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Biopolymer-liposome hybrid systems for controlled delivery of bioactive compounds: Recent advances

机译:用于受控递送生物活性化合物的生物聚合物 - 脂质体杂交系统:最近的进展

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Conventional liposomes still face many challenges associated with the poor physical and chemical stability, considerable loss of encapsulated cargo, lack of stimulus responsiveness, and rapid elimination from blood circulation. Integration of versatile functional biopolymers has emerged as an attractive strategy to overcome the limitation of usage of liposomes. This review comprehensively summarizes the most recent studies (2015?2020) and their challenges aiming at the exploration of biopolymer-liposome hybrid systems, including surfacemodified liposomes, biopolymer-incorporated liposomes, guest-in-cyclodextrin-in-liposome, liposome-in-hydrogel, liposome-in-film, and liposome-in-nanofiber. The physicochemical principles and key technical information underlying the combined strategies for the fabrication of polymeric liposomes, the advantages and limitations of each of the systems, and the stabilization mechanisms are discussed through various case studies. Special emphasis is directed toward the synergistic efficiencies of biopolymers and phospholipid bilayers on encapsulation, protection, and controlled delivery of bioactives (e.g., vitamins, carotenoids, phenolics, peptides, and other health-related compounds) for the biomedical, pharmaceutical, cosmetic, and functional food applications. The major challenges, opportunities, and possible further developments for future studies are also highlighted.
机译:常规脂质体仍然面临着与物理和化学稳定性差,封装的货物缺失,刺激响应性缺乏缺失,以及从血液循环的快速消除相关的挑战。多功能官能生物聚合物的整合已成为克服脂质体使用限制的有吸引力的策略。本综述全面总结了最新的研究(2015年?2020年)及其旨在探索生物聚合物 - 脂质体杂交系统的挑战,包括表面上掺杂的脂质体,生物聚合物掺入脂质体,客人 - 环糊精,脂质体,脂质体水凝胶,脂质体 - 膜和脂质体内纤维。通过各种案例研究讨论了用于制备聚合物脂质体的组合策略的物理化学原理和关键技术信息,以及每个系统的优点和限制,以及稳定机制。特别强调朝着生物医学,药物,化妆品和其他健康相关化合物的封装,保护和控制递送生物聚合物和磷脂双层的协同效率对生物医学,保护和控制的生物术(例如,维生素,类胡萝卜素,酚类,肽和其他健康相关化合物)进行协同效率。功能性食品应用。还强调了未来研究的主要挑战,机会和可能的进一步发展。

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