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Polymers and Nanomaterials for Gene Therapy

This comprehensive study of polymers and nanomaterials for gene therapy explores the most recent developments in the field of polymer science and nanotechnology, and how this these developments have helped in the design of advanced materials.

Ravin Narain (Edited by)

9780081005200, Elsevier Science

Hardback, published 19 January 2016

302 pages
22.9 x 15.1 x 2.3 cm, 0.44 kg

Polymers and Nanomaterials for Gene Therapy provides the latest information on gene therapy, a topic that has attracted significant attention over the past two decades for the treatment of inherited and acquired genetic diseases. Major research efforts are currently focused on designing suitable carrier vectors that compact and protect oligonucleotides for gene therapy.

The book explores the most recent developments in the field of polymer science and nanotechnology, and how these advancements have helped in the design of advanced materials. Non-viral vector systems, including cationic lipids, polymers, dendrimers, peptides and nanoparticles, are potential routes for compacting DNA for systemic delivery. However, unlike viral analogues that have no difficulty in overcoming cellular barriers and immune defense mechanisms, non-viral gene carriers consistently exhibit significant reduced transfection efficiency due to numerous extra- and intracellular obstacles. Therefore, biocompatibility and potential for large-scale production make these compounds increasingly attractive for gene therapy.

This book contains chapters on the engineering of polymers and nanomaterials for gene therapy, and how they can form complexes with DNA and avoid both in vitro and in vivo barriers. Other chapters describe in vitro, ex vivo, in vivo gene therapy studies, and the current issues affecting non-viral gene therapy.

  • Current challenges of gene therapy
  • Engineering of polymers and nanomaterials for gene therapy
  • Detailed description of in vitro, ex vivo and in vivo gene therapy studies using polymers and nanomaterials

Subject Areas: Materials science [TGM], Plastics & polymers technology [TDCP], DNA & Genome [PSAK1], Genetics [non-medical PSAK]

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