidow, C; Hoefler, G; Kashofer, K; Wölfler, A; Sill, H; Caraffini, V; Zebisch, A
EZH2 inactivation in RAS-driven myeloid neoplasms hyperactivates RAS-signaling and increases MEK inhibitor sensitivity.
Leukemia. 2021; 35(5):1521-1526
Doi: 10.1038/s41375-021-01161-0
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** Jensen, TI; Mikkelsen, NS; Gao, Z; Foßelteder, J; Pabst, G; Axelgaard, E; Laustsen, A; König, S; Reinisch, A; Bak, RO
Targeted regulation of transcription in primary cells using CRISPRa and CRISPRi.
Genome Res. 2021; 31(11):2120-2130
Doi: 10.1101/gr.275607.121
[OPEN ACCESS]
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** Mayer, MC; Berg, JL; Perfler, B; Hatzl, S; Herzog, SA; Bachmaier, G; Berghold, A; Reinisch, A; Wölfler, A; Sill, H; Zebisch, A
miR-23a mediates resistance to hypomethylating agents in myeloid neoplasms.
ANN HEMATOL. 2021; 100(11): 2845-2847.
Doi: 10.1007/s00277-021-04598-6
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** Foßelteder, J; Schlacher, A; Pabst, G; Amtmann, B; Schöll, W; Kashofer, K; Beham-Schmid, C; Schlenke, P; Greinix, HT; Sill, H; Woelfler, A; Zebisch, A; Reinisch, A
Introduction and Genetic Correction of Calreticulin Mutations in Human Hematopoietic Stem and Progenitor Cells Sheds Light on MPN Pathogenesis
Blood. 2021; 138(S1):-Annual Meeting of the American Society of Hematology (ASH); DEC 11-14, 2021; Atlanta, USA.
Doi: 10.1182/blood-2021-147919
[Poster]
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** Pabst, G; Foßelteder, J; Schlacher, A; Auinger, L; Martinez-Krams3, D; Ediriwickrema, A; Kashofer, K; Beham-Schmid, C; Greinix, HT; Woelfler, A; Schlenke, P; Sill, H; Zebisch, A; Majeti, R; Reinisch, A
Modeling the Development of SRSF2 Mutated Myeloid Malignancies By CRISPR/Cas9 Mediated Genome Engineering of Primary Human Hematopoietic Stem and Progenitor Cells
Blood. 2021; 138(S1):-Annual Meeting of the American Society of Hematology (ASH); DEC 11-14, 2021; Atlanta, USA.
Doi: 10.1182/blood-2021-149591
[Poster]
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** Tvorogov, D; Thompson-Peach, CAL; Fosselteder, J; Dottore, M; Stomski, F; Lim, KSY; Onnesha, SA; Ross, DM; Reinisch, A; Thomas, D; Lopez, AF
A Calreticulin Neoepitope-Directed Monoclonal Antibody Can Overcome JAK Inhibitor Resistance and Block TPO-Independent Megakaryocyte Differentation
BLOOD. 2021; 138:
Doi: 10.1182/blood-2021-154332
[Poster]
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** Daga, S; Rosenberger, A; Kashofer, K; Heitzer, E; Quehenberger, F; Halbwedl, I; Graf, R; Krisper, N; Prietl, B; Höfler, G; Reinisch, A; Zebisch, A; Sill, H; Wölfler, A
Sensitive and broadly applicable residual disease detection in acute myeloid leukemia using flow cytometry-based leukemic cell enrichment followed by mutational profiling.
Am J Hematol. 2020; 95(10):1148-57
Doi: 10.1002/ajh.25918
[OPEN ACCESS]
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** Hatzl, S; Perfler, B; Wurm, S; Uhl, B; Quehenberger, F; Ebner, S; Troppmair, J; Reinisch, A; Wölfler, A; Sill, H; Zebisch, A
Increased Expression of Micro-RNA-23a Mediates Chemoresistance to Cytarabine in Acute Myeloid Leukemia.
Cancers (Basel). 2020; 12(2):
Doi: 10.3390/cancers12020496
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** Koldobskiy, MA; Abante, J; Jenkinson, G; Pujadas, E; Tetens, A; Zhao, F; Tryggvadottir, R; Idrizi, A; Reinisch, A; Majeti, R; Goutsias, J; Feinberg, AP
A Dysregulated DNA Methylation Landscape Linked to Gene Expression in MLL-Rearranged AML.
Epigenetics. 2020; 15(8):841-858
Doi: 10.1080/15592294.2020.1734149
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** Mantri, S; Reinisch, A; Dejene, BT; Lyell, DJ; DiGiusto, DL; Agarwal-Hashmi, R; Majeti, R; Weinberg, KI; Porteus, MH
CD34 expression does not correlate with immunophenotypic stem cell or progenitor content in human cord blood products.
Blood Adv. 2020; 4(21): 5357-5361.
Doi: 10.1182/bloodadvances.2020002891
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** Pabst, G; Lind, K; Graf, R; Zebisch, A; Stölzel, F; Döhner, K; Heitzer, E; Reinisch, A; Sill, H
TP53 mutated AML subclones exhibit engraftment in a humanized bone marrow ossicle mouse model.
Ann Hematol. 2020; 99(3):653-655
Doi: 10.1007/s00277-020-03920-y
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** Daga, S; Rosenberger, A; Quehenberger, F; Krisper, N; Prietl, B; Reinisch, A; Zebisch, A; Sill, H; Wölfler, A
High GPR56 surface expression correlates with a leukemic stem cell gene signature in CD34-positive AML.
Cancer Med. 2019; 8(4):1771-1778
Doi: 10.1002/cam4.2053
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** Chan, CKF; Gulati, GS; Sinha, R; Tompkins, JV; Lopez, M; Carter, AC; Ransom, RC; Reinisch, A; Wearda, T; Murphy, M; Brewer, RE; Koepke, LS; Marecic, O; Manjunath, A; Seo, EY; Leavitt, T; Lu, WJ; Nguyen, A; Conley, SD; Salhotra, A; Ambrosi, TH; Borrelli, MR; Siebel, T; Chan, K; Schallmoser, K; Seita, J; Sahoo, D; Goodnough, H; Bishop, J; Gardner, M; Majeti, R; Wan, DC; Goodman, S; Weissman, IL; Chang, HY; Longaker, MT
Identification of the Human Skeletal Stem Cell.
