首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Improved drug delivery and anti-tumor efficacy of combinatorial liposomal formulation of genistein and plumbagin by targeting Glut1 and Akt3 proteins in mice bearing prostate tumor
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Improved drug delivery and anti-tumor efficacy of combinatorial liposomal formulation of genistein and plumbagin by targeting Glut1 and Akt3 proteins in mice bearing prostate tumor

机译:通过靶向患有前列腺肿瘤小鼠的Glut1和Akt3蛋白来改善组合脂质体制剂的药物脂质脂质体制剂的药物递送和抗肿瘤疗效

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摘要

Despite the plethora of significant research progress made to develop novel strategies for the treatment of prostate cancer, this disease remains one of the major global health challenges among men. However, using a co-treatment approach utilizing two or more anticancer drugs has shown tremendous success in the treatment of many cancer types. Nanoliposomes are well known to encapsulate multiple drugs and deliver them at the desired site. In this work, we report the synthesis of nanoliposomes (similar to 100 nm) encapsulating two drugs, plumbagin, and genistein, to synergistically inhibit the growth of prostate cancer cells. The combination of plumbagin and genistein drugs was found inhibiting xenograft prostate tumor growth by similar to 80 % without any appreciable toxicity. Mechanistically, the combination of plumbagin and genistein containing nanoliposomes leads to the inhibition of PI3K/AKT3 signaling pathway as well as the decreased population of Glut-1 transporters to impart the retardation in tumor growth. Decrease in proliferative cells and blood vessels are early biological processes that laid the foundation of the observed anti-tumor effect. Thus, a novel, and non-toxic liposomal formulation, containing plumbagin and genistein drugs, is reported, which can deliver anticancer agents to prostate tumors and inhibit the growth.
机译:尽管普遍研究进展,但为治疗前列腺癌进行了新的策略,仍然是男性的主要全球健康挑战之一。然而,利用两种或更多种抗癌药物的共同治疗方法表明了在治疗许多癌症类型的情况下取得了巨大成功。众所周知,纳米脂质体是用多种药物包封并在所需部位递送它们。在这项工作中,我们报告了包封了两种药物,朱振素和核酸脂的纳米脂质体(类似100nm)的合成,以协同抑制前列腺癌细胞的生长。发现肠果和甘黄油药的组合抑制异种移植前列腺肿瘤生长,同样与80%没有任何明显的毒性。机械地,铅素蛋白和含有纳米脂质的组合导致PI3K / AKT3信号传导途径的抑制作用以及降低的凝胶-1转运蛋白的群体,以赋予肿瘤生长的延迟。增殖细胞和血管的降低是早期生物过程,其奠定了观察到的抗肿瘤作用的基础。因此,报告了一种含有肠果和谷氨酸药物的新颖和无毒的脂质体制剂,其可以将抗癌剂递送至前列腺肿瘤并抑制生长。

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