Bondì Maria Luisa, Emma Maria Rita, Botto Chiara, Augello Giuseppa, Azzolina Antonina, Di Gaudio Francesca, Craparo Emanuela Fabiola, Cavallaro Gennara, Bachvarov Dimcho, Cervello Melchiorre
Istituto per lo Studio dei Materiali Nanostrutturati (ISMN), CNR, U.O.S. Palermo , via Ugo La Malfa, 153, 90146 Palermo, Italy.
Istituto di Biomedicina ed Immunologia Molecolare (IBIM) "Alberto Monroy", CNR , via Ugo La Malfa 153, 90146 Palermo, Italy.
J Agric Food Chem. 2017 Feb 22;65(7):1342-1352. doi: 10.1021/acs.jafc.6b04409. Epub 2017 Feb 7.
Curcumin is a natural molecule with proved anticancer efficacy on several human cancer cell lines. However, its clinical application has been limited due to its poor bioavailability. Nanocarrier-based drug delivery approaches could make curcumin dispersible in aqueous media, thus overtaking the limits of its low solubility. The aim of this study was to increase the bioavailability and the antitumoral activity of curcumin, by entrapping it into nanostructured lipid carriers (NLCs). For this purpose here we describe the preparation and characterization of three kinds of curcumin-loaded NLCs. The nanosystems allowed the achievement of a controlled release of curcumin, the amounts of curcumin released after 24 h from Compritol-Captex, Compritol-Miglyol, and Compritol NLCs being, respectively, equal to 33, 28, and 18% w/w on the total entrapped curcumin. Considering the slower curcumin release profile, Compritol NLCs were chosen to perform successive in vitro studies on ovarian cancer cell lines. The results show that curcumin-loaded NLCs maintain anticancer activity, and reduce cell colony survival more effectively than free curcumin. As an example, the ability of A2780S cells to form colonies was decreased after treatment with 5 μM free curcumin by 50% ± 6, whereas, at the same concentration, the delivery of curcumin with NLC significantly (p < 0.05) inhibited colony formation to approximately 88% ± 1, therefore potentiating the activity of curcumin to inhibit A2780S cell growth. The obtained results clearly suggest that the entrapment of curcumin into NLCs increases curcumin efficacy in vitro, indicating the potential use of NLCs as curcumin delivery systems.
姜黄素是一种天然分子,已被证明对多种人类癌细胞系具有抗癌功效。然而,由于其生物利用度差,其临床应用受到限制。基于纳米载体的药物递送方法可使姜黄素在水性介质中分散,从而克服其低溶解度的限制。本研究的目的是通过将姜黄素包封到纳米结构脂质载体(NLC)中来提高姜黄素的生物利用度和抗肿瘤活性。为此,我们在此描述了三种载姜黄素NLC的制备和表征。这些纳米系统实现了姜黄素的控释,从Compritol-Captex、Compritol-Miglyol和Compritol NLC中24小时后释放的姜黄素量分别相当于总包封姜黄素的33%、28%和18%(w/w)。考虑到姜黄素的释放曲线较慢,选择Compritol NLC对卵巢癌细胞系进行后续体外研究。结果表明,载姜黄素NLC保持抗癌活性,并且比游离姜黄素更有效地降低细胞集落存活率。例如,用5μM游离姜黄素处理后,A2780S细胞形成集落的能力降低了50%±6,而在相同浓度下,用NLC递送姜黄素显著(p<0.05)抑制集落形成至约88%±1,因此增强了姜黄素抑制A2780S细胞生长的活性。所得结果清楚地表明,将姜黄素包封到NLC中可提高姜黄素的体外疗效,表明NLC作为姜黄素递送系统的潜在用途。
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