Literature DB >> 2267630

Accelerated age-related decline in replicative life-span of Duchenne muscular dystrophy myoblasts: implications for cell and gene therapy.

C Webster1, H M Blau.   

Abstract

An assessment of the replicative life-span of myoblasts is of fundamental importance in designing treatment strategies for Duchenne muscular dystrophy (DMD) based on cell or gene therapy. To ascertain myoblast life-span, or the total number of cell divisions of which a myoblast was capable, we serially passaged and counted the progeny of individual myoblasts until they senesced. We compared the life-span of myoblasts from eight DMD patients with controls: three individuals with no known neuromuscular disease, three DMD carriers, and three patients with other muscle degenerative diseases. A decline in replicative capacity was observed with increasing donor age, which was markedly accelerated for DMD relative to control myoblasts. The average myoblast from a 5-year-old control was capable of 56 doublings, or a potential yield of approximately 10(17) cells per cell. By contrast, at 2 years of age, the typical age at clinical onset, only 6% of DMD myoblasts had a life-span of 50 doublings in tissue culture, and by age 7 DMD myoblasts capable of 10 doublings were rare. Our results suggest that the myoblasts (satellite cells) of even the youngest DMD patients have undergone extensive division in an attempt to regenerate degenerating myofibers. These findings have implications for therapeutic intervention in DMD involving genetic engineering and myoblast implantation.

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Year:  1990        PMID: 2267630     DOI: 10.1007/bf01233096

Source DB:  PubMed          Journal:  Somat Cell Mol Genet        ISSN: 0740-7750


  69 in total

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2.  Skeletal muscle satellite cells: background and methods for isolation and analysis in a primary culture system.

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3.  The skeletal muscle satellite cell: still young and fascinating at 50.

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4.  Long-term survival of transplanted stem cells in immunocompetent mice with muscular dystrophy.

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Journal:  Am J Pathol       Date:  2008-08-18       Impact factor: 4.307

Review 5.  Immunobiology of Inherited Muscular Dystrophies.

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7.  Transient delivery of modified mRNA encoding TERT rapidly extends telomeres in human cells.

Authors:  John Ramunas; Eduard Yakubov; Jennifer J Brady; Stéphane Y Corbel; Colin Holbrook; Moritz Brandt; Jonathan Stein; Juan G Santiago; John P Cooke; Helen M Blau
Journal:  FASEB J       Date:  2015-01-22       Impact factor: 5.191

8.  Dystrophin and utrophin "double knockout" dystrophic mice exhibit a spectrum of degenerative musculoskeletal abnormalities.

Authors:  Christian Isaac; Adam Wright; Arvydas Usas; Hongshuai Li; Ying Tang; Xiaodong Mu; Nicholas Greco; Qing Dong; Nam Vo; James Kang; Bing Wang; Johnny Huard
Journal:  J Orthop Res       Date:  2012-10-23       Impact factor: 3.494

Review 9.  Pharmacologic management of Duchenne muscular dystrophy: target identification and preclinical trials.

Authors:  Joe N Kornegay; Christopher F Spurney; Peter P Nghiem; Candice L Brinkmeyer-Langford; Eric P Hoffman; Kanneboyina Nagaraju
Journal:  ILAR J       Date:  2014

10.  Myotubularin-deficient myoblasts display increased apoptosis, delayed proliferation, and poor cell engraftment.

Authors:  Michael W Lawlor; Matthew S Alexander; Marissa G Viola; Hui Meng; Romain Joubert; Vandana Gupta; Norio Motohashi; Richard A Manfready; Cynthia P Hsu; Ping Huang; Anna Buj-Bello; Louis M Kunkel; Alan H Beggs; Emanuela Gussoni
Journal:  Am J Pathol       Date:  2012-07-27       Impact factor: 4.307

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