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Future role of MR elastography in tissue engineering and regenerative medicine

机译:MR弹性成像在组织工程和再生医学中的未来作用

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Tissue engineering (TE) has been introduced for more than 25 years without a boom in clinical trials. More than 70 TE-related start-up companies spent more than $600 million/year, with only two FDA-approved tissue-engineered products. Given the modest performance in clinically approved organs, TE is a tenaciously promising field. The TE community is advocating the application of clinically driven methodologies in large animal models enabling clinical translation. This challenge is hindered by the scarcity of tissue biopsies and the absence of standardized evaluation tools, but can be negated through non-invasive assessment of growth and integration, with reduced sample size and low cost. Solving this issue will speed the transition to cost-efficient clinical studies. In this paper we: (a) introduce magnetic resonance elastography to the tissue-engineering and regenerative medicine (TERM) community; (b) review recent MRE applications in TERM; and (c) discuss future directions of MRE in TERM. We have used MRE to study engineered tissues both in vitro and in vivo, where the mechanical properties of mesenchymally derived constructs were progressively monitored before and after tissues were implanted in mouse models. This study represents a stepping stone toward the applications of MRE in directing clinical trials with low cost and likely expediting the translation to more relevantly large animal models and clinical trials.
机译:组织工程技术(TE)的引入已超过25年,但并未在临床试验中大放异彩。超过70个与TE相关的初创公司每年花费超过6亿美元,而只有两种FDA批准的组织工程产品。鉴于在临床认可的器官中表现不佳,TE是一个有前途的领域。 TE社区提倡在大型动物模型中应用临床驱动的方法,以实现临床翻译。组织活检的缺乏和缺乏标准化的评估工具阻碍了这一挑战,但可以通过无创性评估生长和整合来消除挑战,并减少样本量和降低成本。解决此问题将加快向具有成本效益的临床研究的过渡。在本文中,我们:(a)将磁共振弹性成像引入组织工程和再生医学(TERM)社区; (b)审查TERM中最新的MRE申请; (c)讨论TERM中MRE的未来方向。我们已经使用MRE在体内和体外研究了工程组织,在小鼠模型中植入组织之前和之后,逐步监测了间充质来源构建体的机械性能。这项研究代表了MRE在低成本指导临床试验中的应用的踏脚石,并可能加快了翻译到更相关的大型动物模型和临床试验的速度。

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