Author:
Deng Peter,Halmai Julian A. N. M.,Beitnere Ulrika,Cameron David,Martinez Michele L.,Lee Charles C.,Waldo Jennifer J.,Thongphanh Krista,Adhikari Anna,Copping Nycole,Petkova Stela P.,Lee Ruth D.,Lock Samantha,Palomares Miranda,O’Geen Henriette,Carter Jasmine,Gonzalez Casiana E.,Buchanan Fiona K. B.,Anderson Johnathan D.,Fierro Fernando A.,Nolta Jan A.,Tarantal Alice F.,Silverman Jill L.,Segal David J.,Fink Kyle D.
Abstract
Zinc finger (ZF), transcription activator-like effectors (TALE), and CRISPR/Cas9 therapies to regulate gene expression are becoming viable strategies to treat genetic disorders, although effective in vivo delivery systems for these proteins remain a major translational hurdle. We describe the use of a mesenchymal stem/stromal cell (MSC)-based delivery system for the secretion of a ZF protein (ZF-MSC) in transgenic mouse models and young rhesus monkeys. Secreted ZF protein from mouse ZF-MSC was detectable within the hippocampus 1 week following intracranial or cisterna magna (CM) injection. Secreted ZF activated the imprinted paternal Ube3a in a transgenic reporter mouse and ameliorated motor deficits in a Ube3a deletion Angelman Syndrome (AS) mouse. Intrathecally administered autologous rhesus MSCs were well-tolerated for 3 weeks following administration and secreted ZF protein was detectable within the cerebrospinal fluid (CSF), midbrain, and spinal cord. This approach is less invasive when compared to direct intracranial injection which requires a surgical procedure.
Funder
California Institute of Regenerative Medicine
National Institutes of Health
National Institute of General Medical Sciences
National Center for Advancing Translational Sciences
California National Primate Research Center
Subject
Cellular and Molecular Neuroscience,Molecular Biology
Cited by
2 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献