Cell. 2018; 175(1): 43-56.
Doi: 10.1016/j.cell.2018.07.029
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** Karamitros, D; Stoilova, B; Aboukhalil, Z; Hamey, F; Reinisch, A; Samitsch, M; Quek, L; Otto, G; Repapi, E; Doondeea, J; Usukhbayar, B; Calvo, J; Taylor, S; Goardon, N; Six, E; Pflumio, F; Porcher, C; Majeti, R; Göttgens, B; Vyas, P
Single-cell analysis reveals the continuum of human lympho-myeloid progenitor cells.
Nat Immunol. 2018; 19(1): 85-97.
Doi: 10.1038/s41590-017-0001-2
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** Daga, S; Rosenberger, A; Krisper, N; Prietl, B; Reinisch, A; Zebisch, A; Sill, H; Wolfler, A
GPR56 and CLL-1 (CLEC12A) as putative leukemic stem cell markers in CD34-positive acute myeloid leukemia
ONCOL RES TREAT. 2018; 41: 73-73.
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Web of Science
** Hatzl, S; Ebner, S; Perfler, B; Quehenberger, F; Troppmair, J; Reinisch, A; Wolfler, A; Sill, H; Zebisch, A
Deregulation of the micro-RNA-23a/TOP2B axis causes resistance to cytarabine in acute myeloid leukemia
ONCOL RES TREAT. 2018; 41: 243-243.
[Oral Communication]
Web of Science
** Bak, RO; Dever, DP; Reinisch, A; Cruz Hernandez, D; Majeti, R; Porteus, MH
Multiplexed genetic engineering of human hematopoietic stem and progenitor cells using CRISPR/Cas9 and AAV6.
Elife. 2017; 6(10):
Doi: 10.7554/eLife.27873
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** Chao, MP; Gentles, AJ; Chatterjee, S; Lan, F; Reinisch, A; Corces, MR; Xavy, S; Shen, J; Haag, D; Chanda, S; Sinha, R; Morganti, RM; Nishimura, T; Ameen, M; Wu, H; Wernig, M; Wu, JC; Majeti, R
Human AML-iPSCs Reacquire Leukemic Properties after Differentiation and Model Clonal Variation of Disease.
Cell Stem Cell. 2017; 20(3): 329-344.
Doi: 10.1016/j.stem.2016.11.018
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** Reinisch, A; Hernandez, DC; Schallmoser, K; Majeti, R
Generation and use of a humanized bone-marrow-ossicle niche for hematopoietic xenotransplantation into mice.
Nat Protoc. 2017; 12(10): 2169-2188.
Doi: 10.1038/nprot.2017.088
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** Sinha, S; Thomas, D; Chan, S; Gao, Y; Brunen, D; Torabi, D; Reinisch, A; Hernandez, D; Chan, A; Rankin, EB; Bernards, R; Majeti, R; Dill, DL
Systematic discovery of mutation-specific synthetic lethals by mining pan-cancer human primary tumor data.
Nat Commun. 2017; 8(2):15580-15580
Doi: 10.1038/ncomms15580
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** Dever, DP; Bak, RO; Reinisch, A; Camarena, J; Washington, G; Nicolas, CE; Pavel-Dinu, M; Saxena, N; Wilkens, AB; Mantri, S; Uchida, N; Hendel, A; Narla, A; Majeti, R; Weinberg, KI; Porteus, MH
CRISPR/Cas9 β-globin gene targeting in human haematopoietic stem cells.
Nature. 2016; 539(7629): 384-389.
Doi: 10.1038/nature20134
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** Reinisch, A; Thomas, D; Corces, MR; Zhang, X; Gratzinger, D; Hong, WJ; Schallmoser, K; Strunk, D; Majeti, R
A humanized bone marrow ossicle xenotransplantation model enables improved engraftment of healthy and leukemic human hematopoietic cells.
Nat Med. 2016; 22(7): 812-821.
Doi: 10.1038/nm.4103
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** Szöke, K; Reinisch, A; Østrup, E; Reinholt, FP; Brinchmann, JE
Autologous cell sources in therapeutic vasculogenesis: In vitro and in vivo comparison of endothelial colony-forming cells from peripheral blood and endothelial cells isolated from adipose tissue.
CYTOTHERAPY. 2016; 18(2): 242-252.
Doi: 10.1016/j.jcyt.2015.10.009
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** Reinisch, A; Majeti, R
Sticking It to the Niche: CD98 Mediates Critical Adhesive Signals in AML.
Cancer Cell. 2016; 30(5): 662-664.
Doi: 10.1016/j.ccell.2016.10.014
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** Diwoky, C; Liebmann, D; Neumayer, B; Reinisch, A; Knoll, F; Strunk, D; Stollberger, R
Positive contrast of SPIO-labeled cells by off-resonant reconstruction of 3D radial half-echo bSSFP.
NMR BIOMED. 2015; 28(1): 79-88.
Doi: 10.1002/nbm.3229
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** Ketterl, N; Brachtl, G; Schuh, C; Bieback, K; Schallmoser, K; Reinisch, A; Strunk, D
A robust potency assay highlights significant donor variation of human mesenchymal stem/progenitor cell immune modulatory capacity and extended radio-resistance.
Stem Cell Res Ther. 2015; 6(2): 236-236.
Doi: 10.1186/s13287-015-0233-8
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** König, J; Weiss, G; Rossi, D; Wankhammer, K; Reinisch, A; Kinzer, M; Huppertz, B; Pfeiffer, D; Parolini, O; Lang, I
Placental mesenchymal stromal cells derived from blood vessels or avascular tissues: what is the better choice to support endothelial cell function?
