Literature DB >> 12761038

Therapeutic benefits of cardiotrophin-1 gene transfer in a mouse model of spinal muscular atrophy.

Jeanne-Claire Lesbordes1, Carmen Cifuentes-Diaz, Audrey Miroglio, Vandana Joshi, Thierry Bordet, Axel Kahn, Judith Melki.   

Abstract

Spinal muscular atrophy (SMA) is a recessive autosomal disorder characterized by degeneration of lower motor neurons caused by mutations of the survival motor neuron gene (SMN1). No curative treatment is known so far. Mutant mice carrying homozygous deletion of Smn exon 7 directed to neurons display skeletal muscle denervation, moderate loss of motor neuron cell bodies and severe axonal degeneration. These features, similar to those found in human SMA, strongly suggest the involvement of a dying back process of motor neurons and led us to test whether neurotrophic factors might have a protective role in SMA. We report here the therapeutic benefits of systemic delivery of cardiotrophin-1 (CT-1), a neurotrophic factor belonging to the IL-6 cytokine family. Intra-muscular injection of adenoviral vector expressing CT-1, even at very low dose, improves median survival, delays motor defect of mutant mice and exerts protective effect against loss of proximal motor axons and aberrant cytoskeletal organization of motor synaptic terminals. In spite of the severity of SMA phenotype in mutant mice, CT-1 is able to slow down disease progression. Neuroprotection could be regarded as valuable therapeutic approach in SMA.

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Year:  2003        PMID: 12761038     DOI: 10.1093/hmg/ddg143

Source DB:  PubMed          Journal:  Hum Mol Genet        ISSN: 0964-6906            Impact factor:   6.150


  21 in total

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2.  Lentivector-mediated SMN replacement in a mouse model of spinal muscular atrophy.

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3.  Drug treatment for spinal muscular atrophy types II and III.

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4.  Novel combinatorial screening identifies neurotrophic factors for selective classes of motor neurons.

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5.  Therapeutic developments in spinal muscular atrophy.

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6.  CNS-targeted gene therapy improves survival and motor function in a mouse model of spinal muscular atrophy.

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Review 7.  Perspectives on clinical trials in spinal muscular atrophy.

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Authors:  Ryan S Anderton; Bruno P Meloni; Frank L Mastaglia; Sherif Boulos
Journal:  Mol Neurobiol       Date:  2013-01-13       Impact factor: 5.590

9.  Neural stem cell transplantation can ameliorate the phenotype of a mouse model of spinal muscular atrophy.

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10.  Emerging treatment options for spinal muscular atrophy.

Authors:  Barrington G Burnett; Thomas O Crawford; Charlotte J Sumner
Journal:  Curr Treat Options Neurol       Date:  2009-03       Impact factor: 3.598

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