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乳酸刺激成纤维细胞透明质酸和CD44的表达:重访瓦伯格效应

Lactate stimulates fibroblast expression of hyaluronan and CD44: the Warburg effect revisited.

作者信息

Stern Robert, Shuster Svetlana, Neudecker Birgit A, Formby Bent

机构信息

Department of Pathology, School of Medicine, University of California, San Francisco, California 94143-0506, USA.

出版信息

Exp Cell Res. 2002 May 15;276(1):24-31. doi: 10.1006/excr.2002.5508.

Abstract

Hyaluronan, a high-molecular-weight glycosaminoglycan of the extracellular matrix, is prominent during rapid tissue growth and repair. It stimulates cell motility and hydrates tissue, providing an environment that facilitates cell movement. Markedly enhanced levels of hyaluronan also occur in the stroma surrounding human cancers, thus providing an environment that promotes spread of cancer cells. The ability of malignant tumors to generate lactate, even in the presence of adequate oxygen, is known as the Warburg effect. Early in wound healing as blood and oxygen supply decrease, lactate levels increase, as does stromal hyaluronan, suggesting a cause-and-effect relationship. Similarly, peritumor stromal fibroblast hyaluronan may be a response to cancer cell lactate. To test this, fibroblasts were cultured in the presence of lactate. With increasing lactate, higher levels of hyaluronan were observed, as were levels of CD44 expression, the predominant receptor for hyaluronan. The ability of tumor cells to utilize anaerobic metabolism and to generate lactate, even in the presence of adequate supplies of oxygen, may be one of the mechanisms used to recruit host fibroblasts to deposit hyaluronan and to express CD44, thereby participating in the process of cancer invasion and metastasis.

摘要

透明质酸是细胞外基质中的一种高分子量糖胺聚糖,在组织快速生长和修复过程中很突出。它刺激细胞运动并使组织水化,提供一个有利于细胞移动的环境。在人类癌症周围的基质中,透明质酸水平也显著升高,从而提供了一个促进癌细胞扩散的环境。恶性肿瘤即使在有充足氧气的情况下仍能产生乳酸的能力被称为瓦伯格效应。在伤口愈合早期,随着血液和氧气供应减少,乳酸水平升高,基质透明质酸水平也升高,这表明存在因果关系。同样,肿瘤周围基质成纤维细胞产生透明质酸可能是对癌细胞乳酸的一种反应。为了验证这一点,在乳酸存在的情况下培养成纤维细胞。随着乳酸浓度增加,观察到透明质酸水平升高,同时作为透明质酸主要受体的CD44表达水平也升高。肿瘤细胞即使在有充足氧气供应的情况下仍能利用无氧代谢并产生乳酸,这可能是招募宿主成纤维细胞沉积透明质酸并表达CD44,从而参与癌症侵袭和转移过程的机制之一。

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