Stem Cells Dev. 2015; 24(1):115-131
Doi: 10.1089/scd.2014.0115
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** Mazumdar, C; Shen, Y; Xavy, S; Zhao, F; Reinisch, A; Li, R; Corces, MR; Flynn, RA; Buenrostro, JD; Chan, SM; Thomas, D; Koenig, JL; Hong, WJ; Chang, HY; Majeti, R
Leukemia-Associated Cohesin Mutants Dominantly Enforce Stem Cell Programs and Impair Human Hematopoietic Progenitor Differentiation.
Cell Stem Cell. 2015; 17(6): 675-688.
Doi: 10.1016/j.stem.2015.09.017
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** Reinisch, A; Etchart, N; Thomas, D; Hofmann, NA; Fruehwirth, M; Sinha, S; Chan, CK; Senarath-Yapa, K; Seo, EY; Wearda, T; Hartwig, UF; Beham-Schmid, C; Trajanoski, S; Lin, Q; Wagner, W; Dullin, C; Alves, F; Andreeff, M; Weissman, IL; Longaker, MT; Schallmoser, K; Majeti, R; Strunk, D
Epigenetic and in vivo comparison of diverse MSC sources reveals an endochondral signature for human hematopoietic niche formation.
Blood. 2015; 125(2):249-260
Doi: 10.1182/blood-2014-04-572255
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** Sinha, S; Thomas, D; Yu, L; Gentles, AJ; Jung, N; Corces-Zimmerman, MR; Chan, SM; Reinisch, A; Feinberg, AP; Dill, DL; Majeti, R
Mutant WT1 is associated with DNA hypermethylation of PRC2 targets in AML and responds to EZH2 inhibition.
Blood. 2015; 125(2): 316-326.
Doi: 10.1182/blood-2014-03-566018
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** Reinisch, A; Chan, SM; Thomas, D; Majeti, R
Biology and Clinical Relevance of Acute Myeloid Leukemia Stem Cells.
Semin Hematol. 2015; 52(3): 150-164.
Doi: 10.1053/j.seminhematol.2015.03.008
[OPEN ACCESS]
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** Kinzer, M; Hingerl, K; König, J; Reinisch, A; Strunk, D; Huppertz, B; Lang, I
Mesenchymal stromal cells from the human placenta promote neovascularization in a mouse model in vivo.
Placenta. 2014; 35(7):517-519
Doi: 10.1016/j.placenta.2014.04.004
Web of Science
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** Rohban, R; Reinisch, A; Etchart, N; Schallmoser, K; Hofmann, NA; Szoke, K; Brinchmann, JE; Bonyadi Rad, E; Rohde, E; Strunk, D
Identification of an effective early signaling signature during neo-vasculogenesis in vivo by ex vivo proteomic profiling.
PLoS One. 2013; 8(6):e66909-e66909
Doi: 10.1371/journal.pone.0066909
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** Shahnaz, G; Kremser, C; Reinisch, A; Vetter, A; Laffleur, F; Rahmat, D; Iqbal, J; Dünnhaupt, S; Salvenmoser, W; Tessadri, R; Griesser, U; Bernkop-Schnürch, A
Efficient MRI labeling of endothelial progenitor cells: design of thiolated surface stabilized superparamagnetic iron oxide nanoparticles.
EUR J PHARM BIOPHARM. 2013; 85(3 Pt A): 346-355.
Doi: 10.1016/j.ejpb.2013.02.010
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** Chen, Y; Jacamo, R; Shi, YX; Wang, RY; Battula, VL; Konoplev, S; Strunk, D; Hofmann, NA; Reinisch, A; Konopleva, M; Andreeff, M
Human extramedullary bone marrow in mice: a novel in vivo model of genetically controlled hematopoietic microenvironment.
Blood. 2012; 119(21):4971-4980
Doi: 10.1182/blood-2011-11-389957
[OPEN ACCESS]
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** Hofmann, NA; Ortner, A; Jacamo, RO; Reinisch, A; Schallmoser, K; Rohban, R; Etchart, N; Fruehwirth, M; Beham-Schmid, C; Andreeff, M; Strunk, D
Oxygen sensing mesenchymal progenitors promote neo-vasculogenesis in a humanized mouse model in vivo.
PLoS One. 2012; 7(9):e44468-e44468
Doi: 10.1371/journal.pone.0044468
[OPEN ACCESS]
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** Hofmann, NA; Reinisch, A; Strunk, D
Endothelial colony-forming progenitor cell isolation and expansion.
Methods Mol Biol. 2012; 879(4):381-387
Doi: 10.1007/978-1-61779-815-3_23
PubMed
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** Templin, C; Zweigerdt, R; Schwanke, K; Olmer, R; Ghadri, JR; Emmert, MY; Müller, E; Küest, SM; Cohrs, S; Schibli, R; Kronen, P; Hilbe, M; Reinisch, A; Strunk, D; Haverich, A; Hoerstrup, S; Lüscher, TF; Kaufmann, PA; Landmesser, U; Martin, U
Transplantation and tracking of human-induced pluripotent stem cells in a pig model of myocardial infarction: assessment of cell survival, engraftment, and distribution by hybrid single photon emission computed tomography/computed tomography of sodium iodide symporter transgene expression.
Circulation. 2012; 126(4):430-439
Doi: 10.1161/CIRCULATIONAHA.111.087684
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** Vaculik, C; Schuster, C; Bauer, W; Iram, N; Pfisterer, K; Kramer, G; Reinisch, A; Strunk, D; Elbe-Bürger, A
Human dermis harbors distinct mesenchymal stromal cell subsets.
J Invest Dermatol. 2012; 132(3 Pt 1):563-574
Doi: 10.1038/jid.2011.355
[OPEN ACCESS]
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** Etchart, N; Reinisch, A; Ortner, A; Fruhwirth, M; Hofmann, N; Rohban, R; Url, C; Schallmoser, K; Beham-Schmid, C; Strunk, D
Platelet-derived factors preserve human mesenchymal cell stemness and promote endochondral bone and marrow niche formation via PDGF-receptor signalling
BONE MARROW TRANSPL. 2012; 47: S49-S50.
