Gharbi Myriam, Deberg Michelle, Henrotin Yves
Artialis S.A., Liège Belgium.
Front Physiol. 2011 Dec 2;2:90. doi: 10.3389/fphys.2011.00090. eCollection 2011.
After the genomic era, proteomic corresponds to a wide variety of techniques that study the protein content of cells, tissue, or organism and that allow the isolation of protein of interest. It offers the choice between gel-based and gel-free methods or shotgun proteomics. Applications of proteomic technology may concern three principal objectives in several biomedical or clinical domains of research as in osteoarthritis: (i) to understand the physiopathology or underlying mechanisms leading to a disease or associated with a particular model, (ii), to find disease-specific biomarker, and (iii) to identify new therapeutic targets. This review aimed at gathering most of the data regarding the proteomic techniques and their applications to osteoarthritis research. It also reported technical limitations and solutions, as for example for sample preparation. Proteomics open wide perspectives in biochemical research but many technical matters still remain to be solved.
在基因组时代之后,蛋白质组学涵盖了多种技术,这些技术用于研究细胞、组织或生物体的蛋白质含量,并能够分离出感兴趣的蛋白质。它提供了基于凝胶和非凝胶方法或鸟枪法蛋白质组学之间的选择。蛋白质组学技术的应用可能涉及几个生物医学或临床研究领域(如骨关节炎)的三个主要目标:(i)了解导致疾病或与特定模型相关的病理生理学或潜在机制;(ii)寻找疾病特异性生物标志物;(iii)识别新的治疗靶点。本综述旨在收集有关蛋白质组学技术及其在骨关节炎研究中的应用的大部分数据。它还报告了技术局限性和解决方案,例如样品制备方面的问题。蛋白质组学在生化研究中开辟了广阔的前景,但许多技术问题仍有待解决。