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Mitochondrial dysfunction mediated apoptosis of HT-29 cells through CS-PAC-AgNPs and investigation of genotoxic effects in zebra (Danio rerio) fish model for drug delivery

机译:线粒体功能障碍介导HT-29细胞的凋亡通过CS-PAC-AGNP和Zebra(Danio Rerio)鱼模型的毒素毒性作用调查

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摘要

The present study reports the validation of cancer nanotherapy using proanthocyanidin (PAC). Nowadays, in vitro and in vivo deliveries of nanoparticle (NPs) drugs have been paid more attention, intensively. Moreover, the current chemotherapeutic drugs have few first rate drawbacks including lack of specificity and requirement of excessive drug doses. To overcome this problem of chemotherapy, the attainment of high drug loading in combination with degradable polymer nanoparticles (for instance,chitosan) is a trending research in cancer biology. Hence, in this study, the synthesized PAC-AgNPs were successfully crosslinked with chitosan nanoparticles (CS-PAC-AgNPs), which were found to be spherical or polygonal in shape with a median size of 70.68 nm and 52.16 nm as observed by FTIR, FESEM and TEM analysis; thus, being suitable for drug delivery. CS-PAC-AgNPs were taken up via endocytosis by cancer cells and enabled the release cytochrome-C from mitochondria, followed by dysregulation of anti-apoptotic protein Bcl2 family, inducing the apoptotic mediated activation of caspase 9 and 3. To identify the genotoxicity of the synthesized CS-PAC-AgNPs, the mortality, hatching rate, malformation and abnormalities of embryo/larvae of the vertebrate zebra fish model (Danio rerio) were observed in a dose-time-dependent manner. This improved cancer nanotherapy can thus be utilized as a novel nanocombination for inducing apoptosis in vitro and in vivo. Keywords: Proanthocyanidin, Characterization, Western blotting, in vivo (zebra fish) model
机译:本研究中报道的癌症纳米治疗的使用的原花色素(PAC)的验证。如今,在体外和纳米粒子的体内交付(NPS)药物已经被人们所重视,深入。此外,目前的化疗药物有几个一流的缺点,包括缺乏特异性的和过度的药物剂量的要求。为了克服化疗这个问题,高载药量的组合的实现与可降解的聚合物纳米颗粒(例如,脱乙酰壳多糖)是在癌症生物学研究趋势。因此,在该研究中,将合成的PAC-的AgNPs成功交联的壳聚糖纳米颗粒(CS-PAC-的AgNPs),其被发现通过FTIR作为观察到的形状为球形或多边形与70.68 nm和52.16处的中值粒径, FESEM和TEM分析;因此,适合用于药物递送。 CS-PAC-的AgNPs被肿瘤细胞内吞作用通过采取并启用了从线粒体释放细胞色素C,其次是抗凋亡蛋白Bcl2家族的失调,诱发半胱氨酸蛋白酶9和3的介导的细胞凋亡激活识别的遗传毒性合成CS-PAC-的AgNPs,死亡率,孵化率,畸形和胚胎的异常/剂量时间依赖性方式观察到脊椎动物斑马鱼模型鱼(Danio rerio)的幼虫。这种改进的纳米治疗癌症因此可以用作新颖nanocombination用于体外和体内诱导细胞凋亡。关键词:原花青素,表征,免疫印迹,在体内(斑马鱼)模型

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