[Oral Communication]
Web of Science
** Hofmann, NA; Ortner, A; Jacamo, RO; Reinisch, A; Etchart, N; Schallmoser, K; Fruehwirth, M; Rohban, R; Beham-Schmid, C; Andreeff, M; Strunk, D
Therapeutic neo-vasculogenesis in vivo is promoted by oxygen sensing mesenchymal stem/progenitor cells
BONE MARROW TRANSPL. 2012; 47: S319-S320.
[Poster]
Web of Science
** Reinisch, A; Etchart, N; Hofmann, NA; Fruhwirth, M; Ortner, A; Thaler, D; Feilhauer, B; Hartwig, UF; Beham-Schmid, C; Trajanosky, S; Wagner, W; Alves, F; Schallmoser, K; Andreeff, M; Strunk, D;
Organotypic Epigenetic Signature Predicts Bone and Marrow Niche Forming Capacity of Stromal Progenitors in a Novel Mouse Model in Vivo.
BLOOD. BLOOD120: WASHINGTON: AMER SOC HEMATOLOGY; ( Presented at: 54th Annual Meeting and Exposition of the American-Society-of-Hematology (ASH), Atlanta, GA, DEC 08-11, 2012)
Doi: 10.1182/blood.V120.21.2987.2987
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** Reinisch, A; Etchart, N; Hofmann, NA; Fruhwirth, M; Thaler, D; Feilhauer, B; Ortner, A; Beham-Schmid, C; Trajanoski, S; Wagner, W; Schallmoser, K; Strunk, D
Bone and haematopoietic niche formation is predetermined by a specific epigenetic signature
BONE MARROW TRANSPL. 2012; 47: S48-S49.
[Oral Communication]
Web of Science
** Rohban, R; Etchart, N; Reinisch, A; Hofmann, N; Thaler, D; Feilhauer, B; Dacheva, M; Schallmoser, K; Rohde, E; Strunk, D
Early in vivo signalling signature during human stem/progenitor cell-derived neo-vasculogenesis
BONE MARROW TRANSPL. 2012; 47: S49-S49.
[Oral Communication]
Web of Science
** Schallmoser, K; Hofmann, NA; Reinisch, A; Ortner, A; Url, C; Etchart, N; Joussen, S; Wagner, W; Strunk, D;
Maintenance of Osteogenic Differentiation Capacity of MSPC Despite Amplified Proliferation Under Elevated Oxgen Conditions.
BLOOD. BLOOD120: WASHINGTON: AMER SOC HEMATOLOGY; ( Presented at: 54th Annual Meeting and Exposition of the American-Society-of-Hematology (ASH), Atlanta, GA, DEC 08-11, 2012)
Doi: 10.1182/blood.V120.21.1916.1916
[Poster]
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** Rohde, E; Schallmoser, K; Reinisch, A; Hofmann, NA; Pfeifer, T; Fröhlich, E; Rechberger, G; Lanzer, G; Kratky, D; Strunk, D
Pro-angiogenic induction of myeloid cells for therapeutic angiogenesis can induce mitogen-activated protein kinase p38-dependent foam cell formation.
Cytotherapy. 2011; 13(4):503-512
Doi: 10.3109/14653249.2010.536214
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** Vetter, A; Reinisch, A; Strunk, D; Kremser, C; Hahn, HW; Huck, CW; Ostermann, T; Leithner, K; Bernkop-Schnürch, A
Thiolated polyacrylic acid-modified iron oxide nanoparticles for in vitro labeling and MRI of stem cells.
J Drug Target. 2011; 19(7):562-572
Doi: 10.3109/1061186X.2010.542243
Web of Science
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** Etchart, N; Reinisch, A; Gungl, D; Hofmann, NA; Rohban, R; Ortner, A; Rankl, J; Hofmeister, A; Beham-Schmid, C; Schallmoser, K; Strunk, D
Human platelet-derived factors maintain a bone and marrow niche-competent function of mesenchymal stem/progenitor cells
BONE MARROW TRANSPLANT. 2011; 46: S303-S303.
[Poster]
Web of Science
** Etchart, N; Reinisch, A; Ortner, A; Fruhwirth, M; Rohban, R; Url, C; Schallmoser, K; Beham-Schmid, C; Strunk, D
Platelet-Derived Factors Allow Human Mesenchymal Stem Cells to Spontaneously Undergo Endochondral Bone Differentiation and Provide Bone Marrow Support in a Xenogenic In Vivo Model
BLOOD. 2011; 118(21): 583-584.
[Poster]
Web of Science
** Hofmann, NA; Ortner, A; Jacamo, RO; Reinisch, A; Schallmoser, K; Fruewirth, M; Diwoky, C; Rohban, R; Beham-Schmid, C; Andreeff, M; Strunk, D
Neo-Vasculogenesis In Vivo Is Facilitated by Oxygen Sensing Mesenchymal Stem and Pogenitor Cells
BLOOD. 2011; 118(21): 319-319.
[Oral Communication]
Web of Science
** Hofmann, NA; Reinisch, A; Ortner, A; Etchart, N; Schallmoser, K; Absenger, M; Strunk, D
Vascular regeneration in vivo is promoted by oxygen sensing mesenchymal stem and progenitor cells
BONE MARROW TRANSPLANT. 2011; 46: S302-S302.
[Poster]
Web of Science
** Reinisch, A; Etchart, N; Hofmann, NA; Gungl, D; Ortner, A; Rankl, J; Beham-Schmid, C; Schallmoser, K; Strunk, D
Unexpected somatic restriction of mesenchymal stem and progenitor cells after transplantation in vivo
BONE MARROW TRANSPLANT. 2011; 46: S302-S303.
[Poster]
Web of Science
** Reinsch, A; Liechtenstein, N; Hofmann, NA; Ortner, A; Fruhwirth, M; Schallmoser, K; Beham-Schmid, C; Strunk, D
Dissociation of In Vivo and in Vitro Differentiation Capacity of Human Mesenchymal Stem Cells Is Reflected by a Tissue Specific Epigenetic Memory
BLOOD. 2011; 118(21): 1027-1028.
