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A Combinatorial Cell and Drug Delivery Strategy for Huntington’s Disease Using Pharmacologically Active Microcarriers and RNAi Neuronally-Committed Mesenchymal Stromal Cells

机译:使用药理学活性微载体和RNAi神经犯下间充质细胞的亨廷顿疾病的组合细胞和药物输送策略

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摘要

For Huntington’s disease (HD) cell-based therapy, the transplanted cells are required to be committed to a neuronal cell lineage, survive and maintain this phenotype to ensure their safe transplantation in the brain. We first investigated the role of RE-1 silencing transcription factor (REST) inhibition using siRNA in the GABAergic differentiation of marrow-isolated adult multilineage inducible (MIAMI) cells, a subpopulation of MSCs. We further combined these cells to laminin-coated poly(lactic-co-glycolic acid) PLGA pharmacologically active microcarriers (PAMs) delivering BDNF in a controlled fashion to stimulate the survival and maintain the differentiation of the cells. The PAMs/cells complexes were then transplanted in an ex vivo model of HD. Using Sonic Hedgehog (SHH) and siREST, we obtained GABAergic progenitors/neuronal-like cells, which were able to secrete HGF, SDF1 VEGFa and BDNF, of importance for HD. GABA-like progenitors adhered to PAMs increased their mRNA expression of NGF/VEGFa as well as their secretion of PIGF-1, which can enhance reparative angiogenesis. In our ex vivo model of HD, they were successfully transplanted while attached to PAMs and were able to survive and maintain this GABAergic neuronal phenotype. Together, our results may pave the way for future research that could improve the success of cell-based therapy for HDs.
机译:亨廷顿病(HD)细胞治疗,需要移植的细胞,以致力于神经元细胞系,生存并保持这一表型,以确保他们的大脑移植的安全。我们首先调查了在骨髓中分离成年多谱系可诱导(MIAMI)细胞,MSC的亚群的分化GABA能使用siRNA RE-1沉默转录因子(REST)抑制的作用。我们进一步组合这些细胞对层粘连蛋白包被的聚(乳酸 - 共 - 乙醇酸)PLGA药理活性微载体(PAM中)以受控方式递送BDNF刺激存活和维持细胞的分化。然后将的PAMs /细胞复合物在HD的体外模型移植。使用Sonic刺猬(SHH)和siREST,我们获得的GABA能祖细胞/神经元样细胞,它能够分泌HGF,SDF1 VEGFA和BDNF,重要的高清。 GABA状附着于祖细胞的PAMs提高NGF / VEGFA的其mRNA的表达以及它们的PlGF-1的分泌,这可增强修复血管生成。在HD的我们的体外模型,他们被成功地移植而附着的PAM,并能够生存并保持这种GABA能神经元的表型。总之,我们的结果可能会铺平道路,为今后的研究,可以提高细胞治疗的为HDS成功的方式。

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