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Role of Mesenchymal Stem Cells—Derived Exosomes in Osteoarthritis Treatment

REFERENCES 1. Admyre, C., Grunewald, J., Thyberg, J., Gripenbäck, S., Tornling G., Eklund A., 2003: Exosomes with major histo-compatibility complex class II and co-stimulatory molecules are present in human BAL fluid. Eur. Respir. J. , 22, 578—583. 2. Bruno, S., Grange, C., Deregibus, M. C., 2009: Mesenchymal stem cell-derived microvesicles protect against acute tubular injury. J. Am. Soc. Nephrol. , 20, 1053—1067. 3. Caby, M. P., Lankar, D., Vincendeau-Scherrer, C., Raposo, G., Bonnerot, C., 2005: Exosomal-like vesicles are present in

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Pulmonary heart valve replacement using stabilized acellular xenogeneic scaffolds; effects of seeding with autologous stem cells

valves with tissue-engineered grafts. Tissue Eng Part A. 2013 Aug;19(15-16):1686-94. DOI: 10.1089/ten.tea.2012.0074 7. Tedder ME, Simionescu A, Chen J, Liao J, Simionescu DT. Assembly and testing of stem cell-seeded layered collagen constructs for heart valve tissue engineering. Tissue Eng Part A. 2011 Jan;17(1-2):25-36. DOI: 10.1089/ten.tea.2010.0138 8. Ku CH, Johnson PH, Batten P, Sarathchandra P, Chambers RC, Taylor PM, et al. Collagen synthesis by mesenchymal stem cells and aortic valve interstitial cells in response to mechanical stretch. Cardiovasc

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Effects of Cell Seeding Methods on Chondrogenic Differentiation of Rat Mesenchymal Stem Cells in Polyhydroxybutyrate/Chitosan Scaffolds

REFERENCES 1. Barry, F. P., Murphy, J. M., 2004: Review Mesenchymal stem cells: clinical applications and biological characterization. Int. J. Biochem. Cell Biol , 36, 568—584. DOI: 10.1016/j.biocel.2003.11.001. 2. Bornes, T. D., Jomha, N. M., Mulet-Sierra, A., Adesida, A. B., 2016: Optimal seeding densities for in vitro chondrogenesis of two- and three-dimensional-isolated and expanded bone marrow-derived mesenchymal stromal stem cells within a porous collagen scaffold. Tissue Engn. C: Methods , 22, 208— 220. DOI: 10.1089/ten.tec.2015

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Optimization of MSC therapeutic strategies for improved GVHD treatment

1 Introduction Allogeneic hematopoietic stem cell transplantation (HSCT) is a well-established form of therapy for malignant hematological disorders [ 1 , 2 ]. The treatment is complicated by treatment-related mortality because of infections, regimen-related toxicity, and engraftment failure [ 3 , 4 , 5 ]. Graft-versus-host disease (GVHD) is a pivotal factor that contributes to engraftment failure [ 6 , 7 ], despite an intensive preparative regimen, an adequate cell dose, and complete donor chimerism. Patients with grade III and grade IV acute GVHD have

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Comparative assessment of bone regeneration by histometry and a histological scoring system / Evaluarea comparativă a regenerării osoase utilizând histometria și un scor de vindecare histologică

-9612(00)00102-2 4. Shastri P. Future of Regenerative Medicine: Challenges and Hurdles. Artificial Organs. 2006;30(10):828-34. DOI: 10.1111/j.1525-1594.2006.00307.x 5. Polini A, Pisignano D, Parodi M, Quarto R, Scaglione S. Osteoinduction of human mesenchymal stem cells by bioactive composite scaffolds without supplemental osteogenic growth factors. PLoS One. 2011;6(10):e26211. doi:10.1371/journal.pone.0026211 DOI: 10.1371/journal.pone.0026211 6. Firoozabadi R, Morsher S, Engelke K, Prevrhal S, Fierlinger A, Miclau T 3rd, Genant HK. Qualitative and

