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RESEARCH PAPER ANALYSIS

Distinctive characteristics of dopamine neuron release mechanisms: Insights into Parkinson's Disease.

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PMID42208351
JournalBiomedicine & pharmacotherapy = Biomedecine & pharmacotherapie
Publication Date2026-05-28
Ingested2026-05-29 04:00 PM
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ABSTRACT

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Parkinson's disease (PD) is the second most prevalent neurodegenerative disorder worldwide, after Alzheimer's disease, and is characterized not only by progressive motor dysfunction but also by a wide array of non-motor symptoms that frequently emerge during the prodromal phase. These early manifestations, including cognitive and neuropsychiatric impairments, autonomic dysfunction, and sleep disturbances, contribute substantially to disease burden and often precede the onset of motor impairments by years. Although degeneration of dopaminergic neurons in the substantia nigra pars compacta (SNpc) and α-synuclein (α-syn) pathology define the classical neuropathology of PD, the molecular basis of selective neuronal vulnerability remains incompletely understood. Growing evidence suggests that calcium (Ca2 +) dysregulation, mitochondrial dysfunction, oxidative stress, and impaired axonal transport converge to produce early synaptic and axonal failure. Importantly, disruptions in dopamine (DA) release, reuptake, and synaptic vesicle (SV) cycling arise well before overt nigrostriatal degeneration and long before clinically detectable DA depletion. These early presynaptic alterations are increasingly recognized as key drivers of motivational, affective, and reward-processing deficits that typify prodromal PD. In this review, we synthesize evidence supporting the hypothesis that axonal and synaptic dysfunction precedes dopaminergic cell body loss and represents a primary site of disease initiation. We focus on the molecular machinery governing presynaptic DA transmission and examine how its disruption contributes to early circuit dysfunction and progressive neurodegeneration. By looking at these early pathophysiological events, we aim to advance the understanding of PD initiation and identify potential avenues for early diagnosis and disease-modifying interventions.

SUPPORTING PAPER SET

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B, Biointerfaces 86.0 13 Neuroprotective roles of klotho: Molecular pathways and therapeutic implications for cognitive health in neurological and psychiatric diseases. Experimental physiology 84.0 14 Flavonoid Rutin Reduces Intestinal Inflammation in an Experimental Model of Parkinson's Disease. Neurotoxicity research 70.0 15 Nanostructured Lipid Carriers Enhance Brain Delivery and Antioxidant Efficacy of a Small-Molecule MAO B Inhibitor for Neurodegenerative Disease Therapy. Molecular pharmaceutics 78.0 16 Pathophysiological Role of the Gut Brain Axis in Parkinson's Disease: From Microbial Metabolites and Intestinal Permeability to Central Neuroinflammation. Current neurovascular research 86.0 17 Parkinson's Disease: From Metabolism to Genetics-A Comprehensive Review. Current issues in molecular biology 86.0 18 Navigating the cholesterol maze: Key insights on use of statins in neurodegenerative disorders. Neuroprotection (Chichester, England) 76.0 19 Integrative network pharmacology delineates dual GPCR and non-GPCR mechanisms of blended and individual Taikong Blue lavender and Pingyin rose essential oils in neurodegenerative and psychiatric disorders. Computers in biology and medicine 65.0 20 Models of neuroprotection in Parkinson's disease: Exploring cellular, molecular, and microenvironmental targets. Experimental neurology 78.0 21 Hyaluronic acid: emerging roles and biomaterial innovations in Alzheimer's and Parkinson's disease therapy. Frontiers in pharmacology 75.2 22 Molecular mechanisms underlying Parkinson's disease and role of phytochemicals, α-synuclein, sirtuins, and incretin mimetics in potential therapy. Frontiers in pharmacology 75.0 23 Lipid droplets in neurodegenerative diseases: pathological drivers and therapeutic vulnerabilities. Cell death discovery 82.0 24 Brain-gut-microbiota axis: a review on the bidirectional regulatory mechanisms between gut microbiota and brain and their disease interactions. Frontiers in microbiology 74.0 25 Long non-coding RNAs in neurodegenerative diseases - Molecular mechanisms, liquid biopsy biomarkers, and therapeutic targets: A review. Biomolecules & biomedicine 84.0 26 Neurosyphilis and Parkinsonism: Overlapping Pathophysiology and Emerging Therapeutic Insights. Current neurovascular research 76.0 27 Molecular biochemistry of soluble epoxide hydrolase in lipid mediator pathways and neuroinflammatory responses. The Journal of steroid biochemistry and molecular biology 82.0 28 Multifaceted role of CNPY2 beyond ER stress: Disease implications and therapeutic potential. Cell stress 83.3 29 Neuroprotective Role of Exercise-based Physiotherapy Combined with Pharmacological Agents in Parkinson's Disease. Central nervous system agents in medicinal chemistry 64.0 30 Distinct metabolomic and proteomic signatures in Parkinson's disease patients with REM sleep behavior disorder. Signal transduction and targeted therapy 84.0 31 HMGB1-mediated neuroinflammation: molecular mechanisms and emerging therapeutic approaches. Inflammopharmacology 78.0 32 Beyond acid-base dyshomeostasis: Dynamic instability of neuronal lysosomal pH as a pathogenic mechanism and therapeutic target in neurological diseases. Biochemical pharmacology 88.0
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