首页> 外文期刊>Cancer Cell International >Role of hypoxia and glycolysis in the development of multi-drug resistance in human tumor cells and the establishment of an orthotopic multi-drug resistant tumor model in nude mice using hypoxic pre-conditioning
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Role of hypoxia and glycolysis in the development of multi-drug resistance in human tumor cells and the establishment of an orthotopic multi-drug resistant tumor model in nude mice using hypoxic pre-conditioning

机译:低氧和糖酵解在人肿瘤细胞多药耐药性发展中的作用以及利用缺氧预处理建立裸鼠原位多药耐药性肿瘤模型的作用

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The development of multi-drug resistant (MDR) cancer is a significant challenge in the clinical treatment of recurrent disease. Hypoxia is an environmental selection pressure that contributes to the development of MDR. Many cancer cells, including MDR cells, resort to glycolysis for energy acquisition. This study aimed to explore the relationship between hypoxia, glycolysis, and MDR in a panel of human breast and ovarian cancer cells. A second aim of this study was to develop an orthotopic animal model of MDR breast cancer. Nucleic and basal protein was extracted from a panel of human breast and ovarian cancer cells; MDR cells and cells pre-exposed to either normoxic or hypoxic conditions. Western blotting was used to assess the expression of MDR markers, hypoxia inducible factors, and glycolytic proteins. Tumor xenografts were established in the mammary fat pad of nuu mice using human breast cancer cells that were pre-exposed to either hypoxic or normoxic conditions. Immunohistochemistry was used to assess the MDR character of excised tumors. Hypoxia induces MDR and glycolysis in vitro, but the cellular response is cell-line specific and duration dependent. Using hypoxic, triple-negative breast cancer cells to establish 100 mm3 tumor xenografts in nude mice is a relevant model for MDR breast cancer. Hypoxic pre-conditiong and xenografting may be used to develop a multitude of orthotopic models for MDR cancer aiding in the study and treatment of the disease.
机译:在复发性疾病的临床治疗中,多药耐药性(MDR)癌症的发展是一项重大挑战。缺氧是一种环境选择压力,有助于耐多药的发展。许多癌细胞,包括MDR细胞,都通过糖酵解来获取能量。这项研究旨在探讨缺氧,糖酵解和MDR在一组人类乳腺癌和卵巢癌细胞中的关系。这项研究的第二个目的是建立MDR乳腺癌的原位动物模型。从一组人类乳腺癌和卵巢癌细胞中提取了核酸和基础蛋白; MDR细胞和预先暴露于常氧或低氧条件下的细胞。 Western印迹用于评估MDR标记,缺氧诱导因子和糖酵解蛋白的表达。使用预先暴露于低氧或常氧条件下的人乳腺癌细胞,在nu / nu小鼠的乳腺脂肪垫中建立了肿瘤异种移植物。免疫组织化学用于评估切除的肿瘤的MDR特征。低氧会在体外诱导MDR和糖酵解,但细胞反应是细胞系特异性的,且依赖时间。使用缺氧,三阴性乳腺癌细胞在裸鼠中建立100 mm3肿瘤异种移植物是MDR乳腺癌的相关模型。缺氧预处理和异种移植可用于开发多种用于MDR癌症的原位模型,以帮助该病的研究和治疗。

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