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基于尿苷磷酸化酶为靶蛋白的杂 D-修饰甾体烷化剂抗癌活性的计算机模拟/体外研究。

In silico/in vitro study of hybrid D-modified steroidal alkylator anticancer activity using uridine phosphorylase as target protein.

机构信息

Head, Laboratory of Cell Culture, Molecular Modeling and Drug Design, Symeonidion Research Center, Theagenion Cancer Hospital, 2, Al. Symeonidi Str., 54007, Thessaloniki, Greece.

出版信息

Anticancer Res. 2011 Mar;31(3):831-42.

Abstract

BACKGROUND

In order to reduce toxicity and to enhance anticancer activity of nitrogen mustards, three hybrid steroidal esters were synthesized and tested in vitro against human pancreatic cancer cells expressing uridine phosphorylase (UPase). The inhibition potency against a target protein implicated in the chemotherapy of solid tumors, such as UPase, is of fundamental importance in the design and synthesis of new anticancer drugs.

MATERIALS AND METHODS

MTT colorimetric assay and molecular docking were employed for the in vitro and in silico drug evaluation, respectively.

RESULTS

A difference in cell sensitivity was found, which followed the known different UPase expression in the cell lines. Molecular docking studies on UPase protein, revealed the tested compounds to be bound to the binding cavity of the protein, with different affinity. Between the two D-modified compounds, the D-homo-aza (lactam)-hybrid compound (C2) was found to interact with the protein in a more efficient way.

CONCLUSION

The molecular docking data were in accordance with the in vitro results, where the lactam steroid alkylator showed significantly higher cytostatic and cytotoxic activity than the non-D-modified compounds, which also correlated with the level of UPase expression in the pancreatic cancer cells.

摘要

背景

为降低氮芥类药物的毒性并提高其抗癌活性,合成了三种甾体酯类杂种,并对表达尿苷磷酸化酶(UPase)的人胰腺癌细胞进行了体外测试。对实体瘤化疗中涉及的靶蛋白(如 UPase)的抑制能力在新抗癌药物的设计和合成中至关重要。

材料和方法

分别采用 MTT 比色法和分子对接进行体外和计算机药物评价。

结果

发现细胞敏感性存在差异,这与细胞系中已知的不同 UPase 表达有关。对 UPase 蛋白的分子对接研究表明,测试化合物与蛋白质的结合腔结合,具有不同的亲和力。在两种 D 修饰的化合物中,D-同型氮杂(内酰胺)杂种(C2)被发现以更有效的方式与蛋白质相互作用。

结论

分子对接数据与体外结果一致,其中内酰胺甾体烷化剂显示出比非 D 修饰化合物更高的细胞生长抑制和细胞毒性活性,这也与胰腺癌细胞中 UPase 的表达水平相关。

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