265
Views
99
CrossRef citations to date
0
Altmetric
Reviews

Potential therapeutic applications of muscle-derived mesenchymal stem and progenitor cells

, &
Pages 505-517 | Published online: 11 Mar 2010

Bibliography

  • Chen F, Tuan R. Adult stem cells for cartilage tissue engineering and regeneration. Curr Rhematol Rev 2008;4:149-54
  • Patterson TE, Kumagai K, Griffith L, Muschler GF. Cellular strategies for enhancement of fracture repair. J Bone Joint Surg Am 2008;90(Suppl 1):111-9
  • Abdallah BM, Kassem M. Human mesenchymal stem cells: from basic biology to clinical applications. Gene Ther 2007;15(2):109-16
  • Nesselmann C, Ma N, Bieback K, Mesenchymal stem cells and cardiac repair. J Cell Mol Med 2008;12(5B):1795-810
  • Caplan AI. Adult mesenchymal stem cells for tissue engineering versus regenerative medicine. J Cell Physiol 2007;213(2):341-7
  • Friedenstein A, Piatetzky-Shapiro I, Petrakova K. Osteogenesis in transplants of bone marrow cells. J Embryol Exp Morphol 1966;16:381-90
  • Friedenstein A, Chailakhyan R, Gerasimov U. Bone marrow osteogenic stem cells: in vitro cultivation and transplantation in diffusion chambers. Cell Tissue Kinet 1987;20:263-72
  • Caplan AI, Bruder SP. Mesenchymal stem cells: building blocks for molecular medicine in the 21st century. Trends Mol Med 2001;7(6):259-64
  • Tuan R, Boland G, Tuli R. Adult mesenchymal stem cells and cell based tissue engineering. Arthritis Res Ther 2003;5:32-45
  • Khademhosseini A, Vacanti JP, Langer R. How to grow new organs. Sci Am Mag 2009;300(5):64-71
  • Place ES, Evans ND, Stevens MM. Complexity in biomaterials for tissue engineering. Nat Mater 2009;8(6):457-70
  • Caplan AI, Dennis JE. Mesenchymal stem cells as trophic mediators. J Cell Biochem 2006; 98(5):1076-84
  • Shake J, Gruber P, Baumgartner W, Mesenchymal stem cell implantation in a swine myocardial infarct model: engraftment and functional effects. Ann Thorac Surg 2002;73:1919-26
  • Min JY, Sullivan MF, Yang Y, Significant improvement of heart function by cotransplantation of human mesenchymal stem cells and fetal cardiomyocytes in postinfarcted pigs. Ann Thorac Surg 2002;74(5):1568-75
  • Chen J, Li Y, Katakowski M, Intravenous bone marrow stromal cell therapy reduces apoptosis and promotes endogenous cell proliferation after stroke in female rat. J Neurosci Res 2003;73(6):778-86
  • Li Y, Chen J, Zhang CL, Gliosis and brain remodeling after treatment of stroke in rats with marrow stromal cells. Glia 2005;49(3):407-17
  • Le Blanc K, Tammik C, Rosendahl K, HLA expression and immunologic properties of differentiated and undifferentiated mesenchymal stem cells. Exp Hematol 2003;31:890-6
  • Kode JA, Mukherjee S, Joglekar MV, Hardikar AA. Mesenchymal stem cells: immunobiology and role in immunomodulation and tissue regeneration. Cytotherapy 2009;11(4):377-91
  • Mias C, Lairez O, Trouche E, Mesenchymal stem cells promote matrix metalloproteinase secretion by cardiac fibroblasts and reduce cardiac ventricular fibrosis after myocardial infarction. Stem Cells 2009;27(11):2734-43
  • Tang YL, Zhao Q, Zhang YC, Autologous mesenchymal stem cell transplantation induce VEGF and neovascularization in ischemic myocardium. Regul Pept 2004;117(1):3-10
  • Lozito TP, Kuo CK, Taboas JM, Tuan RS. Human mesenchymal stem cells express vascular cell phenotypes upon interaction with endothelial cell matrix. J Cell Biochem 2009;107(4):714-22
  • Muschler GF, Matsukura Y, Nitto H, Selective retention of bone marrow-derived cells to enhance spinal fusion. Clin Orthop Relat Res 2005;(432):242-51
  • Gates CB, Karthikeyan T, Fu F, Huard J. Regenerative medicine for the musculoskeletal system based on muscle-derived stem cells. J Am Acad Orthop Surg 2008;16(2):68-76
