Rao Roopa S, Patil Shankargouda, Ganavi B S
Professor and Head, Department of Oral Pathology and Microbiology, Faculty of Dental Sciences, MS Ramaiah University of Applied Sciences MSRIT Post, MSR Nagar, Bangalore, Karnataka, India.
Associate Professor, Department of Oral Pathology and Microbiology, Faculty of Dental Sciences, MS Ramaiah University of Applied Sciences MSRIT Post, MSR Nagar, Bangalore, Karnataka, India.
J Contemp Dent Pract. 2014 Jan 1;15(1):127-36. doi: 10.5005/jp-journals-10024-1502.
The dynamics of oral mucosa is known by its inherent defensive nature. Certain areas demand tough shield when subjected to mechanical insults. This is met by structural scaffolding material referred as cytoskeleton comprised of intracellular protein filaments called cytokeratins in the surface squames of oral epithelia. They also equally contribute towards the architecture of odontogenic apparatus and salivary gland. Differentiation of epithelial cells within stratified epithelia regulates the expression of specific keratin gene. Any mutation in, or autoantibodies to keratins, desmosomal and cornified envelope proteins is translated into genetic and acquired human disorders. Sound knowledge of structural proteins, their expression, distribution and function plays a vital role in acquainting with these disorders and their application as differentiation markers. Thus, they form an integral aid in diagnostic pathology and may be instrumental in the future interventions by gene therapy. This review focuses on basics to current updates on oral cytokeratins with an emphasis on the genetic and acquired disorders of cytokeratins with oral implications.
口腔黏膜的动态特性因其固有的防御性质而为人所知。某些区域在受到机械损伤时需要坚固的屏障。口腔上皮表层鳞状细胞中的细胞骨架(由称为细胞角蛋白的细胞内蛋白质细丝组成)作为结构支撑材料满足了这一需求。它们同样对牙源性器官和唾液腺的结构有贡献。复层上皮内上皮细胞的分化调节特定角蛋白基因的表达。角蛋白、桥粒和角化包膜蛋白的任何突变或自身抗体都会转化为遗传性和获得性人类疾病。对结构蛋白及其表达、分布和功能的充分了解在认识这些疾病以及将其用作分化标志物方面起着至关重要的作用。因此,它们在诊断病理学中是不可或缺的辅助手段,并且在未来的基因治疗干预中可能发挥作用。本综述重点关注口腔细胞角蛋白从基础到当前的最新进展,重点是具有口腔影响的细胞角蛋白的遗传性和获得性疾病。