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Folic acid conjugation improves the bioavailability and chemosensitizing efficacy of curcumin-encapsulated PLGA-PEG nanoparticles towards paclitaxel chemotherapy

机译:叶酸结合改善了姜黄素包裹的PLGA-PEG纳米粒子对紫杉醇化疗的生物利用度和化学增敏功效

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摘要

Nanoencapsulation has emerged as a novel strategy to enhance the pharmacokinetic and therapeutic potential of conventional drugs. Recent studies from our lab have established the efficacy of curcumin in sensitizing cervical cancer cells and breast cancer cells towards paclitaxel and 5-FU chemotherapy respectively. Factors that hinder the clinical use of curcumin as a sensitizer or therapeutic agent include its poor bioavailability and retention time. Earlier reports of improvement in bioavailability and retention of drugs upon nanoencapsulation have motivated us in developing various nanoformulations of curcumin, which were found to exhibit significant enhancement in bioavailability and retention time as assessed by our previous in vitro studies. Among the various formulations tested, curcumin-entrapped in PLGA-PEG nanoparticles conjugated to folic acid (PPF-curcumin) displayed maximum cell death. In the present study, we have demonstrated the efficacy of this formulation in augmenting the bioavailability and retention time of curcumin, in vivo, in Swiss albino mice. Further, the acute and chronic toxicity studies proved that the formulation is pharmacologically safe. We have also evaluated its potential in chemosensitizing cervical cancer cells to paclitaxel and have verified the results using cervical cancer xenograft model in NOD-SCID mice. Folic acid conjugation significantly enhanced the efficacy of curcumin in down-regulating various survival signals induced by paclitaxel in cervical cancer cells and have considerably improved its potential in inhibiting the tumor growth of cervical cancer xenografts. The non-toxic nature coupled with improved chemosensitization potential makes PPF-curcumin a promising candidate formulation for clinical trials.
机译:纳米囊化已经成为增强常规药物的药代动力学和治疗潜力的新策略。我们实验室的最新研究已确定姜黄素在分别使紫杉醇和5-FU化疗对宫颈癌细胞和乳腺癌细胞敏感的功效。阻碍姜黄素作为敏化剂或治疗剂临床使用的因素包括其生物利用度和保留时间差。纳米封装后药物生物利用度和保留时间改善的早期报道促使我们开发各种姜黄素纳米制剂,如我们先前的体外研究所评估,姜黄素被发现具有显着提高的生物利用度和保留时间。在测试的各种制剂中,在与叶酸(PPF-姜黄素)偶联的PLGA-PEG纳米颗粒中捕获的姜黄素表现出最大的细胞死亡。在本研究中,我们证明了这种制剂在增加瑞士白化病小鼠体内姜黄素的生物利用度和保留时间方面的功效。此外,急性和慢性毒性研究证明该制剂在药理学上是安全的。我们还评估了其对宫颈癌细胞对紫杉醇的化学敏感性的潜力,并在NOD-SCID小鼠中使用宫颈癌异种移植模型验证了结果。叶酸结合显着增强了姜黄素在下调紫杉醇在子宫颈癌细胞中诱导的各种存活信号的功效,并大大提高了其抑制子宫颈癌异种移植物肿瘤生长的潜力。 PPF姜黄素的无毒性质和提高的化学致敏性使之成为临床试验的有希望的候选制剂。

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