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Soluble telmisartan bearing poly (ethylene glycol) conjugated chitosan nanoparticles augmented drug delivery, cytotoxicity, apoptosis and cellular uptake in human cervical cancer cells

机译:可溶性Telmisartan轴承聚(乙二醇)共轭壳聚糖纳米粒子增强药物递送,细胞毒性,凋亡和人宫颈癌细胞中的细胞吸收

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Soluble telmisartan and telmisartan were loaded in to poly (ethylene-glycol) grafted chitosan nanoparticles (S-TEL-PEG-CNPs and TEL-PEG-CNPs) for targeting cervical cancer through non-invasive, intravaginal route. The mean particle size of S-TEL-PEG-CNPs was measured to be 23.4 +/- 5.9-nm significantly (P < 0.05) higher than 16.2 +/- 3.2-nm of TEL-PEG-CNPs. In contrast, the zeta-potential (-21.5 +/- 4.6-mV) of S-TEL-PEG-CNPs was insignificantly (P > 0.05) different from-23.8 +/- 3.7-mV of TEL-PEG-CNPs. In addition, S-TEL-PEG-CNPs exhibited higher percent mucoadhesiveness (40.2%) in comparison (P < 0.05) to 31.4% of TEL-PEG-CNPs, although it was lower than CNPs (100%). S-TEL-PEG-CNPs displayed significantly (P < 0.01) higher dissolution of drug, 92.5% in comparison to 31.6% from TEL-PEG-CNPs up to 24 h. Furthermore, S-TEL-PEG-CNPs exhibited superior cytotoxicity, apoptosis and cellular uptake, analyzed in human cervical cancer, HeLa cells. The IC50 of S-TEL-PEG-CNPs was measured to be 223-mu m significantly (P < 0.05) lower than 40.1-mu M of TEL-PEG-CNPs. S-TEL-PEG-CNPs induced higher extent of apoptosis (P< 0.05) in HeLa cells as compared to TEL-PEG-CNPs, owing to higher diffusion of drug across biological membrane. Finally, quantitative and qualitative cellular uptake assay Confirmed the greater endocytosis of S-TEL-PEG-CNPs in HeLa cells due to diffusion, amorphization, hydrophilicity, and submicron size particularly, below 100 nm. In conclusion, S-TEL-PEG-CNPs warrant further in vivo tumour regression study to scale up the technology for clinical translation. (C) 2016 Elsevier B.V. All rights reserved.
机译:可溶性Telmisartan和Telmisartan加载到聚(乙二醇)接枝的壳聚糖纳米粒子(S-Tel-PEG-CNPS和TEL-PEG-CNP)中,用于通过非侵入性的阴道途径靶向宫颈癌。测量S-Tel-PEG-CNP的平均粒度明显为23.4 +/- 5.9-nm(P <0.05),高于TEL-PEG-CNPS的16.2 +/- 3.2-nm。相比之下,S-Tel-PEG-CNP的Zeta-Poly(-21.5 +/- 4.6mV)不显着(p> 0.05),不同于-33.8 +/- 3.7mV的Tel-PEG-CNP。此外,S-Tel-PEG-CNPS相比表现出更高的粘膜粘附性(40.2%)(P <0.05)至31.4%的TEL-PEG-CNPS,尽管它低于CNPS(100%)。 S-Tel-PEG-CNP显着(p <0.01)药物溶解度高,92.5%,比TEL-PEG-CNPS高达24小时的31.6%。此外,S-Tel-PEG-CNPS表现出优异的细胞毒性,细胞凋亡和蜂窝摄取,分析在人宫颈癌,HELA细胞中。测量S-Tel-PEG-CNPS的IC 50明显为223-mu m(p <0.05),低于40.1-mu m的TEL-PEG-CNPS。由于药物跨越生物膜的较高扩散,S-Tel-PEG-CNPS在HeLa细胞中诱导了HeLa细胞中的细胞凋亡(P <0.05)。最后,由于扩散,非晶化,亲水性和亚微米尺寸,定量和定性细胞摄取测定证实了HeLa细胞中的S-Tel-PEG-CNP的更大内吞作用,特别是在100nm以下。总之,S-Tel-PEG-CNPS进一步担任体内肿瘤回归研究,从而扩大了临床翻译技术。 (c)2016年Elsevier B.v.保留所有权利。

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