首页> 外文期刊>Toxicon: An International Journal Devoted to the Exchange of Knowledge on the Poisons Derived from Animals, Plants and Microorganisms >Cytotoxicity of Lachesis muta muta snake (bushmaster) venom and its purified basic phospholipase A2 (LmTX-I) in cultured cells
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Cytotoxicity of Lachesis muta muta snake (bushmaster) venom and its purified basic phospholipase A2 (LmTX-I) in cultured cells

机译:Lachesis muta muta蛇(bushmaster)毒液及其纯化的碱性磷脂酶A2(LmTX-I)在培养细胞中的细胞毒性

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摘要

Human envenoming by Lachesis muta muta venom, although infrequent, is rather severe, being characterized by pronounced local tissue damage and systemic dysfunctions. Studies on the pharmacological actions of L. m. muta venom are relatively scant and the direct actions of the crude venom and its purified phospholipase A(2) (PLA(2)) have not been addressed using in vitro models. In this work, we investigated the cytotoxicity of L. m. muta venom and its purified PLA(2) isoform LmTX-I in cultured Madin-Darby canine kidney (MDCK) and in a skeletal muscle (C2C12) cell lines. As revealed by neutral red dye uptake assay, the crude venom (10 or 100 microg/ml) induced a significant decrease in cell viability of MDCK cells. LmTX-I at the concentrations tested (70-270 microg/ml or 5-20 microM) displayed no cytotoxicity in both MDCK and C2C12 cell lines. Morphometric analysis of Feulgen nuclear reaction revealed a significant increase in chromatin condensation (pyknosis), apparent reduction in the number of mitotic nuclei and nuclear fragmentation of some MDCK cells after incubation with L. m. muta venom. Monolayer exposure to crude venom resulted in morphological changes as assessed by scanning electron microscopy. The staining with TRITC-labelled phalloidin showed a marked disarray of the actin stress fiber following L. m. muta venom exposure. In contrast, LmTX-I had no effect on nucleus and cell morphologies as well as on stress fiber organization. These results indicate that L. m. muta venom exerts toxic effects on cultured MDCK cells. The LmTX-I probably does not contribute per se to the direct venom cytotoxicity, these effects are mediated by metalloproteinases/disintegrins and other components of the venom.
机译:Lachesis muta muta毒液对人的毒害虽然很少见,但相当严重,其特征是明显的局部组织损伤和系统功能障碍。 L. m。的药理作用研究突变毒液相对较少,未使用体外模型解决粗毒液及其纯化的磷脂酶A(2)(PLA(2))的直接作用。在这项工作中,我们调查了L. m。的细胞毒性。突变毒液及其纯化的PLA(2)同工型LmTX-1在培养的Madin-Darby犬肾(MDCK)和骨骼肌(C2C12)细胞系中。如通过中性红色染料摄取测定所揭示的,粗毒液(10或100微克/毫升)诱导MDCK细胞的细胞活力显着降低。在测试浓度(70-270 microg / ml或5-20 microM)下的LmTX-1在MDCK和C2C12细胞系中均未显示细胞毒性。 Feulgen核反应的形态计量学分析显示,与L. m。孵育后,染色质凝结(浓缩)明显增加,有丝分裂核数明显减少,某些MDCK细胞的核碎裂。突变毒液。通过扫描电子显微镜评估,单层暴露于粗毒液会导致形态变化。用TRITC标记的鬼笔环肽染色显示,L.m。之后肌动蛋白应激纤维明显失调。突变毒液暴露。相反,LmTX-1对细胞核和细胞形态以及应激纤维的组织没有影响。这些结果表明L.m。突变毒液对培养的MDCK细胞产生毒性作用。 LmTX-1可能本身并不对直接毒液产生细胞毒性,这些作用是由金属蛋白酶/解整合素和毒液的其他成分介导的。

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