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Neuropathology, Genetics and Biomarkers of Synucleinopathies

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Abstract Synucleinopathies are clinically and pathologically heterogeneous disorders characterized by pathologic aggregates of α-synuclein in neurons and glia, in the form of Lewy bodies, Lewy neurites, neuronal cytoplasmic inclusions, and glial cytoplasmic inclusions (GCIs). Synucleinopathies can be divided into two major disease entities: Lewy body disease (LBD) and multiple system atrophy (MSA). Common clinical presentations of LBD are Parkinson's disease (PD), PD with dementia (PDD), and dementia with Lewy bodies (DLB), while MSA has two major clinical subtypes, MSA with predominant cerebellar ataxia (MSA-C) and MSA with predominant parkinsonism (MSA-P). There are currently no disease-modifying therapies for the synucleinopathies, but elucidation of genetics and mechanisms of α-synuclein conversion to pathologic oligomers and insoluble fibrils offer hope for eventual therapies. It remains unclear how α-synuclein can be associated with distinct cellular pathologies (e.g., Lewy bodies and GCI) and what factors determine neuroanatomical and cell type vulnerability. Accumulating evidence from in vitro and in vivo experiments suggests that α-synuclein species derived from LBD and MSA are distinct "strains" having different seeding properties. Recent advancements in in vitro seeding assays, such as real-time quaking-induced conversion (RT-QuIC) and protein misfolding cyclic amplification (PMCA), not only demonstrate distinct seeding activity in the synucleinopathies, but also offer exciting opportunities for molecular diagnosis using readily accessible peripheral tissues. Cryogenic electron microscopy (cryo-EM) structural studies of α-synuclein derived from recombinant or brain-derived filaments provide new insight into mechanisms of seeding in synucleinopathies. In this review, we describe clinical, genetic and neuropathologic features of synucleinopathies, including a review of classification and staging schemes for LBD. We also review evidence supporting the existence of distinct α-synuclein strains in LBD and MSA.
Title: Neuropathology, Genetics and Biomarkers of Synucleinopathies
Description:
Abstract Synucleinopathies are clinically and pathologically heterogeneous disorders characterized by pathologic aggregates of α-synuclein in neurons and glia, in the form of Lewy bodies, Lewy neurites, neuronal cytoplasmic inclusions, and glial cytoplasmic inclusions (GCIs).
Synucleinopathies can be divided into two major disease entities: Lewy body disease (LBD) and multiple system atrophy (MSA).
Common clinical presentations of LBD are Parkinson's disease (PD), PD with dementia (PDD), and dementia with Lewy bodies (DLB), while MSA has two major clinical subtypes, MSA with predominant cerebellar ataxia (MSA-C) and MSA with predominant parkinsonism (MSA-P).
There are currently no disease-modifying therapies for the synucleinopathies, but elucidation of genetics and mechanisms of α-synuclein conversion to pathologic oligomers and insoluble fibrils offer hope for eventual therapies.
It remains unclear how α-synuclein can be associated with distinct cellular pathologies (e.
g.
, Lewy bodies and GCI) and what factors determine neuroanatomical and cell type vulnerability.
Accumulating evidence from in vitro and in vivo experiments suggests that α-synuclein species derived from LBD and MSA are distinct "strains" having different seeding properties.
Recent advancements in in vitro seeding assays, such as real-time quaking-induced conversion (RT-QuIC) and protein misfolding cyclic amplification (PMCA), not only demonstrate distinct seeding activity in the synucleinopathies, but also offer exciting opportunities for molecular diagnosis using readily accessible peripheral tissues.
Cryogenic electron microscopy (cryo-EM) structural studies of α-synuclein derived from recombinant or brain-derived filaments provide new insight into mechanisms of seeding in synucleinopathies.
In this review, we describe clinical, genetic and neuropathologic features of synucleinopathies, including a review of classification and staging schemes for LBD.
We also review evidence supporting the existence of distinct α-synuclein strains in LBD and MSA.

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