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CELL DEATH --- CELL DEATH
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Neurogenerative diseases encompass very different pathologies, which can be demyelinating or nondemyelinating, but which have common mechanisms such as cell death, oxidative stress and inflammation. A better understanding of these mechanisms allows the search for biomarkers and targets for new therapies. This special issue brings together different data on Alzheimer's disease, Parkinson's disease, and multiple sclerosis, detailing the mechanisms of cell death (necroptosis, ferroptosis), oxidative stress and inflammation but also the possibilities of neuroprotection via 5 research articles and 6 review articles. The different reviews allow us to take stock of cell death, oxidative stress and neuroinflammation in the context of neurodegenerative diseases but also in relation to other pathologies where these processes are involved.
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This book incorporates developments in our understanding of cell death mechanisms and highlights recent advances in programmed cell death regulation processes. It provides the reader with the network of pathways targeted by herbal anticancer drugs and discusses the role of endoplasmic reticulum stress in cell death mechanisms in addition to highlighting the mechanisms of autophagy and its role in diseases. This book provides valuable material for researchers and for teaching postgraduate students. Emphasis on recent advances and their clinical applications offers insights to researchers that will likely lead to the development of novel therapeutic approaches.
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Cell death is critical for embryo development and body growth. Several types of cell death have been discovered. The dysfunction of cell death is responsible for various diseases; however, the mechanism underlying cell death is not fully elucidated. Recent advances in cell death research have led to improved diagnosis, treatment, and clinical management of diverse diseases; however, novel therapeutic strategies are urgently needed. This book presents the most recent advances in cell death and related diseases.
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Cell death is critical for embryo development and body growth. Several types of cell death have been discovered. The dysfunction of cell death is responsible for various diseases; however, the mechanism underlying cell death is not fully elucidated. Recent advances in cell death research have led to improved diagnosis, treatment, and clinical management of diverse diseases; however, novel therapeutic strategies are urgently needed. This book presents the most recent advances in cell death and related diseases.
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Cell death is critical for embryo development and body growth. Several types of cell death have been discovered. The dysfunction of cell death is responsible for various diseases; however, the mechanism underlying cell death is not fully elucidated. Recent advances in cell death research have led to improved diagnosis, treatment, and clinical management of diverse diseases; however, novel therapeutic strategies are urgently needed. This book presents the most recent advances in cell death and related diseases.
Choose an application
Neurogenerative diseases encompass very different pathologies, which can be demyelinating or nondemyelinating, but which have common mechanisms such as cell death, oxidative stress and inflammation. A better understanding of these mechanisms allows the search for biomarkers and targets for new therapies. This special issue brings together different data on Alzheimer's disease, Parkinson's disease, and multiple sclerosis, detailing the mechanisms of cell death (necroptosis, ferroptosis), oxidative stress and inflammation but also the possibilities of neuroprotection via 5 research articles and 6 review articles. The different reviews allow us to take stock of cell death, oxidative stress and neuroinflammation in the context of neurodegenerative diseases but also in relation to other pathologies where these processes are involved.
Choose an application
This book incorporates developments in our understanding of cell death mechanisms and highlights recent advances in programmed cell death regulation processes. It provides the reader with the network of pathways targeted by herbal anticancer drugs and discusses the role of endoplasmic reticulum stress in cell death mechanisms in addition to highlighting the mechanisms of autophagy and its role in diseases. This book provides valuable material for researchers and for teaching postgraduate students. Emphasis on recent advances and their clinical applications offers insights to researchers that will likely lead to the development of novel therapeutic approaches.
Choose an application
Choose an application
This book incorporates developments in our understanding of cell death mechanisms and highlights recent advances in programmed cell death regulation processes. It provides the reader with the network of pathways targeted by herbal anticancer drugs and discusses the role of endoplasmic reticulum stress in cell death mechanisms in addition to highlighting the mechanisms of autophagy and its role in diseases. This book provides valuable material for researchers and for teaching postgraduate students. Emphasis on recent advances and their clinical applications offers insights to researchers that will likely lead to the development of novel therapeutic approaches.
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