Current status and challenges of multi-omics research using animal models of atherosclerosis

IF 2.2
Tijana Mitić , Adriana Georgescu , Nicoleta Alexandru-Moise , Michael J. Davies , Cecile Vindis , Susana Novella , Eva Gerdts , Georgios Kararigas , Stephanie Bezzina Wettinger , Melissa M. Formosa , Brenda R. Kwak , Filippo Molica , Nuria Amigo , Andrea Caporali , Fernando de la Cuesta , Ignacio Fernando Hall , Angeliki Chroni , Fabio Martelli , Johannes A. Schmid , Paolo Magni , Dimitris Kardassis
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Abstract

Atherosclerosis is an underlying cause of cardiovascular diseases (CVD) which account for most deaths worldwide. Use of diverse preclinical models of atherosclerosis has been implemental in understanding the underlying mechanisms, the implicated cell types, the genes and the molecules at play in the onset and progression of atherosclerotic plaques. Although significant research advancements have been made, further research is necessary to delve into factors influencing plaque types, site preference within the vasculature, interactions with adjacent tissues (liver, pancreas and perivascular adipose tissue), inflammation and sex-based disparities, among others. The conventional low throughput methodologies which concentrate on individual cells, genes or metabolites are inadequate to tackle the complex and heterogeneous nature of atherosclerosis. With recent advancement in multi-omics and bioinformatics, research approaches have illuminated a clearer understanding of atherosclerosis. Consequently, these advancements pave the path to design novel therapeutics to complement currently approved lipid-lowering and other effective treatments. In this article, we summarize and critically evaluate the findings derived from recent high throughput single- or multi-omic studies conducted in animal models of atherosclerosis. We also delve into the challenges associated with using experimental animals to model human atherosclerosis and contemplate the essential enhancements needed to better mimic human conditions. We further discuss the requirement of establishing a structured multi-omic database for atherosclerosis research, enabling broader access and utilisation within the scientific community.
动脉粥样硬化动物模型多组学研究现状与挑战
动脉粥样硬化是心血管疾病(CVD)的潜在原因,心血管疾病占全世界死亡人数最多。多种临床前动脉粥样硬化模型的应用有助于理解动脉粥样硬化斑块发生和发展的潜在机制、相关细胞类型、基因和分子。尽管已经取得了重大的研究进展,但需要进一步的研究来深入研究影响斑块类型、血管内的部位偏好、与邻近组织(肝脏、胰腺和血管周围脂肪组织)的相互作用、炎症和性别差异等因素。传统的专注于单个细胞、基因或代谢物的低通量方法不足以解决动脉粥样硬化的复杂性和异质性。随着近年来多组学和生物信息学的进展,研究方法已经阐明了动脉粥样硬化的更清晰的认识。因此,这些进步为设计新的治疗方法铺平了道路,以补充目前批准的降脂和其他有效的治疗方法。在本文中,我们总结并批判性地评估了最近在动脉粥样硬化动物模型中进行的高通量单组或多组研究的结果。我们还深入研究了与使用实验动物来模拟人类动脉粥样硬化相关的挑战,并考虑了更好地模拟人类条件所需的基本增强。我们进一步讨论了为动脉粥样硬化研究建立一个结构化的多组学数据库的需求,使其在科学界得到更广泛的访问和利用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of molecular and cellular cardiology plus
Journal of molecular and cellular cardiology plus Cardiology and Cardiovascular Medicine
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31 days
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