  • Giordano A, Galderisi U, Marino I. From the laboratory bench to the patient's bedside: an update on clinical trials with mesenchymal stem cells. J Cell Physiol 2007; 211:27–35
  • Meliga E, Strem BM, Duckers HJ, Serruys PW. Adipose-derived cells. Cell Transplant 2007;16(9):963-70
  • Friedenstein AJ, Deriglasova UF, Kulagina NN, Precursors for fibroblasts in different populations of hematopoietic cells as detected by the in vitro colony assay method. Exp Hematol 1974;2(2):83-92
  • Kolf CM, Cho E, Tuan RS. Mesenchymal stromal cells. Biology of adult mesenchymal stem cells: regulation of niche, self-renewal and differentiation. Arthritis Res Ther 2007;9(1):204
  • Dominici M, Le Blanc K, Mueller I, Minimal criteria for defining multipotent mesenchymal stromal cells. The International Society for Cellular Therapy position statement. Cytotherapy 2006;8(4):315-7
  • Gimble JM, Guilak F. Adipose-derived adult stem cells: isolation, characterization, and differentiation potential. Cytotherapy 2003;5(5):362-9
  • Mizuno H, Hyakusoku H. Mesengenic potential and future clinical perspective of human processed lipoaspirate cells. J Nippon Med Sch 2003;70(4):300-6
  • Tuli R, Li WJ, Tuan RS. Current state of cartilage tissue engineering. Arthritis Res Ther 2003;5(5):235-8
  • Kuo CK, Tuan RS. Tissue engineering with mesenchymal stem cells. IEEE Eng Med Biol Mag 2003;22(5):51-6
  • Song L, Young NJ, Webb NE, Tuan RS. Origin and characterization of multipotential mesenchymal stem cells derived from adult human trabecular bone. Stem Cells Dev 2005;14(6):712-21
  • Tuli R, Tuli S, Nandi S, Characterization of multipotential mesenchymal progenitor cells derived from human trabecular bone. Stem Cells 2003;21(6):681-93
  • Noth U, Osyczka A, Tuli R, Multilineage mesenchymal differentiation potential of human trabecular bone-derived cells. J Orthop Res 2002;20:1060-9
  • Nakahara H, Dennis JE, Bruder SP, In vitro differentiation of bone and hypertrophic cartilage from periosteal-derived cells. Exp Cell Res 1991;195(2):492-503
  • Choi Y-S, Noh S-E, Lim S-M, Multipotency and growth characteristic of periosteum-derived progenitor cells for chondrogenic, osteogenic, and adipogenic differentiation. Biotechnol Lett 2008;30(4):593-601
  • Jones EA, English A, Henshaw K, Enumeration and phenotypic characterization of synovial fluid multipotential mesenchymal progenitor cells in inflammatory and degenerative arthritis. Arthritis Rheum 2004;50(3):817-27
  • Vandenabeele F, De Bari C, Moreels M, Morphological and immunocytochemical characterization of cultured fibroblast-like cells derived from adult human synovial membrane. Arch Histol Cytol 2003;66(2):145-53
  • Fan J, Varshney RR, Ren L, Synovium-derived mesenchymal stem cells: a new cell source for musculoskeletal regeneration. Tissue Eng B 2009;15(1):75-86
  • Jo YY, Lee HJ, Kook SY, Isolation and characterization of postnatal stem cells from human dental tissues. Tissue Eng 2007;13(4):767-73
  • Gay IC, Chen S, Macdougall M. Isolation and characterization of multipotent human periodontal ligament stem cells. Orthod Craniofac Res 2007;10(3):149-60
  • Janjanin S, Djouad F, Shanti RM, Human palatine tonsil: a new potential tissue source of multipotent mesenchymal progenitor cells. Arthritis Res Ther 2008;10(4):R83
  • Shih YR, Kuo TK, Yang AH, Isolation and characterization of stem cells from the human parathyroid gland. Cell Prolif 2009;42(4):461-70
  • Jazedje T, Perin PM, Czeresnia CE, Human fallopian tube: a new source of multipotent adult mesenchymal stem cells discarded in surgical procedures. J Transl Med 2009;7:46
  • Baksh D, Yao R, Tuan RS. Comparison of proliferative and multilineage differentiation potential of human mesenchymal stem cells derived from umbilical cord and bone marrow. Stem Cells 2007;25(6):1384-92
