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鉴定针对长春新碱诱导的人诱导多能干细胞衍生神经元神经毒性的新型神经保护剂。

Identification of novel neuroprotectants against vincristine-induced neurotoxicity in iPSC-derived neurons.

作者信息

Petrova Veselina, Snavely Andrew R, Splaine Jennifer, Zhen Shannon, Singh Bhagat, Pandey Roshan, Chen Kuchuan, Cheng Anya, Hermawan Crystal, Barrett Lee B, Smith Jennifer A, Woolf Clifford

机构信息

Boston Children's Hospital.

Harvard Medical School.

出版信息

Res Sq. 2024 Jul 2:rs.3.rs-4545853. doi: 10.21203/rs.3.rs-4545853/v1.

Abstract

Chemotherapy-induced peripheral neuropathy (CIPN) is a disabling side effect of cancer chemotherapy that can often limit treatment options for cancer patients or have life-long neurodegenerative consequences that reduce the patient's quality of life. CIPN is caused by the detrimental actions of various chemotherapeutic agents on peripheral axons. Currently, there are no approved preventative measures or treatment options for CIPN, highlighting the need for the discovery of novel therapeutics and improving our understanding of disease mechanisms. In this study, we utilized human-induced pluripotent stem cell (hiPSC)-derived motor neurons as a platform to mimic axonal damage after treatment with vincristine, a chemotherapeutic used for the treatment of breast cancers, osteosarcomas, and leukemia. We screened a total of 1902 small molecules for neuroprotective properties in rescuing vincristine-induced axon growth deficits. From our primary screen, we identified 38 hit compounds that were subjected to secondary dose response screens. Six compounds showed favorable pharmacological profiles - AZD7762, A-674563, Blebbistatin, Glesatinib, KW-2449, and Pelitinib, all novel neuroprotectants against vincristine toxicity to neurons. In addition, four of these six compounds also showed efficacy against vincristine-induced growth arrest in human iPSC-derived sensory neurons. In this study, we utilized high-throughput screening of a large library of compounds in a therapeutically relevant assay. We identified several novel compounds that are efficacious in protecting different neuronal subtypes from the toxicity induced by a common chemotherapeutic agent, vincristine which could have therapeutic potential in the clinic.

摘要

化疗诱导的周围神经病变(CIPN)是癌症化疗的一种致残性副作用,常常会限制癌症患者的治疗选择,或者产生终身性神经退行性后果,降低患者的生活质量。CIPN是由多种化疗药物对周围轴突的有害作用引起的。目前,尚无针对CIPN的获批预防措施或治疗选择,这凸显了发现新型疗法以及增进我们对疾病机制理解的必要性。在本研究中,我们利用人诱导多能干细胞(hiPSC)衍生的运动神经元作为平台,来模拟用长春新碱治疗后的轴突损伤,长春新碱是一种用于治疗乳腺癌、骨肉瘤和白血病的化疗药物。我们总共筛选了1902种小分子,以检测其在挽救长春新碱诱导的轴突生长缺陷方面的神经保护特性。从我们的初步筛选中,我们鉴定出38种有活性的化合物,并对其进行了二次剂量反应筛选。六种化合物表现出良好的药理学特征——AZD7762、A - 674563、blebbistatin、格列卫、KW - 2449和培利替尼,它们都是针对长春新碱对神经元毒性的新型神经保护剂。此外,这六种化合物中的四种在人iPSC衍生的感觉神经元中也显示出对抗长春新碱诱导的生长停滞的功效。在本研究中,我们在一项具有治疗相关性的试验中对大量化合物文库进行了高通量筛选。我们鉴定出了几种新型化合物,它们能有效保护不同的神经元亚型免受一种常见化疗药物长春新碱诱导的毒性,这些化合物在临床上可能具有治疗潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b13/11247920/9471c231568a/nihpp-rs4545853v1-f0001.jpg

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