Anti-parasitic effect on Toxoplasma gondii induced by a spider peptide lycosin-I

弓形虫 生物 弓形虫病 MTT法 分子生物学 台盼蓝 体外 体内 病毒学 免疫学 抗体 生物化学 生物技术
作者
Yaqin Tang,Shengjie Hou,Xianyao Li,Mengqi Wu,Bin-Bin Ma,Zheng Wang,Jinying Jiang,Meichun Deng,Zhigui Duan,Xing Tang,Yuan Liu,Wen-Hua Wang,Xiaoqing Han,Liping Jiang
出处
期刊:Experimental Parasitology [Elsevier]
卷期号:198: 17-25 被引量:24
标识
DOI:10.1016/j.exppara.2019.01.009
摘要

Toxoplasmosis is a widely distributed parasitic protozoan disease, caused by Toxoplasma gondii (T. gondii). High prevalence of toxoplasmosis and limitations of conventional treatments lead to a search for new therapeutic drugs. Lycosin-I is a linear peptide, derived from the venom of the spider Lycosa singoriensis. The aim of the present study was to determine the anti-parasitic effect of lycosin-Ι against T. gondii. In vitro, the anti-T. gondii activities of lycosin-Ι were evaluated by MTT assay, trypan blue exclusion assay, cell counting assay and plaque assay. Cytokines of IL-6 and IL-8 were measured by quantitative PCR. In addition, the structures of tachyzoites treated with lycosin-Ι were also observed by scanning and transmission electron microscopy. In vivo, mice were challenged with parasites treated by lycosin-I. The results revealed that lycosin-Ι had shown a significant ability to inhibit T. gondii invasion and proliferation. Cytokines of IL-6 and IL-8 were reduced by lycosin-Ι at transcription level in human foreskin fibroblast (HFF) cells infected with T. gondii tachyzoites, but they were increased compared to non-infected cells. For tachyzoites, lycosin-Ι induced their cell membrane alterations with formation of invaginations, some of them appeared to be vacuolated in their cytoplasm. Moreover, lycosin-Ι had prolonged the survival time of mice by controlling T. gondii proliferation. In conclusion, our present study provides the first evidence for anti-T. gondii by using the spider peptide lycosin-Ι. These findings suggest that lycosin-Ι is a potential alternative agent for the treatment of toxoplasmosis.

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