青蒿素
SNP公司
抗寄生虫的
材料科学
溶解度
抗菌活性
抗生素
抗菌
细菌
水溶液
微生物学
纳米技术
组合化学
化学
单核苷酸多态性
恶性疟原虫
生物
生物化学
有机化学
医学
疟疾
病理
基因型
基因
免疫学
遗传学
作者
Haiying Cui,Xiaochen Chen,Mei Bai,Dong Han,Lin Lin,Mingdong Dong
标识
DOI:10.1021/acsami.9b15124
摘要
Artemisinin has excellent antimalarial, antiparasitic, and antibacterial activities; however, the poor water solubility of artemisinin crystal limits their application in antibiosis. Herein, artemisinin crystal was first composited with silica nanoparticles (SNPs) to form an artemisinin@silica nanoparticle (A@SNP). After treating with nitrogen plasma, the aqueous solubility of plasma-treated A@SNP (A@SNP-p) approaches 42.26%, which is possibly attributed to the exposure of hydrophilic groups such as -OH groups on the SNPs during the plasma process. Compared with the pristine A@SNP, the antibacterial activity of A@SNP-p against both Gram-positive and Gram-negative strains is further enhanced, and its bactericidal rate against both strains exceeded 6 log CFU/mL (>99.9999%), which is contributed by the increased water solubility of the A@SNP-p. A possible multipathway antibacterial mechanism of A@SNP was proposed and preliminarily proved by the changes of intracellular materials of bacteria and the inhibition of bacterial metabolism processes, including the HMP pathway in Gram-negative strain and EMP pathway in Gram-positive strain, after treating with A@SNP-p. These findings from the present work will provide a new view for fabricating artemisinin-based materials as antibiotics.
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