Al-Khalili Szigyarto Cristina
Science for Life Laboratory, KTH - Royal Institute of Technology , Solna, Sweden.
School of Chemistry, Biotechnology and Health, KTH - Royal Institute of Technology , Stockholm, Sweden.
Expert Rev Proteomics. 2020 May;17(5):365-375. doi: 10.1080/14789450.2020.1773806.
Early biomarker discovery studies have praised the value of their emerging results, predicting an unprecedented impact on health care. Biomarkers are expected to provide tests with increased specificity and sensitivity compared to existing measures, improve the decision-making process, and accelerate the development of therapies. For rare disorders, like Duchenne Muscular Dystrophy (DMD) such biomarkers can assist the development of therapies, therefore also helping to find a cure for the disease.
State-of-the-art technologies have been used to identify blood biomarkers for DMD and efforts have been coordinated to develop and promote translation of biomarkers for clinical practice. Biomarker translation to clinical practice is however, adjoined by challenges related to the complexity of the disease, involving numerous biological processes, and the limited sample resources. This review highlights the current progress on the development of biomarkers, describing the proteomics technologies used, the most promising findings and the challenges encountered.
Strategies for effective use of samples combined with orthogonal proteomics methods for protein quantification are essential for translating biomarkers to the patient's bed side. Progress is achieved only if strong evidence is provided that the biomarker constitutes a reliable indicator of the patient's health status for a specific context of use.
早期生物标志物发现研究对其新出现的结果的价值赞誉有加,预测其将对医疗保健产生前所未有的影响。与现有检测方法相比,生物标志物有望提供特异性和灵敏度更高的检测,改善决策过程,并加速治疗方法的研发。对于像杜氏肌营养不良症(DMD)这样的罕见疾病,此类生物标志物可助力治疗方法的研发,从而也有助于找到治愈该疾病的方法。
已采用最先进技术来识别DMD的血液生物标志物,并且已开展协调工作以开发和推动生物标志物向临床实践的转化。然而,生物标志物向临床实践的转化伴随着与疾病复杂性相关的挑战,该疾病涉及众多生物过程,且样本资源有限。本综述着重介绍了生物标志物开发的当前进展,描述了所使用的蛋白质组学技术、最有前景的发现以及所遇到的挑战。
将样本的有效使用策略与用于蛋白质定量的正交蛋白质组学方法相结合,对于将生物标志物转化到患者床边至关重要。只有提供有力证据表明该生物标志物在特定使用背景下构成患者健康状况的可靠指标,才能取得进展。