  • Lee OK, Kuo TK, Chen W-M, Isolation of multipotent mesenchymal stem cells from umbilical cord blood. Blood 2004;103(5):1669-75
  • Cetrulo CL Jr. Cord-blood mesenchymal stem cells and tissue engineering. Stem Cell Rev 2006;2(2):163-8
  • Troyer DL, Weiss ML. Concise review: Wharton's jelly-derived cells are a primitive stromal cell population. Stem Cells 2008;26(3):591-9
  • Huang G, Sonoyama W, Liu Y, The hidden treasure in apical papilla: the potential role in pulp/dentin regeneration and bioroot engineering. J Endod 2008;34(6):645-51
  • Huang GT, Gronthos S, Shi S. Mesenchymal stem cells derived from dental tissues vs those from other sources: their biology and role in regenerative medicine. J Dent Res 2009;88(9):792-806
  • Zheng B, Cao B, Crisan M, Prospective identification of myogenic endothelial cells in human skeletal muscle. Nat Biotechnol 2007;25(9):1025-34
  • Nesti LJ, Jackson WM, Shanti RM, Differentiation potential of multipotent progenitor cells derived from war-traumatized muscle tissue. J Bone Joint Surg Am 2008;90(11):2390-8
  • Deasy BM, Huard J. Gene therapy and tissue engineering based on muscle-derived stem cells. Curr Opin Mol Ther 2002;4(4):382-9
  • Qu-Petersen Z, Deasy B, Jankowski R, Identification of a novel population of muscle stem cells in mice: potential for muscle regeneration. J Cell Biol 2002;157(5):851-64
  • Gharaibeh B, Lu A, Tebbets J, Isolation of a slowly adhering cell fraction containing stem cells from murine skeletal muscle by the preplate technique. Nat Protocol 2008;3(9):1501-9
  • Cao B, Zheng B, Jankowski RJ, Muscle stem cells differentiate into haematopoietic lineages but retain myogenic potential. Nat Cell Biol 2003;5(7):640-6
  • Crisan M, Deasy B, Gavina M, Purification and long-term culture of multipotent progenitor cells affiliated with the walls of human blood vessels: myoendothelial cells and pericytes. Methods Cell Biol 2008;86:295-309
  • Rando TA. Stem cells, ageing and the quest for immortality. Nature 2006;441(7097):1080-6
  • Betsholtz C, Lindblom P, Gerhardt H. Role of pericytes in vascular morphogenesis. EXS 2005;(94):115-25
  • Dellavalle A, Sampaolesi M, Tonlorenzi R, Pericytes of human skeletal muscle are myogenic precursors distinct from satellite cells. Nat Cell Biol 2007;9(3):255-67
  • Farrington-Rock C, Crofts NJ, Doherty MJ, Chondrogenic and adipogenic potential of microvascular pericytes. Circulation 2004;110(15):2226-32
  • Collett GD, Canfield AE. Angiogenesis and pericytes in the initiation of ectopic calcification. Circ Res 2005;96(9):930-8
  • Caplan AI. All MSCs are pericytes? Cell Stem Cell 2008;3(3):229-30
  • Crisan M, Yap S, Casteilla L, A perivascular origin for mesenchymal stem cells in multiple human organs. Cell Stem Cell 2008;3(3):301-13
  • Jackson WM, Aragon AB, Djouad F, Mesenchymal progenitor cells derived from traumatized human muscle. J Tissue Eng Regen Med 2009;3(2):129-38
  • Jackson WM, Aragon AB, Nesti LJ, Tuan RS. Putative heterotopic ossification progenitor cells derived from traumatized muscle. J Orthop Res 2009;27(12):1645-51
  • Bianco P, Robey PG, Simmons PJ. Mesenchymal stem cells: revisiting history, concepts, and assays. Cell Stem Cell 2008;2(4):313-9
  • Djouad F, Jackson WM, Bobbick BE, Activin A expression regulates multipotency of mesenchymal progenitor cells. Stem Cells Res Ther; Accepted
  • Lozito T, Jackson WM, Tuan RS, Nesti LJ. Mesenchymal progenitor cells derived from traumatized muscle secrete factors that regulate angiogenesis. Trans Ortho Res Soc 2010;56:739
  • Jackson WM, Lozito TP, Djouad F, Pro-regenerative functions of mesenchymal progenitor cells derived from traumatically injured muscle. Trans Ortho Res Soc 2009;56:733
  • Mizuno H. Adipose-derived stem cells for tissue repair and regeneration: ten years of research and a literature review. J Nippon Med Sch 2009;76(2):56-66
