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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Photophysical and photodynamical study of ellipticine: an anticancer drug molecule in bile salt modulated in vitro created liposomet
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Photophysical and photodynamical study of ellipticine: an anticancer drug molecule in bile salt modulated in vitro created liposomet

机译:玫瑰树碱的光物理和光动力学研究:胆盐调节体外创建的脂质体中的抗癌药物分子

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摘要

The entrapment of anticancer drug ellipticine in the dipalmitoylphosphocholine (DPPC) liposome and its release by addition of three different bile salts, namely sodium deoxycholate, chelate and taurocholate, have been studied by steady state and time resolved fluorescence spectroscopy. We found that the release of the drug from a liposome depends on the degree of penetration of bile salts. Among the three bile salts, deoxycholate was most effective in releasing the drug from the hydrocarbon core of the liposome because of its high insertion ability owing to its maximum hydrophobicity. The time resolved studies revealed that with addition of bile salt to the liposome solution, ellipticine molecules were removed from the hydrocarbon core and were entrapped in an interfacial region of liposomes by electrostatic interaction. This led to an increase in the shorter lifetime component. On the other hand, the longer hfetime component decreased because bile salts wet the hydrocarbon core of the liposome by carrying hydrogen bonded water. Entrapment of ellipticine in the interfacial region was also supported by an increase in the rotational relaxation time with addition of bile salt.
机译:通过稳态和时间分辨荧光光谱法研究了抗癌药物玫瑰树碱在二棕榈酰磷酸胆碱(DPPC)脂质体内的截留及其通过添加三种不同的胆盐即脱氧胆酸钠,螯合物和牛磺胆酸酯的释放。我们发现药物从脂质体的释放取决于胆汁盐的渗透程度。在这三种胆汁盐中,由于其最大的疏水性,脱氧胆酸盐具有很高的插入能力,因此它最能有效地从脂质体的烃核中释放出药物。时间分辨的研究表明,在脂质体溶液中加入胆汁盐后,玫瑰树碱分子从烃核中移出,并通过静电相互作用被困在脂质体的界面区域。这导致较短寿命组件的增加。另一方面,更长的时间组分减少了,因为胆汁盐通过携带氢键合的水而润湿了脂质体的烃核。玫瑰树碱在界面区域的截留也受到增加胆汁盐增加的旋转弛豫时间的支持。

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