Preez Ilse du, Luies Laneke, Loots Du Toit
School for Physical & Chemical Sciences, Human Metabolomics, North-West University (Potchefstroom Campus), Private Bag x6001, Box 269, Potchefstroom, South Africa, 2531.
Biomark Med. 2017 Feb;11(2):179-194. doi: 10.2217/bmm-2016-0287. Epub 2017 Jan 18.
Numerous studies have contributed to our current understanding of the complex biology of pulmonary tuberculosis and subsequently provided solutions to its control or eradication. Metabolomics, a newcomer to the Omics research domain, has significantly contributed to this understanding by identifying biomarkers originating from the disease-associated metabolome adaptations of both the microbe and host. These biomarkers have shed light on previously unknown disease mechanisms, many of which have been implemented toward the development of improved diagnostic strategies. In this review, we will discuss the role that metabolomics has played in tuberculosis research to date, with a specific focus on new biomarker identification, and how these have contributed to improved disease characterization and diagnostics, and their potential clinical applications.
众多研究促成了我们目前对肺结核复杂生物学的理解,进而为其控制或根除提供了解决方案。代谢组学作为组学研究领域的新成员,通过识别源自微生物和宿主疾病相关代谢组适应的生物标志物,为这一理解做出了重大贡献。这些生物标志物揭示了以前未知的疾病机制,其中许多已被用于开发改进的诊断策略。在本综述中,我们将讨论代谢组学迄今为止在结核病研究中所起的作用,特别关注新生物标志物的识别,以及这些生物标志物如何有助于改善疾病特征描述和诊断,及其潜在的临床应用。