Molecular Targets and Therapeutic Interventions against Neurodegenerative Diseases
Herausgeber: Patil, Vaishali Manikrao; Masand, Neeraj; Kumar, Dileep
Molecular Targets and Therapeutic Interventions against Neurodegenerative Diseases
Herausgeber: Patil, Vaishali Manikrao; Masand, Neeraj; Kumar, Dileep
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This book covers recent advancements in understanding and treating neurodegenerative diseases. It reviews current strategies, introduces potential novel targets, and explores the roles of ethnomedicines, microglia, and neuropharmacological mechanisms. This book is for neuroscientists, neurologists, and students of neuroscience.
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This book covers recent advancements in understanding and treating neurodegenerative diseases. It reviews current strategies, introduces potential novel targets, and explores the roles of ethnomedicines, microglia, and neuropharmacological mechanisms. This book is for neuroscientists, neurologists, and students of neuroscience.
Produktdetails
- Produktdetails
- Verlag: CRC Press
- Seitenzahl: 300
- Erscheinungstermin: 30. März 2025
- Englisch
- Abmessung: 260mm x 183mm x 21mm
- Gewicht: 763g
- ISBN-13: 9781032828046
- ISBN-10: 1032828048
- Artikelnr.: 71779004
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
- Verlag: CRC Press
- Seitenzahl: 300
- Erscheinungstermin: 30. März 2025
- Englisch
- Abmessung: 260mm x 183mm x 21mm
- Gewicht: 763g
- ISBN-13: 9781032828046
- ISBN-10: 1032828048
- Artikelnr.: 71779004
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
Vaishali Manikaro Patil holds the position of Principal/Head at Charak School of Pharmacy, Chaudhary Charan Singh University in Meerut, India, and also serves as a Visiting Professor at the Faculty of Pharmaceutical Sciences, UCSI University in Kuala Lumpur, Malaysia. With over 17 years of academic and 3 years of industrial experience, her primary research lies in medicinal chemistry and computer-aided drug design, focusing on quantitative structure-activity relationship studies, drug-receptor interactions, and the synthesis of small heterocyclic molecules. Dr Patil, a recipient of prestigious awards, has authored numerous research papers, books, and book chapters, contributing globally through lectures and participation in scientific communities including the World Health Organization, American Chemical Society, and APTI-India. Dileep Kumar, holding degrees from Manipal University and S.G.S.I.T.S Indore, serves as an Assistant Professor at Poona College of Pharmacy and also has a visiting faculty position at the University of California, Davis. With research interests in the design of GluN2B selective NMDA receptor antagonists and amyloid-ß protein aggregation inhibitors for Alzheimer's disease treatment, Dr Kumar actively contributes to cancer research at UC Davis Comprehensive Cancer Center. Neeraj Masand, Assistant Professor at Lala Lajpat Rai Memorial Medical College in Meerut, earned degrees from North Maharashtra University and Dr. A. P. J. Abdul Kalam Technical University, Lucknow. With over 16 years of academic and research experience, his current research focuses on designing gamma-secretase inhibitors for Alzheimer's disease treatment and synthesizing novel heterocyclic analogues. Dr Masand has authored numerous research papers, books, and book chapters.
1. Comprehensive review on Alzheimer's disease: Recent approaches and
treatment strategies2. Potential Novel Molecular Targets at the forefront
of Neurodegenerative Research3. Novel Targets for Alzheimer
Pharmacotherapy: Update on JNK3, GSK3ß and Fyn kinase inhibitors and
related approaches4. The TREM2 Receptor Puzzle in Alzheimer's Disease:
Assembling the Pieces5. Phosphodiesterase: A safe and potential target for
Alzheimer's therapeutics6. The NMDA receptor hypothesis in Alzheimer's
disease: Unraveling the mechanisms7. Artificial intelligence and machine
learning based advances in the management of neurodegenerative diseases8.
Microglia new avenue in the cure and treatment of Alzheimer's disease9.
Neuropharmacological mechanisms: SARS CoV-210. Current perspectives on
pyrazole scaffolds and their potential impact on Alzheimer disease11. Role
and therapeutic perspectives of oxidative stress in neurodegenerative
diseases12. Herbs and Natural Products for Neurodegenerative Disorders13.
