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A Non-Toxic Concentration of Telomerase Inhibitor BIBR1532 Fails to Reduce

机译:端粒酶抑制剂BIBR1532的无毒浓度不能减少

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摘要

Several studies have shown that human induced pluripotent stem cell (iPSC)-derivatives are essentially fetal in terms of their maturational status. Inducing ageing in iPSC-motor neuron (MN) models of amyotrophic lateral sclerosis (ALS) has the potential to capture pathology with higher fidelity and consequently improve translational success. We show here that the telomerase inhibitor BIBR1532, hypothesised to recapitulate the telomere attrition hallmark of ageing in iPSC-MNs, was in fact cytotoxic to feeder-free iPSCs when used at doses previously shown to be effective in iPSCs grown on a layer of mouse embryonic fibroblasts. Toxicity in feeder-free cultures was not rescued by co-treatment with Rho Kinase (ROCK) inhibitor (Y-27632). Moreover, the highest concentration of BIBR1532 compatible with continued iPSC culture proved insufficient to induce detectable telomerase inhibition. Our data suggest that direct toxicity by BIBR1532 is the most likely cause of iPSC death observed, and that culture methods may influence enhanced toxicity. Therefore, recapitulation of ageing hallmarks in iPSC-MNs, which might reveal novel and relevant human disease targets in ALS, is not achievable in feeder-free culture through the use of this small molecule telomerase inhibitor.
机译:几项研究表明,人类诱导的多能干细胞(IPSC)长期在其成熟地位方面基本上是胎儿。在IPSC-MOTOR神经元(MN)肌营养侧面硬化剂(ALS)中的诱导衰老有可能捕获具有更高保真度的病理学,从而提高平移成功。在这里,在这里显示端粒酶抑制剂BIBR1532假设以促进IPSC-MNS在IPSC-MNS中的端粒磨损标志,实际上在使用的无剂量中使用的无饲料IPSCS的细胞毒性在胚胎胚胎上生长的IPSC中使用时对饲养的IPSCs进行细胞毒性。成纤维细胞。通过用Rho激酶(岩)抑制剂(Y-27632)共同处理,不拯救在无饲养培养物中的毒性。此外,与持续的IPSC培养相容的最高浓度的BIBR1532证明不足以诱导可检测的端粒酶抑制。我们的数据表明BIBR1532的直接毒性是观察到的IPSC死亡最可能的原因,并且培养方法可能会影响增强的毒性。因此,通过使用这种小分子端粒酶抑制剂,不能在IPSC-MNS中展示IPSC-MNS中的老化标志的κBAG,这可能揭示ALS中的衰老和相关的人类疾病靶标。

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