Biology Department, College of Science, Imam Abdurrahman Bin Faisal University, Dammam, Saudi Arabia.
Basic and Applied Scientific Research Center, Dammam, Saudi Arabia.
J Basic Microbiol. 2024 Aug;64(8):e2400039. doi: 10.1002/jobm.202400039. Epub 2024 May 1.
The present in vitro and in vivo study aimed to fabricate and characterize linalool-zinc oxide nanoparticles (Lin-ZNP) and evaluate their effectiveness against Toxoplasma gondii infection in terms of inflammation, oxidative stress, and pathogenicity. Lin-ZNP was synthesized using an ethanolic solution of polyvinyl alcohol. The anti-Toxoplasma and cytotoxicity activities of Lin-ZNP were investigated, along with its effects on nitric oxide (NO) production, caspase-3 activity, and pro-inflammatory genes. After treating T. gondii-infected mice with Lin-ZNP for 14 days, the number and size of tissue cysts, antioxidant potential, pro-inflammatory cytokines, and T. gondii pathogenicity-related genes were evaluated by real-time polymerase chain reaction and Western blot analysis. The Lin-ZNP composite showed a reduced tendency with an average size of 105 nm. Lin-ZNP significantly reduced the viability of tachyzoites. The obtained selectivity index higher than 10, indicating high specificity for parasites with low cytotoxicity to normal cells. The Lin-ZNP significantly (p < 0.05) increased the production of NO, caspase-3 activity, and the expression levels of pro-inflammatory genes. Lin-ZNP significantly (p < 0.001) decreased the size and number of tissue cysts and caused a significant reduction in the level of malondialdehyde and a considerable increase (p < 0.001) in antioxidant enzymes and their expression genes. Lin-ZNP significantly downregulated both mRNA and protein expression of the inflammation-related markers associated with the TLRs/NF-κB pathway. The expression levels of the T. gondii pathogenicity-related genes were significantly downregulated (p < 0.05). The recent survey indicated that Lin-ZNP manages T. gondii infection by its antioxidant activity and inhibiting the TLRs/NF-κB pathway without toxicity in mice.
本体内外研究旨在制备和表征芳樟醇-氧化锌纳米粒子(Lin-ZNP),并评估其在炎症、氧化应激和致病性方面对弓形虫感染的有效性。Lin-ZNP 是使用聚乙醇的乙醇溶液合成的。研究了 Lin-ZNP 的抗弓形虫和细胞毒性活性,以及其对一氧化氮(NO)产生、caspase-3 活性和促炎基因的影响。用 Lin-ZNP 治疗感染弓形虫的小鼠 14 天后,通过实时聚合酶链反应和 Western blot 分析评估组织囊肿的数量和大小、抗氧化潜力、促炎细胞因子和与弓形虫致病性相关的基因。Lin-ZNP 复合物表现出减小的趋势,平均粒径为 105nm。Lin-ZNP 显著降低速殖子的活力。获得的选择性指数高于 10,表明对寄生虫具有高特异性,对正常细胞的细胞毒性低。Lin-ZNP 显著(p<0.05)增加了 NO 的产生、caspase-3 活性和促炎基因的表达水平。Lin-ZNP 显著(p<0.001)降低了组织囊肿的大小和数量,并导致丙二醛水平显著降低(p<0.001),抗氧化酶及其表达基因显著增加(p<0.001)。Lin-ZNP 显著下调了与 TLRs/NF-κB 途径相关的炎症相关标志物的 mRNA 和蛋白表达。弓形虫致病性相关基因的表达水平显著下调(p<0.05)。最近的调查表明,Lin-ZNP 通过其抗氧化活性和抑制 TLRs/NF-κB 途径来管理弓形虫感染,而在小鼠中没有毒性。