口腔液的生化分析用于疾病检测。

2区 医学 Q1 Chemistry Advances in Clinical Chemistry Pub Date : 2021-01-01 Epub Date: 2020-07-10 DOI:10.1016/bs.acc.2020.04.005
Zohaib Khurshid, Ibrahim Warsi, Syed F Moin, Paul D Slowey, Muhammad Latif, Sana Zohaib, Muhammad S Zafar
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引用次数: 25

摘要

使用侵入性血液检测的诊断领域代表了作为常规健康监测一部分的大多数诊断测试。最近引入的唾液诊断导致了诊断分析的主要范式转变。此外,在这个大数据时代,口腔液检测在许多领域显示出有希望的结果,特别是在基因组学、微生物组学、蛋白质组学、代谢组学和转录组学等领域。尽管在解释涉及体液(包括唾液)的生化研究产生的大型数据集时存在分析挑战,但许多研究已经确定了用于诊断口腔和全身性疾病的新型口腔生物标志物。在这方面,唾液、龈沟液(GCF)、种植体周围沟液(PICF)、牙本质管液(DTF)等口腔生物液体因其无创取样、易于处理、成本低、更准确诊断口腔疾病等重要特性而越来越受到人们的关注。最近,利用唾液诊断来评估全身性疾病和监测一般健康在临床医生中越来越受欢迎。唾液含有广泛的蛋白质、DNA和RNA生物标志物,有助于多种疾病和病症的诊断,包括癌症、心血管疾病(CVD)、自身免疫和退行性疾病、呼吸道感染、口腔疾病和微生物(病毒、细菌和真菌)疾病。此外,由于它的非侵入性和易于儿童采用,它现在被用于大规模筛查项目、口腔健康相关研究和临床试验,以支持治疗剂的开发。最近出现的高灵敏度技术,如下一代测序、质谱分析、高灵敏度elisa和均质免疫测定,表明即使少量的唾液生物标志物也能够被准确地分析,为许多未来诊断应用的发展提供了机会(包括新兴技术,如即时护理和快速分子技术)。本文探讨了各种口服生物液体的组学和生化组成,在诊断和监测中具有重要价值。
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Biochemical analysis of oral fluids for disease detection.

The field of diagnostics using invasive blood testing represents the majority of diagnostic tests used as part of routine health monitoring. The relatively recent introduction of salivary diagnostics has lead to a major paradigm shift in diagnostic analyses. Additionally, in this era of big data, oral fluid testing has shown promising outcomes in a number of fields, particularly the areas of genomics, microbiomics, proteomics, metabolomics, and transcriptomics. Despite the analytical challenges involved in the interpretation of large datasets generated from biochemical studies involving bodily fluids, including saliva, many studies have identified novel oral biomarkers for diagnosing oral and systemic diseases. In this regard, oral biofluids, including saliva, gingival crevicular fluid (GCF), peri-implant crevicular fluid (PICF), dentinal tubular fluid (DTF), are now attracting increasing attention due to their important attributes, such as noninvasive sampling, easy handling, low cost, and more accurate diagnosis of oral diseases. Recently, the utilization of salivary diagnostics to evaluate systemic diseases and monitor general health has increased in popularity among clinicians. Saliva contains a wide range of protein, DNA and RNA biomarkers, which assist in the diagnosis of multiple diseases and conditions, including cancer, cardiovascular diseases (CVD), auto-immune and degenerative diseases, respiratory infections, oral diseases, and microbial (viral, bacterial and fungal) diseases. Moreover, due to its noninvasive nature and ease-of-adoption by children, it is now being used in mass screening programs, oral health-related studies and clinical trials in support of the development of therapeutic agents. The recent advent of highly sensitive technologies, such as next-generation sequencing, mass spectrometry, highly sensitives ELISAs, and homogeneous immunoassays, suggests that even small quantities of salivary biomarkers are able to be assayed accurately, providing opportunities for the development of many future diagnostic applications (including emerging technologies, such as point-of-care and rapid molecular technologies). The present article explores the omics and biochemical compositions of various oral biofluids with important value in diagnostics and monitoring.

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来源期刊
Advances in Clinical Chemistry
Advances in Clinical Chemistry 医学-医学实验技术
CiteScore
10.60
自引率
0.00%
发文量
53
审稿时长
>12 weeks
期刊介绍: Advances in Clinical Chemistry volumes contain material by leading experts in academia and clinical laboratory science. The reviews cover a wide variety of clinical chemistry disciplines including clinical biomarker exploration, cutting edge microarray technology, proteomics and genomics. It is an indispensable resource and practical guide for practitioners of clinical chemistry, molecular diagnostics, pathology, and clinical laboratory sciences in general.
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