Department of Pharmaceutical Sciences, School of Pharmacy, University of Connecticut, Storrs, Connecticut 06269, USA.
AAPS J. 2010 Jun;12(2):188-96. doi: 10.1208/s12248-010-9175-3. Epub 2010 Feb 9.
In recent years, a variety of biomaterial implantable devices has been developed. Of particular significance to pharmaceutical sciences is the progress made on the development of drug/implantable device combination products. However, the clinical application of these devices is still a critical issue due to the host response, which results from both the tissue trauma during implantation and the presence of the device in the body. Accordingly, the in vivo functionality and durability of any implantable device can be compromised by the body response to the foreign material. Numerous strategies to overcome negative body reactions have been reported. The aim of this review is to outline some key issues of biomaterial/tissue interactions such as foreign body response and biocompatibility and biocompatibility assessment. In addition, general approaches used to overcome the in vivo instability of implantable devices are presented, including (a) biocompatible material coatings, (b) steroidal and nonsteroidal anti-inflammatory drugs, and (c) angiogenic drugs. In particular, strategies to overcome host response to glucose biosensors are summarized.
近年来,已经开发出了多种生物材料植入式装置。在药物/植入式装置组合产品的开发方面取得的进展,对制药科学具有特别重要的意义。然而,由于宿主反应,这些装置的临床应用仍然是一个关键问题,宿主反应既源于植入过程中的组织创伤,也源于装置在体内的存在。因此,任何植入式装置的体内功能和耐久性都可能因身体对外来材料的反应而受到影响。已经报道了许多克服负面身体反应的策略。本综述的目的是概述生物材料/组织相互作用的一些关键问题,如异物反应和生物相容性以及生物相容性评估。此外,还介绍了克服植入式装置体内不稳定性的一般方法,包括(a) 生物相容性材料涂层,(b) 甾体和非甾体抗炎药,以及(c) 血管生成药物。特别总结了克服葡萄糖生物传感器宿主反应的策略。