Chirio Daniela, Peira Elena, Dianzani Chiara, Muntoni Elisabetta, Gigliotti Casimiro Luca, Ferrara Benedetta, Sapino Simona, Chindamo Giulia, Gallarate Marina
Dipartimento di Scienza e Tecnologia del Farmaco, Università degli Studi di Torino, 10125 Torino, Italy.
Interdisciplinary Research Center of Autoimmune Diseases, Department of Health Sciences, "A. Avogadro" University of Eastern Piedmont, 28100 Novara, Italy.
Nanomaterials (Basel). 2019 Feb 8;9(2):230. doi: 10.3390/nano9020230.
: Solid lipid nanoparticles (SLNs) are attractive drug delivery systems for lipophilic molecules like curcumin (CURC) with low chemical stability. : A simple, innovative, and cold-operating method, named "cold dilution of microemulsion" is developed by the authors to produce SLNs. An oil-in-water microemulsion (µE), whose disperse phase consisted of a solution of trilaurin in a partially water-miscible solvent, was prepared after mutually saturating solvent and water. Trilaurin SLNs precipitated following solvent removal upon water dilution of the µE. After SLN characterization (mean size, Zeta potential, CURC entrapment efficiency, and over time stability), they were tested for in vitro cytotoxicity studies on pancreatic adenocarcinoma cell lines and for in vivo preliminary biodistribution studies in Wistar healthy rats. : CURC loaded SLNs (SLN-CURC) had mean diameters around 200 nm, were negatively charged, stable over time, and able to entrap CURC up to almost 90%, consequently improving its stability. SLN-CURC inhibited in vitro pancreatic carcinoma cell growth in concentration-dependent manner. Their in vivo intravenous administration suggested a possible long circulation. : These results, according to a concomitant study on chitosan-coated SLNs, confirm the possibility to apply the developed SLN-based delivery systems as a means to entrap CURC, to improve both its water dispersibility and chemical stability, facilitating its application in therapy.
固体脂质纳米粒(SLNs)是一种颇具吸引力的药物递送系统,适用于递送像姜黄素(CURC)这类化学稳定性低的亲脂性分子。作者开发了一种简单、创新且低温操作的方法,名为“微乳液冷稀释法”来制备SLNs。在溶剂和水相互饱和后,制备了一种水包油型微乳液(µE),其分散相由三甘油脂肪酸酯在部分与水互溶的溶剂中的溶液组成。在对µE进行水稀释后,通过去除溶剂使三甘油脂肪酸酯SLNs沉淀。在对SLNs进行表征(平均粒径、zeta电位、姜黄素包封率以及随时间的稳定性)后,对其进行了体外对胰腺腺癌细胞系的细胞毒性研究以及在Wistar健康大鼠体内的初步生物分布研究。负载姜黄素的SLNs(SLN-CURC)平均直径约为200nm,带负电荷,随时间稳定,并且能够包封姜黄素高达近90%,从而提高了其稳定性。SLN-CURC以浓度依赖的方式抑制体外胰腺癌细胞的生长。其体内静脉给药表明可能具有长循环特性。根据一项关于壳聚糖包被的SLNs的伴随研究,这些结果证实了应用所开发的基于SLN的递送系统作为包封姜黄素的手段的可能性,以改善其水分散性和化学稳定性,促进其在治疗中的应用。