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In vitro Models of Bone Remodelling and Associated Disorders

机译:骨重塑和相关疾病的体外模型

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Disruption of bone remodelling by diseases such as osteoporosis results in an imbalance between bone formation by osteoblasts and resorption by osteoclasts. Research into these metabolic bone disorders is primarily performed in vivo; however, in the last decade there has been increased interest in generating in vitro models that can reduce or replace our reliance on animal testing. With recent advances in biomaterials and tissue engineering the feasibility of laboratory-based alternatives is ever increasing; however, to date there are no established in vitro models of bone remodelling. In vivo? remodelling is performed by organised packets of osteoblasts and osteoclasts called bone multicellular units (BMUs). The key determinant of whether osteoclasts form and remodelling occurs is the ratio between RANKL, a cytokine which stimulates osteoclastogenesis, and OPG, its inhibitor. This review initially details the different circumstances, conditions and factors which have been found to modulate the RANKL:OPG ratio, and fundamental factors to be considered if a robust in vitro model is to be developed. Following this, an examination of what we have achieved thus far in replicating remodelling in vitro using three-dimensional co-cultures is performed, before overviewing how such systems are already being utilised in the study of associated diseases, such as metastatic cancer and dental disorders. Finally, a discussion of the most important considerations to be incorporated going forward is presented. This details the need for the use of cells capable of endogenously producing the required cytokines, application of mechanical stimulation, and the presence of appropriate hormones in order to produce a robust model of bone remodelling.
机译:诸如骨质疏松症之类的疾病对骨重塑的破坏会导致成骨细胞形成的骨与破骨细胞吸收之间的不平衡。这些代谢性骨疾病的研究主要是在体内进行的。然而,在过去的十年中,人们越来越关注生成可以减少或取代我们对动物测试的依赖的体外模型。随着生物材料和组织工程学的最新进展,基于实验室的替代方法的可行性不断提高。然而,迄今为止,还没有建立体外的骨重塑模型。体内?重塑是通过称为骨多细胞单位(BMU)的成骨细胞和破骨细胞的有组织包装进行的。破骨细胞是否形成和重塑的关键决定因素是刺激破骨细胞生成的细胞因子RANKL和其抑制剂OPG之比。这篇综述最初详细介绍了已发现的可调节RANKL:OPG比的不同情况,条件和因素,以及要开发可靠的体外模型时应考虑的基本因素。此后,在概述使用此类系统在相关疾病(例如转移性癌症和牙齿疾病)的研究中已如何利用这些系统之前,我们对迄今为止在使用三维共培养的体外复制重塑中所取得的成就进行了检查。 。最后,提出了将要合并的最重要考虑因素的讨论。这详细说明了需要使用能够内源性产生所需细胞因子的细胞,施加机械刺激以及适当激素的存在,以便产生坚固的骨重塑模型。

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