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细胞外酸性pH培养系统的建立。

Establishment of an Extracellular Acidic pH Culture System.

作者信息

Kondo Ayano, Osawa Tsuyoshi

机构信息

Innovative Technology Laboratories, Kyowa Hakko Kirin Co., Ltd.

Laboratory for Systems Biology and Medicine, RCAST, The University of Tokyo;

出版信息

J Vis Exp. 2017 Nov 19(129):56660. doi: 10.3791/56660.

Abstract

Conditions of the tumor microenvironment, such as hypoxia or nutrient starvation, play critical roles in cancer progression and malignancy. However, the role of acidic extracellular pH in tumor aggressiveness and its underlying mechanism has not been extensively studied compared to hypoxic or nutrient starvation conditions. In addition, a well-defined culture method to mimic the acidic extracellular tumor microenvironment has not been fully reported. Here we present a simple in vitro culture method to maintain acidic extracellular pH using reduced bicarbonate and increased lactate or HCl concentrations in the culture medium. The medium pH was sustained for at least 24 h and gradually decreased by 72 h following culture of PANC-1 and AsPC-1 pancreatic cancer cells. Three distinct acidic media conditions in this study highly upregulated pH-responsive genes such as MSMO1, INSIG1, and IDI1 compared to hypoxia or nutrient starvation. The upregulation of these genes can be used as a marker of acidic pH. These simple techniques are beneficial to elucidate underlying mechanisms of tumor malignancy under acidic tumor microenvironment. Therefore, our extracellular acidic pH culture system enables discovery of cellular acidic pH responses not only in cancer cells but also in primary cells, such as renal tubular cells, in relation to the other acidic disorders including, diabetic ketoacidosis, lactic acidosis, renal tubular acidosis, and respiratory acidosis.

摘要

肿瘤微环境的条件,如缺氧或营养饥饿,在癌症进展和恶性肿瘤中起着关键作用。然而,与缺氧或营养饥饿条件相比,细胞外酸性pH值在肿瘤侵袭性中的作用及其潜在机制尚未得到广泛研究。此外,一种明确的模拟细胞外酸性肿瘤微环境的培养方法尚未得到充分报道。在此,我们提出一种简单的体外培养方法,通过降低培养基中的碳酸氢盐并增加乳酸或盐酸浓度来维持细胞外酸性pH值。在培养PANC-1和AsPC-1胰腺癌细胞后,培养基pH值至少维持24小时,并在72小时后逐渐下降。与缺氧或营养饥饿相比,本研究中的三种不同酸性培养基条件高度上调了pH响应基因,如MSMO1、INSIG1和IDI1。这些基因的上调可作为酸性pH值的标志物。这些简单的技术有助于阐明酸性肿瘤微环境下肿瘤恶性肿瘤的潜在机制。因此,我们的细胞外酸性pH培养系统不仅能够发现癌细胞中,还能发现原代细胞(如肾小管细胞)中与其他酸性疾病(包括糖尿病酮症酸中毒、乳酸酸中毒、肾小管酸中毒和呼吸性酸中毒)相关的细胞酸性pH反应。

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