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Polyanionic carbohydrate doxorubicin–dextran nanocomplex as a delivery system for anticancer drugs: in vitro analysis and evaluations

机译:聚阴离子碳水化合物阿霉素-葡聚糖纳米复合物作为抗癌药物的递送系统:体外分析和评估

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摘要

This study deals with the preparation and investigation of a nanoscale delivery system for the anticancer drug doxorubicin (DOX) using its complexation with polyanionic carbohydrate dextran sulfate (DS). Dynamic light scattering, SEM, and zeta potential determination were used to characterize nanocomplexes. DOX-DS complexation was studied in the presence of ethanol as a hydrogen-bond disrupting agent, NaCl as an electrostatic shielding agent, and chitosan as a positively charged polymer. Thermodynamics of DOX-DS interaction was studied using isothermal titration calorimetry (ITC). A dialysis method was applied to investigate the release profile of DOX from DOX-DS nanocomplexes. Spherical and smooth-surfaced DOX-DS nanocomplexes (250–500 nm) with negative zeta potential were formed at a DS/DOX (w/w) ratio of 0.4–0.6, with over 90% drug encapsulation efficiency. DOX when complexed with DS showed lower fluorescence emission and 480 nm absorbance plus a 15 nm bathometric shift in its visible absorbance spectrum. Electrostatic hydrogen bonding and π-π stacking interactions are the main contributing interactions in DOX-DS complexation. Thermal analysis of DOX-DS complexation by ITC revealed that each DOX molecule binds with 3 DS glycosyl monomers. Drug release profile of nanocomplexes showed a fast DOX release followed by a slow sustained release, leading to release of 32% of entrapped DOX within 15 days. DOX-DS nanocomplexes may serve as a drug delivery system with efficient drug encapsulation and also may be taken into consideration in designing DOX controlled-release systems.
机译:这项研究涉及抗癌药物阿霉素(DOX)与聚阴离子碳水化合物葡聚糖硫酸盐(DS)的络合,其纳米级递送系统的制备和研究。动态光散射,SEM和zeta电位测定用于表征纳米复合物。在乙醇作为氢键破坏剂,NaCl作为静电屏蔽剂以及壳聚糖作为带正电的聚合物存在下,研究了DOX-DS络合物。使用等温滴定热法(ITC)研究了DOX-DS相互作用的热力学。采用透析方法研究DOX从DOX-DS纳米复合物中的释放曲线。球形和光滑表面的DOX-DS纳米复合物(250–500 nm)具有zeta负电势,DS / DOX(w / w)比率为0.4–0.6,形成了超过90%的药物封装效率。与DS配合使用时,DOX显示出较低的荧光发射和480 nm吸光度,加上可见光吸收光谱的15 nm水深位移。静电氢键和π-π堆积相互作用是DOX-DS络合的主要贡献相互作用。通过ITC对DOX-DS络合进行的热分析表明,每个DOX分子均与3个DS糖基单体结合。纳米复合物的药物释放曲线显示DOX快速释放,然后缓慢持续释放,导致15天之内32%的被困DOX释放。 DOX-DS纳米复合物可以用作具有有效药物封装的药物输送系统,并且在设计DOX控释系统时也应予以考虑。

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