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新型烷基磷脂 - DTC 杂合物作为通过调节 Akt 信号通路对抗内分泌相关癌症的有前景的药物。

Novel alkylphospholipid-DTC hybrids as promising agents against endocrine related cancers acting via modulation of Akt-pathway.

作者信息

Jangir Santosh, Bala Veenu, Lal Nand, Kumar Lalit, Sarswat Amit, Kumar Amit, Saini Karan S, Sharma Vikas, Verma Vikas, Maikhuri Jagdamba P, Konwar Rituraj, Gupta Gopal, Sharma Vishnu L

机构信息

Medicinal & Process Chemistry Division, CSIR-Central Drug Research Institute, Lucknow 226031, India.

Medicinal & Process Chemistry Division, CSIR-Central Drug Research Institute, Lucknow 226031, India; Academy of Scientific & Innovative Research, New Delhi 110001, India.

出版信息

Eur J Med Chem. 2014 Oct 6;85:638-47. doi: 10.1016/j.ejmech.2014.08.028. Epub 2014 Aug 8.

Abstract

A new series of 2-(alkoxy(hydroxy)phosphoryloxy)ethyl dialkylcarbodithioate derivatives was synthesized and evaluated against endocrine related cancers, acting via modulation of Akt-pathway. Eighteen compounds were active at 7.24-100 μM against MDA-MB-231 or MCF-7 cell lines of breast cancer. Three compounds (14, 18 and 22) were active against MCF-7 cells at IC50 significantly better than miltefosine and most of the compounds were less toxic towards non-cancer cell lines, HEK-293. On the other hand, twelve compounds exhibited cell growth inhibiting activity against prostate cancer cell lines, either PC-3 or DU-145 at 14.69-95.20 μM. While nine of these were active against both cell lines. The most promising compounds 14 and 18 were about two and five fold more active than miltefosine against DU-145 and MCF-7 cell lines respectively and significantly down regulated phospho-Akt. Possibly anti-cancer and pro-apoptotic activity was mostly due to blockade of Akt-pathway.

摘要

合成了一系列新的2-(烷氧基(羟基)磷酰氧基)乙基二烷基碳二硫代酸酯衍生物,并通过调节Akt信号通路对内分泌相关癌症进行了评估。18种化合物在7.24 - 100 μM浓度下对乳腺癌的MDA-MB-231或MCF-7细胞系具有活性。三种化合物(14、18和22)对MCF-7细胞的IC50活性明显优于米替福新,且大多数化合物对非癌细胞系HEK-293的毒性较小。另一方面,12种化合物在14.69 - 95.20 μM浓度下对前列腺癌细胞系PC-3或DU-145表现出细胞生长抑制活性。其中9种对两种细胞系均有活性。最有前景的化合物14和18对DU-145和MCF-7细胞系的活性分别比米替福新高约两倍和五倍,并显著下调磷酸化Akt。其抗癌和促凋亡活性可能主要归因于Akt信号通路的阻断。

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