Fr. 299.00

Strategies of Carbon Nanotube Nanocarriers Based Anticancer Mediators

English · Hardback

Will be released 26.03.2026

Description

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Nowadays carbon nanomaterials (CNMs) are widely employed for electrochemical sensors due to their superiorities of low cost, large surface area, high electrochemical activity, good chemical durability, enhanced molecules adsorption and favorable biocompatibility. Currently, the successful detected analytes include neurochemicals/biomarkers (dopamine, ascorbic acid, hydrogen peroxide, proteins and DNA).
Smart-drug delivery aims to localize treatment to tumors to reduce cytotoxicity and enhance the therapeutic index by using multifunctional targeting strategies. This book focuses the applications of Nanostructured carbon materials (NCMs) in all fields of pharmacy and medicine from therapeutics to analysis and diagnosis. It also examines the pharmacokinetics, metabolism and toxicity of different forms of CNTs and discusses the perspectives, the advantages and the obstacles of this promising bio-nanotechnology in the future. Cancer is ranked as the second leading cause of death globally. Traditional cancer therapies including chemotherapy are flawed, with off-target and on-target toxicities on the normal cells, requiring newer strategies to improve cell selective targeting. The application of nanomaterial has been extensively studied and explored as chemical biology tools in cancer theranostics. It shows greater applications toward stability, biocompatibility, and increased cell permeability, resulting in precise targeting, and mitigating the shortcomings of traditional cancer therapies. The large surface area of nanoparticles is enough to encapsulate many molecules and the ability to functionalized with various bio-substrates such as DNA, RNA, aptamers, and antibodies, which helps in theranostic action. The challenge associated with nanomaterials is their toxic properties, which should be addressed before their administration in clinical applications.
Currently, carbon nanotubes (CNTs) are being successfully used in the medicinal, pharmaceutical, and biomedical fields because of their large surface area, which makes them capable of adsorbing or conjugating with a wide range of therapeutic and diagnostic substances (drugs, genes, vaccines, antibodies, biosensors, etc.). They were the first to demonstrate that they are a great vehicle for drug delivery straight into cells without the need for metabolic processing by the body.


List of contents










Foreword. Preface. Acknowledgment. About the author. Introduction. Summary. Chapter 1 Biomedical Applications for Direct Drug Delivery Carriers and Cancer Therapy- Based Carbon Nanotubes Porins (CNTPs). Chapter 2 Novel Strategies-Based Versatile Carbon Nanoplatforms for Cancer Therapeutics. Chapter 3. Carbon Nanotubes (CNTs) Carriers-Based Biomimetic Inherent Medication Therapeutic Drug Delivery Systems (DDS). Chapter 4Carbon Nanotubes-Based Diagnosis and Novel Emerging Target Drug Delivery Systems for Anticancer Therapies. Chapter 5 Strategies of Targeted Smart Drug Gene Therapy and Immunosensing for Carbon-Based Nanomaterials as Anticancer Mediators Nanoparticles. Chapter 6 Bioimaging Strategies Utilizing Carbon Nanomaterials (CNMs) for Biomolecules, Microorganisms and Virus Detection. Chapter7.Carbon-Based Nanomaterials for Targeted Cancer Nanotherapy: Controlled Drug Delivery Systems Design and Development Strategies. Chapter 8 Emerging Strategies and Cutting-Edge Progress (CNMs) in Drug Delivery to Improve Cancer Treatment: Surface Modification and Biological Interaction. Chapter 9 Strategies-Based CNTs and Fullerenes as Smart Drug Co-Delivery Nanocarriers for Cancer Nanotherapy: Future of Translational Nanomedicine.List of Abbreviations. Index.


About the author










Loutfy H. Madkour is a Full Professor of Physical chemistry, Nanoscience and Nanotechnology at Tanta University (Egypt) and Al Baha University (Saudi Arabia). He is a contributing Researcher and Editor to Chemistry World. He has more than 20 years of experience in science: research, writing and editing in condensed-matter, Corrosion Science and Advanced Structured Materials relating to Nanoscience, Nanomaterials, Technology/Nanotechnology/Biotechnology, Cancer Nanomedicine, and Drug Delivery. He received his BSc, MSc, and PhD in Physical Chemistry from the Cairo, Minia, and Tanta Universities in Egypt, respectively. He has conducted a series of studies in various areas of the field of Physical chemistry: electrochemistry, electroanalytical chemistry, corrosion science, density functional theory (DFT), molecular dynamic simulation, quantum chemistry, theoretical chemistry, chemical equalization principles, nanoscience, nanotechnology, nanomedicine, nanotoxicology, electrometallurgy, analytical chemistry, polarography, electrolytic extraction of heavy metals from natural ores and deposits, electrochemical thermodynamics, and environmental chemistry. His earlier research included the biosynthesis of metallic nanoparticles (MNPs) as well as toxicology studies for pharmacological applications in nanomedicine and therapy. He has published 200 peer-reviewed original research articles, 26 review articles, 8 book chapters and 12 books in the area of physical and environmental chemistry, advanced structural nanomaterials, corrosion science, nanoelectronics materials, advancements and Innovations in energy storage, cancer nanomedicine, drug delivery and nanotoxicology.
He is appointed as the prestigious Editorial Board member of several international journals. His name has been listed in the top 2% of the most distinguished and influential scientists globally according to the ranking and database of Stanford American University of Scientists globally in (2022). He obtained Award: ISAO in the year (2022): "Lifetime Achievement Award" in the International Scientist Awards on Engineering, Science and Medicine. He obtained Awards: ISAO in the years (2022, 2021 and 2020): "Distinguished Scientist Award" in the International Research Awards on Science, Technology, and Management.


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