Encapsulation Methods and Releasing Mechanisms of Encapsulated Active Drug

Kakwokpo Clémence N’GUESSAN-GNAMAN, Nakognon Awa TUO-KOUASSI, Ismael Dally, Sandrine AKA-ANY-GRAH, Rosine Désirée CHOUGOUO KENGNE-NKUITCHOU, A. Lia, Apo Laurette Anin, Alain N’GUESSAN
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Abstract

Substances of plant origin are chemically unstable and easily oxidized by external conditions. However, they have to remain in their bioactive form when they are used in food, pharmaceutical, nutraceutical and cosmetic industries. Encapsulation method is an effective technique that should protect them preventing the degradation of these active substances and thus prevent them from losing their activities. In this review, the strategies for encapsulating plant substances and their preparation methods including emulsification, atomization, coaxial electrospray system, lyophilization, coacervation, in situ polymerization, melt extrusion, supercritical fluid technology, fluidized bed coating etc. were discussed. The release mechanisms of plant active substances were also presented. The choice of an appropriate encapsulation technique and wall material depends on the final use of the product and the processing conditions involved. The use of liposomes, ethosomes, phytosomes, emulsions, microspheres, microcapsules, solid lipid nanoparticles including formulations based on plant substances has enhanced their therapeutic effects. With the use of all these encapsulation systems, the formulation is delivered in a targeted manner, giving it an on-site effect, and the bioavailability of the formulation is also improved. With these new drug delivery systems, actives and extracts used in herbal formulations exhibit improved stability, sustained release from the formulation, protection against toxicity, and improved therapeutic efficacy. Keywords : nanoparticles, bioactive substance, formulation
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封装方法和封装活性药物的释放机制
植物来源的物质化学性质不稳定,很容易被外界条件氧化。然而,当它们被用于食品、制药、营养保健品和化妆品行业时,必须保持其生物活性形式。封装方法是一种有效的技术,可以防止这些活性物质降解,从而防止它们失去活性。本综述讨论了封装植物物质的策略及其制备方法,包括乳化、雾化、同轴电喷雾系统、冻干、共凝、原位聚合、熔融挤出、超临界流体技术、流化床包衣等。此外,还介绍了植物活性物质的释放机制。选择合适的封装技术和壁材取决于产品的最终用途和相关的加工条件。脂质体、乙脂质体、植物脂质体、乳剂、微球、微囊、固体脂质纳米颗粒(包括基于植物物质的制剂)的使用增强了其治疗效果。通过使用所有这些封装系统,可以有针对性地输送制剂,使其产生现场效应,同时还能提高制剂的生物利用度。有了这些新的给药系统,中草药制剂中使用的活性物质和提取物就会表现出更高的稳定性、从制剂中持续释放、抗毒性和治疗效果。关键词:纳米颗粒、生物活性物质、配方
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