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水培印楝叶提取物介导的基于绿色合成的硝酸银纳米粒子的抗疟原虫活性。

Anti-plasmodial activity of aqueous neem leaf extract mediated green synthesis-based silver nitrate nanoparticles.

机构信息

Institute of Research in Molecular Medicine, (INFORMM), Health Campus Universiti Sains Malaysia (USM), Kelantan, Malaysia.

Natural Products Division, Forest Research Institute Malaysia, (FRIM), Kepong, Malaysia.

出版信息

Prep Biochem Biotechnol. 2022;52(1):99-107. doi: 10.1080/10826068.2021.1913602. Epub 2021 Apr 23.

Abstract

The objective of this study is to synthesize neem-silver nitrate nanoparticles (neem-AgNPs) using aqueous extracts of A. Juss for malaria therapy. Neem leaves collected from FRIM Malaysia were authenticated and extracted using Soxhlet extraction method. The extract was introduced to 1 mM of silver nitrate solution for neem-AgNPs synthesis. Synthesized AgNPs were further characterized by ultraviolet-visible spectroscopy and the electron-scanning microscopy. Meanwhile, for the anti-plasmodial activity of the neem-AgNPs, two lab-adapted strains, 3D7 (chloroquine-sensitive), and W2 (chloroquine-resistant) were tested. Red blood cells hemolysis was monitored to observe the effects of neem-AgNPs on normal and parasitized red blood cells. The synthesized neem-AgNPs were spherical in shape and showed a diameter range from 31-43 nm. When compared to aqueous neem leaves extract, the half inhibitory concentration (IC) of the synthesized neem-AgNPs showed a four-fold IC decrease against both parasite strains with IC value of 40.920 µg/mL to 8.815 µg/mL for 3D7, and IC value of 98.770 µg/mL to 23.110 µg/mL on W2 strain. The hemolysis assay indicates that the synthesized neem-AgNPs and aqueous extract alone do not have hemolysis activity against normal and parasitized red blood cells. Therefore, this study shows the synthesized neem-AgNPs has a great potential to be used for malaria therapy.

摘要

本研究旨在利用印楝叶的水提物合成银纳米粒子(neem-AgNPs),以用于疟疾治疗。从马来西亚 FRIM 采集的印楝叶经过鉴定后,使用索氏提取法进行提取。将提取物加入 1mM 的硝酸银溶液中以合成 neem-AgNPs。通过紫外-可见光谱和电子扫描显微镜进一步对合成的 AgNPs 进行了表征。同时,为了研究 neem-AgNPs 的抗疟原虫活性,我们测试了两种实验室适应株,即 3D7(氯喹敏感株)和 W2(氯喹耐药株)。通过监测红细胞溶血来观察 neem-AgNPs 对正常和寄生红细胞的影响。合成的 neem-AgNPs 呈球形,粒径范围为 31-43nm。与水提印楝叶提取物相比,合成的 neem-AgNPs 对两种寄生虫株的半抑制浓度(IC)均降低了四倍,对 3D7 株的 IC 值为 40.920µg/mL 至 8.815µg/mL,对 W2 株的 IC 值为 98.770µg/mL 至 23.110µg/mL。溶血试验表明,合成的 neem-AgNPs 和水提物单独使用对正常和寄生红细胞均无溶血活性。因此,本研究表明合成的 neem-AgNPs 具有很大的潜力可用于疟疾治疗。

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