Literature DB >> 21787232

Long-term systemic myostatin inhibition via liver-targeted gene transfer in golden retriever muscular dystrophy.

Lawrence T Bish1, Meg M Sleeper, Sean C Forbes, Kevin J Morine, Caryn Reynolds, Gretchen E Singletary, Dennis Trafny, Jennifer Pham, Janet Bogan, Joe N Kornegay, Krista Vandenborne, Glenn A Walter, H Lee Sweeney.   

Abstract

Duchenne muscular dystrophy (DMD) is a lethal, X-linked recessive disease affecting 1 in 3,500 newborn boys for which there is no effective treatment or cure. One novel strategy that has therapeutic potential for DMD is inhibition of myostatin, a negative regulator of skeletal muscle mass that may also promote fibrosis. Therefore, our goal in this study was to evaluate systemic myostatin inhibition in the golden retriever model of DMD (GRMD). GRMD canines underwent liver-directed gene transfer of a self-complementary adeno-associated virus type 8 vector designed to express a secreted dominant-negative myostatin peptide (n = 4) and were compared with age-matched, untreated GRMD controls (n = 3). Dogs were followed with serial magnetic resonance imaging (MRI) for 13 months to assess cross-sectional area and volume of skeletal muscle, then euthanized so that tissue could be harvested for morphological and histological analysis. We found that systemic myostatin inhibition resulted in increased muscle mass in GRMD dogs as assessed by MRI and confirmed at tissue harvest. We also found that hypertrophy of type IIA fibers was largely responsible for the increased muscle mass and that reductions in serum creatine kinase and muscle fibrosis were associated with long-term myostatin inhibition in GRMD. This is the first report describing the effects of long-term, systemic myostatin inhibition in a large-animal model of DMD, and we believe that the simple and effective nature of our liver-directed gene-transfer strategy makes it an ideal candidate for evaluation as a novel therapeutic approach for DMD patients.

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Year:  2011        PMID: 21787232      PMCID: PMC3237695          DOI: 10.1089/hum.2011.102

Source DB:  PubMed          Journal:  Hum Gene Ther        ISSN: 1043-0342            Impact factor:   5.695


  58 in total

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Authors:  Hong M Moulton; Jon D Moulton
Journal:  Biochim Biophys Acta       Date:  2010-02-17

2.  Characterization of alterations in diabetic myocardial tissue using high resolution MRI.

Authors:  Rajaprasad Loganathan; Mehmet Bilgen; Baraa Al-Hafez; Irina V Smirnova
Journal:  Int J Cardiovasc Imaging       Date:  2005-12-13       Impact factor: 2.357

3.  Myostatin propeptide-mediated amelioration of dystrophic pathophysiology.

Authors:  Sasha Bogdanovich; Kelly J Perkins; Thomas O B Krag; Lisa-Anne Whittemore; Tejvir S Khurana
Journal:  FASEB J       Date:  2005-04       Impact factor: 5.191

4.  Adeno-associated virus-mediated microdystrophin expression protects young mdx muscle from contraction-induced injury.

Authors:  Mingju Liu; Yongping Yue; Scott Q Harper; Robert W Grange; Jeffrey S Chamberlain; Dongsheng Duan
Journal:  Mol Ther       Date:  2005-02       Impact factor: 11.454

5.  Targeting the activin type IIB receptor to improve muscle mass and function in the mdx mouse model of Duchenne muscular dystrophy.

Authors:  Emidio E Pistilli; Sasha Bogdanovich; Marcus D Goncalves; Rexford S Ahima; Jennifer Lachey; Jasbir Seehra; Tejvir Khurana
Journal:  Am J Pathol       Date:  2011-03       Impact factor: 4.307

Review 6.  Gene therapy for muscle disease.

Authors:  Yuko Miyagoe-Suzuki; Shin'ichi Takeda
Journal:  Exp Cell Res       Date:  2010-05-24       Impact factor: 3.905

7.  Activation of latent myostatin by the BMP-1/tolloid family of metalloproteinases.

Authors:  Neil M Wolfman; Alexandra C McPherron; William N Pappano; Monique V Davies; Kening Song; Kathleen N Tomkinson; Jill F Wright; Liz Zhao; Suzanne M Sebald; Daniel S Greenspan; Se-Jin Lee
Journal:  Proc Natl Acad Sci U S A       Date:  2003-12-11       Impact factor: 11.205

8.  Loss of myostatin attenuates severity of muscular dystrophy in mdx mice.

Authors:  Kathryn R Wagner; Alexandra C McPherron; Nicole Winik; Se-Jin Lee
Journal:  Ann Neurol       Date:  2002-12       Impact factor: 10.422

9.  Sprinting without myostatin: a genetic determinant of athletic prowess.

Authors:  Se-Jin Lee
Journal:  Trends Genet       Date:  2007-09-19       Impact factor: 11.639

10.  A duchenne muscular dystrophy gene hot spot mutation in dystrophin-deficient cavalier king charles spaniels is amenable to exon 51 skipping.

