Yadav Saveg, Pandey Shrish Kumar, Goel Yugal, Temre Mithlesh Kumar, Singh Sukh Mahendra
School of Biotechnology, Institute of Science, Banaras Hindu University, Varanasi, India.
Front Pharmacol. 2019 Jul 4;10:728. doi: 10.3389/fphar.2019.00728. eCollection 2019.
Malignant cells possess a unique metabolic machinery to endure unobstructed cell survival. It comprises several levels of metabolic networking consisting of 1) upregulated expression of membrane-associated transporter proteins, facilitating unhindered uptake of substrates; 2) upregulated metabolic pathways for efficient substrate utilization; 3) pH and redox homeostasis, conducive for driving metabolism; 4) tumor metabolism-dependent reconstitution of tumor growth promoting the external environment; 5) upregulated expression of receptors and signaling mediators; and 6) distinctive genetic and regulatory makeup to generate and sustain rearranged metabolism. This feat is achieved by a "battery of molecular patrons," which acts in a highly cohesive and mutually coordinated manner to bestow immortality to neoplastic cells. Consequently, it is necessary to develop a multitargeted therapeutic approach to achieve a formidable inhibition of the diverse arrays of tumor metabolism. Among the emerging agents capable of such multifaceted targeting of tumor metabolism, an alkylating agent designated as 3-bromopyruvate (3-BP) has gained immense research focus because of its broad spectrum and specific antineoplastic action. Inhibitory effects of 3-BP are imparted on a variety of metabolic target molecules, including transporters, metabolic enzymes, and several other crucial stakeholders of tumor metabolism. Moreover, 3-BP ushers a reconstitution of the tumor microenvironment, a reversal of tumor acidosis, and recuperative action on vital organs and systems of the tumor-bearing host. Studies have been conducted to identify targets of 3-BP and its derivatives and characterization of target binding for further optimization. This review presents a brief and comprehensive discussion about the current state of knowledge concerning various aspects of tumor metabolism and explores the prospects of 3-BP as a safe and effective antineoplastic agent.
恶性细胞拥有独特的代谢机制以确保细胞存活不受阻碍。它包括多个层次的代谢网络,由以下部分组成:1)膜相关转运蛋白的表达上调,促进底物的无障碍摄取;2)上调代谢途径以实现高效的底物利用;3)pH值和氧化还原稳态,有利于驱动新陈代谢;4)肿瘤代谢依赖的肿瘤生长促进外部环境的重构;5)受体和信号介质的表达上调;6)独特的基因和调控组成,以产生并维持重排的代谢。这一壮举是由“一系列分子保护者”实现的,它们以高度凝聚和相互协调的方式发挥作用,赋予肿瘤细胞永生。因此,有必要开发一种多靶点治疗方法,以实现对肿瘤代谢多种不同方面的强大抑制。在能够对肿瘤代谢进行这种多方面靶向的新兴药物中,一种名为3-溴丙酮酸(3-BP)的烷基化剂因其广泛的谱效和特定的抗肿瘤作用而受到了极大的研究关注。3-BP对多种代谢靶分子具有抑制作用,包括转运蛋白、代谢酶以及肿瘤代谢的其他几个关键参与者。此外,3-BP可促使肿瘤微环境的重构、肿瘤酸中毒的逆转以及对荷瘤宿主重要器官和系统的恢复作用。已经开展了研究以确定3-BP及其衍生物的靶点,并对靶点结合进行表征以进一步优化。本综述简要而全面地讨论了关于肿瘤代谢各个方面的当前知识状态,并探讨了3-BP作为一种安全有效的抗肿瘤药物前景。