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Circulating nucleic acids in the plasma and serum as potential biomarkers in neurological disorders

机译:血浆和血清中循环核酸作为神经系统疾病中的潜在生物标志物

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Neurological diseases are responsible for approximately 6.8 million deaths every year. They affect up to 1 billion people worldwide and cause significant disability and reduced quality of life. In most neurological disorders, the diagnosis can be challenging; it frequently requires long-term investigation. Thus, the discovery of better diagnostic methods to help in the accurate and fast diagnosis of neurological disorders is crucial. Circulating nucleic acids (CNAs) are defined as any type of DNA or RNA that is present in body biofluids. They can be found within extracellular vesicles or as cell-free DNA and RNA. Currently, CNAs are being explored as potential biomarkers for diseases because they can be obtained using non-invasive methods and may reflect unique characteristics of the biological processes involved in several diseases. CNAs can be especially useful as biomarkers for conditions that involve organs or structures that are difficult to assess, such as the central nervous system. This review presents a critical assessment of the most current literature about the use of plasma and serum CNAs as biomarkers for several aspects of neurological disorders: defining a diagnosis, establishing a prognosis, and monitoring the disease progression and response to therapy. We explored the biological origin, types, and general mechanisms involved in the generation of CNAs in physiological and pathological processes, with specific attention to neurological disorders. In addition, we present some of the future applications of CNAs as non-invasive biomarkers for these diseases.
机译:神经系统疾病每年均负责约680万人死亡。它们影响全球最多10亿人,并造成重大残疾和减少生活质量。在大多数神经系统疾病中,诊断可能具有挑战性;它经常需要长期调查。因此,发现更好的诊断方法,以帮助准确和快速诊断神经系统疾病是至关重要的。循环核酸(CNA)定义为在体生物流体中存在的任何类型的DNA或RNA。它们可以在细胞外囊泡中或无细胞DNA和RNA中发现。目前,CNA正在探索为疾病的潜在生物标志物,因为它们可以使用非侵入性方法获得,并且可以反映涉及几种疾病的生物过程的独特特征。 CNA可以特别有用作为涉及难以评估的器官或结构的条件的生物标志物,例如中枢神经系统。本综述提出了对最目前关于使用血浆和血清CNA作为生物标志物的最新文献的关键评估,用于神经系统疾病的几个方面:定义诊断,建立预后,并监测疾病进展和治疗的反应。我们探讨了生理和病理过程中CNA生成的生物来源,类型和一般机制,具有特别关注神经系统疾病。此外,我们将CNA的一些未来应用作为这些疾病的非侵入性生物标志物。

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