口服给药纳米载体的研究进展,尤其是多孔硅

Asad Muhammad Azama, Tahir Iqbal Awan
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引用次数: 0

摘要

对药物控释的关注要求适当的药物载体的生长,能够以可控和持续的方式将足够数量的药物转移到损伤区域。各种纳米颗粒,包括磁性纳米颗粒,状态,脂质体,聚合物树状大分子,固体脂质纳米颗粒(SLN)和多孔硅,已经被研究作为药物递送案例中的药物载体。纳米载体在蛋白质和多肽的稳定、抗癌药物喜树碱(CPT)和骨组织工程方面取得了重要的进展,根据所需的功能改善了口腔通路和保护。此外,量身定制的配方以及功能化和生物相容性对于通过口服给药系统制造用于蛋白质或肽的纳米颗粒具有重要意义,口服给药系统比肠道给药系统具有优势,因为它们运行舒适且符合治疗要求。这篇综述总结了现有出版物中关于蛋白质或多肽载体纳米颗粒等药物的有趣方法,并特别关注了用于递送系统的多孔硅。纳米颗粒的制备,例如用于口服给药的多孔硅纳米载体,优点和缺点,多孔硅在药物给药系统中的应用前景将被讨论。
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Review Nanocarriers for the Oral Delivery of Drugs With Special Focus on Porous Silicon: A Review
The focus concerning controlled drug release requires the growth of appropriate drug carriers that could move adequate amount of the drug to injured area with controlled and sustained manner. A variety of nanoparticles including magnetic nanoparticles, the staes, liposomes, polymers dendrimers, solid lipid nanoparticles (SLN) and porous silicon have been investigated as drug carriers in drug delivery cases. Nanocarriers have achieved significant importance in the stabilization of proteins and peptides, anti-cancer drug camptothecin (CPT) and bone tissue engineering offering improved buccal access and protection according to the desired function. Moreover, tailored formulation along with functionalization and bio- compatibility has importance in fabrication of nanoparticles for proteins or peptides via oral delivery systems, which has advantage over parenteric delivery systems because of their comfort running and  observance to treatment. The review summarizes interesting approaches on existing publications for drugs such as proteins or peptides carrier nanoparticles with special focus on porous silicon for delivery systems. Fabricatioan of nanoparticles e.g. porous silicon nanocarriers for oral delivery, advantages and disadvantages, prospective use of porous silicon in drug delivery systems will be addressed.
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