PL MICROMED Co., Ltd., 1F, 15-5, Yangju 3-gil, Yangsan-si 50620, Republic of Korea.
Department of Food Science and Technology, Pukyong National University, 45 Yongso-ro, Nam-gu, Busan 48513, Republic of Korea.
Mar Drugs. 2023 May 3;21(5):287. doi: 10.3390/md21050287.
This study aimed to prepare gelatin-fucoidan microspheres with enhanced doxorubicin binding efficiency and controllable biodegradation using fish gelatin combined with low molecular weight (LMW) gelatin and fucoidan at fixed ratios. The MW of gelatin was modified by subcritical water (SW), which is known as a safe solvent, at 120 °C, 140 °C, and 160 °C. In addition, gelatin-fucoidan microspheres were prepared using a solvent exchange technique. Our findings revealed that particle size decreased, the surface was rougher, the swelling ratio increased, and particle shape was irregular in microspheres composed of SW-modified gelatin. Doxorubicin binding efficiency was improved by fucoidan and SW-modified gelatin at 120 °C but not at 140 °C and 160 °C. Interestingly, an increase in in vitro enzymatic degradation was observed in the microspheres consisting of SW-modified fish gelatin, although the cross-linking degree between them was not significantly different. This is because LMW gelatin could form more cross-linked bonds, which might be weaker than the intramolecular bonds of gelatin molecules. Gelatin-fucoidan microspheres consisting of SW-modified fish gelatin with controlled biodegradation rates could be a candidate for a short-term transient embolization agent. In addition, SW would be a promising method to modify the MW of gelatin for medical applications.
本研究旨在制备明胶-褐藻聚糖微球,以提高阿霉素的结合效率,并通过固定比例的鱼明胶与低分子量(LMW)明胶和褐藻聚糖可控降解。明胶的分子量通过亚临界水(SW)在 120°C、140°C 和 160°C 下进行修饰,SW 是一种安全的溶剂。此外,使用溶剂交换技术制备了明胶-褐藻聚糖微球。我们的研究结果表明,SW 修饰的明胶组成的微球粒径减小,表面更粗糙,溶胀比增加,颗粒形状不规则。褐藻聚糖和 SW 修饰的明胶在 120°C 时提高了阿霉素的结合效率,但在 140°C 和 160°C 时则没有。有趣的是,在由 SW 修饰的鱼明胶组成的微球中观察到体外酶降解增加,尽管它们之间的交联程度没有显著差异。这是因为 LMW 明胶可以形成更多的交联键,这些交联键可能比明胶分子的分子内键弱。具有可控降解率的由 SW 修饰的鱼明胶和褐藻聚糖组成的明胶-褐藻聚糖微球可能是一种短期暂态栓塞剂的候选物。此外,SW 将是一种有前途的用于医学应用的明胶分子量修饰方法。