  • Lee JY, Qu-Petersen Z, Cao B, Clonal isolation of muscle-derived cells capable of enhancing muscle regeneration and bone healing. J Cell Biol 2000;150(5):1085-100
  • Peng H, Wright V, Usas A, Synergistic enhancement of bone formation and healing by stem cell-expressed VEGF and bone morphogenetic protein-4. J Clin Invest 2002;110(6):751-9
  • Wright V, Peng H, Usas A, BMP4-expressing muscle-derived stem cells differentiate into osteogenic lineage and improve bone healing in immunocompetent mice. Mol Ther 2002;6(2):169-78
  • Musgrave DS, Pruchnic R, Bosch P, Human skeletal muscle cells in ex vivo gene therapy to deliver bone morphogenetic protein-2. J Bone Joint Surg Br 2002;84(1):120-7
  • Usas A, Ho AM, Cooper GM, Bone regeneration mediated by BMP4-expressing muscle-derived stem cells is affected by delivery system. Tissue Eng A 2009;15(2):285-93
  • Noth U, Steinert A, Tuan R. Technology insight: adult mesenchymal stem cells for osteoarthritis therapy. Nat Clin Pract Rheumatol 2008;4:371-80
  • Chen F, Rousche K, Tuan R. Technology insight: adult stem cells in cartilage regeneration and tissue engineering. Nat Clin Pract Rheumatol 2006;2:373-82
  • Matsumoto T, Kubo S, Meszaros LB, The influence of sex on the chondrogenic potential of muscle-derived stem cells: implications for cartilage regeneration and repair. Arthritis Rheum 2008;58(12):3809-19
  • Kuroda R, Usas A, Kubo S, Cartilage repair using bone morphogenetic protein 4 and muscle-derived stem cells. Arthritis Rheum 2006;54(2):433-42
  • Adachi N, Sato K, Usas A, Muscle derived, cell based ex vivo gene therapy for treatment of full thickness articular cartilage defects. J Rheumatol 2002;29:1920-30
  • Caplan AI. New era of cell-based orthopaedic therapies. Tissue Eng B Rev 2009;15(2):195-200
  • Patel S, Sherman L, Munoz J, Rameshwar P. Immunological properties of mesenchymal stem cells and clinical implications. Arch Immunol Ther Exp 2008;56(1):1-8
  • Caplan AI. Why are MSCs therapeutic? New data: new insight. J Pathol 2009;217(2):318-24
  • Garcia-Castro J, Trigueros C, Madrenas J, Mesenchymal stem cells and their use as cell replacement therapy and disease modelling tool. J Cell Mol Med 2008;12(6B):2552-65
  • Newman RE, Yoo D, Leroux MA, Treatment of inflammatory diseases with mesenchymal stem cells. Inflamm Allergy Drug Targets 2009;8(2):110-23
  • Wilkey JF, Buchberger G, Saucier K, Cyclin D1 overexpression increases susceptibility to 4-nitroquinoline-1-oxide-induced dysplasia and neoplasia in murine squamous oral epithelium. Mol Carcinog 2009;48(9):853-61
  • Peng H, Usas A, Olshanski A, VEGF improves, whereas sFlt1 inhibits, BMP2-induced bone formation and bone healing through modulation of angiogenesis. J Bone Miner Res 2005;20(11):2017-27
  • Tseng SS, Lee MA, Reddi AH. Nonunions and the potential of stem cells in fracture-healing. J Bone Joint Surg Am 2008;90(Suppl 1):92-8
  • Matsumoto T, Cooper GM, Gharaibeh B, Cartilage repair in a rat model of osteoarthritis through intraarticular transplantation of muscle-derived stem cells expressing bone morphogenetic protein 4 and soluble Flt-1. Arthritis Rheum 2009;60(5):1390-405
  • Lee SK, Wolfe SW. Peripheral nerve injury and repair. J Am Acad Orthop Surg 2000;8(4):243-52
  • Bulken-Hoover JD, Jackson WM, Ji Y, Mechanisms to enhance the neurotrophic function of mesenchymal progenitor cells. Trans Ortho Res Soc 2010;56:1627
  • Koh JS, Lee JY, Lee JY. The effects of human muscle derived stem cells on the induction of peripheral nerve regeneration. Korean J Urol 2008;49(4):350-9
  • Li Y, Huard J. Differentiation of muscle-derived cells into myofibroblasts in injured skeletal muscle. Am J Pathol 2002;161(3):895-907
  • Quintero AJ, Wright VJ, Fu FH, Huard J. Stem cells for the treatment of skeletal muscle injury. Clin Sports Med 2009;28(1):1-11
