Asif Muhammad, Arayne M Saeed, Sultana Najma, Hussain Fida
School of Chemical and Pharmaceutical Sciences, Kingston University, Kingston upon Thames, KT1 2EE, U.K.
Pak J Pharm Sci. 2006 Jan;19(1):73-84.
Nanotechnology, a multidisciplinary scientific undertaking, involves creation and utilization of materials, devices or systems on the nanometer scale. The field has enabled the development of an amazing variety of methods for fabricating nanoparticles in recent years. The technology is expected to create innovations and play a critical role in the field of bio-pharmaceuticals especially in controlled release of drug delivery. Sol-gel technique is one of the most widely used techniques to fabricate porous nanoparticles within the polymer. Such nanoparticles have also applications in vascular drug delivery and release, site-specific targeting (passive as well as active targeting), as well as transfusion medicine. This article concentrates mainly on fabrication of porous nanoparticles, its characterisation and its use for controlled release of drug. It also encompasses the strategies that have been used to translate and fabricate a wide range of particulate carriers e.g., nanospheres, liposomes, micelles, oil-in-water emulsions, with prolonged circulation and/or target specificity. With regard to the targeting issues, attention is particularly focused on the importance of physiological barriers. we have also critically reviewed and assessed the fate and activity of biodegradable/bio-erodable polymeric drug delivery vehicles because the uniformity in degradation of these polymers is questionable.
纳米技术是一项多学科的科学事业,涉及纳米尺度材料、器件或系统的创造与利用。近年来,该领域催生了各种各样令人惊叹的纳米颗粒制备方法。预计这项技术将带来创新,并在生物制药领域尤其是药物递送的控释方面发挥关键作用。溶胶-凝胶技术是在聚合物内部制备多孔纳米颗粒最广泛使用的技术之一。此类纳米颗粒在血管给药与释放、位点特异性靶向(被动靶向和主动靶向)以及输血医学中也有应用。本文主要聚焦于多孔纳米颗粒的制备、表征及其在药物控释中的应用。它还涵盖了用于转化和制备各种具有延长循环时间和/或靶向特异性的微粒载体(如纳米球、脂质体、胶束、水包油乳液)的策略。关于靶向问题,特别关注生理屏障的重要性。我们还对可生物降解/生物侵蚀性聚合物药物递送载体的命运和活性进行了批判性审查和评估,因为这些聚合物降解的均匀性存在疑问。