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姜黄素纳米纤维:提高姜黄素类化合物抗癌潜力和生物利用度的新方法。

Curcumin Nanofibers: A Novel Approach to Enhance the Anticancer Potential and Bioavailability of Curcuminoids.

机构信息

School of Pharmacy, Mashhad University of Medical Sciences, Mashhad, Iran.

Department of Toxicology & Pharmacology, School of Pharmacy and Toxicology & Diseases Group, Pharmaceutical Sciences Research Center, The Institute of Pharmaceutical Sciences (TIPS), Tehran University of Medical Sciences, Tehran, Iran.

出版信息

Curr Med Chem. 2023;30(3):286-303. doi: 10.2174/0929867329666220322110348.

Abstract

Development of novel treatment methods for cancer is needed given the limitations of current treatment methods, including side effects and chemotherapeutic resistance, which may provide new hope to cancer patients. Cancer is the second leading cause of global mortality. Curcumin, the active ingredient of turmeric, has been used since ancient times for various therapeutic purposes. Several studies have identified its activity against cancer. Despite the established anticancer activity of curcumin, its low aqueous solubility and bioavailability are barriers to its effectiveness. In an attempt to solve this problem, many studies have formulated curcumin nanofiber preparations using a variety of methods. Electrospinning is a simple and affordable method for the production of nanofibers. Studies have shown increased curcumin bioavailability in nanofibers resulting from their high surface/volume ratio and porosity. We have undertaken a detailed review of studies on the anticancer effects of curcumin nanofibers. Curcumin acts by inhibiting various biological cancer pathways, including NF-κB, mTOR, complex I, cytokines, expression of p-p65, Ki67, and angiogenesis-associated genes. It also induces apoptosis through activation of caspase pathways and ROS production in cancer cells. Curcumin-loaded PLA50/PVP50/Cur15 nanofibers were investigated in breast cancer, one of the most studied cancers, and was shown to have significant effects on the widely used HeLa-cell line. Most of the studies undertaken have been performed in cell lines in vitro, while relatively few animal studies have been reported. More preclinical and clinical studies are needed to evaluate the anticancer activity of curcumin nanofibers. Amongst studies undertaken, a variety of curcumin nanofibers of various formulations have been shown to suppress a variety of cancer types. Overall, curcumin nanofibers have been found to be more efficient than free curcumin. Thus, curcumin nanofibers have been observed to improvise cancer treatment, offering great potential for effective cancer management. Further studies, both in vitro and in vivo, involving curcumin nanofibers have the potential to benefit cancer management.

摘要

鉴于当前治疗方法的局限性,如副作用和化疗耐药性,需要开发新的癌症治疗方法,这可能为癌症患者带来新的希望。癌症是全球第二大死亡原因。姜黄中的活性成分姜黄素自古以来就被用于各种治疗目的。多项研究已经确定了其抗癌活性。尽管姜黄素已被证实具有抗癌活性,但由于其低水溶性和生物利用度,限制了其疗效。为了解决这个问题,许多研究已经采用各种方法来制备姜黄素纳米纤维制剂。静电纺丝是一种生产纳米纤维的简单且经济实惠的方法。研究表明,由于纳米纤维具有高的比表面积/体积比和多孔性,其姜黄素的生物利用度得到了提高。我们对姜黄素纳米纤维的抗癌作用进行了详细的综述。姜黄素通过抑制各种生物癌症途径,包括 NF-κB、mTOR、复合物 I、细胞因子、p-p65、Ki67 和血管生成相关基因的表达,发挥抗癌作用。它还通过激活细胞色素 c 途径和 ROS 产生诱导癌细胞凋亡。在乳腺癌等最具研究意义的癌症中,研究了负载姜黄素的 PLA50/PVP50/Cur15 纳米纤维,结果表明对广泛使用的 HeLa 细胞系有显著影响。大多数研究都是在体外细胞系中进行的,而报道的动物研究相对较少。需要更多的临床前和临床研究来评估姜黄素纳米纤维的抗癌活性。在已进行的研究中,已经证明了各种配方的姜黄素纳米纤维可以抑制多种癌症类型。总的来说,姜黄素纳米纤维比游离姜黄素更有效。因此,姜黄素纳米纤维被观察到可以改善癌症治疗,为有效癌症管理提供了巨大的潜力。进一步的研究,包括在体和离体研究,涉及姜黄素纳米纤维,有可能使癌症管理受益。

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