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Biomedical Applications and Toxicity of Nanomaterials
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Main description:

This book covers the recent trends on the biological applications of nanomaterials, methods for their preparation, and techniques for their characterization. Further, the book examines the fundamentals of nanotoxicity, methods to assess the toxicity of engineered nanomaterials, approaches to reduce toxicity during synthesis. It also provides an overview of the state of the art in the application of Artificial intelligence-based methodologies for evaluation of toxicity of drugs and nanoparticles. The book further discusses nanocarrier design, routes of various nanoparticle administration, nano based drug delivery systems, and the toxicity challenges associated with each drug delivery method. It presents the latest advances in the interaction of nanoparticles with the cellular environment and assess nanotoxicity of these engineered nanoparticles. The book also explores the comparative and mechanistic genotoxicity assessment of the nanomaterials. This book is useful source of information for industrial practitioners, policy makers, and other professionals in the fields of toxicology, medicine, pharmacology, food, and drugs.


Contents:

Chapter 1_Macroporous cryogel-based systems for water treatment applications and safety: nanocomposite-based cryogels and bacteria-based bioreactors. - Chapter 2_One dimensional Semiconducting Nanomaterials: Toxicity and Clinical Applications. - Chapter 3_Prospects of safe use of Nanomaterials in Biomedical applications. - Chapter 4_Hyaluronic Acid based Nanotechnologies for delivery and treatment. - Chapter 5_Theranostics nanomaterials for safe cancer treatment. - Chapter 6_Cardiovascular Safety Assessment of New Chemical Entities: Current Perspective and Emerging Technologies. - Chapter 7_Toxicology of Pharmaceutical products during drug development. - Chapter 8_Safety and Risk assessment of food items. - Chapter 9_Non toxic Natural products as regulators of tumour suppressor gene function. - Chapter 10_Advancements in the safety of Plant medicine: Back to nature. - Chapter 11_Chemicals and their interaction in the aquaculture system. - Chapter 12_Zebrafish as a biomedical model to define developmental origins of chemical toxicity. - Chapter 13_Green Synthesis of non-toxic Nanoparticles. - Chapter 14_Synthesis, characterization and safety of titanium oxide nanoparticles. - Chapter 15_Characterization of nontoxic nanomaterials for biological application. - Chapter 16_Toxicity assessment of Nanoparticles. - Chapter 17_Safety of Nanoparticles: Emphasis on antimicrobial properties. - Chapter 18_Quantum Dots for Imaging and its Safety. - Chapter 19_Genotoxicity evaluation of nanosized mate. - Chapter 20_Scaffold Materials and Toxicity. - Chapter 21_Biological safety and cellular interactions of nanoparticles. - Chapter 22_Role of artificial intelligence in the toxicity prediction of drugs. - Chapter 23_Chemicals and Rodents as a models for the safety study of Alzheimer's disease. - Chapter 24_Mitochondria-targeted liposomal delivery in Parkinson's disease: safety concerns. - Chapter 25_Routes of Nano-drug Administration and Nano-based drug delivery and toxicity. - Chapter 26_Green Synthesized silver nanoparticles phytotoxicity and applications in agriculture: An overview. - Chapter 27_Status of safety concerns of Microplastics and detection strategies. - Chapter 28_Impact of insecticides on man and environment.


PRODUCT DETAILS

ISBN-13: 9789811978333
Publisher: Springer (Springer Verlag, Singapore)
Publication date: May, 2023
Pages: None
Weight: 652g
Availability: Available
Subcategories: Pharmacology

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