[Poster]
Web of Science
** Rohban, R; Reinisch, A; Rohde, E; Hofmann, NA; Gimona, M; Etchart, N; Ortner, A; Strunk, D
Identification of early in vivo signalling signature during regenerative stem cell therapy using proteomic profiling
BONE MARROW TRANSPLANT. 2011; 46: S50-S50.
[Oral Communication]
Web of Science
** Schallmoser, K; Bartmann, C; Rohde, E; Bork, S; Guelly, C; Obenauf, AC; Reinisch, A; Horn, P; Ho, AD; Strunk, D; Wagner, W
Replicative senescence-associated gene expression changes in mesenchymal stromal cells are similar under different culture conditions.
Haematologica. 2010; 95(6): 867-874.
Doi: 10.3324/haematol.2009.011692
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** Hofmann, N; Reinisch, A; Schallmoser, K; Rohde, E; Absenger, M; Birner-Gruenberger, R; Strunk, D
HYPOXIA MAINTAINS STEMNESS OF ENDOTHELIAL PROGENITOR CELLS.
HAEMATOL-HEMATOL J. 15th Congress of the European Hematology Association.. 2010; 95(s2):0246-109.-15th Congress of the European Hematology Association.; JUN 10-13, 2010; Barcelona, SPAIN.
[Poster]
Web of Science
** Hofmann, NA; Reinisch, A; Ortner, A; Schallmoser, K; Rohde, E; Absenger, M; Birner-Gruenberger, R; Strunk, D
Oxygen Sensing of Mesenchymal Stem and Progenitor Cells Facilitates Neo-Vasculogenesis In Vivo.
BLOOD. 2010; 116(21):1750-1750.
[Oral Communication]
Web of Science
** Hofmann, NA; Reinisch, A; Schallmoser, K; Rohde, E; Chatterjee, S; Absenger, M; Birner-Gruenberger, R; Strunk, D
Hypoxia maintains stemness of somatic endothelial colony forming progenitor cells
BONE MARROW TRANSPLANT. 2010; 45: S279-S279.
[Poster]
Web of Science
** Reinisch, A; Etchart, N; Hofmann, NA; Ortner, A; Rohde, E; Schallmoser, K; Beham-Schmid, C; Dullin, C; Diwoky, C; Hofmeister, A; Stollberger, R; Alves, F; Strunk, D
Human Vascular Progenitor Cells Can Guide Mesodermal Lineage Choice of Mesenchymal Stem and Progenitor Cells After Co-Transplantation In Vivo.
BLOOD. 2010; 116(21):414-415.
[Oral Communication]
Web of Science
** Reinisch, A; Etchart, N; Hofmann, NA; Ortner, A; Rohde, E; Schallmoser, K; Beham-Schmid, C; Dullin, C; Diwoky, C; Hofmeister, A; Stollberger, R; Alves, F; Strunk, D
Human Vascular Progenitor Cells Can Guide Mesodermal Lineage Choice of Mesenchymal Stem and Progenitor Cells After Co-Transplantation In Vivo.
52nd Annual Meeting2010; 116(21):414-415.-American Society of Hematology; DEC 4-7, 2010; Orlando, USA.
[Oral Communication]
Web of Science
** Reinisch, A; Hofmann, N; Obenauf, A; Karl, K; Rohde, E; Schallmoser, K; Thaler, D; Fruhwirth, M; Flicker, K; Linkesch, W; Speicher, M; Strunk, D
STABLE VESSEL GENERATION TROUGH APPLICATION OF BLOOD-DERIVED ENDOTHELIAL COLONY FORMING PROGENITOR CELLS (ECFCS) AND MESENCHYMAL STROMAL/STEM CELLS (MSCS)
HAEMATOL-HEMATOL J. 15th Congress of the European Hematology Association. 2010; 95(s2):0509-220.-15th Congress of the European Hematology Association. ; JUN 10-13, 2010; Barcelona, SPAIN.
[Oral Communication]
Web of Science
** Reinisch, A; Hofmann, N; Ortner, A; Etchart, N; Beham-Schmid, C; Dullin, C; Diwoky, C; Hofmeister, A; Stollberger, R; Alves, F; Strunk, D
VASCULAR PROGENITOR CELLS CAN INSTRUCT DEVELOPMENTAL FATE DECISION OF CD146(+) MESENCHYMAL STROMAL/STEM CELLS IN VIVO
HAEMATOL-HEMATOL J. 2010; 95: 1160
[Oral Communication]
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** Reinisch, A; Hofmann, NA; Obenauf, A; Kashofer, K; Rohde, E; Schallmoser, K; Thaler, D; Fruhwirth, M; Flicker, K; Linkesch, W; Speicher, M; Strunk, D
Sustained vessel formation through co-transplantation of endothelial colony-forming progenitor cells with mesenchymal stromal cells
BONE MARROW TRANSPLANT. 2010; 45: S52-S52. -36th Annual Meeting of the European Group for Blood and Marrow Transplantation; MAR 21-24, 2010; Vienna, AUSTRIA.
[Oral Communication]
Web of Science
** Reinisch, A; Hofmann, NA; Ortner, A; Etchart, N; Beham-Schmidt, C; Dullin, C; Diwoky, C; Hofmeister, A; Stollberger, R; Alves, F; Strunk, D
Vascular progenitor cells can instruct skeletal stem cells during developmental fate decisions
BONE MARROW TRANSPLANT. 2010; 45: S53-S53.
[Oral Communication]
Web of Science
** Rohde, E; Schallmoser, K; Reinisch, A; Hofmann, N; Pfeifer, T; Rechberger, G; Lanzer, G; Kratky, D; Strunk, D
BLOOD AND MARROW-DERIVED PROGENITORS ARE SUSCEPTIBLE TO MAPK P38-DEPENDENT FOAM CELL INDUCTION
HAEMATOL-HEMATOL J. 2010; 95: 1059-
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Web of Science
** Rohde, E; Schallmoser, K; Reinisch, A; Hofmann, NA; Lanzer, G; Strunk, D
THERAPEUTIC ANGIOGENESIS WITH CELLULAR THERAPY: PRO-ANGIOGENIC INDUCTION OF MYELOID CELLS CAN FAVOR MAPK P38-DEPENDENT FOAM CELL DEVELOPMENT.
