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Patient-Specific iPSC-Based Models of Huntington’s Disease as a Tool to Study Store-Operated Calcium Entry Drug Targeting

机译:基于患者的基于iPSC的亨廷顿舞蹈病模型作为研究商店运营的钙进入药物靶向的工具

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摘要

Neurodegenerative pathologies are among the most serious and socially significant problems of modern medicine, along with cardiovascular and oncological diseases. Several attempts have been made to prevent neuronal death using novel drugs targeted to the cell calcium signaling machinery, but the lack of adequate models for screening markedly impairs the development of relevant drugs. A potential breakthrough in this field is offered by the models of hereditary neurodegenerative pathologies based on endogenous expression of mutant proteins in neurons differentiated from patient-specific induced pluripotent stem cells (iPSCs). Here, we study specific features of store-operated calcium entry (SOCE) using an iPSCs-based model of Huntington’s disease (HD) and analyze the pharmacological effects of a specific drug targeted to the calcium channels. We show that SOCE in gamma aminobutyric acid-ergic striatal medium spiny neurons (GABA MSNs) was mediated by currents through at least two different channel groups, ICRAC and ISOC. Both of these groups were upregulated in HD neurons compared with the wild-type neurons. Thapsigargin-induced intracellular calcium store depletion in GABA MSNs resulted in predominant activation of either ICRAC or ISOC. The potential anti-HD drug EVP4593, which was previously shown to have neuroprotective activity in different HD models, affected both ICRAC and ISOC.
机译:神经退行性病变与心血管疾病和肿瘤疾病一样,是现代医学中最严重和具有社会意义的问题。使用靶向细胞钙信号传导机制的新药,已经进行了一些尝试来预防神经元死亡,但是缺乏足够的筛查模型会明显损害相关药物的开发。遗传性神经退行性病变的模型提供了该领域的潜在突破,该模型基于突变蛋白在神经元中的内源性表达,该神经元与患者特异性诱导多能干细胞(iPSC)分化。在这里,我们使用基于iPSCs的亨廷顿舞蹈病(HD)模型研究商店运营的钙进入(SOCE)的特定功能,并分析针对钙通道的特定药物的药理作用。我们显示,伽马氨基丁酸能纹状体中层多刺神经元(GABA MSNs)中的SOCE是由电流通过至少两个不同的通道组,ICRAC和ISOC介导的。与野生型神经元相比,这两个组的高清神经元均上调。 Thapsigargin诱导的GABA MSN中细胞内钙存储的耗尽导致了ICRAC或ISOC的主要活化。潜在的抗HD药物EVP4593曾被证明在不同的HD模型中具有神经保护活性,从而影响了ICRAC和ISOC。

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