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2 produkter
2 produkter
Häftad, Engelska, 2027
2 000 kr
Kommande
Nutritional Epigenetics: Food-Derived microRNAs in Health and Disease offers perspective on the role of dietary microRNAs as pivotal epigenetic regulators influencing health trajectories and disease susceptibility. The book brings together current research on the bioavailability and molecular mechanisms by which plant and food-derived microRNAs modulate gene expression, including their crosstalk with DNA methylation, histone modifications, and gut microbiota. Detailed food-specific chapters examine the epigenetic impact of key dietary sources such as Brassicaceae (crucifers), rice, milk, and fermented products, highlighting their transgenerational and life-stage effects. Practical insights into food processing, culinary traditions, and the design of microRNA-fortified products bridge the gap between bench science and real-world applications. Nutritional Epigenetics equips researchers, clinicians, and industry innovators with a resource that advances the understanding of microRNA-mediated nutritional epigenomics, while guiding the development and safety assessment of microRNA-enhanced functional foods. By integrating molecular biology with population-level evidence and translational strategies, this text fosters the development of novel dietary interventions aimed at optimizing health across the lifespan and mitigating chronic disease risk.Examines the molecular mechanisms by which dietary microRNAs modulate epigenetic regulationAnalyzes the bioavailability and gene-targeting specificity of plant-derived microRNAsEvaluates transgenerational and life-stage impacts of food-derived microRNAs on health outcomesInterprets current epidemiological evidence and regulatory policies relevant to microRNA-enhanced functional foodsDevelops strategies for designing and implementing microRNA-fortified foods in clinical and commercial contexts
Häftad, Engelska, 2026
2 052 kr
Kommande
Nanomedicine for Neurological Disorders: Design, Delivery, and Clinical Perspectives addresses the urgent need for innovative solutions in treating complex neurological and neurodegenerative diseases. As the global burden of conditions such as Alzheimer's, Parkinson's, multiple sclerosis, and brain tumors continues to rise, the scientific community faces the critical challenge of safely and effectively delivering therapeutics across the blood-brain barrier. This reference meets the needs of neuroscientists, clinicians, pharmaceutical scientists, and biomedical engineers seeking advanced strategies and translational insights in neuro-nanomedicine. The contents are structured to provide a comprehensive, interdisciplinary exploration of the field. Chapters cover the anatomy and connectivity of the human brain, the global burden and mechanisms of neurological disorders, conventional and nanomedicine-based drug delivery systems, and the intricacies of the blood-brain barrier. Readers will benefit from detailed analyses of nanocarrier engineering, stability, analytical techniques, toxicological safety, regulatory challenges, and artificial intelligence-driven drug design. Real-world case studies, clinical trial data, and future outlooks are presented alongside ethical and patient-centric considerations, ensuring a holistic perspective on the evolving landscape of neuro-nanomedicine. Nanomedicine for Neurological Disorders delivers essential benefits by bridging the gap between laboratory innovation and clinical practice. It equips readers with practical knowledge, foundational advances, and visionary insights to inspire new research directions, inform better decision-making, and accelerate the development of safer, more precise treatments for brain-related disorders. This reference is an indispensable resource for researchers, clinicians, and innovators at the forefront of neurological therapeutics.Identifies clinical applications of nanotechnologies for neurological disordersExplains strategies to cross the blood-brain barrier using nanocarriersPresents real-world case studies and future directions in neuro-nanomedicineClarifies analytical and regulatory frameworks for neuro-nanomedicine translationIntegrates ethical considerations and patient-centric approaches in therapeutic design