紫外光谱在研究金属配合物与DNA相互作用中的应(3)

发布时间:2021-06-06

紫外光谱 应用

2010年38卷第5期

[8]

LiuZ

广州化工

copper(ii)polymer

with

25

Q,Jiang

M,LiYT.One—dimensional

[10]ZhangF,ZhangQQ,WangWG,Wang

ingstudiesbyspectroscopic

L.SynthesisandDNAbind—

bridging汕一trans—oxamidatoandthiocyanatoligands:synthesis,crys—

tal

structure

andPARAFACmethodsof

tomarycopper

andDNAbindingstudies[J].InorgChimActa,2009,362

(ii)complex[J].J

—249.

PhotochemPhotobiolA:Chemistry,2006,184:241

(4):1253—1259.[9]

SonthllKumarR,ArunachalamS.Synthesis,characterizationandDNA

bindingstudiesof一bipyridyl

[11]

WolfeA,ShimerGH,MeehanT.Polycyclicaromatichydrocarbons

physicallyintemalatointoduplexregionsofdenaturedchemistry,1987,26:6392—6396.

polymer—cobalt(III)complex

containing

the2,2’DNA[J].Bio—

ligand[J].Polyhedron,2006,25:3113—3117.

(上接第9页)

结语

氨基取代的喹唑啉类化合物是一类优良的抗肿瘤药剂,该

类药物研究开发活跃,临床使用的药物也很多,在肿瘤治疗中发挥着重要的作用。随着纳米分子医学和分子生物学技术的迅猛发展,以及对肿瘤发病机制和抗肿瘤作用机制的不断了解,开展抗肿瘤药物的分子设计,将会出现越来越多、更为有效的氨基取代的喹唑啉类药物应用于临床,造福人类。

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