Hu Zhongshan, Feng Tao, Zeng Xiaolan, Janaswamy Srinivas, Wang Hui, Campanella Osvaldo
School of Perfume and Aroma Technology, Shanghai Institute of Technology, No. 100 Hai Quan Road, Shanghai 201418, China.
Department of Dairy and Food Science, South Dakota State University, Brookings, SD 57007, USA.
Nanomaterials (Basel). 2019 Jul 26;9(8):1073. doi: 10.3390/nano9081073.
Curcumin displays anti-cancer, anti-inflammatory and anti-obesity properties but its water insolubility limits the wholesome utility. In this study, curcumin has been encapsulated in an amphiphilic biopolymer to enhance its water solubility. This was accomplished through self-assembly of octenyl succinic anhydride-short glucan chains (OSA-SGC) and curcumin. The nanoparticles were prepared with the degree of substitution (DS) of 0.112, 0.286 and 0.342 of OSA. Thus prepared nanoparticles were in the range of 150-200 nm and display high encapsulation efficiency and high loading capacity of curcumin. The Fourier-transform infrared (FTIR) and X-ray diffraction analyses confirmed the curcumin loading in the OSA-SGC nanoparticles. The complexes possessed a V-type starch structure. The thermo gravimetric analysis (TGA) revealed the thermal stability of encapsulated curcumin. The OSA-SGC nanoparticles greatly improved the curcumin release and dissolution, and in-turn promoted the sustained release.
姜黄素具有抗癌、抗炎和抗肥胖特性,但其水不溶性限制了其全面应用。在本研究中,姜黄素被包裹在两亲性生物聚合物中以提高其水溶性。这是通过辛烯基琥珀酸酐-短葡聚糖链(OSA-SGC)与姜黄素的自组装实现的。制备了取代度(DS)分别为0.112、0.286和0.342的OSA纳米颗粒。如此制备的纳米颗粒粒径在150 - 200nm范围内,显示出高包封率和姜黄素的高负载量。傅里叶变换红外(FTIR)和X射线衍射分析证实了姜黄素负载于OSA-SGC纳米颗粒中。该复合物具有V型淀粉结构。热重分析(TGA)揭示了包封姜黄素的热稳定性。OSA-SGC纳米颗粒极大地改善了姜黄素的释放和溶解,进而促进了其缓释。