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 >Crotoxin from Crotalus durissus terrificus venom: In vitro cytotoxic activity of a heterodimeric phospholipase A(2) on human cancer-derived cell lines
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Crotoxin from Crotalus durissus terrificus venom: In vitro cytotoxic activity of a heterodimeric phospholipase A(2) on human cancer-derived cell lines

机译:来自Crotalus durissus Treaturevom的曲棍蛋毒:在人癌症衍生细胞系上的异二聚体磷脂酶A(2)的体外细胞毒性活性

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摘要

Crotoxin (CTX), a heterodimeric phospholipase present in venom of snakes of the genus Crotalus, has demonstrated a broad spectrum of pharmacological properties, such as antimicrobial, hemostatic, and antitumoral. However, the precise mechanism of its cytotoxicity and antitumoral properties remains to be determined. Therefore, in the present study, we isolated crotoxin CTX) through two steps DEAE-Sepharose and Heparin-Sepharose FF chromatography. The C-terminal sequence of the A- and B-chain protein fragment was determined by LC-MS/MS mass spectrometry, which showed 100% identity to crotoxin structure. In order to investigate its cytotoxic effects, we demonstrated that the F1 CTX fraction at 0-30 mu g/mL concentrations for 72 h presented a heterogeneous response profile on nine human cancer-derived cell lines from four tumor types (pancreatic, esophagus, cervical cancer, and glioma). The glioma (GAMG and HCB151) and pancreatic (PSN-1 and PANC-1) cancer cells showed a higher sensitivity with IC50 of & 0.5, 4.1, 0.7 and & 0.5 mu g/mL, respectively. Conversely, F1 CTX does not reduce the viability of normal cells. On the other hand, cervical (SiHa) and esophagus (KYSE270) cancer cell lines presented higher resistance, with IC50 higher than 30.2 and 8.7 mu g/mL, respectively. Moreover, F1 CTX did not affect cell cycle distribution under the conditions evaluated and seems to be more cytotoxic than cytostatic. The pro-apoptotic effect of F1 CTX treatment was demonstrated in glioma (HCB151) cell line. In addition, crotoxin revealed a potential to initiate cell responses such as DNA damage in glioma (HCB151) and pancreatic cancer by H2AX activity induction. Conversely, F1 CTX does not reduce the viability of normal cells. Importantly, the comparison of F1 CTX effect with standard chemotherapeutic agents demonstrated a greater cytotoxic potential in the majority of tumor types (glioma, pancreatic, and cervical cancer). On the other hand, F1 CTX was less cytotoxic in esophageal cell lines compared to the gemcitabine agent used in clinical practice. Therefore, this work showed that F1 CTX has a cytotoxic activity and pro-apoptotic potential, contributing to the knowledge about the F1 crotoxin properties as well as its possible use in cancer research, particularly in glioma and pancreatic cancer cell lines.
机译:曲折(CTX),克罗塔属蛇毒液中存在的异二聚体磷脂酶,已经证明了广谱的药理学性质,例如抗微生物,止血和抗肿瘤。然而,其细胞毒性和抗肿瘤性能的精确机制仍有待确定。因此,在本研究中,我们将Crotoxin CTX分离)通过两个步骤DEAE-Sepharose和肝素 - 琼脂糖FF色谱。通过LC-MS / MS质谱法测定A-和B链蛋白片段的C-末端序列,其显示到曲曲蛋白结构100%同一性。为了研究其细胞毒性效果,我们证明了0-30μg/ ml浓度为72小时的F1 CTX级分,从四种肿瘤类型(胰腺,食道,颈椎癌癌症和胶质瘤)。胶质瘤(GAMG和HCB151)和胰腺(PSN-1和PANC-1)癌细胞显示出与IC50的浓度较高的& LT; 0.5,4.1,0.7和& 0.5μg/ ml分别。相反,F1 CTX不会降低正常细胞的可行性。另一方面,宫颈(SiHa)和食道(Kyse270)癌细胞系呈现较高的电阻,IC50分别高于30.2和8.7μg/ ml。此外,F1 CTX在评估的条件下没有影响细胞周期分布,似乎比细胞毒性更具细胞毒性。 F1 CTX处理的​​促凋亡效应在胶质瘤(HCB151)细胞系中进行了证明。此外,CrOTOxIN揭示了通过H2AX活性诱导引发胶质瘤(HCB151)和胰腺癌中DNA损伤的细胞反应的潜力。相反,F1 CTX不会降低正常细胞的可行性。重要的是,与标准化学治疗剂的F1 CTX效应的比较在大多数肿瘤类型(胶质瘤,胰腺和宫颈癌)中表现出更大的细胞毒性潜力。另一方面,与临床实践中使用的吉西他滨代理相比,F1 CTX在食管细胞系中的细胞毒性较少。因此,这项工作表明,F1 CTX具有细胞毒性活性和促凋亡势,有助于关于F1曲霉素性能的知识以及其在癌症研究中可能使用,特别是在胶质瘤和胰腺癌细胞中。

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