VOX SANG. XXXIst International Congress of the ISBT in Joint Cooperation with the 43rd Congress of the DGTI. 2010; 99(1):20-20.-XXXIst International Congress of the ISBT in Joint Cooperation with the 43rd Congress of the DGTI; JUN 26-JUL 2, 2010; Berlin, GERMANY.
[Poster]
Web of Science
** Rohde, E; Schallmoser, K; Reinisch, A; Hofmann, NA; Pfeifer, T; Rechberger, G; Lanzer, G; Linkesch, W; Kratky, D; Strunk, D
MAPK p38-dependent foam cell formation of myeloid cells after pro-angiogenic induction as a risk factor of therapeutic angiogenesis
BONE MARROW TRANSPLANT. 2010; 45: S283-S283. -36th Annual Meeting of the European Group for Blood and Marrow Transplantation; MAR 21-24, 2010; Vienna, AUSTRIA.
[Poster]
Web of Science
** Schallmoser, K; Bartmann, C; Rohde, E; Bork, S; Guelly, C; Obenauf, A; Reinisch, A; Horn, P; Ho, A; Linkesch, W; Lanzer, G; Wagner, W; Strunk, D
SENESCENCE-ASSOCIATED GENE EXPRESSION CHANGES IN MESENCHYMAL STROMAL/STEM CELLS
HAEMATOL-HEMATOL J. 2010; 95(s2):0249-110.-15th Congress of the European Hematology Association. ; JUN 10-13, 2010; Barcelona, SPAIN.
[Poster]
Web of Science
** Schallmoser, K; Bartmann, C; Rohde, E; Bork, S; Guelly, C; Obenauf, AC; Reinisch, A; Hom, P; Ho, AD; Linkesch, W; Lanzer, G; Wagner, W; Strunk, D
Replicative senescence-associated gene expression changes in mesenchymal stromal cells
BONE MARROW TRANSPLANT. 2010; 45: S281-S281.
[Poster]
Web of Science
** Schallmoser K; Bartmann, C; Rohde E; Bork, S; Guelly, C; Obenauf, AC; Reinisch, A; Horn, P; Ho, AD; Linkesch, W; Lanzer, G; Wagner, W; Strunk, D
Similarity of Replicative Senescence-Associated Gene Expression Changes in Mesenchymal Stromal Cells under Various Culture Conditions.
XXXIst International Congress of the ISBT in Joint Cooperation with the 43rd Congress of the DGTI2010; 99(1):481-482.-XXXIst International Congress of the ISBT in Joint Cooperation with the 43rd Congress of the DGTI; JUN 26-JUL 2, 2010; Berlin, GERMANY.
[Poster]
Web of Science
** Schallmoser, K; Rohde, E; Obenauf, AC; Reinisch, A; Bartmann, C; Lanzer, G; Linkesch, W; Strunk, D
Genomic Stability of Mesenchymal Stromal/Stem Cells After Long-Term Culture
TRANSFUSION. 2010; 50: 24A-24A.-AABB; 08.-12.10.2010; Baltimore, MD, USA.
[Oral Communication]
Web of Science
** Schallmoser, K; Rohde, E; Reinisch, A; Obenauf, A; Bartmann, C; Lanzer, G; Linkesch, W; Strunk, D
GENOMIC STABILITY IN LONG-TERM CULTURED MESENCHYMAL STROMAL/STEM CELLS
HAEMATOL-HEMATOL J. 2010; 95: 0247
[Poster]
Web of Science
** Schallmoser, K; Rohde, E; Reinisch, A; Obenauf, AC; Bartmann, C; Lanzer, G; Linkesch, W; Strunk, D
Alteration of genomic stability in long-term cultured mesenchymal stromal cells
BONE MARROW TRANSPLANT. 2010; 45: S280-S280.-36th Annual Meeting of the European Group for Blood and Marrow Transplantation; MAR 21-24, 2010; Vienna, AUSTRIA.
[Poster]
Web of Science
** Sourij, H; Hofmann, NA; Tripolt, N; Reinisch, A; Eder, M; Pieber, TR; Strunk, D
ENDOTHELIAL COLONY-FORMING CELL OUTGROWTH IS CORRELATED WITH INTIMA MEDIA THICKNESS AND CARDIOVASCULAR RISK FACTORS IN TYPE 2 DIABETIC PATIENTS
ATHEROSCLER SUPPL. 2010; 11(2): MS156
Doi: 10.1016/S1567-5688(10)70657-7
Web of Science
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** Thaler, D; Fruthwirth, M; Reinisch, A; Schallmoser, K; Rohde, E; Hofmann, NA; Linkesch, W; Hartwig, U; Strunk, D
Combined action of endothelial and mesenchymal niche cells to amplify haematopoietic progenitor expansion in a humanized system
BONE MARROW TRANSPLANT. 2010; 45: S53-S53. - 36th Annual Meeting of hte European Group for Blood and Marrow Transplantation; MAR 21-24, 2010; Vienna, AUSTRIA.
[Oral Communication]
Web of Science
** Hofmann, NA; Reinisch, A; Strunk, D
Isolation and large scale expansion of adult human endothelial colony forming progenitor cells.
J Vis Exp. 2009; (32): 1524-1524
Doi: 10.3791/1524
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** Reinisch, A; Hofmann, NA; Obenauf, AC; Kashofer, K; Rohde, E; Schallmoser, K; Flicker, K; Lanzer, G; Linkesch, W; Speicher, MR; Strunk, D
Humanized large-scale expanded endothelial colony-forming cells function in vitro and in vivo.
Blood. 2009; 113(26): 6716-6725.
Doi: 10.1182/blood-2008-09-181362
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** Reinisch, A; Strunk, D
Isolation and animal serum free expansion of human umbilical cord derived mesenchymal stromal cells (MSCs) and endothelial colony forming progenitor cells (ECFCs).
