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鉴定一类可增强细胞间黏附并减弱前列腺肿瘤生长和转移的小分子。

Identification of a small molecule class to enhance cell-cell adhesion and attenuate prostate tumor growth and metastasis.

作者信息

Shah Girish V, Muralidharan Anbalagan, Thomas Shibu, Gokulgandhi Mitan, Mudit Mudit, Khanfar Mohammad, El Sayed Khalid

机构信息

Department of Pharmaceutical Sciences, University of Louisiana College of Pharmacy, 1800 Bienville Drive, Monroe, LA 71209, USA.

出版信息

Mol Cancer Ther. 2009 Mar;8(3):509-20. doi: 10.1158/1535-7163.MCT-08-0693. Epub 2009 Mar 10.

Abstract

Expression of calcitonin (CT) and its receptor (CTR) is elevated in advanced prostate cancer, and activated CT-CTR autocrine axis plays a pivotal role in tumorigenicity and metastatic potential of multiple prostate cancer cell lines. Recent studies suggest that CT promotes prostate cancer metastasis by reducing cell-cell adhesion through the disassembly of tight and adherens junctions and activation of beta-catenin signaling. We attempted to identify a class of molecules that enhances cell-cell adhesion of prostate cells and reverses the disruptive actions of CT on tight and adherens junctions. Screening several compounds led to the emergence of phenyl-methylene hydantoin (PMH) as a lead candidate that can augment cell-cell adhesion and abolish disruptive actions of CT on junctional complexes. PMH reduced invasiveness of PC-3M cells and abolished proinvasive actions of CT. Importantly, PMH did not display significant cytotoxicity on PC-3M cells at the tested doses. I.p. administered PMH and its S-ethyl derivative remarkably decreased orthotopic tumor growth and inhibited the formation of tumor micrometastases in distant organs of nude mice. PMH treatment also reduced the growth of spontaneous tumors in LPB-Tag mice to a significant extent without any obvious cytotoxic effects. By virtue of its ability to stabilize cell junctions, PMH could reverse the effect of CT on junctional disruption and metastasis, which strengthens the possibility of using PMH as a potential drug candidate for CT-positive androgen-independent prostate cancers.

摘要

降钙素(CT)及其受体(CTR)在晚期前列腺癌中的表达升高,激活的CT-CTR自分泌轴在多种前列腺癌细胞系的致瘤性和转移潜能中起关键作用。最近的研究表明,CT通过破坏紧密连接和黏附连接以及激活β-连环蛋白信号通路来降低细胞间黏附,从而促进前列腺癌转移。我们试图鉴定一类能够增强前列腺细胞间黏附并逆转CT对紧密连接和黏附连接破坏作用的分子。对几种化合物进行筛选后,苯亚甲基乙内酰脲(PMH)成为主要候选物,它能够增强细胞间黏附并消除CT对连接复合体的破坏作用。PMH降低了PC-3M细胞的侵袭性,并消除了CT的促侵袭作用。重要的是,在测试剂量下,PMH对PC-3M细胞没有明显的细胞毒性。腹腔注射PMH及其S-乙基衍生物可显著降低原位肿瘤生长,并抑制裸鼠远处器官肿瘤微转移的形成。PMH治疗还在很大程度上降低了LPB-Tag小鼠自发性肿瘤的生长,且没有任何明显的细胞毒性作用。由于PMH具有稳定细胞连接的能力,它可以逆转CT对连接破坏和转移的影响,这增强了将PMH用作CT阳性雄激素非依赖性前列腺癌潜在候选药物的可能性。

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