Literature DB >> 18045103

Neuroprotective gene therapy for the treatment of inherited retinal degeneration.

Prateek K Buch1, Robert E MacLaren, Robin R Ali.   

Abstract

Inherited retinal degeneration (IRD) affects around 1/3000 of the population in Europe and the United States. It is a diverse group of conditions that results from mutations in any one of over 100 different genes. Many of the genes have now been identified and their functions elucidated, providing a major impetus to develop gene-based treatments. Whilst gene replacement and gene silencing strategies offer prospects for the treatment of specific inherited retinal disorders, other disorders may be less amenable to these corrective approaches. These conditions include, in particular, those associated with abnormal retinal development and those in which retinal degeneration is advanced at birth. Furthermore, the development of individualized corrective gene therapy strategies for patients with disorders due to very rare mutations may be unfeasible. However, generic gene therapy strategies that aim not to correct the gene defect but to ameliorate its consequences offer the possibility of therapies that are widely applicable across a range of conditions. One potential strategy in these cases is to halt or delay the process of cell death, so that useful visual function can be maintained throughout the lifetime of an affected individual. It has been shown in variety of experimental models over the last three decades, that neurotrophic factors have the potential to delay neuronal apoptosis. Neurotrophic factors are small proteins which have relatively short half lives and a requirement for repeated administration has limited their clinical application. Since these proteins do not ordinarily cross the blood-brain barrier, previous approaches have relied upon intrathecal infusion pumps or similar complex devices to sustain elevated neurotrophin levels within the central nervous system (CNS). However, sustained delivery through viral vector mediated expression of genes encoding neurotrophic factors may circumvent the potential side effects of repeated administration. In this review we shall explore some of the concepts of neurotrophic gene therapy and how this might be applicable to preserving vision in inherited retinal degenerations.

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Year:  2007        PMID: 18045103     DOI: 10.2174/156652307782793531

Source DB:  PubMed          Journal:  Curr Gene Ther        ISSN: 1566-5232            Impact factor:   4.391


  11 in total

Review 1.  [Gene therapy for retinal dystrophies].

Authors:  P Charbel Issa; M Groppe; R E MacLaren
Journal:  Ophthalmologe       Date:  2012-02       Impact factor: 1.059

2.  Localized cell and drug delivery for auditory prostheses.

Authors:  Jeffrey L Hendricks; Jennifer A Chikar; Mark A Crumling; Yehoash Raphael; David C Martin
Journal:  Hear Res       Date:  2008-06-07       Impact factor: 3.208

3.  Genetically modified neural stem cells for a local and sustained delivery of neuroprotective factors to the dystrophic mouse retina.

Authors:  Gila Jung; Jing Sun; Bettina Petrowitz; Kristoffer Riecken; Katharina Kruszewski; Wanda Jankowiak; Frank Kunst; Christos Skevas; Gisbert Richard; Boris Fehse; Udo Bartsch
Journal:  Stem Cells Transl Med       Date:  2013-10-28       Impact factor: 6.940

4.  Non-erythropoietic erythropoietin derivatives protect from light-induced and genetic photoreceptor degeneration.

Authors:  Pasqualina Colella; Carolina Iodice; Umberto Di Vicino; Ida Annunziata; Enrico M Surace; Alberto Auricchio
Journal:  Hum Mol Genet       Date:  2011-03-19       Impact factor: 6.150

5.  Sustained Neural Stem Cell-Based Intraocular Delivery of CNTF Attenuates Photoreceptor Loss in the nclf Mouse Model of Neuronal Ceroid Lipofuscinosis.

Authors:  Wanda Jankowiak; Katharina Kruszewski; Kai Flachsbarth; Christos Skevas; Gisbert Richard; Klaus Rüther; Thomas Braulke; Udo Bartsch
Journal:  PLoS One       Date:  2015-05-20       Impact factor: 3.240

Review 6.  The promise of stem cell-based therapeutics in ophthalmology.

Authors:  Israel Aharony; Shalom Michowiz; Nitza Goldenberg-Cohen
Journal:  Neural Regen Res       Date:  2017-02       Impact factor: 5.135

Review 7.  Cellular regeneration strategies for macular degeneration: past, present and future.

Authors:  Valeria Chichagova; Dean Hallam; Joseph Collin; Darin Zerti; Birthe Dorgau; Majed Felemban; Majlinda Lako; David H Steel
Journal:  Eye (Lond)       Date:  2018-03-05       Impact factor: 3.775

Review 8.  Pluripotent Stem Cells for Retinal Tissue Engineering: Current Status and Future Prospects.

Authors:  Ratnesh Singh; Oscar Cuzzani; François Binette; Hal Sternberg; Michael D West; Igor O Nasonkin
Journal:  Stem Cell Rev Rep       Date:  2018-08       Impact factor: 5.739

Review 9.  Genetic basis of inherited macular dystrophies and implications for stem cell therapy.

Authors:  Carla B Mellough; David H W Steel; Majlinda Lako
Journal:  Stem Cells       Date:  2009-11       Impact factor: 6.277

10.  Matters of life and death: the role of chromatin remodeling proteins in retinal neuron survival.

Authors:  Pamela S Lagali; David J Picketts
Journal:  J Ocul Biol Dis Infor       Date:  2012-03-17
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