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代谢组学在胰岛自身免疫和1型糖尿病研究中的应用

Metabolomics in the studies of islet autoimmunity and type 1 diabetes.

作者信息

Oresic Matej

机构信息

VTT Technical Research Centre of Finland, Tietotie 2, Espoo, FIN-02044 VTT, Finland.

出版信息

Rev Diabet Stud. 2012 Winter;9(4):236-47. doi: 10.1900/RDS.2012.9.236. Epub 2012 Dec 28.

Abstract

The metabolome is sensitive to genetic and environmental factors contributing to complex diseases such as type 1 diabetes (T1D). Metabolomics is the study of biochemical and physiological processes involving metabolites. It is therefore one of the key platforms for the discovery and study of pathophysiological phenomena leading to T1D and the development of T1D-associated complications. Although the application of metabolomics in T1D research is still rare, metabolomic research has already advanced across the full spectrum, from disease progression to the development of diabetic complications. Metabolomic studies in T1D have contributed to an improved etiopathogenic understanding and demonstrated their potential in the clinic. For example, metabolomic data from recent T1D studies suggest that a specific metabolic profile, or metabotype, precedes islet autoimmunity and the development of overt T1D. These early metabolic changes are attributed to many biochemical pathways, thus suggesting a systemic change in metabolism which may be inborn. Based on this evidence, the role of the metabolome in the progression to T1D is therefore to facilitate specific biochemical processes associated with T1D, and to contribute to the development of a vulnerable state in which disease is more likely to be triggered. This may have important implications for the understanding of T1D pathophysiology and early disease detection and prevention.

摘要

代谢组对导致诸如1型糖尿病(T1D)等复杂疾病的遗传和环境因素敏感。代谢组学是对涉及代谢物的生化和生理过程的研究。因此,它是发现和研究导致T1D的病理生理现象以及T1D相关并发症发展的关键平台之一。尽管代谢组学在T1D研究中的应用仍然很少,但代谢组学研究已经在从疾病进展到糖尿病并发症发展的全范围内取得了进展。T1D的代谢组学研究有助于增进对病因病理的理解,并证明了它们在临床上的潜力。例如,最近T1D研究的代谢组学数据表明,特定的代谢谱或代谢型先于胰岛自身免疫和显性T1D的发展。这些早期代谢变化归因于许多生化途径,因此表明代谢存在系统性变化,这可能是先天性的。基于这一证据,代谢组在T1D进展中的作用因此是促进与T1D相关的特定生化过程,并促成一种更易引发疾病的脆弱状态的发展。这可能对理解T1D病理生理学以及早期疾病检测和预防具有重要意义。

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