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Similarity of regulatory network between leukemia stem cells and normal hemopoietic stem cells

corresponding BMs and PB, respectively. The comparison among the number of DEGs obtained in the four experiments showed that LB cells did not tend to differentiation and CD34+ was more similar to cancer stem cells. The heatmaps of the top 20 DEGs obtained in the four experiments are shown in Figures 2 – 5 , respectively. As shown in Figure 2 , the top 5 ranked DEGs in experiment 1 were GYPA, LCK, ITK, BCL11B, and RHAG. In Figure 3 , the top 5 ranked DEGs were TAL1, RHOH, MYH10, TYROBP, and CFD. In Figure 4 , the top 5 ranked DEGs were CXCR2, MGAM, TNFRSF10C, KCNJ15, and

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Immunophenotypic characterisation and cytogenetic analysis of mesenchymal stem cells from equine bone marrow and foal umbilical cords during in vitro culture

References 1. Andraszek K., Gryzinska M., Danielewicz A., Batkowska J., Smalec E.: Age-dependent stability of nucleoli and global DNA methylation level in spermatocytes of the domestic horse (Equus caballus). Can J Anim Sci 2016, 96, 215–220. 2. Barberini D.J., Freitas N.P., Magnoni M.S., Maia L., Listoni A.J., Heckler M.C., Sudano M.J., Golim M.A., da Cruz Landim-Alvarenga F., Amorim RM.: Equine mesenchymal stem cells from bone marrow, adipose tissue and umbilical cord: immunophenotypic characterization and differentiation potential. Stem Cell Res

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Chronic myelomonocytic leukemia “myelodysplastic type’’ in transformation to acute myeloid leukemia – diagnostic and therapeutic options: case report and literature review / Leucemie mielomonocitară cronică forma mielodisplazică în transformare spre leucemie acută mieloidă – diagnostic și opțiuni terapeutice: prezentare de caz și revizuirea literaturii

Cytogenetic Nomenclature. Basel, Switzerland: 2013: 78-79. 20. Kekre N, Ho VT. Allogeneic hematopoietic stem cell transplantation for myelofibrosis and chronic myelomonocytic leukemia. Am J Hematol. 2015 Nov;91(1):123-30. DOI: 10.1002/ajh.24215. 21. Symeonidis A, van Biezen A, de Wreede L, Piciocchi A, Finke J, Beelen D, et al. Achievement of complete remission predicts outcome of allogeneic haematopoietic stem cell transplantation in patients with chronic myelomonocytic leukaemia. A study of the chronic malignancies working party of the

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A glance on recent progresses in diagnosis and treatment of primary immunodeficiencies/ Progrese recente în diagnosticul şi tratamentul imunodeficienţelor primare

.jaci.2013.08.032 42. Takahashi K, Yamanaka S. Induction of pluripotent stem cells from mouse embryonic and adult fibroblast cultures by defined factors. Cell. 2006 Aug 25;126(4):663-76. DOI: 10.1016/j.cell.2006.07.024 43. Takahashi K, Tanabe K, Ohnuki M, Narita M, Ichisaka T, Tomoda K, et al. Induction of pluripotent stem cells from adult human fibroblasts by defined factors. Cell. 2007 Nov 30;131(5):861-72. DOI: 10.1016/j. cell.2007.11.019 44. Pessach IM, Ordovas-Montanes J, Zhang SY, Casanova JL, Giliani S, Gennery AR, et

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Establishment of renal failure models by laparoscopy in bama pigs which underwent partial nephrectomy and radical contralateral nephrectomy

1997 64 1082 1086 12 Lin F., Cordes K., Li L., Hood L., Couser W.G., Shankland S.J., Igarashi P.: Hematopoietic stem cells contribute to the regeneration of renal tubules after renal ischemia-reperfusion injury in mice. J Am Soc Nephrol 2003, 14, 1188–1199. 12707389 10.1097/01.ASN.0000061595.28546.A0 Lin F. Cordes K. Li L. Hood L. Couser W.G. Shankland S.J. Igarashi P. Hematopoietic stem cells contribute to the regeneration of renal tubules after renal ischemia-reperfusion injury in mice J Am Soc Nephrol 2003 14 1188

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