Das Anupam, Adhikari Chandan, Chakraborty Anjan
Discipline of Chemistry, Indian Institute of Technology Indore , Indore, Madhya Pradesh 452020, India.
J Phys Chem B. 2017 Mar 2;121(8):1854-1865. doi: 10.1021/acs.jpcb.6b11443. Epub 2017 Feb 22.
In this article, we investigate the influence of different metal ions (Ca, Mg, and Zn) on binding of an anticancer drug doxorubicin (DOX) to DMPC bilayer and lipoplex mediated deintercalation of DOX from DOX-DNA complex. Our study reveals that lipid bilayer in the presence of different metal ions displays much higher binding affinity toward DOX than bare lipid bilayer does. Further, this affinity for a particular metal ion increases linearly with metal ion concentration. The steady state and time-resolved fluorescence studies reveal that binding of DOX with lipid bilayer in the presence of different metal ions varies in the order of Ca> Mg> Zn. The rotational relaxation of DOX in the presence of different metal ions takes place in the same order. We explain these phenomena in the light of alteration of the physical properties brought about by metal ions. Moreover, we find that binding pattern of metal ions with lipid head groups influences the intake of DOX in lipid bilayer. We exploit the binding of DOX with bilayer to study the deintercalation of DOX from DOX-DNA complex. We observe that with increase in metal ion concentration the deintercalation increases. Among all metal ions, Ca appears to be most effective in deintercalation compared to other metal ions. The time-resolved fluorescence anisotropy and circular dichroism measurements indicate that in the presence of Ca, lipid bilayer offer strongest interaction with DNA while the same is weakest for Zn. This explains the highest percentage of deintercalation of DOX from drug-DNA complex in the presence of Ca. Overall the present study demonstrates a new strategy that binding of drug molecules with lipid bilayer and deintercalation of the same from drug-DNA complex can be tuned by modulation of lipid bilayer with different metal ions and their concentration.
在本文中,我们研究了不同金属离子(钙、镁和锌)对抗癌药物阿霉素(DOX)与二肉豆蔻酰磷脂酰胆碱(DMPC)双层膜结合以及脂质体介导的DOX从DOX - DNA复合物中脱嵌的影响。我们的研究表明,在不同金属离子存在下的脂质双层膜对DOX的结合亲和力比裸露的脂质双层膜高得多。此外,对特定金属离子的这种亲和力随金属离子浓度呈线性增加。稳态和时间分辨荧光研究表明,在不同金属离子存在下DOX与脂质双层膜的结合顺序为钙>镁>锌。在不同金属离子存在下DOX的旋转弛豫也按相同顺序发生。我们根据金属离子引起的物理性质变化来解释这些现象。此外,我们发现金属离子与脂质头部基团的结合模式会影响DOX在脂质双层膜中的摄取。我们利用DOX与双层膜的结合来研究DOX从DOX - DNA复合物中的脱嵌。我们观察到随着金属离子浓度的增加,脱嵌作用增强。在所有金属离子中,与其他金属离子相比,钙在脱嵌方面似乎最有效。时间分辨荧光各向异性和圆二色性测量表明,在钙存在下,脂质双层膜与DNA的相互作用最强,而在锌存在下则最弱。这解释了在钙存在下DOX从药物 - DNA复合物中脱嵌的百分比最高。总体而言,本研究展示了一种新策略,即通过用不同金属离子及其浓度调节脂质双层膜,可以调节药物分子与脂质双层膜的结合以及药物从药物 - DNA复合物中的脱嵌。