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首页> 外文期刊>Asian Pacific Journal of Cancer Prevention >Formulation and Cytotoxicity of Ribosome-Inactivating Protein Mirabilis Jalapa L. Nanoparticles Using Alginate-Low Viscosity Chitosan Conjugated with Anti-Epcam Antibodies in the T47D Breast Cancer Cell Line
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Formulation and Cytotoxicity of Ribosome-Inactivating Protein Mirabilis Jalapa L. Nanoparticles Using Alginate-Low Viscosity Chitosan Conjugated with Anti-Epcam Antibodies in the T47D Breast Cancer Cell Line

机译:使用与T47D乳腺癌细胞系中的藻酸盐 - 低粘度壳聚糖与抗EPCAM抗体缀合的藻酸盐 - 低粘度壳聚糖的制剂和细胞毒性纳米粒子纳米粒子

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Ribosome-inactivating protein (RIP) from Mirabilis jalapa L. leaves has cytotoxic effects on breast cancer cell lines but is less toxic towards normal cells. However, it can easily be degraded after administration so it needs to be formulated into nanoparticles to increase its resistance to enzymatic degradation. The objectives of this study were to develop a protein extract of M. jalapa L. leaves (RIP-MJ) incorporated into nanoparticles conjugated with Anti-EpCAM antibodies, and to determine its cytotoxicity and selectivity in the T47D breast cancer cell line. RIP-MJ was extracted from red-flowered M. jalapa L. leaves. Nanoparticles were formulated based on polyelectrolyte complexation using low viscosity chitosan and alginate, then chemically conjugated with anti-EpCAM antibody using EDAC based on carbodiimide reaction. RIP-MJ nanoparticles were characterised for the particle size, polydispersity index, zeta potential, particle morphology, and entrapment efficiency. The cytotoxicity of RIP-MJ nanoparticles against T47D and Vero cells was then determined with MTT assay. The optimal formula of RIP-MJ nanoparticles was obtained at the concentration of RIP-MJ, low viscosity chitosan and alginate respectively 0.05%, 1%, and 0.4% (m/v). RIP-MJ nanoparticles are hexagonal with high entrapment efficiency of 98.6%, average size of 130.7 nm, polydispersity index of 0.380 and zeta potential +26.33 mV. The values of both anti-EpCAM-conjugated and non-conjugated RIP-MJ nanoparticles for T47D cells (13.3 and ) were lower than for Vero cells (27.8 and ). The values of conjugated and non-conjugated RIP-MJ for both cells were much lower than values of non-formulated RIP-MJ ( ).
机译:来自Mirabilis Jalapa L.叶子的核糖体灭活蛋白(RIP)对乳腺癌细胞系具有细胞毒性作用,但对正常细胞毒性较小。然而,它可以容易地在给药后降解,因此需要将其配制成纳米颗粒以增加其对酶促降解的抵抗力。本研究的目的是开发掺入与抗EPCAM抗体缀合的纳米颗粒中的M. JALAPA L.的蛋白质提取物,并在T47D乳腺癌细胞系中确定其细胞毒性和选择性。 RIP-MJ从红花的M. jalapa L.叶中提取。基于使用低粘度壳聚糖和藻酸盐的聚电解质络合配制纳米颗粒,然后使用EDAC基于碳二酰亚胺反应将与抗EPCAM抗体化学缀合。 RIP-MJ纳米粒子的特征在于粒度,多分散指数,Zeta电位,颗粒形态和夹带效率。然后用MTT测定测定RIP-MJ纳米颗粒对T47D和VERO细胞的细胞毒性。 RIP-MJ纳米粒子的最佳配方在RIP-MJ,低粘度壳聚糖和藻酸盐中获得,分别为0.05%,1%和0.4%(M / V)。 RIP-MJ纳米粒子是六边形,夹层效率高98.6%,平均尺寸为130.7nm,多分散指数为0.380,Zeta电位+26.33mV。用于T47D细胞(13.3和)的抗EPCAM缀合和非共轭RIP-MJ纳米颗粒的值低于Vero细胞(27.8和)。用于两个细胞的共轭和非共轭RIP-MJ的值远低于非配制裂口-MJ(>)的值。

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