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首页> 外文期刊>Current stem cell research & therapy >Mechanical Stimulation Protocols of Human Derived Cells in Articular Cartilage Tissue Engineering - A Systematic Review
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Mechanical Stimulation Protocols of Human Derived Cells in Articular Cartilage Tissue Engineering - A Systematic Review

机译:关节软骨组织工程中人源细胞机械刺激方案 - 系统评价

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Mechanical stimulation is a key factor in articular cartilage generation and maintenance. Bioreactor systems have been designed and built in order to deliver specific types of mechanical stimulation. The focus has been twofold, applying a type of preconditioning in order to stimulate cell differentiation, and to simulate in vivo conditions in order to gain further insight into how cells respond to different stimulatory patterns. Due to the complex forces at work within joints, it is difficult to simulate mechanical conditions using a bioreactor. The aim of this review is to gain a deeper understanding of the complexities of mechanical stimulation protocols by comparing those employed in bioreactors in the context of tissue engineering for articular cartilage, and to consider their effects on cultured cells. Allied and Complementary Medicine 1985 to 2016, Ovid MEDLINE[R] 1946 to 2016, and Embase 1974 to 2016 were searched using key terms. Results were subject to inclusion and exclusion criteria, key findings summarised into a table and subsequently discussed. Based on this review it is overwhelmingly clear that mechanical stimulation leads to increased chondrogenic properties in the context of bioreactor articular cartilage tissue engineering using human cells. However, given the variability and lack of controlled factors between research articles, results are difficult to compare, and a standardised method of evaluating stimulation protocols proved challenging. With improved standardisation in mechanical stimulation protocol reporting, bioreactor design and building processes, along with a better understanding of joint behaviours, we hope to perform a meta-analysis on stimulation protocols and methods.
机译:机械刺激是关节软骨发电和维护的关键因素。生物反应器系统已经设计和构建,以便提供特定类型的机械刺激。该重点是双重,应用一种预处理以刺激细胞分化,并在体内条件下模拟,以进一步了解细胞如何响应不同的刺激模式。由于关节内的工作中的复杂力,难以使用生物反应器模拟机械条件。该审查的目的是通过将生物反应器中使用的那些在组织工程中的组织工程中的语境上进行关节软骨,并考虑对培养细胞的影响来更深入地了解机械刺激方案的复杂性。 1985年至2016年的盟友和补充医学,Ovid Medline [R] 1946年至2016年,并使用关键条款搜索1974年至2016年的Embase 1974年至2016年。结果符合包含和排除标准,将汇总到表中并随后讨论的主要结果。基于该综述,绝大多数清楚地清楚的是,机械刺激导致使用人体细胞的生物反应器关节软骨组织工程中的软骨内特性增加。然而,鉴于研究制品之间的可变性和缺乏受控因素,结果难以比较,并且评估刺激协议的标准化方法证明了具有挑战性。随着机械刺激协议的标准化,生物反应器设计和建筑工程,以及更好地了解联合行为,我们希望对刺激协议和方法进行META分析。

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