J Vis Exp. 2009; (32): 1525-1525
Doi: 10.3791/1525
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** Fruehwirth, M; Thaler, D; Reinisch, A; Schallmoser, K; Rohde, E; Hofmann, NA; Linkesch, W; Strunk, D
Contribution of endothelial and mesenchymal niche cells to haematopoietic progenitor expansion in a humanised system.
BONE MARROW TRANSPLANT. 2009; 43: S188-S189.-35th Annual Meeting of the European Group for Blood and Marrow Transplantation; MAR 29-APR 01, 2009; Goteborg, SWEDEN.
[Poster]
Web of Science
** Reinisch, A; Hofmann, NA; Obenauf, A; Kashofer, K; Rohde, E; Schallmoser, K; Thaler, D; Fruehwirth, M; Flicker, K; Linkesch, W; Speicher, M; Strunk, D
Vascular regeneration by adult blood-derived endothelial colony-forming cells expanded under animal serum-free conditions
BONE MARROW TRANSPLANT. 35th Annual Meeting of the European Group for Blood and Marrow Transplantation2009; 43(1):S19-S20.-35th Annual Meeting of the European Group for Blood and Marrow Transplantation; MAR 29-APR 01, 2009; Goteborg, SWEDEN.
[Oral Communication]
Web of Science
** Rohde, E; Pfeifer, T; Schallmoser, K; Reinisch, A; Hofmann, NA; Froehlich, E; Rechberger, G; Lanzer, G; Kratky, D; Strunk, D
Pro-atherogenic risk of cellular therapy for vascular regeneration?
BONE MARROW TRANSPLANT. 35th Annual Meeting of the European Group for Blood and Marrow Transplantation2009; 43(1):S203-S204.-35th Annual Meeting of the European Group for Blood and Marrow Transplantation; MAR 29-APR 01, 2009; Goteborg, SWEDEN.
[Poster]
Web of Science
** Schallmoser, K; Rohde, E; Reinisch, A; Obenauf, A; Bartmann, C; Lanzer, G; Linkesch, W; Strunk, D
Evidence for genomic stability of bone marrow-derived MSCS after large-scale expansion in a humanised system.
BONE MARROW TRANSPLANT. 35th Annual Meeting of the European Group for Blood and Marrow Transplantation2009; 43(1):S187-S187.-35th Annual Meeting of the European Group for Blood and MarrowTransplantation; MAR 29-APR 01, 2009; Goteborg, SWEDEN.
[Poster]
Web of Science
** Schallmoser, K; Rohde, E; Bartmann, C; Obenauf, AC; Reinisch, A; Strunk, D
Platelet-derived growth factors for GMP-compliant propagation of mesenchymal stromal cells.
Biomed Mater Eng. 2009; 19(4-5): 271-276.
Doi: 10.3233/BME-2009-0591
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** Schallmoser, K; Rohde, E; Reinisch, A; Bartmann, C; Thaler, D; Drexler, C; Obenauf, AC; Lanzer, G; Linkesch, W; Strunk, D
Rapid large-scale expansion of functional mesenchymal stem cells from unmanipulated bone marrow without animal serum.
Tissue Eng Part C Methods. 2008; 14(3): 185-196.
Doi: 10.1089/ten.tec.2008.0060
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** Frühwirth, M; Thaler, D; Reinisch, A; Schallmoser, K; Rohde, E; Hofmann, NA; Linkesch, W; Strunk, D
Combined Action of Endothelial and Mesenchymal Niche Cells to Amplify Hematopoietic Progenitor Expansion in a Humanized System.
Fiftieth annual meeting abstracts2008; 112(11):840-840.-American Society of Hematology 50th Annual Meeting and Exposition; DEC 6-9, 2008; San Francisco, USA.
[Oral Communication]
Web of Science
** Reinisch, A; Diwoky, C; Hofmann, N; Schallmoser, K; Linkesch, W; Stollberger, R; Strunk, D
Molecular Imaging of Bone Marrow Stromal Cells Abstract only
Bone Marrow Transplantation2008; 41(1):S432-S432.-34th Annual Meeting of the European Group for Blood and Marrow Transplantation (EBMT); MAR 30-APR 2, 2008; Florence, Italy.
[Poster]
Web of Science
** Reinisch, A; Hofmann, NA; Obenauf, A; Kashofer, K; Rohde, E; Schallmoser, K; Thaler, D; Fruehwirth, M; Linkesch, W; Speicher, M; Strunk, D
Making Functional Endothelial Progenitors: Humanized Large-scale Animal Serum-free Propagated Adult Blood-derived Endothelial Colony-forming Cells Assemble Stable Perfused Vessels In vivo.
Fiftieth Annual Meeting Abstracts2008; 112(11):659-659.-American Society of Hematology 50th Annual Meeting and Exposition; DEC 6-9, 2008; San Francisco, USA.
[Poster]
Web of Science
** Schallmoser, K; Rohde, E; Reinisch, A; Obenauf, AC; Bartmann, C; Lanzer, G; Linkesch, W; Strunk, D
Genomic stability and safety of MSCs after animal serum-free humanized clinical scale propagation.
Fiftieth annual meeting abstracts2008; 112(11):805-805.-American Society of Hematology 50th Annual Meeting and Exposition; DEC 6-9, 2008; San Francisco, USA.
[Poster]
Web of Science
** Reinisch, A; Bartmann, C; Schallmoser, K; Rohde, E; Lanzer, G; Linkesch, W; Strunk, D
Human platelet-derived factors regulate gene expression profile and function of human multipotent mesenchymal stromal cells.
. 2008; 41(1): S128-S128.
[Poster]
Web of Science
** Schallmoser, K; Rohde, E; Reinisch, A; Obenauf, A; Speicher, M; Bartmann, C; Lanzer, G; Linkesch, W; Strunk, D
Minimum requirements for fully humanised clinical scale propagation of multipotent mesenchymal stromal cells.
. 2008; 41(1): S314-S314.
[Poster]
Web of Science
** Reinisch, A; Bartmann, C; Rohde, E; Schallmoser, K; Bjelic-Radisic, V; Lanzer, G; Linkesch, W; Strunk, D
Humanized system to propagate cord blood-derived multipotent mesenchymal stromal cells for clinical application.
