Department of Chemical Engineering, Yildiz Technical University , Istanbul , Turkey.
Institute of Chemical Technology, TUBITAK Marmara Research Center , Kocaeli , Turkey.
J Microencapsul. 2019 Aug;36(5):485-499. doi: 10.1080/02652048.2019.1646337.
In this study, we produced curcumin loaded gelatine microparticles, through spray-drying method, with dialdehyde carboxymethyl cellulose (DCMC) which is introduced as a new cross-linking agent for drug delivery systems and examined toxicities by comparison of traditional cross-linking agents. We employed various parameters in the production and tried to develop the most efficient drug delivery system through Taguchi method by examining efficiencies on gastric cancer under conditions. The results indicated gelatine microparticles cross-linked with DCMC offers more biocompatible drug delivery systems. The particle size of the microparticles produced different parameters varies from 1.926 to 3.357 µm. Curcumin was substantially remained stable after 6 months. This study indicates potential use of DCMC cross-linked gelatine microparticles as drug delivery vehicle.
在这项研究中,我们通过喷雾干燥法制备了载姜黄素的明胶微球,并引入了新型交联剂双醛羧甲基纤维素(DCMC)用于药物传递系统,并通过与传统交联剂进行比较来考察其毒性。我们在生产中采用了各种参数,并通过田口法在胃癌条件下考察了效率,试图开发最有效的药物传递系统。结果表明,DCMC 交联的明胶微球提供了更具生物相容性的药物传递系统。通过不同参数制备的微球粒径为 1.926 至 3.357μm。姜黄素在 6 个月后仍保持稳定。本研究表明 DCMC 交联明胶微球作为药物传递载体具有潜在的应用价值。