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Syngeneic Myoblast Transplantation Improves Muscle Function in a Murine Model of X-Linked Myotubular Myopathy.

Journal articles  - Journal Article
Lim, HJ; Joo, S; Oh, S-H; Jackson, JD; Eckman, DM; Bledsoe, TM; Pierson, CR; Childers, MK; Atala, A; Yoo, JJ
Published in: Cell Transplant
2015

X-linked myotubular myopathy (XLMTM) is an isogenic muscle disease characterized by progressive wasting of skeletal muscle, weakness, and premature death of affected male offspring. Recently, the XLMTM gene knock-in mouse, Mtm1 p.R69C, was found to have a similar phenotype as the Mtm1 gene mutation in humans (e.g., central nucleation of small myofibers, attenuated muscle strength, and motor unit potentials). Using this rodent model, we investigated whether syngeneic cell therapy could mitigate muscle weakness. Donor skeletal muscle-derived myoblasts were isolated from C57BL6 wild-type (WT) and Mtm1 p.R69C (KI) mice for transplantation into the gastrocnemius muscle of recipient KI mice. Initial experiments demonstrated that donor skeletal muscle-derived myoblasts from WT and KI mice remained in the gastrocnemius muscle of the recipient KI mouse for up to 4 weeks posttransplantation. KI mice receiving syngeneic skeletal muscle-derived myoblasts displayed an increase in skeletal muscle mass, augmented force generation, and increased nerve-evoked skeletal muscle action potential amplitude. Taken together, these results support our hypothesis that syngeneic cell therapy may potentially be used to ameliorate muscle weakness and delay the progression of XLMTM, as application expands to other muscles.

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Published In

Cell Transplant

DOI

EISSN

1555-3892

Publication Date

2015

Volume

24

Issue

9

Start / End Page

1887 / 1900

Location

United States

Related Subject Headings

  • Protein Tyrosine Phosphatases, Non-Receptor
  • Neurology & Neurosurgery
  • Myopathies, Structural, Congenital
  • Myogenic Regulatory Factor 5
  • Myoblasts
  • MyoD Protein
  • Muscle, Skeletal
  • Mice, Inbred C57BL
  • Mice
  • Male
 

Citation

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Lim, H. J., Joo, S., Oh, S.-H., Jackson, J. D., Eckman, D. M., Bledsoe, T. M., … Yoo, J. J. (2015). Syngeneic Myoblast Transplantation Improves Muscle Function in a Murine Model of X-Linked Myotubular Myopathy. Cell Transplant, 24(9), 1887–1900. https://doi.org/10.3727/096368914X683494
Lim, Hyun Ju, Sunyoung Joo, Seh-Hoon Oh, John D. Jackson, Delrae M. Eckman, Tiffaney M. Bledsoe, Christopher R. Pierson, Martin K. Childers, Anthony Atala, and James J. Yoo. “Syngeneic Myoblast Transplantation Improves Muscle Function in a Murine Model of X-Linked Myotubular Myopathy.Cell Transplant 24, no. 9 (2015): 1887–1900. https://doi.org/10.3727/096368914X683494.
Lim HJ, Joo S, Oh S-H, Jackson JD, Eckman DM, Bledsoe TM, et al. Syngeneic Myoblast Transplantation Improves Muscle Function in a Murine Model of X-Linked Myotubular Myopathy. Cell Transplant. 2015;24(9):1887–900.
Lim, Hyun Ju, et al. “Syngeneic Myoblast Transplantation Improves Muscle Function in a Murine Model of X-Linked Myotubular Myopathy.Cell Transplant, vol. 24, no. 9, 2015, pp. 1887–900. Pubmed, doi:10.3727/096368914X683494.
Lim HJ, Joo S, Oh S-H, Jackson JD, Eckman DM, Bledsoe TM, Pierson CR, Childers MK, Atala A, Yoo JJ. Syngeneic Myoblast Transplantation Improves Muscle Function in a Murine Model of X-Linked Myotubular Myopathy. Cell Transplant. 2015;24(9):1887–1900.
Journal cover image

Published In

Cell Transplant

DOI

EISSN

1555-3892

Publication Date

2015

Volume

24

Issue

9

Start / End Page

1887 / 1900

Location

United States

Related Subject Headings

  • Protein Tyrosine Phosphatases, Non-Receptor
  • Neurology & Neurosurgery
  • Myopathies, Structural, Congenital
  • Myogenic Regulatory Factor 5
  • Myoblasts
  • MyoD Protein
  • Muscle, Skeletal
  • Mice, Inbred C57BL
  • Mice
  • Male