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首页> 外文期刊>Artificial cells, nanomedicine, and biotechnology. >Carvacrol nanoemulsion evokes cell cycle arrest, apoptosis induction and autophagy inhibition in doxorubicin resistant-A549 cell line
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Carvacrol nanoemulsion evokes cell cycle arrest, apoptosis induction and autophagy inhibition in doxorubicin resistant-A549 cell line

机译:香芹酚纳米乳液在抗阿霉素A549细胞中引起细胞周期停滞,凋亡诱导和自噬抑制

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Carvacrol is a monoterpenoid flavonoid found abundantly in thyme plants. Its physiochemical instability and partial solubility in water is the principal limitation for its industrial use. Hence, we made a carvacrol nanoemulsion (CANE) using ultrasonication method and characterized it by dynamic light scattering (DLS) technique which revealed a negative surface charge (?29.89?mV) with 99.1?nm average droplet size. CANE effectively induced apoptosis in doxorubicin-resistant A549 lung carcinoma cells (A549DR) evident by the elevated expression of apoptotic proteins such as Bax, Cytochrome C, and Cleaved caspase 3 and 9. Also, CANE displayed cell senescence leading to cell cycle arrest by reducing CDK2, CDK4, CDK6, Cyclin E, Cyclin D1 and enhancing p21 protein expression. In addition, a potential role of CANE in the inhibition of autophagy was noted by evaluating the reduced conversion of LC-3 I to II. Beside this, a down-regulation of important autophagy markers ATG5 and ATG7 and upregulation of p62 were detected in response to CANE. We conclude that the synthesized CANE has potential to cause cell senescence, cell cycle arrest, autophagy inhibition and apoptosis in A549DR cells and could be used as a potential candidate for lung cancer therapy.
机译:香芹酚是百里香植物中大量发现的单萜类黄酮。其物理化学不稳定性和在水中的部分溶解度是其工业用途的主要限制。因此,我们使用超声方法制备了香芹酚纳米乳液(CANE),并通过动态光散射(DLS)技术对其进行了表征,该技术揭示出平均液滴尺寸为99.1?nm的负表面电荷(?29.89?mV)。 CANE有效地诱导了对阿霉素抗性的A549肺癌细胞(A549DR)的凋亡,这由凋亡蛋白(例如Bax,细胞色素C和Cleaved caspase 3和9)的表达升高所证实。 CDK2,CDK4,CDK6,Cyclin E,Cyclin D1和增强p21蛋白表达。另外,通过评估LC-3 I至II的转化减少,注意到CANE在抑制自噬中的潜在作用。除此之外,响应于CANE,检测到重要的自噬标记物ATG5和ATG7的下调和p62的上调。我们得出的结论是,合成的CANE有潜力引起A549DR细胞的细胞衰老,细胞周期停滞,自噬抑制和凋亡,并可作为肺癌治疗的潜在候选者。

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