  • Cowin AJ, Holmes TM, Brosnan P, Ferguson MW. Expression of TGF-beta and its receptors in murine fetal and adult dermal wounds. Eur J Dermatol 2001;11(5):424-31
  • Li Y, Foster W, Deasy BM, Transforming growth factor-beta1 induces the differentiation of myogenic cells into fibrotic cells in injured skeletal muscle: a key event in muscle fibrogenesis. Am J Pathol 2004;164(3):1007-19
  • Lu L, Saulis AS, Liu WR, The temporal effects of anti-TGF-beta1, 2, and 3 monoclonal antibody on wound healing and hypertrophic scar formation. J Am Coll Surg 2005;201(3):391-7
  • Bedair HS, Karthikeyan T, Quintero A, Angiotensin II receptor blockade administered after injury improves muscle regeneration and decreases fibrosis in normal skeletal muscle. Am J Sports Med 2008;36(8):1548-54
  • Deasy BM, Gharaibeh BM, Pollett JB, Long-term self-renewal of postnatal muscle-derived stem cells. Mol Biol Cell 2005;16(7):3323-33
  • Itescu S, Schuster MD, Kocher AA. New directions in strategies using cell therapy for heart disease. J Mol Med 2003;81(5):288-96
  • Clause KC, Tinney JP, Liu LJ, A three-dimensional gel bioreactor for assessment of cardiomyocyte induction in skeletal muscle derived stem cells. Tissue Eng C Methods 2009, published online 14 July 2009, doi:10.1089/ten.TEC.2009.0098
  • Haynesworth S, Goshima J, Goldberg V, Caplan A. Characterization of cells with osteogenic potential from human marrow. Bone 1992;13:81-8
  • Payne TR, Oshima H, Sakai T, Regeneration of dystrophin-expressing myocytes in the mdx heart by skeletal muscle stem cells. Gene Ther 2005;12(16):1264-74
  • Payne TR, Oshima H, Okada M, A relationship between vascular endothelial growth factor, angiogenesis, and cardiac repair after muscle stem cell transplantation into ischemic hearts. J Am Coll Cardiol 2007;50(17):1677-84
  • Okada M, Payne TR, Zheng B, Myogenic endothelial cells purified from human skeletal muscle improve cardiac function after transplantation into infarcted myocardium. J Am Coll Cardiol 2008;52(23):1869-80
  • Nieponice A, Soletti L, Guan J, In-vivo assessment of a tissue-engineered vascular graft combining a biodegradable elastomeric scaffold and muscle-derived stem cells in a rat model. Tissue Eng A 2009, published online 6 November 2009, doi:10.1089/ten.TEA.2009.0427
  • Montzka K, Heidenreich A. Application of mesenchymal stromal cells in urological diseases. BJU Int 2009, published online 13 November 2009, doi10.1111/j.1464-410X.2009.09077.x
  • Huard J, Yokoyama T, Pruchnic R, Muscle-derived cell-mediated ex vivo gene therapy for urological dysfunction. Gene Ther 2002;9(23):1617-26
  • Smaldone MC, Chen ML, Chancellor MB. Stem cell therapy for urethral sphincter regeneration. Minerva Urol Nefrol 2009;61(1):27-40
  • Ho MH, Heydarkhan S, Vernet D, Stimulating vaginal repair in rats through skeletal muscle-derived stem cells seeded on small intestinal submucosal scaffolds. Obstet Gynecol 2009;114(2 Pt 1):300-9
  • Usas A, Huard J. Muscle-derived stem cells for tissue engineering and regenerative therapy. Biomaterials 2007;28(36):5401-6
  • Minasi MG, Riminucci M, De Angelis L, The meso-angioblast: a multipotent, self-renewing cell that originates from the dorsal aorta and differentiates into most mesodermal tissues. Development 2002;129(11):2773-83
  • Uezumi A, Ojima K, Fukada S, Functional heterogeneity of side population cells in skeletal muscle. Biochem Biophys Res Comm 2006;341(3):864-73
  • Peault B, Rudnicki M, Torrente Y, Stem and progenitor cells in skeletal muscle development, maintenance, and therapy. Mol Ther 2007;15(5):867-77
  • Laurencot CM, Ruppel S. Regulatory aspects for translating gene therapy research into the clinic. Methods Mol Biol 2009;542:397-421

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.