Deep brain stimulation in alpha-synuclein models of Parkinson's disease: Bridging the translational gap.
Deep brain stimulation in alpha-synuclein models of Parkinson's disease: Bridging the translational gap.
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Original abstract
Deep brain stimulation (DBS) is an established therapy for advanced medication-resistant Parkinson's disease (PD), yet its ability to alter the course of the disease remains uncertain. Although preclinical research using toxin-induced PD models demonstrate neuroprotective effects, clinical studies in PD patients undergoing DBS have not substantiated these findings. This disconnect may be attributed to factors such as the initiation of DBS late in disease, stimulation protocols targeting symptoms rather than pathology, and the limited translational relevance of animal models lacking hallmark alpha-synuclein (α-Syn) aggregation. Incorporating α-Syn-based models may bridge this gap by facilitating the discovery of early electrophysiological biomarkers of pathological progression, refining stimulation parameters to enhance α-Syn clearance, and assessing if early DBS intervention can mitigate neurodegeneration. Yet, only a limited number of DBS studies have employed α-Syn models to date. This review examines the translational gap between preclinical neuroprotection claims and clinical outcomes, focusing on how α-Syn-based models could resolve current limitations in DBS research. Prioritizing these models could clarify whether DBS has the potential to extend beyond symptomatic relief and directly engage PD's underlying neurodegenerative mechanisms. Achieving this goal requires systematic investigation of DBS influences on α-Syn accumulation and its electrophysiological correlates in disease-relevant models.Plain language summary titleDeep Brain Stimulation in Alpha-Synuclein Models of Parkinson's Disease: Bridging the Translational Gap.