医学
神经营养因子
周围神经病变
神经保护
等位基因
结直肠癌
生物信息学
肿瘤科
个性化医疗
遗传倾向
神经营养素
内科学
脑源性神经营养因子
药理学
免疫学
遗传模型
等位基因频率
癌症
感觉系统
药物遗传学
基因检测
作者
Li-Hsien Chen,Peng-Chan Lin,Yu-Min Yeh,Chung-I Li,Lian-Yun Chang,Jang-Yang Chang,Meng-Ru Shen
标识
DOI:10.1126/scitranslmed.adx1436
摘要
Chemotherapy-induced peripheral neuropathy (CIPN) remains a major unmet challenge in oncology, affecting treatment adherence and patient quality of life. Despite its prevalence, reliable predictive biomarkers and targeted neuroprotective strategies remain elusive. This study integrates clinical data, whole-genome sequencing, and translational research to identify genetic determinants of CIPN susceptibility and validate therapeutic approaches. Through comprehensive analysis of patients with colorectal cancer, including neurophysiological evaluations and CIPN-specific quality-of-life assessments, we identified the BDNF c.196G>A polymorphism (Val 66 Met) as a critical factor in CIPN development. Using humanized transgenic mouse models, we demonstrated that the Met 66 allele of the functional Val 66 Met polymorphism in BDNF confers protection against oxaliplatin-induced sensory deficits, whereas the Val 66 allele increases susceptibility to neuropathy. Mechanistic studies revealed that this protection operates through modulation of p75NTR-mediated signaling pathways and neuroinflammatory responses. On the basis of these findings, we evaluated two therapeutic strategies: the p75NTR modulator LM11A-31 and a compound we have developed, CN016. Both agents exhibited notable efficacy in alleviating oxaliplatin-induced neuropathy, particularly in genetically susceptible BDNF Val/Val carriers. LM11A-31 normalized neurotrophic signaling and preserved sensory structures, and CN016 effectively modulated neuroinflammatory pathways through macrophage inhibition at an optimal dose of 20 mg/kg. The BDNF Met 66 variant shows about 49% prevalence in East Asian populations and 1 to 20% in other ethnic groups, suggesting population-specific susceptibility to CIPN. These findings establish BDNF genetic variation as a crucial determinant of CIPN risk and validate two promising therapeutic approaches, providing a foundation for personalized neuroprotective strategies in cancer treatment.
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