4.4 Article

Cytokines, miRNAs, and Antioxidants as Combined Non-invasive Biomarkers for Parkinson's Disease

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JOURNAL OF MOLECULAR NEUROSCIENCE
卷 72, 期 5, 页码 1133-1140

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DOI: 10.1007/s12031-022-01984-1

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Parkinson's disease; Blood-based biomarker; Cytokines; alpha-Synuclein; Oxidative stress; miRNA

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Parkinson's disease (PD) is a common degenerative disorder of the CNS that primarily affects the human locomotor system. This study aimed to evaluate changes in blood-based biomarkers in PD patients. The results showed an increase in cytokine levels and a positive correlation among them in PD patients. Additionally, an increase in alpha-synuclein protein levels and a decrease in miR-214 levels were observed. Furthermore, decreases in levels of miR-221, miR-141, UA, PON1, and ARE were also found. A mix of noninvasive biomarkers is required to accurately predict disease state and progression in PD.
Parkinson's disease (PD) is one of the most common long-term degenerative disorders of the CNS that primarily affects the human locomotor system. Owing to the heterogeneity of PD etiology and the lack of appropriate diagnostic tests, blood-based biomarkers became the most promising method for diagnosing PD. Even though various biomarkers for PD have been found, their specificity and sensitivity are not optimum when used alone. Therefore, the aim of this study was directed to evaluate changes in a group of sensitive blood-based biomarkers in the same PD patients compared to healthy individuals. Serum samples were collected from 20 PD patients and 15 age-matched healthy controls. We analyzed serum levels of cytokines (IL10, IL12, and TNF-alpha), alpha-synuclein proteins, miRNAs (miR-214, miR-221, and miR-141), and antioxidants (UA, PON1, ARE). Our results showed an increase in sera levels of cytokines in PD patients as well as a positive correlation among them. Also, we found a significant increase in sera levels of alpha-synuclein protein associated with a decrease in miR-214 which regulates its gene expression. Lastly, we observed a decrease in sera levels of miR-221, miR-141, UA, PON1, and ARE, which have a prominent role against oxidative stress. Because of the many etiologies of PD, a single measure is unlikely to become a useful biomarker. Therefore, to correctly predict disease state and progression, a mix of noninvasive biomarkers is required. Although considerable work has to be done, this study sheds light on the role of certain biomarkers in the diagnosis of PD.

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