Pund Swati, Thakur Rohit, More Umesh, Joshi Amita
Dept. of Pharmaceutics, STES's Sinhgad Institute of Pharmacy, Pune, India.
Dept. of Pharmaceutics, STES's Sinhgad Institute of Pharmacy, Pune, India.
Colloids Surf B Biointerfaces. 2014 Aug 1;120:110-7. doi: 10.1016/j.colsurfb.2014.05.016. Epub 2014 May 22.
Resveratrol, a dietary non-flavonoid polyphenolic phytoalexin, has gained attention in cancer chemoprevention. However, poor aqueous solubility and cellular bioavailability has limited its therapeutic application. We formulated a lipid based delivery system of resveratrol with self nanoemulsifying ability. Several edible and safe lipids, surfactants and cosolvents were screened for solubilization of resevratrol. Developed formulation comprised of Acrysol K 150 as a lipid and mixture of Labrasol and Transcutol HP as the surfactant system, as these components showed higher solubility. Pseudoternary phase diagram was constructed to identify the region of nanoemulsification. The formulations showed rapid emulsification with an average globule diameter; 85nm to 120nm and slight negative zeta potential. The nanocompositions exhibited cloud point above 55°C and were stable toward the gastrointestinal pH and thermodynamic stress testing. As compared to pristine resveratrol, the developed delivery system showed significant increase in vitro cytotoxicity in MCF-7 breast cancer cells. In vivo chick chorioallantoic membrane assay revealed enhanced antiangiogenic activity of composition with high lipid level. Briefly, lipid based nanoemulsifying resveratrol dramatically enhanced the anticancer and antiangiogenic activities, thus increasing its potential application in cancer chemotherapy.
白藜芦醇是一种膳食非黄酮类多酚植物抗毒素,在癌症化学预防方面受到了关注。然而,其较差的水溶性和细胞生物利用度限制了它的治疗应用。我们制备了一种具有自纳米乳化能力的白藜芦醇脂质递送系统。筛选了几种可食用且安全的脂质、表面活性剂和助溶剂来增溶白藜芦醇。所开发的制剂包含丙烯酸酯K 150作为脂质以及Labrasol和Transcutol HP的混合物作为表面活性剂体系,因为这些成分表现出更高的溶解度。构建了伪三元相图以确定纳米乳化区域。这些制剂显示出快速乳化,平均粒径为85纳米至120纳米,且zeta电位略为负值。纳米组合物的浊点高于55°C,并且在胃肠道pH值和热动力学应激测试中稳定。与原始白藜芦醇相比,所开发的递送系统在MCF - 7乳腺癌细胞中显示出体外细胞毒性显著增加。体内鸡胚绒毛尿囊膜试验显示脂质水平高的组合物具有增强的抗血管生成活性。简而言之,基于脂质的纳米乳化白藜芦醇显著增强了抗癌和抗血管生成活性,从而增加了其在癌症化疗中的潜在应用。