Authors:  Gemma L Walmsley; Virginia Arechavala-Gomeza; Marta Fernandez-Fuente; Margaret M Burke; Nicole Nagel; Angela Holder; Rachael Stanley; Kate Chandler; Stanley L Marks; Francesco Muntoni; G Diane Shelton; Richard J Piercy
Journal:  PLoS One       Date:  2010-01-13       Impact factor: 3.240

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  24 in total

1.  Improving lipoprotein profiles by liver-directed gene transfer of low density lipoprotein receptor gene in hypercholesterolaemia mice.

Authors:  Hailong Ou; Qinghai Zhang; Jia Zeng
Journal:  J Genet       Date:  2016-06       Impact factor: 1.166

Review 2.  Canine models of Duchenne muscular dystrophy and their use in therapeutic strategies.

Authors:  Joe N Kornegay; Janet R Bogan; Daniel J Bogan; Martin K Childers; Juan Li; Peter Nghiem; David A Detwiler; C Aaron Larsen; Robert W Grange; Ratna K Bhavaraju-Sanka; Sandra Tou; Bruce P Keene; James F Howard; Jiahui Wang; Zheng Fan; Scott J Schatzberg; Martin A Styner; Kevin M Flanigan; Xiao Xiao; Eric P Hoffman
Journal:  Mamm Genome       Date:  2012-01-05       Impact factor: 2.957

3.  Genetic disruption of Smad7 impairs skeletal muscle growth and regeneration.

Authors:  Tatiana V Cohen; Helen D Kollias; Naili Liu; Christopher W Ward; Kathryn R Wagner
Journal:  J Physiol       Date:  2015-05-15       Impact factor: 5.182

Review 4.  Duchenne muscular dystrophy gene therapy in the canine model.

Authors:  Dongsheng Duan
Journal:  Hum Gene Ther Clin Dev       Date:  2015-02-24       Impact factor: 5.032

Review 5.  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

6.  Prospect of gene therapy for cardiomyopathy in hereditary muscular dystrophy.

Authors:  Yongping Yue; Ibrahim M Binalsheikh; Stacey B Leach; Timothy L Domeier; Dongsheng Duan
Journal:  Expert Opin Orphan Drugs       Date:  2015-12-17       Impact factor: 0.694

7.  Genetic myostatin decrease in the golden retriever muscular dystrophy model does not significantly affect the ubiquitin proteasome system despite enhancing the severity of disease.

Authors:  Steven W Cotten; Joe N Kornegay; Daniel J Bogan; Kristine M Wadosky; Cam Patterson; Monte S Willis
Journal:  Am J Transl Res       Date:  2013-12-01       Impact factor: 4.060

8.  Glucocorticoids counteract hypertrophic effects of myostatin inhibition in dystrophic muscle.

Authors:  David W Hammers; Cora C Hart; Andreas Patsalos; Michael K Matheny; Lillian A Wright; Laszlo Nagy; H Lee Sweeney
Journal:  JCI Insight       Date:  2020-01-16

Review 9.  Developmental Biology and Regenerative Medicine: Addressing the Vexing Problem of Persistent Muscle Atrophy in the Chronically Torn Human Rotator Cuff.

Authors:  Gretchen A Meyer; Samuel R Ward
Journal:  Phys Ther       Date:  2016-02-04

10.  Impaired skeletal muscle regeneration in the absence of fibrosis during hibernation in 13-lined ground squirrels.

Authors:  Eva Andres-Mateos; Rebeca Mejias; Arshia Soleimani; Brian M Lin; Tyesha N Burks; Ruth Marx; Benjamin Lin; Richard C Zellars; Yonggang Zhang; David L Huso; Tom G Marr; Leslie A Leinwand; Dana K Merriman; Ronald D Cohn
Journal:  PLoS One       Date:  2012-11-14       Impact factor: 3.240

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