Regen Med. 2007; 2(4):371-382
Doi: 10.2217/17460751.2.4.371
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** Rohde, E; Bartmann, C; Schallmoser, K; Reinisch, A; Lanzer, G; Linkesch, W; Guelly, C; Strunk, D
Immune cells mimic the morphology of endothelial progenitor colonies in vitro.
Stem Cells. 2007; 25(7): 1746-1752.
Doi: 10.1634/stemcells.2006-0833
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** Schallmoser, K; Bartmann, C; Rohde, E; Reinisch, A; Kashofer, K; Stadelmeyer, E; Drexler, C; Lanzer, G; Linkesch, W; Strunk, D
Human platelet lysate can replace fetal bovine serum for clinical-scale expansion of functional mesenchymal stromal cells.
Transfusion. 2007; 47(8): 1436-1446.
Doi: 10.1111/j.1537-2995.2007.01220.x
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** Bartmann, C; Schallmoser, K; Rohde, E; Reinisch, A; Guelly, C; Lanzer, G; Linkesch, W; Strunk, D
Human platelet-derived factors induce differential gene expression in bone marrow mesenchymal stem cells
HAEMATOL-HEMATOL J. 2007; 92: 318-318.-12th Congress of the European Hematology Association; JUN 7-10, 2007; Vienna, AUSTRIA.
[Poster]
Web of Science
** Malischnik, C; Schallmoser, K; Rohde, E; Reinisch, A; Guelly, C; Lanzer, G; Linkesch, W; Strunk, D
Gene expression profiling of human multipotent mesenchymal stromal cells
BONE MARROW TRANSPLANT. 2007; 39: S51-S51.
[Oral Communication]
Web of Science
** Reinisch, A; Bartmann, C; Rohde, E; Schallmoser, K; Bielic-Radisic, V; Lanzer, G; Linkesch, W; Strunk, D
Clinical scale propagation of functional cord blood stem cells in a humanized system
HAEMATOL-HEMATOL J. 2007; 92: 318-318.-12th Congress of the European Hematology Association; JUN 7-10, 2007; Vienna, AUSTRIA.
[Poster]
Web of Science
** Reinisch, A; Malischnik, C; Rohde, E; Schallmoser, K; Bjelic-Radisic, V; Lanzer, G; Linkesch, W; Strunk, D
Clinical scale expansion of human cord blood-derived multipotent stem cells in a new FBS-free system
BONE MARROW TRANSPLANT. 2007; 39: S132-S133.
[Poster]
Web of Science
** Rohde, E; Bartmann, C; Schallmoser, K; Reinisch, A; Lanzer, G; Linkesch, W; Guelly, C; Strunk, D
Immune cells mimic the morphology of endothelial progenitor colonies in vitro
HAEMATOL-HEMATOL J. 2007; 92: 315-315.-12th Congress of the European Hematology Association; JUN 7-10, 2007; Vienna, AUSTRIA.
[Poster]
Web of Science
** Rohde, E; Bartmann, C; Schallmoser, K; Reinisch, A; Lanzer, G; Linkesch, W; Guelly, C; Strunk, D
Immune cells mimic endothelial progenitor colonies
TRANSFUSION. 2007; 47(3):69A-69A.-American Association of Blood Banks (AABB) 60th Annual Meeting; OKT 20-23, 2007; Anaheim, California, USA.
[Poster]
Web of Science
** Rohde, E; Malischnik, C; Schallmoser, K; Reinisch, A; Lanzer, G; Linkesch, W; Guelly, C; Strunk, D
Immune cells mimic endothelial progenitor colonies
BONE MARROW TRANSPLANT. 2007; 39: S123-S123.
[Poster]
Web of Science
** Schallmoser, K; Bartmann, C; Rohde, E; Reinisch, A; Kashofer, K; Emberger, W; Lanzer, G; Linkesch, W; Strunk, D
A novel system for highly efficient clinical scale propagation of human mesenchymal stem cells with human platelet lysate
HAEMATOL-HEMATOL J. 2007; 92: 317-318.-12th Congress of the European Hematology Association; JUN 7-10, 2007; Vienna, AUSTRIA.
[Poster]
Web of Science
** Schallmoser, K; Malischnik, C; Rohde, E; Reinisch, A; Kashofer, K; Lanzer, G; Linkesch, W; Strunk, D
Two steps to clinical multipotent mesenchymal stromal cells with human platelet lysate
BONE MARROW TRANSPLANT. 2007; 39: S110-S110.
[Poster]
Web of Science
** Schallmoser, K; Reinisch, A; Bartmann, C; Rohde, E; Kashofer, K; Emberger, W; Lanzer, G; Linkesch, W; Strunk, D
Animal serum-free clinical scale propagation of human MSC
TRANSFUSION. 2007; 47(3):28A-28A.-American Association of Blood Banks (AABB) 60th Annual Meeting; OKT 20-23, 2007; Anaheim, California, USA.
[Oral Communication]
Web of Science
** Malischnik, C; Schallmoser, K; Rohde, E; Reinisch, A; Guelly, C; Lanzer, G; Linkesch, W; Strunk, D
Human platelet-derived factors regulate mesenchymal stem cell gene expression.
BLOOD. 2006; 108(11): 142B-142B.
[Poster]
Web of Science
** Rohde, E; Malischnik, C; Schallmoser, K; Reinisch, A; Lanzer, G; Linkesch, W; Guelly, C; Strunk, D
Immune cells mimic endothelial progenitor colonies.
BLOOD. 2006; 108(11): 513A-513A.
Doi: 10.1182/blood.V108.11.1811.1811
[Poster]
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** Schallmoser, K; Malischnik, C; Rohde, E; Reinisch, A; Guelly, C; Lanzer, G; Linkesch, W; Strunk, D
Human mesenchymal stem cell therapy: Platelet lysate supports efficient preclinical expansion.
BLOOD. 2006; 108(11): 1042A-1042A.
Doi: 10.1182/blood.V108.11.3649.3649
[Poster]
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