Bjelić Dragana, Finšgar Matjaž
Faculty of Chemistry and Chemical Engineering, University of Maribor, Smetanova ulica 17, 2000 Maribor, Slovenia.
Pharmaceutics. 2021 Jul 15;13(7):1083. doi: 10.3390/pharmaceutics13071083.
With increasing obesity and an ageing population, health complications are also on the rise, such as the need to replace a joint with an artificial one. In both humans and animals, the integration of the implant is crucial, and bioactive coatings play an important role in bone tissue engineering. Since bone tissue engineering is about designing an implant that maximally mimics natural bone and is accepted by the tissue, the search for optimal materials and therapeutic agents and their concentrations is increasing. The incorporation of growth factors (GFs) in a bioactive coating represents a novel approach in bone tissue engineering, in which osteoinduction is enhanced in order to create the optimal conditions for the bone healing process, which crucially affects implant fixation. For the application of GFs in coatings and their implementation in clinical practice, factors such as the choice of one or more GFs, their concentration, the coating material, the method of incorporation, and the implant material must be considered to achieve the desired controlled release. Therefore, the avoidance of revision surgery also depends on the success of the design of the most appropriate bioactive coating. This overview considers the integration of the most common GFs that have been investigated in in vitro and in vivo studies, as well as in human clinical trials, with the aim of applying them in bioactive coatings. An overview of the main therapeutic agents that can stimulate cells to express the GFs necessary for bone tissue development is also provided. The main objective is to present the advantages and disadvantages of the GFs that have shown promise for inclusion in bioactive coatings according to the results of numerous studies.
随着肥胖率的上升和人口老龄化,健康并发症也在增加,比如需要用人工关节置换关节。在人类和动物中,植入物的整合都至关重要,生物活性涂层在骨组织工程中发挥着重要作用。由于骨组织工程旨在设计一种能最大程度模仿天然骨并被组织接受的植入物,因此对最佳材料、治疗剂及其浓度的研究越来越多。在生物活性涂层中加入生长因子(GFs)是骨组织工程中的一种新方法,通过增强骨诱导作用来为骨愈合过程创造最佳条件,而骨愈合过程对植入物固定至关重要。为了将生长因子应用于涂层并在临床实践中实施,必须考虑诸如选择一种或多种生长因子、其浓度、涂层材料、加入方法以及植入物材料等因素,以实现所需的控释效果。因此,避免翻修手术也取决于最合适的生物活性涂层设计的成功与否。本综述考虑了在体外和体内研究以及人体临床试验中已被研究的最常见生长因子的整合情况,目的是将它们应用于生物活性涂层。还提供了能刺激细胞表达骨组织发育所需生长因子的主要治疗剂的概述。主要目的是根据众多研究结果,介绍有望纳入生物活性涂层的生长因子的优缺点。