LBPO.ET02 · 实验与分子治疗 · Late-Breaking

靶向galectin-1可克服食管鳞状细胞癌对紫杉醇的耐药

Targeting galectin-1 overcomes paclitaxel resistance in esophageal squamous cell carcinoma

海报缩略图:靶向galectin-1可克服食管鳞状细胞癌对紫杉醇的耐药
编号 LB198 展板 20 时间 4/20 02:00–05:00 区域 Section 53 主讲 Xiang Li
分会场 Late-Breaking Research: Experimental and Molecular Therapeutics 2
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作者与单位 Authors & Affiliations

Xiang Li

Zhengzhou Univ. College of Medicine, Zhengzhou, China

摘要 Abstract

中文摘要
紫杉醇耐药是食管鳞状细胞癌(ESCC)治疗中的一大障碍。更深入地了解紫杉醇耐药的潜在机制有助于识别预后生物标志物并改进治疗策略。在本研究中,我们建立了一个获得性紫杉醇耐药的患者来源异种移植(PDX)模型,并利用RNA测序确定由LGALS1编码的galectin-1为耐药的关键介导因子。对临床数据的整合分析与生理学研究表明,耐药患者的血清galectin-1水平升高,并与紫杉类治疗前及治疗期间的疗效相关。重要的是,与来自敏感患者的血清相比,将细胞暴露于耐药患者的血清可导致紫杉醇耐药性增加,且这一现象与血清中galectin-1的浓度密切相关。特异性清除耐药患者血清中的galectin-1可显著恢复紫杉醇敏感性;而通过基因敲低或药理学抑制剂OTX008抑制galectin-1则可增加对紫杉醇的敏感性。抑制galectin-1可降低beta-catenin的活性,从而抑制由Wnt/beta-catenin通路诱导的干细胞特性。此外,galectin-1通过增加beta-catenin的核内积聚来调控MDR1的转录,从而增加对紫杉醇的耐药性。将OTX008与临床紫杉类制剂联合使用,可在体外和体内有效逆转紫杉醇耐药。因此,galectin-1水平升高可作为ESCC对紫杉醇治疗反应的指标,并提供了一种克服耐药的治疗干预策略。意义:galectin-1是食管鳞状细胞癌紫杉醇耐药的关键介导因子,可作为靶点以提高紫杉类药物的疗效,提示其在治疗多种癌症类型中具有广泛的治疗潜力。
查看英文原文 English abstract
Resistance to paclitaxel poses a major obstacle in esophageal squamous cell carcinoma (ESCC) treatment. A better understanding of the mechanisms underlying paclitaxel resistance could help identify prognostic biomarkers and improved therapeutic strategies. In this study, we established a patient-derived xenograft model of acquired paclitaxel resistance and used RNA sequencing to identify galectin-1, encoded by LGALS1, as a key mediator of resistance. Integrative analysis of clinical data and physiological studies indicated that serum galectin-1 levels were elevated in resistant patients and correlated with treatment outcomes before and during taxane therapy. Importantly, exposing cells to serum from resistant patients resulted in increased paclitaxel resistance compared to serum from sensitive patients, which was closely associated with galectin-1 concentrations in the serum. The specific clearance of galectin-1 from resistant patient serum significantly restored paclitaxel sensitivity, and inhibiting galectin-1, through knockdown or the pharmacologic inhibitor OTX008, increased sensitivity to paclitaxel. Galectin-1 inhibition reduced the activity of beta-catenin, thereby inhibiting stem cell properties induced by the Wnt/beta-catenin pathway. Furthermore, galectin-1 regulated MDR1 transcription through increased nuclear accumulation of beta-catenin, thus increasing resistance to paclitaxel. Combining OTX008 with clinical taxane formulations effectively reversed paclitaxel resistance in vitro and in vivo. Elevated galectin-1 levels thus serve as an indicator of response to paclitaxel therapy in ESCC, offering a therapeutic intervention strategy to overcome drug resistance. Significance: Galectin-1 is a key mediator of paclitaxel resistance in esophageal squamous cell carcinoma that can be targeted to improve taxane efficacy, suggesting broad therapeutic potential for treating various cancer types.
利益披露 Disclosure
X. Li, None.

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