Publications by authors named "Shyam Sundar Twayana"

Exon skipping has been demonstrated to be a successful strategy for the gene therapy of Duchenne muscular dystrophy (DMD): the rational being to convert severe Duchenne forms into milder Becker ones. Here, we show the selection of U1 snRNA-antisense constructs able to confer effective rescue of dystrophin synthesis in a Δ44 Duchenne genetic background, through skipping of exon 45; moreover, we demonstrate that the resulting dystrophin is able to recover timing of myogenic marker expression, to relocalize neuronal nitric oxide synthase (nNOS) and to rescue expression of miRNAs previously shown to be sensitive to the Dystrophin-nNOS-HDAC2 pathway. Becker mutations display different phenotypes, likely depending on whether the shorter protein is able to reconstitute the wide range of wild-type functions.

View Article and Find Full Text PDF

Synopsis of recent research by authors named "Shyam Sundar Twayana"

  • - Shyam Sundar Twayana's research focuses on gene therapy strategies for Duchenne muscular dystrophy (DMD), particularly through the use of exon skipping techniques to modulate gene expression.
  • - In his 2012 study, Twayana demonstrated that U1 snRNA-antisense constructs could effectively induce exon skipping of exon 45, leading to restoration of dystrophin synthesis in DMD myoblasts, ultimately converting severe DMD forms to milder Becker muscular dystrophy phenotypes.
  • - The findings from this research highlight the potential of restoring critical protein functions in muscle differentiation and neuronal nitric oxide synthase relocalization, emphasizing the therapeutic implications for treating DMD through targeted molecular interventions.