In vitro high-content tissue models to address precision medicine challenges

IF 8.7 2区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Molecular Aspects of Medicine Pub Date : 2023-06-01 DOI:10.1016/j.mam.2022.101108
Samson Afewerki , Thiago Domingues Stocco , André Diniz Rosa da Silva , André Sales Aguiar Furtado , Gustavo Fernandes de Sousa , Guillermo U. Ruiz-Esparza , Thomas J. Webster , Fernanda R. Marciano , Maria Strømme , Yu Shrike Zhang , Anderson Oliveira Lobo
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引用次数: 2

Abstract

The field of precision medicine allows for tailor-made treatments specific to a patient and thereby improve the efficiency and accuracy of disease prevention, diagnosis, and treatment and at the same time would reduce the cost, redundant treatment, and side effects of current treatments. Here, the combination of organ-on-a-chip and bioprinting into engineering high-content in vitro tissue models is envisioned to address some precision medicine challenges. This strategy could be employed to tackle the current coronavirus disease 2019 (COVID-19), which has made a significant impact and paradigm shift in our society. Nevertheless, despite that vaccines against COVID-19 have been successfully developed and vaccination programs are already being deployed worldwide, it will likely require some time before it is available to everyone. Furthermore, there are still some uncertainties and lack of a full understanding of the virus as demonstrated in the high number new mutations arising worldwide and reinfections of already vaccinated individuals. To this end, efficient diagnostic tools and treatments are still urgently needed. In this context, the convergence of bioprinting and organ-on-a-chip technologies, either used alone or in combination, could possibly function as a prominent tool in addressing the current pandemic. This could enable facile advances of important tools, diagnostics, and better physiologically representative in vitro models specific to individuals allowing for faster and more accurate screening of therapeutics evaluating their efficacy and toxicity. This review will cover such technological advances and highlight what is needed for the field to mature for tackling the various needs for current and future pandemics as well as their relevancy towards precision medicine.

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体外高含量组织模型应对精准医学挑战
精准医学领域允许针对患者量身定制的治疗,从而提高疾病预防、诊断和治疗的效率和准确性,同时降低当前治疗的成本、重复治疗和副作用。在这里,将芯片上的组织和生物打印结合到工程化的高含量体外组织模型中,有望解决一些精准医学挑战。这一策略可用于应对当前的2019冠状病毒病(新冠肺炎),该病对我们的社会产生了重大影响和范式转变。尽管如此,尽管新冠肺炎疫苗已经成功研发,疫苗接种计划已经在世界各地部署,但在向所有人提供疫苗之前,可能需要一段时间。此外,全球范围内出现的大量新突变和已经接种疫苗的人的再次感染表明,仍存在一些不确定性,对该病毒缺乏充分的了解。为此,仍然迫切需要有效的诊断工具和治疗方法。在这种情况下,生物打印和芯片上组织技术的融合,无论是单独使用还是组合使用,都可能成为应对当前疫情的重要工具。这可以使重要工具、诊断方法和更具生理学代表性的个体特异性体外模型的简单进展,从而更快、更准确地筛选评估其疗效和毒性的治疗方法。这篇综述将涵盖这些技术进步,并强调该领域需要什么才能成熟,以应对当前和未来流行病的各种需求,以及它们与精准医学的相关性。
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来源期刊
Molecular Aspects of Medicine
Molecular Aspects of Medicine 医学-生化与分子生物学
CiteScore
18.20
自引率
0.00%
发文量
85
审稿时长
55 days
期刊介绍: Molecular Aspects of Medicine is a review journal that serves as an official publication of the International Union of Biochemistry and Molecular Biology. It caters to physicians and biomedical scientists and aims to bridge the gap between these two fields. The journal encourages practicing clinical scientists to contribute by providing extended reviews on the molecular aspects of a specific medical field. These articles are written in a way that appeals to both doctors who may struggle with basic science and basic scientists who may have limited awareness of clinical practice issues. The journal covers a wide range of medical topics to showcase the molecular insights gained from basic science and highlight the challenging problems that medicine presents to the scientific community.
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