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在胰腺癌缺氧条件下,肿瘤相关成纤维细胞通过 HIF-1α/miR-21 轴促进干性维持和吉西他滨耐药。

Cancer-associated fibroblasts promote stemness maintenance and gemcitabine resistance via HIF-1α/miR-21 axis under hypoxic conditions in pancreatic cancer.

机构信息

Department of General Surgery, The First Hospital of Changsha (The Affiliated Changsha Hospital of Xiangya School of Medicine, Central South University), Changsha, Hunan Province, China.

出版信息

Mol Carcinog. 2024 Mar;63(3):524-537. doi: 10.1002/mc.23668. Epub 2024 Jan 10.

Abstract

Gemcitabine (GEM) resistance affects chemotherapy efficacy of pancreatic cancer (PC). Cancer-associated fibroblasts (CAFs) possess the ability of regulating chemoresistance. This study probed the mechanism of hypoxia-treated CAFs regulating cell stemness and GEM resistance in PC. Miapaca-2/SW1990 were co-cultured with PC-derived CAFs under normoxic/hypoxic conditions. Cell viability/self-renewal ability was determined by MTT/sphere formation assays, respectively. Protein levels of CD44, CD133, Oct4, and Sox2 were determined by western blot. GEM tumoricidal assay was performed. PC cell GEM resistance was evaluated by MTT assay. CAFs were cultured at normoxia/hypoxia. HIF-1α and miR-21 expression levels were assessed by RT-qPCR and western blot, with their binding sites and binding relationship predicted and verified. CAF-extracellular vesicles (EVs) were incubated with Miapaca-2 cells. The RAS/AKT/ERK pathway activation was detected by western blot. PC xenograft models were established and treated with hypoxic CAF-EVs and GEM. CAFs and PC cell co-culture increased cell stemness maintenance, GEM resistance, cell viability, stem cell sphere number, and protein levels of CD44, CD133, Oct4, and Sox2, and weakened GEM tumoricidal ability to PC cells, with the effects further enhanced by hypoxia. Hypoxia induced HIF-1α and miR-21 overexpression in CAFs. Hypoxia promoted CAFs to secrete high-level miR-21 EVs via the HIF-1α/miR-21 axis, and activated the miR-21/RAS/AKT/ERK pathway. CAF-EVs promoted GEM resistance in PC via the miR-21/RAS/ATK/ERK pathway in vivo. Hypoxia promoted CAFs to secrete high-level miR-21 EVs through the HIF-1α/miR-21 axis, and activated the miR-21/RAS/AKT/ERK pathway via EVs to trigger stemness maintenance and GEM resistance in PC.

摘要

吉西他滨(GEM)耐药性影响胰腺癌(PC)的化疗疗效。癌相关成纤维细胞(CAFs)具有调节化疗耐药性的能力。本研究探讨了缺氧处理的 CAFs 调节 PC 中细胞干性和 GEM 耐药性的机制。将 Miapaca-2/SW1990 与 PC 来源的 CAFs 在常氧/缺氧条件下共培养。分别通过 MTT/球体形成测定法测定细胞活力/自我更新能力。通过 Western blot 测定 CD44、CD133、Oct4 和 Sox2 的蛋白水平。进行 GEM 杀肿瘤测定。通过 MTT 测定评估 PC 细胞对 GEM 的耐药性。CAFs 在常氧/缺氧下培养。通过 RT-qPCR 和 Western blot 评估 HIF-1α 和 miR-21 的表达水平,并预测和验证其结合位点和结合关系。用 CAF 细胞外囊泡(EVs)孵育 Miapaca-2 细胞。通过 Western blot 检测 RAS/AKT/ERK 通路的激活。建立 PC 异种移植模型,并用缺氧 CAF-EVs 和 GEM 处理。CAFs 和 PC 细胞共培养增加了细胞干性维持、GEM 耐药性、细胞活力、干细胞球体数量以及 CD44、CD133、Oct4 和 Sox2 的蛋白水平,并进一步增强了 GEM 对 PC 细胞的杀伤能力。缺氧诱导 CAFs 中 HIF-1α 和 miR-21 的过表达。缺氧通过 HIF-1α/miR-21 轴促进 CAFs 高表达 miR-21 EVs,并通过 EVs 激活 miR-21/RAS/AKT/ERK 通路。CAF-EVs 通过体内 miR-21/RAS/ATK/ERK 通路促进 PC 中的 GEM 耐药性。缺氧通过 HIF-1α/miR-21 轴促进 CAFs 高表达 miR-21 EVs,并通过 EVs 激活 miR-21/RAS/AKT/ERK 通路,触发 PC 中的干性维持和 GEM 耐药性。

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