Wang Jianman, Chen Hongjin, Guo Tao, Yue Ping, Qian Tianbao, Zeng Xiangyu, Luo Yali, Li Jiangmin, Teng Lijing, Liu Qingyu, Hong Liang, Yu Zijiang, Hu Zuquan
Key Laboratory of Infectious Immune and Antibody Engineering of Guizhou Province, Engineering Research Center of Cellular Immunotherapy of Guizhou Province, School of Basic Medical Sciences/School of Biology and Engineering, Guizhou Medical University, Guiyang 550025, China.
Department of Cardiovascular Surgery, Affiliated Hospital of Guizhou Medical University, Guiyang 550009, China.
Bioengineering (Basel). 2022 Aug 10;9(8):382. doi: 10.3390/bioengineering9080382.
Isoliquiritigenin (ILQ) has a number of biological activities such as antitumor and anti-inflammatory effects. However, biomedical applications of ILQ are impeded by its poor aqueous solubility. Therefore, in this research, we prepared a novel ILQ-loaded nanoemulsion, i.e., ILQ-NE, which consisted of Labrafil M 1944 CS (oil), Cremophor EL (surfactant), ILQ, and phosphate-buffered saline, by employing a combined sonication (high-energy) and phase-inversion composition (low-energy) method (denoted as the SPIC method). The ILQ-NE increased the ILQ solubility ~1000 times more than its intrinsic solubility. It contained spherical droplets with a mean diameter of 44.10 ± 0.28 nm and a narrow size distribution. The ILQ loading capacity was 4%. The droplet size of ILQ-NE remained unchanged during storage at 4 °C for 56 days. Nanoemulsion encapsulation effectively prevented ILQ from degradation under ultraviolet light irradiation, and enhanced the ILQ in vitro release rate. In addition, ILQ-NE showed higher cellular uptake and superior cytotoxicity to 4T1 cancer cells compared with free ILQ formulations. In conclusion, ILQ-NE may facilitate the biomedical application of ILQ, and the SPIC method presents an attractive avenue for bridging the merits and eliminating the shortcomings of traditional high-energy methods and low-energy methods.
异甘草素(ILQ)具有多种生物活性,如抗肿瘤和抗炎作用。然而,ILQ的生物医学应用因其较差的水溶性而受到阻碍。因此,在本研究中,我们采用超声(高能)和相转变组成(低能)相结合的方法(称为SPIC法)制备了一种新型的负载ILQ的纳米乳剂,即ILQ-NE,其由Labrafil M 1944 CS(油相)、聚氧乙烯蓖麻油(表面活性剂)、ILQ和磷酸盐缓冲盐水组成。ILQ-NE使ILQ的溶解度比其固有溶解度提高了约1000倍。它包含平均直径为44.10±0.28 nm且粒径分布窄的球形液滴。ILQ的负载量为4%。ILQ-NE的液滴大小在4℃储存56天期间保持不变。纳米乳剂包封有效地防止了ILQ在紫外光照射下的降解,并提高了ILQ的体外释放率。此外,与游离ILQ制剂相比,ILQ-NE对4T1癌细胞表现出更高的细胞摄取和更强的细胞毒性。总之,ILQ-NE可能有助于ILQ的生物医学应用,并且SPIC法为融合传统高能方法和低能方法的优点并消除其缺点提供了一条有吸引力的途径。