Wohlrab Christina, Phillips Elisabeth, Dachs Gabi U
Mackenzie Cancer Research Group, Department of Pathology, University of Otago, Christchurch, New Zealand.
Front Oncol. 2017 Apr 24;7:74. doi: 10.3389/fonc.2017.00074. eCollection 2017.
Sufficient uptake and whole body distribution of vitamin C (ascorbate) is essential for many biochemical processes, including some that are vital for tumor growth and spread. Uptake of ascorbate into cancer cells is modulated by availability, tumor blood flow, tissue diffusion parameters, and ascorbate transport proteins. Uptake into cells is mediated by two families of transport proteins, namely, the solute carrier gene family 23, consisting of sodium-dependent vitamin C transporters (SVCTs) 1 and 2, and the SLC2 family of glucose transporters (GLUTs). GLUTs transport the oxidized form of the vitamin, dehydroascorbate (DHA), which is present at negligible to low physiological levels. SVCT1 and 2 are capable of accumulating ascorbate against a concentration gradient from micromolar concentrations outside to millimolar levels inside of cells. Investigating the expression and regulation of SVCTs in cancer has only recently started to be included in studies focused on the role of ascorbate in tumor formation, progression, and response to therapy. This review gives an overview of the current, limited knowledge of ascorbate transport across membranes, as well as tissue distribution, gene expression, and the relevance of SVCTs in cancer. As tumor ascorbate accumulation may play a role in the anticancer activity of high dose ascorbate treatment, further research into ascorbate transport in cancer tissue is vital.
维生素C(抗坏血酸)的充分摄取和全身分布对于许多生化过程至关重要,包括一些对肿瘤生长和扩散至关重要的过程。抗坏血酸进入癌细胞的摄取受其可利用性、肿瘤血流、组织扩散参数和抗坏血酸转运蛋白的调节。细胞摄取由两类转运蛋白介导,即溶质载体基因家族23,由钠依赖性维生素C转运蛋白(SVCTs)1和2组成,以及葡萄糖转运蛋白(GLUTs)的SLC2家族。GLUTs转运维生素的氧化形式脱氢抗坏血酸(DHA),其在生理水平上可忽略不计至低水平。SVCT1和2能够逆浓度梯度从细胞外微摩尔浓度积累抗坏血酸至细胞内毫摩尔水平。研究癌症中SVCTs的表达和调节直到最近才开始纳入关注抗坏血酸在肿瘤形成、进展和对治疗反应中作用的研究。本综述概述了目前关于抗坏血酸跨膜转运、组织分布、基因表达以及SVCTs在癌症中的相关性的有限知识。由于肿瘤抗坏血酸积累可能在高剂量抗坏血酸治疗的抗癌活性中起作用,进一步研究癌症组织中的抗坏血酸转运至关重要。