Exosome-transmitted LUCAT1 promotes stemness transformation and chemoresistance in bladder cancer by binding to IGF2BP2.

IF 12.8 1区 医学 Q1 ONCOLOGY Journal of Experimental & Clinical Cancer Research Pub Date : 2025-03-03 DOI:10.1186/s13046-025-03330-w
Yonghao Zhan, Zhenzhen Zhou, Zhaowei Zhu, Lianghao Zhang, Shuanbao Yu, Yuchen Liu, Xuepei Zhang
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Abstract

The chemotherapy resistance is an awkward challenge in management of bladder cancer (BC). Cancer organoid model is an effective preclinical tumor model that could faithfully represent clinical manifestations and simulate the biological processes of chemoresistance. Recent studies have revealed that cancer stem cells (CSCs) play a significant role in the development of chemoresistance in cancer. Exosomes act as essential intercellular messengers and participate in controlling the conversion of distinct cell characteristics, including chemoresistance. However, the role of exosome-transmitted lncRNAs in bladder cancer chemoresistance has rarely been reported. In this study, cancer organoid models were developed from urothelial carcinomas to explore the pathophysiology mechanism of BC chemoresistance, and RNA-seq was performed to screen for lncRNAs involved in chemoresistance of BC. We found chemotherapy enriches stem-like cells in BC, and significant upregulation of Lung Cancer Associated Transcript 1 (LUCAT1) occurs in chemotherapy-resistant organoids and correlated with chemotherapy response. Further experimental results demonstrated that LUCAT1 promotes chemoresistance in bladder cancer by enhancing the stemness phenotype of BC cells in vivo and in vitro. Moreover, exosomes derived from bladder cancer stem cells can enhance the stemness phenotype and chemoresistance of BC cells by delivering LUCAT1. Mechanistically, LUCAT1 could significantly enhance the mRNA stability of HMGA1 via binding to IGF2BP2 in an m6A-dependent manner. The study demonstrates an important role for exosome-transmitted LUCAT1 in chemoresistance and LUCAT1 has the potential to function as both a diagnostic biomarker and therapeutic target for BC.

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外泌体传播的LUCAT1通过结合IGF2BP2促进膀胱癌的干细胞转化和化疗耐药。
化疗耐药是膀胱癌治疗中一个棘手的难题。肿瘤类器官模型是一种有效的临床前肿瘤模型,能真实地反映临床表现,模拟化疗耐药的生物学过程。近年来的研究表明,癌症干细胞(cancer stem cells, CSCs)在癌症化疗耐药的发展中起着重要作用。外泌体作为重要的细胞间信使,参与控制不同细胞特征的转化,包括化学耐药性。然而,外泌体传播的lncrna在膀胱癌化疗耐药中的作用很少被报道。本研究以尿路上皮癌为研究对象,建立肿瘤类器官模型,探讨BC化疗耐药的病理生理机制,并通过RNA-seq筛选参与BC化疗耐药的lncrna。我们发现化疗丰富了BC中的干细胞样细胞,并且肺癌相关转录本1 (LUCAT1)在化疗耐药类器官中显著上调,并与化疗反应相关。进一步的实验结果表明,LUCAT1在体内和体外通过增强BC细胞的干性表型来促进膀胱癌的化疗耐药。此外,来自膀胱癌干细胞的外泌体可以通过传递LUCAT1增强BC细胞的干性表型和化疗耐药。在机制上,LUCAT1通过与IGF2BP2以m6a依赖的方式结合,显著增强HMGA1 mRNA的稳定性。该研究证明了外泌体传播的LUCAT1在化疗耐药中的重要作用,并且LUCAT1具有作为BC的诊断生物标志物和治疗靶点的潜力。
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来源期刊
CiteScore
18.20
自引率
1.80%
发文量
333
审稿时长
1 months
期刊介绍: The Journal of Experimental & Clinical Cancer Research is an esteemed peer-reviewed publication that focuses on cancer research, encompassing everything from fundamental discoveries to practical applications. We welcome submissions that showcase groundbreaking advancements in the field of cancer research, especially those that bridge the gap between laboratory findings and clinical implementation. Our goal is to foster a deeper understanding of cancer, improve prevention and detection strategies, facilitate accurate diagnosis, and enhance treatment options. We are particularly interested in manuscripts that shed light on the mechanisms behind the development and progression of cancer, including metastasis. Additionally, we encourage submissions that explore molecular alterations or biomarkers that can help predict the efficacy of different treatments or identify drug resistance. Translational research related to targeted therapies, personalized medicine, tumor immunotherapy, and innovative approaches applicable to clinical investigations are also of great interest to us. We provide a platform for the dissemination of large-scale molecular characterizations of human tumors and encourage researchers to share their insights, discoveries, and methodologies with the wider scientific community. By publishing high-quality research articles, reviews, and commentaries, the Journal of Experimental & Clinical Cancer Research strives to contribute to the continuous improvement of cancer care and make a meaningful impact on patients' lives.
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