Role of nanotechnology in Multiple Sclerosis14. Therapeutic advancement in
the treatment of neurodegenerative disease15. Recent Developments in
Nanotechnology Based Therapeutics for the Treatment of Alzheimer's disease.
Index
treatment strategies2. Potential Novel Molecular Targets at the forefront
of Neurodegenerative Research3. Novel Targets for Alzheimer
Pharmacotherapy: Update on JNK3, GSK3ß and Fyn kinase inhibitors and
related approaches4. The TREM2 Receptor Puzzle in Alzheimer's Disease:
Assembling the Pieces5. Phosphodiesterase: A safe and potential target for
Alzheimer's therapeutics6. The NMDA receptor hypothesis in Alzheimer's
disease: Unraveling the mechanisms7. Artificial intelligence and machine
learning based advances in the management of neurodegenerative diseases8.
Microglia new avenue in the cure and treatment of Alzheimer's disease9.
Neuropharmacological mechanisms: SARS CoV-210. Current perspectives on
pyrazole scaffolds and their potential impact on Alzheimer disease11. Role
and therapeutic perspectives of oxidative stress in neurodegenerative
diseases12. Herbs and Natural Products for Neurodegenerative Disorders13.
Role of nanotechnology in Multiple Sclerosis14. Therapeutic advancement in
the treatment of neurodegenerative disease15. Recent Developments in
Nanotechnology Based Therapeutics for the Treatment of Alzheimer's disease.
Index
1. Comprehensive review on Alzheimer's disease: Recent approaches and
treatment strategies2. Potential Novel Molecular Targets at the forefront
of Neurodegenerative Research3. Novel Targets for Alzheimer
Pharmacotherapy: Update on JNK3, GSK3ß and Fyn kinase inhibitors and
related approaches4. The TREM2 Receptor Puzzle in Alzheimer's Disease:
Assembling the Pieces5. Phosphodiesterase: A safe and potential target for
Alzheimer's therapeutics6. The NMDA receptor hypothesis in Alzheimer's
disease: Unraveling the mechanisms7. Artificial intelligence and machine
learning based advances in the management of neurodegenerative diseases8.
Microglia new avenue in the cure and treatment of Alzheimer's disease9.
Neuropharmacological mechanisms: SARS CoV-210. Current perspectives on
pyrazole scaffolds and their potential impact on Alzheimer disease11. Role
and therapeutic perspectives of oxidative stress in neurodegenerative
diseases12. Herbs and Natural Products for Neurodegenerative Disorders13.
Role of nanotechnology in Multiple Sclerosis14. Therapeutic advancement in
the treatment of neurodegenerative disease15. Recent Developments in
Nanotechnology Based Therapeutics for the Treatment of Alzheimer's disease.
Index
treatment strategies2. Potential Novel Molecular Targets at the forefront
of Neurodegenerative Research3. Novel Targets for Alzheimer
Pharmacotherapy: Update on JNK3, GSK3ß and Fyn kinase inhibitors and
related approaches4. The TREM2 Receptor Puzzle in Alzheimer's Disease:
Assembling the Pieces5. Phosphodiesterase: A safe and potential target for
Alzheimer's therapeutics6. The NMDA receptor hypothesis in Alzheimer's
disease: Unraveling the mechanisms7. Artificial intelligence and machine
learning based advances in the management of neurodegenerative diseases8.
Microglia new avenue in the cure and treatment of Alzheimer's disease9.
Neuropharmacological mechanisms: SARS CoV-210. Current perspectives on
pyrazole scaffolds and their potential impact on Alzheimer disease11. Role
and therapeutic perspectives of oxidative stress in neurodegenerative
diseases12. Herbs and Natural Products for Neurodegenerative Disorders13.
Role of nanotechnology in Multiple Sclerosis14. Therapeutic advancement in
the treatment of neurodegenerative disease15. Recent Developments in
Nanotechnology Based Therapeutics for the Treatment of Alzheimer's disease.
Index







