NUS Graduate School for Integrative Sciences and Engineering, National University of Singapore, Singapore.
Curr Pharm Des. 2010 Jul;16(21):2388-94. doi: 10.2174/138161210791920478.
The formulation and fabrication methods for several types of tissue engineering scaffolds with drug delivery capabilities are presented in this review. Tissue engineered constructs are temporary substitutes developed to treat damaged or lost tissue. One key component of such constructs is scaffolds that are often developed to mimic the extra cellular matrix (ECM). As natural ECM contains biomolecules to support proper growth and function of cells, inclusion of these biomolecular cues have been shown to be necessary for proper cell growth and function in tissue engineering. Thus, an effective tissue engineering scaffold should provide such biomolecular cues. This can be achieved through drug delivery in scaffolds. Studies have shown that drug delivery systems are necessary to protect drugs, and provide sustained drug release that is often needed for effective therapy. The tissue engineering features of 4 scaffold types are described, including films, hydrogels, fibers, and microspheres/nanospheres. Fabrication techniques and drug encapsulation methods for these scaffolds are reviewed in addition to some observations arising from the use of these techniques and methods.
本文综述了具有药物传递能力的几种组织工程支架的配方和制造方法。组织工程构建体是为治疗受损或丧失的组织而开发的临时替代品。此类构建体的一个关键组成部分是支架,通常开发为模仿细胞外基质 (ECM)。由于天然 ECM 包含支持细胞正常生长和功能的生物分子,因此已证明包含这些生物分子线索对于组织工程中的细胞正常生长和功能是必要的。因此,有效的组织工程支架应提供这些生物分子线索。这可以通过支架中的药物传递来实现。研究表明,药物输送系统对于保护药物和提供持续的药物释放是必要的,这对于有效的治疗通常是必需的。描述了 4 种支架类型的组织工程特性,包括薄膜、水凝胶、纤维和微球/纳米球。除了使用这些技术和方法产生的一些观察结果外,还回顾了这些支架的制造技术和药物包封方法。