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Recent advances in oral delivery of drugs and bioactive natural products using solid lipid nanoparticles as the carriers

机译:使用固体脂质纳米粒子作为载体的药物和生物活性天然产物的最新进展

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Abstract Chemical and enzymatic barriers in the gastrointestinal (GI) tract hamper the oral delivery of many labile drugs. The GI epithelium also contributes to poor permeability for numerous drugs. Drugs with poor aqueous solubility have difficulty dissolving in the GI tract, resulting in low bioavailability. Nanomedicine provides an opportunity to improve the delivery efficiency of orally administered drugs. Solid lipid nanoparticles (SLNs) are categorized as a new generation of lipid nanoparticles consisting of a complete solid lipid matrix. SLNs used for oral administration offer several benefits over conventional formulations, including increased solubility, enhanced stability, improved epithelium permeability and bioavailability, prolonged half-life, tissue targeting, and minimal side effects. The nontoxic excipients and sophisticated material engineering of SLNs tailor the controllable physicochemical properties of the nanoparticles for GI penetration via mucosal or lymphatic transport. In this review, we highlight the recent progress in the development of SLNs for disease treatment. Recent application of oral SLNs includes therapies for cancers, central nervous system-related disorders, cardiovascular-related diseases, infection, diabetes, and osteoporosis. In addition to drugs that may be active cargos in SLNs, some natural compounds with pharmacological activity are also suitable for SLN encapsulation to enhance oral bioavailability. In this article, we systematically introduce the concepts and amelioration mechanisms of the nanomedical techniques for drug- and natural compound-loaded SLNs. Graphical abstract Display Omitted Highlights ? SLNs are nanosystems for the delivery of drugs with controlled release kinetics. ? We highlight the recent progress in the study of oral SLNs for disease treatment. ? SLNs are developed by solid lipids and emulsifiers generally recognized as safe. ? Both drugs and natural compounds are suitable to be orally delivered by SLNs.
机译:胃肠道(GI)的抽象化学和酶障碍妨碍了许多不稳定药物的口腔递送。 GI上皮也有助于许多药物的渗透性差。含水溶解度差的药物难以溶解在GI道中,导致生物利用度低。 Nanomedicine提供了提高口服给药药物的输送效率的机会。固体脂质纳米颗粒(SLN)被分类为由完全固体脂质基质组成的新一代脂质纳米颗粒。用于口服给药的SLN提供常规配方的几种益处,包括增加的溶解度,增强的稳定性,改善的上皮渗透性和生物利用度,延长半衰期,组织靶向和最小副作用。 SLNS的无毒赋形剂和复杂的材料工程量身定制纳米粒子的可控物理化学性质,通过粘膜或淋巴输送来进行GI渗透。在这篇综述中,我们突出了最近在疾病治疗方面发展的进展。口服SLN的最近应用包括癌症,中枢神经系统相关疾病,心血管相关疾病,感染,糖尿病和骨质疏松症的疗法。除了在SLNS中可能是活性尸体的药物外,一些具有药理学活性的天然化合物也适用于SLN包封以增强口腔生物利用度。在本文中,我们系统地介绍了用于药物和天然复合的SLN的纳米医疗技术的概念和改进机制。图形抽象显示省略了亮点? SLNS是纳米系统,用于递送具有控释动力学的药物。还我们突出了近期疾病治疗口服SLNS研究的最新进展。还SLNS由固体脂质和乳化剂开发,通常认为是安全的。还药物和天然化合物都适合于由SLNS口服递送。

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