State Key Laboratory of Food Science and Technology, Nanchang University, Nanchang, China.
J Microencapsul. 2011;28(8):783-90. doi: 10.3109/02652048.2011.621553. Epub 2011 Oct 4.
To develop an easy-energy-supply agent, medium-chain fatty acids (MCFAs) liposomes were prepared by thin-layer dispersion, freeze-thawing and dynamic high pressure microfluidization (DHPM)-freeze-thawing methods. Results showed that MCFAs nanoliposomes obtained by the novel method (DHPM-freeze-thawing) exhibited a smaller size (72.6 ± 4.9 nm), narrower size distribution (PDI = 0.175 ± 0.005), higher zeta potential (-41.27 ± 1.16 mV) and entrapment efficiency (45.9 ± 6.0%) compared to the other two methods. In the weight-loaded swimming test of the mice, the high-dose group of MCFAs nanoliposomes indicated a significantly longer swimming time (105 ± 31 min, p < 0.05), a lower serum urea nitrogen (839.5 ± 111.9 mg/L, p < 0.05) and blood lactic acid (5.7 ± 1.0 mmol/L, p ≤ 0.001), and a higher hepatic glycogen (15.0 ± 3.6 mg/g, p ≤ 0.001) than those of the control group (53 ± 13 min, 1153.6 ± 102.5 mg/L, 12.5 ± 1.9 mmol/L and 8.8 ± 3.3 mg/g, respectively). However, no significant difference was found between the high-dose group and MCFAs group. The results suggested that MCFAs nanoliposomes could be used as a potential easy-energy-supply agent.
为了开发一种易于供应能量的试剂,通过薄层分散、冻融和动态高压微射流(DHPM)-冻融方法制备了中链脂肪酸(MCFA)脂质体。结果表明,通过新方法(DHPM-冻融)获得的 MCFAs 纳米脂质体具有更小的粒径(72.6±4.9nm)、更窄的粒径分布(PDI=0.175±0.005)、更高的 zeta 电位(-41.27±1.16mV)和包封效率(45.9±6.0%)。在小鼠负重游泳试验中,MCFAs 纳米脂质体高剂量组的游泳时间明显延长(105±31min,p<0.05),血清尿素氮(839.5±111.9mg/L,p<0.05)和血液乳酸(5.7±1.0mmol/L,p≤0.001)降低,肝糖原(15.0±3.6mg/g,p≤0.001)升高,高于对照组(53±13min,1153.6±102.5mg/L,12.5±1.9mmol/L 和 8.8±3.3mg/g)。然而,高剂量组与 MCFAs 组之间没有发现显著差异。结果表明,MCFAs 纳米脂质体可用作一种有潜力的易于供应能量的试剂。