肿瘤生理学对喜树碱类药物开发的影响。

David J Adams
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引用次数: 44

摘要

基因组时代已经将抗癌药物的开发从传统的以天然产物细胞毒性药物为主的模式转变为以信号转导途径为重点的基于机制的药物设计。然而,传统的细胞毒性化疗继续在医疗机构中发挥重要作用。当人们考虑到实体肿瘤生理学的重要因素——酸中毒和缺氧——很少被纳入抗癌药物开发的算法时,这一点尤其正确。现在已经确定,除了任何药物诱导的靶突变或外排蛋白泵外,大多数实体瘤存在于酸性和缺氧微环境中,促进对放疗和化疗的抗性。酸性的细胞外环境导致肿瘤细胞特有的pH梯度。这种梯度有利于弱酸类小分子药物的吸收和保留。弱碱的情况正好相反。喜树碱类拓扑异构酶I抑制剂是天然产物细胞毒性的一个例子,可以利用肿瘤的pH梯度。基于在酸性pH下的选择性活性(pH调节)而不是效价筛选化合物,揭示了在体内普遍存在的酸性条件下活性超过十倍的类似物。因此,在20世纪初获得的肿瘤代谢表型的知识可以在新的千年中导致更有效的抗癌药物。
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The impact of tumor physiology on camptothecin-based drug development.

The genomic era has shifted anticancer drug development from its traditional mode concentrated on natural product cytotoxic agents to mechanism-based drug design focused on signal transduction pathways. Yet traditional cytotoxic chemotherapies continue to have an important role in the armamentarium. This is particularly true when one considers that important elements of solid tumor physiology - acidosis and hypoxia - have rarely been incorporated into algorithms for anticancer drug development. It is now well established that a majority of solid tumors exist in an acidic and hypoxic microenvironment that promotes resistance to radiation and chemotherapies apart from any drug-induced target mutations or efflux protein pumps. The acidic extracellular environment leads to a pH gradient unique to tumor cells. This gradient will favor uptake and retention of small molecule drugs that are weak acids. The converse is true for weak bases. The camptothecin class of topoisomerase I inhibitors is one example of a natural product cytotoxic that can exploit the tumor pH gradient. Screening of compounds based on selective activity at acidic pH (pH modulation), rather than potency, reveals analogs that are over ten times more active under the acidic conditions prevalent in vivo. Thus, knowledge of the tumor metabolic phenotype gained at the beginning of the 20(th) century can lead to more effective anticancer drugs in the new millennium.

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