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Impact of TRPV1 on Pathogenesis and Therapy of Neurodegenerative Diseases
by
Sun, Tao
, Wang, Wenxin
in
Advertising executives
/ Agonists
/ Alzheimer's disease
/ antagonists
/ Autophagy
/ Binding sites
/ Brain research
/ Dementia
/ Development and progression
/ Disease
/ Health aspects
/ Kinases
/ Memory
/ Multiple sclerosis
/ Nervous system
/ Nervous system diseases
/ neurodegenerative diseases
/ neuroinflammation
/ Pathogenesis
/ Pathology
/ Physiology
/ Proteins
/ Review
/ Signal transduction
/ TRPV1
2023
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Impact of TRPV1 on Pathogenesis and Therapy of Neurodegenerative Diseases
by
Sun, Tao
, Wang, Wenxin
in
Advertising executives
/ Agonists
/ Alzheimer's disease
/ antagonists
/ Autophagy
/ Binding sites
/ Brain research
/ Dementia
/ Development and progression
/ Disease
/ Health aspects
/ Kinases
/ Memory
/ Multiple sclerosis
/ Nervous system
/ Nervous system diseases
/ neurodegenerative diseases
/ neuroinflammation
/ Pathogenesis
/ Pathology
/ Physiology
/ Proteins
/ Review
/ Signal transduction
/ TRPV1
2023
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Do you wish to request the book?
Impact of TRPV1 on Pathogenesis and Therapy of Neurodegenerative Diseases
by
Sun, Tao
, Wang, Wenxin
in
Advertising executives
/ Agonists
/ Alzheimer's disease
/ antagonists
/ Autophagy
/ Binding sites
/ Brain research
/ Dementia
/ Development and progression
/ Disease
/ Health aspects
/ Kinases
/ Memory
/ Multiple sclerosis
/ Nervous system
/ Nervous system diseases
/ neurodegenerative diseases
/ neuroinflammation
/ Pathogenesis
/ Pathology
/ Physiology
/ Proteins
/ Review
/ Signal transduction
/ TRPV1
2023
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Impact of TRPV1 on Pathogenesis and Therapy of Neurodegenerative Diseases
Journal Article
Impact of TRPV1 on Pathogenesis and Therapy of Neurodegenerative Diseases
2023
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Overview
Transient receptor potential vanilloid 1 (TRPV1) is a transmembrane and non-selective cation channel protein, which can be activated by various physical and chemical stimuli. Recent studies have shown the strong pathogenetic associations of TRPV1 with neurodegenerative diseases (NDs), in particular Alzheimer’s disease (AD), Parkinson’s disease (PD) and multiple sclerosis (MS) via regulating neuroinflammation. Therapeutic effects of TRPV1 agonists and antagonists on the treatment of AD and PD in animal models also are emerging. We here summarize the current understanding of TRPV1’s effects and its agonists and antagonists as a therapeutic means in neurodegenerative diseases, and highlight future treatment strategies using natural TRPV1 agonists. Developing new targets and applying natural products are becoming a promising direction in the treatment of chronic disorders, especially neurodegenerative diseases.
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