Scomoroscenco Cristina, Teodorescu Mircea, Burlacu Sabina Georgiana, Gîfu Ioana Cătălina, Mihaescu Catalin Ionut, Petcu Cristian, Raducan Adina, Oancea Petruta, Cinteza Ludmila Otilia
Polymer Department, National Institute for Research and Development in Chemistry and Petrochemistry-ICECHIM, 202 Spl. Independentei, 060021 Bucharest, Romania.
Faculty of Applied Chemistry and Materials Science, University Politehnica of Bucharest, 010737 Bucharest, Romania.
Antioxidants (Basel). 2022 Apr 27;11(5):854. doi: 10.3390/antiox11050854.
Curcumin, due to its antioxidant, antibacterial, anti-inflammatory, and antitumoral activity, has attracted huge attention in applications in many fields such as pharmacy, medicine, nutrition, cosmetics, and biotechnology. The stability of curcumin-based products and preservation of antioxidant properties are still challenges in practical applications. Stability and antioxidant properties were studied for curcumin encapsulated in O/W microemulsion systems and three related gel microemulsions. Only biodegradable and biocompatible ingredients were used for carriers: grape seed oil as oily phase, Tween 80, and Plurol Diisostearique CG as a surfactant mix, and ethanol as a co-solvent. For the gel microemulsions, water-soluble polymers, namely Carbopol 980 NF, chitosan, and sodium hyaluronate were used. The influence of UVC irradiation and heat treatment on the degradation kinetics of curcumin in the formulations was studied. Because of the antioxidant character of the microemulsion oily phase, the possibility of a synergistic effect between grape seed oil and curcumin was explored. In this study, the high efficiency of the studied drug delivery systems to ensure protection from external degradative factors was confirmed. Also, the influence of the encapsulation in microemulsion and derived gel microemulsion systems on the antioxidant capacity curcumin was studied, and a synergistic effect with vegetal oil was demonstrated.
姜黄素因其抗氧化、抗菌、抗炎和抗肿瘤活性,在制药、医学、营养、化妆品和生物技术等众多领域的应用中引起了广泛关注。基于姜黄素的产品的稳定性以及抗氧化性能的保持在实际应用中仍然是挑战。对包封于水包油微乳液体系及三种相关凝胶微乳液中的姜黄素的稳定性和抗氧化性能进行了研究。载体仅使用可生物降解和生物相容的成分:葡萄籽油作为油相,吐温80和Plurol Diisostearique CG作为表面活性剂混合物,乙醇作为助溶剂。对于凝胶微乳液,使用了水溶性聚合物,即卡波姆980 NF、壳聚糖和透明质酸钠。研究了紫外线C照射和热处理对制剂中姜黄素降解动力学的影响。由于微乳液油相的抗氧化特性,探讨了葡萄籽油和姜黄素之间协同效应的可能性。在本研究中,证实了所研究的药物递送系统在确保免受外部降解因素影响方面的高效性。此外,还研究了微乳液和衍生凝胶微乳液体系中包封对姜黄素抗氧化能力的影响,并证明了与植物油的协同效应。