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跨高加索鼻角蝰蛇(Vipera ammodytes transcaucasiana)毒液的纳米二氧化硅的细胞毒性对 U87MG 和 SHSY5Y 神经癌细胞的影响。

Cytotoxicity of Silica Nanoparticles with Transcaucasian Nose-Horned Viper, Vipera ammodytes transcaucasiana, Venom on U87MG and SHSY5Y Neuronal Cancer Cells.

机构信息

Faculty of Engineering, Bioengineering Department, Bornova, 35100, Izmir, Turkey.

Zoology Section, Department of Biology, Faculty of Science, Ege University, Bornova, 35100, Izmir, Turkey.

出版信息

Appl Biochem Biotechnol. 2018 Oct;186(2):350-357. doi: 10.1007/s12010-018-2742-2. Epub 2018 Apr 3.

Abstract

Highly bioactive compounds of the snake venom make them particular sources for anticancer agent development. They contain very rich peptide-protein structures. Therefore, they are very susceptible to environmental conditions such as temperature, pH, and light. In this study, Vipera ammodytes transcaucasiana venom was encapsulated in PAMAM-G4 dendrimer by sol-gel method in order to prevent degradation of venom contents from the environmental conditions. For this purpose, nanoparticles were prepared by sol-gel methodology and SEM analyses were performed. U87MG and SHSY5Y neuronal cancer cell lines were treated with different concentrations of venom-containing nanoparticles and cytotoxicity was determined by MTT assay. IC values of nanoparticles with snake venom were calculated as 37.24 and 44.64 μg/ml for U87MG and SHSY5Y cells, respectively. The IC values of nanoparticles with snake venom were calculated as 10.07 and 7.9 μg/ml for U87MG and SHSY5Y cells, respectively. As a result, nanoparticles with V. a. transcaucasiana venom showed remarkably high cytotoxicity. Encapsulation efficiency of nanoparticles with 1 mg/ml snake venom was determined as %67 via BCA™ protein analysis. In conclusion, this method is found to be convenient and useful for encapsulating snake venom as well as being suitable for drug delivery systems.

摘要

蛇毒中的高生物活性化合物使其成为抗癌药物开发的特殊来源。它们含有非常丰富的肽 - 蛋白质结构。因此,它们非常容易受到环境条件的影响,如温度、pH 值和光照。在这项研究中,通过溶胶 - 凝胶法将高加索蝮蛇毒包封在 PAMAM-G4 树枝状大分子中,以防止毒液内容物因环境条件而降解。为此,通过溶胶 - 凝胶法制备了纳米粒子,并进行了 SEM 分析。用不同浓度的含蛇毒纳米粒子处理 U87MG 和 SHSY5Y 神经癌细胞系,并通过 MTT 测定法测定细胞毒性。含蛇毒纳米粒子的 IC 值分别为 37.24 和 44.64μg/ml 用于 U87MG 和 SHSY5Y 细胞。含蛇毒纳米粒子的 IC 值分别为 10.07 和 7.9μg/ml 用于 U87MG 和 SHSY5Y 细胞。结果表明,含 V. a. transcaucasiana 毒液的纳米粒子表现出显著的高细胞毒性。通过 BCA™蛋白分析,确定 1mg/ml 蛇毒液的纳米粒子包封效率为 %67。总之,该方法被发现既方便又可用于包封蛇毒,也适合药物传递系统。

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