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首页> 外文期刊>Journal of experimental & clinical cancer research : >A novel culture method that sustains ERα signaling in human breast cancer tissue microstructures
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A novel culture method that sustains ERα signaling in human breast cancer tissue microstructures

机译:一种新的培养方法,可在人乳腺癌组织微观结构中维持ERα信号

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Estrogen receptor α (ERα) signaling is a defining and driving event in most breast cancers; ERα is detected in malignant epithelial cells of 75% of all breast cancers (classified as ER-positive breast cancer) and, in these cases, ERα targeting is the main therapeutic strategy. However, the biological determinants of ERα heterogeneity and the mechanisms underlying therapeutic resistance are still elusive, hampered by the challenges in developing experimental models recapitulative of intra-tumoral heterogeneity and in which ERα signaling is sustained. Ex vivo cultures of human breast cancer tissue have been proposed to retain the original tissue architecture, epithelial and stromal cell components and ERα. However, loss of cellularity, viability and ERα expression are well-known culture-related phenomena. BC samples were collected and brought to the laboratory. Then they were minced, enzymatically digested, entrapped in alginate and cultured for 1 month. The histological architecture, cellular composition and cell proliferation of tissue microstructures were assessed by immunohistochemistry. Cell viability was assessed by measurement of cell metabolic activity and histological evaluation. The presence of ERα was accessed by immunohistochemistry and RT-qPCR and its functionality evaluated by challenge with 17-β-estradiol and fulvestrant. We describe a strategy based on entrapment of breast cancer tissue microstructures in alginate capsules and their long-term culture under agitation, successfully applied to tissue obtained from 63 breast cancer patients. After 1 month in culture, the architectural features of the encapsulated tissue microstructures were similar to the original patient tumors: epithelial, stromal and endothelial compartments were maintained, with an average of 97% of cell viability compared to day 0. In ERα-positive cases, fibers of collagen, the main extracellular matrix component in vivo, were preserved. ERα expression was at least partially retained at gene and protein levels and response to ERα stimulation and inhibition was observed at the level of downstream targets, demonstrating active ER signaling. The proposed model system is a new methodology to study ex vivo breast cancer biology, in particular ERα signaling. It is suitable for interrogating the long-term effects of anti-endocrine drugs in a set-up that closely resembles the original tumor microenvironment, with potential application in pre- and co-clinical assays of ERα-positive breast cancer.
机译:雌激素受体α(ERα)信号传导是大多数乳腺癌中的定义和驱动事件;在75%的乳腺癌的恶性上皮细胞中检测到ERα(分类为ER阳性乳腺癌),在这些情况下,ERα靶向是主要的治疗策略。然而,ERα异质性的生物决定因素和潜在的治疗性抵抗的机制仍然难以实现,受到在开发实验模型的致致肿瘤内异质性概括性的挑战的挑战阻碍了,并且持续了ERα信号传导。已经提出了人乳腺癌组织的前体内培养物保留原始组织结构,上皮和基质细胞成分和ERα。然而,细胞性丧失,活力和ERα表达是众所周知的培养有关的现象。收集BC样品并带到实验室。然后将它们被切碎,酶促消化,捕获藻酸盐并培养1个月。通过免疫组织化学评估组织微观结构的组织学架构,细胞组合物和细胞增殖。通过测量细胞代谢活性和组织学评估来评估细胞活力。通过免疫组织化学和RT-QPCR获得ERα的存在及其通过用17-β-雌二醇和氟斯特朗狂的攻击评估的功能。我们描述了一种基于血液癌组织微观结构的抗乳腺癌组织微观结构的策略及其在搅拌下的长期培养物,成功地应用于来自63例乳腺癌患者的组织。在培养1个月后,包封组织微观结构的建筑特征类似于原始患者肿瘤:保持上皮,基质和内皮隔室,平均97%的细胞活力与第0天相比。在ERα阳性情况下,胶原蛋白的纤维是体内主要细胞外基质组分的保存。 ERα表达至少部分地保留在基因中,并且在下游靶标的水平下观察到蛋白质水平并对ERα刺激和抑制进行响应,证明活性ER信号。所提出的模型系统是一种研究前体内乳腺癌生物学的新方法,特别是ERα信号传导。它适用于询问抗内分泌药物在一个与原始肿瘤微环境密切相关的建筑物中的长期效果,其潜在应用于ERα阳性乳腺癌的预临床和共同临床测定中。

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