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Characterization of CDNF-Secreting ARPE-19 Cell Clones for Encapsulated Cell Therapy

机译:CDNF分泌的ARPE-19细胞克隆用于封装细胞治疗的表征

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摘要

Cerebral dopamine neurotrophic factor (CDNF) shows beneficial effects in rodent models of Parkinson’s and Alzheimer’s disease. The brain is a challenging target for protein therapy due to its exclusive blood–brain barrier. Hence, the therapeutic protein should be delivered directly to the brain parenchyma. Implantation of encapsulated mammalian cells that constantly secrete CDNF is a potential approach for targeted and long-term protein delivery to the brain. In this study, we generated several CDNF-secreting cell clones derived from human retinal pigment epithelial cell line ARPE-19, and studied CDNF secretion from the clones maintained as monolayers and in polymeric microcapsules. The secretion of wild type (wt) CDNF transgene was low and the majority of the produced protein remained intracellular, locating mainly to the endoplasmic reticulum (ER). The secretion of wtCDNF decreased to even lower levels when the clones were in a non-dividing state, as in the microcapsules. Both codon optimization and deletion of the putative ER-retrieval signal (four last amino acids: KTEL) improved CDNF secretion. More importantly, the secretion of KTEL-deleted CDNF remained constant in the non-dividing clones. Thus, cells expressing KTEL-deleted CDNF, in contrast to wtCDNF, can be considered for cell encapsulation applications if the KTEL-deleted CDNF is proven to be biologically active in vivo.
机译:脑多巴胺神经营养因子(CDNF)在帕金森氏病和阿尔茨海默氏病的啮齿动物模型中显示出有益的作用。大脑由于其独特的血脑屏障而成为蛋白质治疗中具有挑战性的目标。因此,治疗性蛋白质应直接递送至脑实质。植入不断分泌CDNF的封装哺乳动物细胞是靶向和长期向大脑输送蛋白质的潜在方法。在这项研究中,我们从人视网膜色素上皮细胞系ARPE-19产生了几个CDNF分泌细胞克隆,并研究了这些CDNF的分泌情况,这些克隆以单层形式存在并存在于聚合物微囊中。野生型(wt)CDNF转基因的分泌很低,大部分产生的蛋白质仍保留在细胞内,主要位于内质网(ER)。当克隆处于非分裂状态时,与微胶囊一样,wtCDNF的分泌降低到更低的水平。密码子优化和假定的ER检索信号(最后四个氨基酸:KTEL)的缺失均改善了CDNF的分泌。更重要的是,在未分裂的克隆中,KTEL缺失的CDNF的分泌保持恒定。因此,与wtCDNF相比,表达KTEL缺失的CDNF的细胞,如果被证实具有KTEL缺失的CDNF在体内具有生物活性,则可以考虑用于细胞封装。

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