Developing New Polymeric Nanoparticles for Controlled Release of Quercetin as an Alternative Material Protecting From COVID-19

Ceren Türkcan
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Abstract

Research of drugs for COVID-19, the most striking studies include the ACE-2 receptors used by COVID-19 by binding to the lung cells for entry. In the researchers conducted, it was determined by the results of the docking studies performed on the agents that block the receptor by binding to the receptor, such as COVID-19, several molecules have the interest to bind to this receptor. One of these numbered molecules is herbal flavanoid called "Quercetin". In this study, quercetin imprinted polymeric materials were designed, synthesized and characterized. For synthesis, emulsion polymerization technique was used for obtanining quercetin imprinted polymeric materials. SEM and Zeta-Size analysis were used as preliminary characterization. After a week release experiment, quercetin imprinted polymeric nanoparticles were released % 14. In the light of these results, it is predicted that quercetin printed polymeric material can be used for protection from COVID-19 and treatment of COVID-19 on the inhaler route.
新型槲皮素缓释聚合物纳米颗粒的研究
在针对COVID-19的药物研究中,最引人注目的研究包括COVID-19通过与肺细胞结合进入的ACE-2受体。在研究人员进行的对接研究中,对通过与受体结合来阻断受体的药物(如COVID-19)进行的对接研究结果确定,有几个分子有兴趣与该受体结合。这些编号的分子之一是被称为“槲皮素”的草药类黄酮。本研究设计、合成并表征了槲皮素印迹聚合物材料。在合成方面,采用乳液聚合技术制备槲皮素印迹聚合物材料。SEM和Zeta-Size分析作为初步表征。经过一周的释放实验,槲皮素印迹聚合物纳米颗粒释放率为% 14。综合以上结果,预测槲皮素打印聚合物材料可用于新型冠状病毒的防护和吸入途径的治疗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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