Astrocytes in human central nervous system diseases: a frontier for new therapies
Астроциты при заболеваниях центральной нервной системы человека: рубеж для новых терапий
2023-10-12
SCID: 54.1/qwnra9hs
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astrocytopathiesastrogliaastroglial atrophyastroglial pathophysiologyreactive astrogliosis
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Abstract (AI)
Astroglia are a broad class of neural parenchymal cells primarily dedicated to homoeostasis and defence of the central nervous system (CNS). Astroglia contribute to the pathophysiology of all neurological and neuropsychiatric disorders in ways that can be either beneficial or detrimental to disorder outcome. Pathophysiological changes in astroglia can be primary or secondary and can result in gain or loss of functions. Astroglia respond to external, non-cell autonomous signals associated with any form of CNS pathology by undergoing complex and variable changes in their structure, molecular expression, and function. In addition, internally driven, cell autonomous changes of astroglial innate properties can lead to CNS pathologies. Astroglial pathophysiology is complex, with different pathophysiological cell states and cell phenotypes that are context-specific and vary with disorder, disorder-stage, comorbidities, age, and sex. Here, we classify astroglial pathophysiology into (i) reactive astrogliosis, (ii) astroglial atrophy with loss of function, (iii) astroglial degeneration and death, and (iv) astrocytopathies characterised by aberrant forms that drive disease. We review astroglial pathophysiology across the spectrum of human CNS diseases and disorders, including neurotrauma, stroke, neuroinfection, autoimmune attack and epilepsy, as well as neurodevelopmental, neurodegenerative, metabolic and neuropsychiatric disorders. Characterising cellular and molecular mechanisms of astroglial pathophysiology represents a new frontier to identify novel therapeutic strategies.
Key Findings
1
Astroglia (astrocytes) contribute to pathophysiology of all neurological and neuropsychiatric disorders, with effects that can be beneficial or detrimental to outcomes.
2
Astroglial pathophysiological changes can be primary or secondary and manifest as gains or losses of function, driven by external non-cell-autonomous signals or internal cell-autonomous changes.
3
Astroglial pathophysiology can be classified into four categories: reactive astrogliosis, astroglial atrophy with loss of function, astroglial degeneration and death, and astrocytopathies with aberrant disease-driving forms.
4
Astroglial pathophysiology is heterogeneous and context-specific, varying with disorder type, disease stage, comorbidities, age, and sex.
5
Characterising cellular and molecular mechanisms of astroglial pathophysiology across CNS disorders is a frontier for identifying novel therapeutic strategies.
Research Object
Astroglia (astrocytes) in the human central nervous system and their pathophysiological states across CNS diseases
Research Subject
Cellular and molecular pathophysiology of astroglia — including reactive astrogliosis, atrophy with loss of function, degeneration/death, and aberrant astrocytopathies — and how these states contribute to or drive diverse human CNS diseases, to inform novel therapeutic strategies
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2023-10-12
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