Demir Didem, Goksen Gulden, Ceylan Seda, Trif Monica, Rusu Alexandru Vasile
Department of Chemistry and Chemical Process Technologies, Vocational School of Technical Sciences at Mersin Tarsus Organized Industrial Zone, Tarsus University, Mersin 33100, Türkiye.
Department of Food Technology, Vocational School of Technical Sciences at Mersin Tarsus Organized Industrial Zone, Tarsus University, Mersin 33100, Türkiye.
Polymers (Basel). 2023 Jun 22;15(13):2782. doi: 10.3390/polym15132782.
In this study, chitosan (Chi) was used to microencapsulate peppermint essential oil (PEO). A novel gelatin-based cryogel loaded with PEO microcapsules was further developed and characterized for potential applications. Four different cryogel systems were designed, and the morphological, molecular, physical and antibacterial properties were investigated. Additionally, the antimicrobial properties of PEO, alone and microcapsulated, incorporated into the cryogel network were evaluated. The observed gel structure of cryogels exhibited a highly porous morphology in the microcapsules. The highest values of the equilibrium swelling ratio were acquired for the GelCryo-ChiCap and GelCryo-PEO@ChiCap samples. The contact angle GelCryo-PEO@ChiCap sample was lower than the control (GelCryo) due to the water repelling of the essential oil. It has been found that the incorporation of encapsulated PEO into the cryogels would be more advantageous compared to its direct addition. Moreover, GelCryo-PEO@ChiCap cryogels showed the strongest antibacterial activities, especially against (Gram-positive bacteria) and (Gram-negative bacteria). The system that was developed showed promising results, indicating an improved antibacterial efficacy and enhanced structural properties due to the presence of microcapsules. These findings suggest that the system may be an appropriate candidate for various applications, including, but not limited to, drug release, tissue engineering, and food packaging. Finally, this system demonstrates a strategy to stabilize the releasing of the volatile compounds for creating successful results.
在本研究中,壳聚糖(Chi)被用于微囊化薄荷精油(PEO)。进一步开发并表征了一种负载PEO微胶囊的新型明胶基冷冻凝胶,以探索其潜在应用。设计了四种不同的冷冻凝胶体系,并对其形态、分子、物理和抗菌性能进行了研究。此外,还评估了单独的PEO以及微囊化后并入冷冻凝胶网络中的PEO的抗菌性能。观察到的冷冻凝胶的凝胶结构在微胶囊中呈现出高度多孔的形态。GelCryo-ChiCap和GelCryo-PEO@ChiCap样品的平衡溶胀率最高。由于精油的拒水作用,GelCryo-PEO@ChiCap样品的接触角低于对照(GelCryo)。已发现将包封的PEO并入冷冻凝胶中比直接添加更具优势。此外,GelCryo-PEO@ChiCap冷冻凝胶表现出最强的抗菌活性,尤其是对(革兰氏阳性菌)和(革兰氏阴性菌)。所开发的体系显示出有前景的结果,表明由于微胶囊的存在,抗菌效果得到改善且结构性能增强。这些发现表明该体系可能是各种应用的合适候选者,包括但不限于药物释放、组织工程和食品包装。最后,该体系展示了一种稳定挥发性化合物释放以取得成功结果的策略。