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用于药物递送系统的生物材料。

Biomaterials for drug delivery systems.

作者信息

Buckles R G

出版信息

J Biomed Mater Res. 1983 Jan;17(1):109-28. doi: 10.1002/jbm.820170110.

Abstract

Drug delivery systems have unusual materials requirements which derive mainly from their therapeutic role: to administer drugs over prolonged periods of time at rates that are independent of patient-to-patient variables. The chemical nature of the surfaces of such devices may stimulate biorejection processes which can be enhanced or suppressed by the simultaneous presence of the drug that is being administered. Selection of materials for such systems is further complicated by the need for compatibility with the drug contained within the system. A review of selected drug delivery systems is presented. This leads to a definition of the technologies required to develop successfully such systems as well as to categorize the classes of drug delivery systems available to the therapist. A summary of the applications of drug delivery systems will also be presented. There are five major challenges to the biomaterials scientist: (1) how to minimize the influence on delivery rate of the transient biological response that accompanies implantation of any object; (2) how to select a composition, size, shape, and flexibility that optimizes biocompatibility; (3) how to make an intravascular delivery system that will retain long-term functionality; (4) how to make a percutaneous lead for those delivery systems that cannot be implanted but which must retain functionality for extended periods; and (5) how to make biosensors of adequate compatibility and stability to use with the ultimate drug delivery system-a system that operates with feedback control.

摘要

药物递送系统有着特殊的材料要求,这些要求主要源于其治疗作用:以独立于患者个体差异的速率长时间给药。此类装置表面的化学性质可能会刺激生物排斥过程,而正在给药的药物同时存在时,这种过程可能会增强或受到抑制。由于需要与系统内所含药物相容,为这类系统选择材料变得更加复杂。本文对选定的药物递送系统进行了综述。这引出了成功开发此类系统所需技术的定义,以及对治疗师可用的药物递送系统类别进行分类。还将介绍药物递送系统的应用总结。生物材料科学家面临五个主要挑战:(1)如何将植入任何物体时伴随的短暂生物反应对递送速率的影响降至最低;(2)如何选择能优化生物相容性的成分、尺寸、形状和柔韧性;(3)如何制造能保持长期功能的血管内递送系统;(4)对于那些无法植入但必须长时间保持功能的递送系统,如何制造经皮导线;(5)如何制造具有足够相容性和稳定性的生物传感器,以便与最终的药物递送系统——一种具有反馈控制功能的系统配合使用。

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