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体内叶酸受体循环的配体结合与动力学:对受体介导的药物递送的影响

Ligand binding and kinetics of folate receptor recycling in vivo: impact on receptor-mediated drug delivery.

作者信息

Paulos Chrystal M, Reddy Joseph A, Leamon Christopher P, Turk Mary Jo, Low Philip S

机构信息

Department of Chemistry, Purdue University, West Lafayette, Indiana, USA.

出版信息

Mol Pharmacol. 2004 Dec;66(6):1406-14. doi: 10.1124/mol.104.003723. Epub 2004 Sep 15.

Abstract

Folate receptor-targeted cancer therapies constitute a promising treatment for the approximately one third of human cancers that overexpress the folate receptor (FR). However, the potencies of all folate-receptor targeted therapies depend on 1) the rate of folate-linked drug conjugate binding to the cancer cell surface, 2) the dose of folate conjugate that will saturate tumor cell surface FR in vivo, 3) the rate of FR internalization, unloading, and recycling back to the tumor cell surface for another round of conjugate uptake, and 4) the residence time of the folate conjugate before its metabolism or release from the cell. Because little information exists on any of these processes, we have undertaken to characterize them on both cancer cells in culture and solid tumors in live mice. We quantitate here the properties of FR saturation, internalization, recycling, and unloading in several cultured cancer cell lines and murine tumor models, and we describe the conditions that should maximize both the potencies and specificities of folate receptor-targeted therapies in vivo.

摘要

针对叶酸受体的癌症治疗方法为大约三分之一过度表达叶酸受体(FR)的人类癌症提供了一种有前景的治疗方案。然而,所有针对叶酸受体的治疗方法的效力取决于以下几点:1)叶酸连接的药物偶联物与癌细胞表面结合的速率;2)在体内能够使肿瘤细胞表面FR饱和的叶酸偶联物剂量;3)FR内化、卸载并循环回到肿瘤细胞表面以进行新一轮偶联物摄取的速率;4)叶酸偶联物在代谢或从细胞释放之前的停留时间。由于关于这些过程的信息都很少,我们已着手在培养的癌细胞和活体小鼠的实体瘤中对它们进行表征。我们在此定量分析了几种培养的癌细胞系和小鼠肿瘤模型中FR饱和、内化、循环和卸载的特性,并描述了在体内应能使针对叶酸受体的治疗方法的效力和特异性最大化的条件。

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