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Alginate- Carboxymethyl Cellulose- and κ-Carrageenan-Based Microparticles as Storage Vehicles for Cranberry Extract

机译:藻酸盐 - 羧甲基纤维素 - 和基于κ树甲烷烷的微粒作为蔓越莓提取物的储存载体

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摘要

This study discusses the relationship between the structural properties of the selected polysaccharides (low (ALGLV) and medium viscosity (ALGMV) sodium alginate, 90 kDa (CMC90) and 250 kDa (CMC250) carboxymethyl cellulose, and κ-carrageenan (CARκ)) and their abilities to serve as protective materials of encapsulated large cranberry (Vaccinium macrocarpon Aiton) fruit extract (CE) from losing its health beneficial activities during long-term storage. The microparticles were characterized in terms of their encapsulation efficiency (UV-Vis and FTIR), morphology (SEM) and the physical stability in various environments (gravimetry). The microparticles’ size and encapsulation efficiency were 46–50 µm and 28–58%, respectively, and the microparticles were physically stable. CMC90 and ALGMV most efficiently protected the plant extract from losing its biological activity after 18 months, while the plant extract stored outside the particles had lost its activity. CE was intended for oral administration, thus CE release from the microparticles was monitored in vitro under gastrointestinal conditions. In vitro gastrointestinal release studies revealed that the ALGMV-, CMC90-, and CMC250-based particles exhibited the desired intestinal release pattern. This result supports the suitability of sodium alginate and carboxymethyl cellulose for the safe delivery of CE to the intestines while maintaining its biological properties and improving long-term storage stability.
机译:本研究讨论了所选多糖的结构性质(低(ALGLV)和中粘度(藻类)藻酸钠,90kDa(CMC90)和250kDa(CMC250)羧甲基纤维素和κ树叶蛋白(CARAGENAN(CARκ))之间的关系。它们作为封装大蔓越莓(vAlcinium Macrocarpon Aiton)果提取物(CE)的保护材料的能力,从长期储存过程中丢失了健康的有益活动。在它们的包封效率(UV-Vis和FTIR),形态(SEM)和各种环境中的物理稳定性(重臂)中表征了微粒。微粒的尺寸和封装效率分别为46-50μm,分别为28-58%,微粒在物理上稳定。 CMC90和AlgMV最有效地保护植物提取物从18个月后丢失其生物活性,而储存在颗粒外的植物提取物损失了其活性。 Ce旨在用于口服给药,因此在胃肠环境下在体外监测微粒的Ce释放。体外胃肠道释放研究表明,藻类,CMC90-和CMC250基颗粒表现出所需的肠道释放图案。该结果支持藻酸钠和羧甲基纤维素的适用性,以便在肠道上安全递送Ce,同时保持其生物学性质并提高长期储存稳定性。

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