Khorrami Motahare, Pastras Christopher, Haynes Paul A, Mirzaei Mehdi, Asadnia Mohsen
Faculty of Science and Engineering, School of Engineering, Macquarie University, Sydney 2109, NSW, Australia.
School of Natural Sciences, Macquarie University, Macquarie Park, Sydney 2109, NSW, Australia.
Proteomes. 2024 Jun 4;12(2):17. doi: 10.3390/proteomes12020017.
Characterising inner ear disorders represents a significant challenge due to a lack of reliable experimental procedures and identified biomarkers. It is also difficult to access the complex microenvironments of the inner ear and investigate specific pathological indicators through conventional techniques. Omics technologies have the potential to play a vital role in revolutionising the diagnosis of ear disorders by providing a comprehensive understanding of biological systems at various molecular levels. These approaches reveal valuable information about biomolecular signatures within the cochlear tissue or fluids such as the perilymphatic and endolymphatic fluid. Proteomics identifies changes in protein abundance, while metabolomics explores metabolic products and pathways, aiding the characterisation and early diagnosis of diseases. Although there are different methods for identifying and quantifying biomolecules, mass spectrometry, as part of proteomics and metabolomics analysis, could be utilised as an effective instrument for understanding different inner ear disorders. This study aims to review the literature on the application of proteomic and metabolomic approaches by specifically focusing on Meniere's disease, ototoxicity, noise-induced hearing loss, and vestibular schwannoma. Determining potential protein and metabolite biomarkers may be helpful for the diagnosis and treatment of inner ear problems.
由于缺乏可靠的实验程序和已确定的生物标志物,对内耳疾病进行特征描述是一项重大挑战。此外,通过传统技术难以进入内耳复杂的微环境并研究特定的病理指标。组学技术有潜力通过在各种分子水平上全面了解生物系统,在彻底改变耳部疾病诊断方面发挥至关重要的作用。这些方法揭示了有关耳蜗组织或液体(如外淋巴液和内淋巴液)中生物分子特征的有价值信息。蛋白质组学可识别蛋白质丰度的变化,而代谢组学则探索代谢产物和途径,有助于疾病的特征描述和早期诊断。尽管有不同的方法来识别和定量生物分子,但作为蛋白质组学和代谢组学分析一部分的质谱分析法,可作为了解不同内耳疾病的有效工具。本研究旨在通过特别关注梅尼埃病、耳毒性、噪声性听力损失和前庭神经鞘瘤,回顾有关蛋白质组学和代谢组学方法应用的文献。确定潜在的蛋白质和代谢物生物标志物可能有助于内耳问题的诊断和治疗。