Division of Clinical Mass Spectrometry, Chiba University Hospital, 1-8-1 Inohana, Chuo-ku, Chiba 260-8677, Japan.
Int J Mol Sci. 2018 Dec 26;20(1):86. doi: 10.3390/ijms20010086.
Periodontal disease is caused by bacteria in dental biofilms. To eliminate the bacteria, immune system cells release substances that inflame and damage the gums, periodontal ligament, or alveolar bone, leading to swollen bleeding gums, which is a sign of gingivitis. Damage from periodontal disease can cause teeth to loosen also. Studies have demonstrated the proteomic approach to be a promising tool for the discovery and identification of biochemical markers of periodontal diseases. Recently, many studies have applied expression proteomics to identify proteins whose expression levels are altered by disease. As a fluid lying in close proximity to the periodontal tissue, the gingival crevicular fluid (GCF) is the principal target in the search for periodontal disease biomarkers because its protein composition may reflect the disease pathophysiology. Biochemical marker analysis of GCF is effective for objective diagnosis in the early and advanced stages of periodontal disease. Periodontal diseases are also promising targets for proteomics, and several groups, including ours, have applied proteomics in the search for GCF biomarkers of periodontal diseases. This search is of continuing interest in the field of experimental and clinical periodontal disease research. In this article, we summarize the current situation of proteomic technologies to discover and identify GCF biomarkers for periodontal diseases.
牙周病是由牙菌斑中的细菌引起的。为了消灭这些细菌,免疫系统细胞会释放出引发炎症和损伤牙龈、牙周韧带或牙槽骨的物质,导致牙龈肿胀、出血,这是牙龈炎的一个症状。牙周病的损伤还会导致牙齿松动。研究表明,蛋白质组学方法是发现和鉴定牙周病生物标志物的一种很有前途的工具。最近,许多研究都应用表达蛋白质组学来鉴定因疾病而改变表达水平的蛋白质。由于龈沟液(GCF)与牙周组织紧密接触,因此它是寻找牙周病生物标志物的主要目标,因为其蛋白质组成可能反映疾病的病理生理学。GCF 的生物化学标志物分析可有效进行牙周病的早期和晚期的客观诊断。蛋白质组学也是牙周病的一个很有研究前景的目标,包括我们在内的几个研究小组已经应用蛋白质组学来寻找牙周病的 GCF 生物标志物。这一研究在实验和临床牙周病研究领域一直备受关注。本文综述了用于发现和鉴定牙周病 GCF 生物标志物的蛋白质组学技术的现状。