Department of Pharmacy, National University of Singapore, Singapore.
J Drug Target. 2013 Aug;21(7):611-29. doi: 10.3109/1061186X.2013.805335. Epub 2013 Jun 12.
Technological advances in drug discovery have resulted in increasing number of molecules including proteins and peptides as drug candidates. However, how to deliver drugs with satisfactory therapeutic effect, minimal side effects and increased patient compliance is a question posted before researchers, especially for those drugs with poor solubility, large molecular weight or instability. Microfabrication technology, polymer science and bioconjugate chemistry combine to address these problems and generate a number of novel engineered drug delivery systems. Injection routes usually have poor patient compliance due to their invasive nature and potential safety concerns over needle reuse. The alternative non-invasive routes, such as oral, mucosal (pulmonary, nasal, ocular, buccal, rectal, vaginal), and transdermal drug delivery have thus attracted many attentions. Here, we review the applications of the novel engineered systems for oral, mucosal and transdermal drug delivery.
药物发现领域的技术进步使得越来越多的分子,包括蛋白质和肽类,成为药物候选物。然而,如何将具有令人满意的治疗效果、最小副作用和提高患者依从性的药物递送给患者,这是摆在研究人员面前的一个问题,特别是对于那些溶解度差、分子量较大或不稳定的药物。微制造技术、聚合物科学和生物缀合化学相结合,解决了这些问题,并产生了许多新型的工程药物传递系统。由于注射途径具有侵袭性,而且重复使用针头存在潜在的安全隐患,因此患者的依从性通常较差。因此,人们将更多的注意力转向了替代的非侵入性途径,如口服、粘膜(肺部、鼻腔、眼部、口腔、直肠、阴道)和透皮药物递送。在这里,我们综述了新型工程系统在口服、粘膜和透皮药物递送中的应用。