Dopamine synthesis and transport: current and novel therapeutics for parkinsonisms

Author:

Tai Mary Dayne Sia1ORCID,Gamiz-Arco Gloria1ORCID,Martinez Aurora123ORCID

Affiliation:

1. 1Department of Biomedicine, University of Bergen, 5009 Bergen, Norway

2. 2K.G. Jebsen Center for Translational Research in Parkinson's Disease, University of Bergen, 5020 Bergen, Norway

3. 3Neuro-SysMed, Department of Neurology, Haukeland University Hospital, 5021 Bergen, Norway

Abstract

Parkinsonism is the primary type of movement disorder in adults, encompassing a set of clinical symptoms, including rigidity, tremors, dystonia, bradykinesia, and postural instability. These symptoms are primarily caused by a deficiency in dopamine (DA), an essential neurotransmitter in the brain. Currently, the DA precursor levodopa (synthetic L-DOPA) is the standard medication to treat DA deficiency, but it only addresses symptoms rather than provides a cure. In this review, we provide an overview of disorders associated with DA dysregulation and deficiency, particularly Parkinson's disease and rare inherited disorders leading predominantly to dystonia and/or parkinsonism, even in childhood. Although levodopa is relatively effective for the management of motor dysfunctions, it is less effective for severe forms of parkinsonism and is also associated with side effects and a loss of efficacy over time. We present ongoing efforts to reinforce the effect of levodopa and to develop innovative therapies that target the underlying pathogenic mechanisms affecting DA synthesis and transport, increasing neurotransmission through disease-modifying approaches, such as cell-based therapies, nucleic acid- and protein-based biologics, and small molecules.

Publisher

Portland Press Ltd.

Reference122 articles.

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