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Items: 1 to 20 of 104

1.

Engineered Human Muscle Tissue from Skeletal Muscle Derived Stem Cells and Induced Pluripotent Stem Cell Derived Cardiac Cells.

Tchao J, Kim JJ, Lin B, Salama G, Lo CW, Yang L, Tobita K.

Int J Tissue Eng. 2013 Sep 28;2013:198762.

2.

A three-dimensional gel bioreactor for assessment of cardiomyocyte induction in skeletal muscle-derived stem cells.

Clause KC, Tinney JP, Liu LJ, Gharaibeh B, Huard J, Kirk JA, Shroff SG, Fujimoto KL, Wagner WR, Ralphe JC, Keller BB, Tobita K.

Tissue Eng Part C Methods. 2010 Jun;16(3):375-85. doi: 10.1089/ten.TEC.2009.0098.

3.

Developing cardiac and skeletal muscle share fast-skeletal myosin heavy chain and cardiac troponin-I expression.

Clause KC, Tchao J, Powell MC, Liu LJ, Huard J, Keller BB, Tobita K.

PLoS One. 2012;7(7):e40725. doi: 10.1371/journal.pone.0040725. Epub 2012 Jul 10.

4.

Generation of functional murine cardiac myocytes from induced pluripotent stem cells.

Mauritz C, Schwanke K, Reppel M, Neef S, Katsirntaki K, Maier LS, Nguemo F, Menke S, Haustein M, Hescheler J, Hasenfuss G, Martin U.

Circulation. 2008 Jul 29;118(5):507-17. doi: 10.1161/CIRCULATIONAHA.108.778795. Epub 2008 Jul 14.

5.

Combined biophysical and soluble factor modulation induces cardiomyocyte differentiation from human muscle derived stem cells.

Tchao J, Han L, Lin B, Yang L, Tobita K.

Sci Rep. 2014 Oct 14;4:6614. doi: 10.1038/srep06614.

6.

Osteogenic potential of postnatal skeletal muscle-derived stem cells is influenced by donor sex.

Corsi KA, Pollett JB, Phillippi JA, Usas A, Li G, Huard J.

J Bone Miner Res. 2007 Oct;22(10):1592-602.

7.

Functional characterization of cardiomyocytes derived from murine induced pluripotent stem cells in vitro.

Kuzmenkin A, Liang H, Xu G, Pfannkuche K, Eichhorn H, Fatima A, Luo H, Saric T, Wernig M, Jaenisch R, Hescheler J.

FASEB J. 2009 Dec;23(12):4168-80. doi: 10.1096/fj.08-128546. Epub 2009 Aug 24.

PMID:
19703934
8.

Engineering of corpus cavernosum using vascular endothelial growth factor-expressing muscle-derived stem cells seeded on acellular corporal collagen matrices.

An G, Ji C, Wei Z, Chen H, Zhang J.

Urology. 2013 Feb;81(2):424-31. doi: 10.1016/j.urology.2012.10.042.

PMID:
23374823
9.

Directed differentiation of patient-specific induced pluripotent stem cells identifies the transcriptional repression and epigenetic modification of NKX2-5, HAND1, and NOTCH1 in hypoplastic left heart syndrome.

Kobayashi J, Yoshida M, Tarui S, Hirata M, Nagai Y, Kasahara S, Naruse K, Ito H, Sano S, Oh H.

PLoS One. 2014 Jul 22;9(7):e102796. doi: 10.1371/journal.pone.0102796. eCollection 2014.

10.

A relationship between vascular endothelial growth factor, angiogenesis, and cardiac repair after muscle stem cell transplantation into ischemic hearts.

Payne TR, Oshima H, Okada M, Momoi N, Tobita K, Keller BB, Peng H, Huard J.

J Am Coll Cardiol. 2007 Oct 23;50(17):1677-84.

11.

Beneficial effect of mechanical stimulation on the regenerative potential of muscle-derived stem cells is lost by inhibiting vascular endothelial growth factor.

Beckman SA, Chen WC, Tang Y, Proto JD, Mlakar L, Wang B, Huard J.

Arterioscler Thromb Vasc Biol. 2013 Aug;33(8):2004-12. doi: 10.1161/ATVBAHA.112.301166. Epub 2013 May 30.

12.

Sex of muscle stem cells does not influence potency for cardiac cell therapy.

Drowley L, Okada M, Payne TR, Botta GP, Oshima H, Keller BB, Tobita K, Huard J.

Cell Transplant. 2009;18(10):1137-46. doi: 10.3727/096368909X471305. Epub 2009 May 6.

PMID:
19523348
13.

Trichostatin A enhances differentiation of human induced pluripotent stem cells to cardiogenic cells for cardiac tissue engineering.

Lim SY, Sivakumaran P, Crombie DE, Dusting GJ, Pébay A, Dilley RJ.

Stem Cells Transl Med. 2013 Sep;2(9):715-25. doi: 10.5966/sctm.2012-0161. Epub 2013 Jul 24.

14.

Functional overloading of dystrophic mice enhances muscle-derived stem cell contribution to muscle contractile capacity.

Ambrosio F, Ferrari RJ, Fitzgerald GK, Carvell G, Boninger ML, Huard J.

Arch Phys Med Rehabil. 2009 Jan;90(1):66-73. doi: 10.1016/j.apmr.2008.06.035.

15.

Neuregulin-1β induces mature ventricular cardiac differentiation from induced pluripotent stem cells contributing to cardiac tissue repair.

Iglesias-García O, Baumgartner S, Macrí-Pellizzeri L, Rodriguez-Madoz JR, Abizanda G, Guruceaga E, Albiasu E, Corbacho D, Benavides-Vallve C, Soriano-Navarro M, González-Granero S, Gavira JJ, Krausgrill B, Rodriguez-Mañero M, García-Verdugo JM, Ortiz-de-Solorzano C, Halbach M, Hescheler J, Pelacho B, Prósper F.

Stem Cells Dev. 2015 Feb 15;24(4):484-96. doi: 10.1089/scd.2014.0211. Epub 2014 Nov 25.

16.

Skeletal muscle-derived stem cells: implications for cell-mediated therapies.

Usas A, Mačiulaitis J, Mačiulaitis R, Jakubonienė N, Milašius A, Huard J.

Medicina (Kaunas). 2011;47(9):469-79. Epub 2011 Dec 2. Review.

17.

Cardiac myocytes derived from murine reprogrammed fibroblasts: intact hormonal regulation, cardiac ion channel expression and development of contractility.

Pfannkuche K, Liang H, Hannes T, Xi J, Fatima A, Nguemo F, Matzkies M, Wernig M, Jaenisch R, Pillekamp F, Halbach M, Schunkert H, Sarić T, Hescheler J, Reppel M.

Cell Physiol Biochem. 2009;24(1-2):73-86. doi: 10.1159/000227815. Epub 2009 Jul 1.

18.

The synergistic effect of treadmill running on stem-cell transplantation to heal injured skeletal muscle.

Ambrosio F, Ferrari RJ, Distefano G, Plassmeyer JM, Carvell GE, Deasy BM, Boninger ML, Fitzgerald GK, Huard J.

Tissue Eng Part A. 2010 Mar;16(3):839-49. doi: 10.1089/ten.TEA.2009.0113.

19.

Physiological and ultrastructural features of human induced pluripotent and embryonic stem cell-derived skeletal myocytes in vitro.

Skoglund G, Lainé J, Darabi R, Fournier E, Perlingeiro R, Tabti N.

Proc Natl Acad Sci U S A. 2014 Jun 3;111(22):8275-80. doi: 10.1073/pnas.1322258111. Epub 2014 May 19.

20.

Effect of VEGF on the regenerative capacity of muscle stem cells in dystrophic skeletal muscle.

Deasy BM, Feduska JM, Payne TR, Li Y, Ambrosio F, Huard J.

Mol Ther. 2009 Oct;17(10):1788-98. doi: 10.1038/mt.2009.136. Epub 2009 Jul 14.

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