Synthesis And Characterization Of Nanocomposites For Drug Delivery Applications
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Author | : Information Resources Management Association |
Publisher | : Engineering Science Reference |
Total Pages | : 2500 |
Release | : 2021 |
Genre | : Nanostructured materials |
ISBN | : 9781799885917 |
"This reference of contributed chapters seeks to address not only how nanomaterials are created, used, or characterized, but also to apply this knowledge to the multidimensional industries, fields, and applications of nanomaterials and nanoscience by including topics such as both natural and manmade nanomaterials; the size, shape, reactivity, and other essential characteristics of nanomaterials; challenges and potential effects of using nanomaterials; and the advantages of nanomaterials with multidisciplinary uses"--
Author | : V. Karthika |
Publisher | : V. Karthika |
Total Pages | : 0 |
Release | : 2023-03-10 |
Genre | : |
ISBN | : 9789382428060 |
The synthesis and characterization of nanocomposites for drug delivery applications is an emerging field that aims to develop safe and effective drug delivery systems with enhanced therapeutic efficacy. Nanocomposites are composed of different types of nanoparticles, polymers, and other materials that can be precisely engineered to achieve specific drug delivery goals. These materials are typically biocompatible and biodegradable, allowing for controlled release of drugs over an extended period of time. The synthesis and characterization of nanocomposites involve the preparation of the nanoparticles and their subsequent incorporation into the polymer matrix or other material. Different types of nanoparticles, such as magnetic nanoparticles, gold nanoparticles, carbon nanotubes, and lipid-based nanoparticles, can be utilized depending on the intended application. Surface modification techniques can be employed to enhance the stability, biocompatibility, and specificity of the nanocomposites for targeted drug delivery. Characterization of nanocomposites is crucial to understanding their physicochemical properties, drug-loading capacity, and drug release kinetics. Techniques such as dynamic light scattering, scanning electron microscopy, transmission electron microscopy, X-ray diffraction, and Fourier-transform infrared spectroscopy can be used to characterize the nanocomposites. The use of nanocomposites for drug delivery applications has several advantages, including improved drug solubility, enhanced bioavailability, and reduced toxicity. Moreover, the development of stimuli-responsive nanocomposites that respond to changes in environmental factors such as pH, temperature, and magnetic field can further enhance drug delivery efficacy. The synthesis and characterization of nanocomposites for drug delivery applications represent a promising approach for the development of safe and effective drug delivery systems with enhanced therapeutic efficacy. However, further studies are needed to optimize the design of nanocomposites and to assess their toxicity and biocompatibility. Nanomaterial has promising application of all technology development. Nanomaterial has one or more dimension in the nanometer scale (100 nm) range and subsequently show novel properties from their bulk materials. Nanotechnology, led by the development of nanoparticles (NPs) -based drug delivery systems and imaging contrast agents, has had an important role in diagnosis, prevention, and treatment of the disease. The use of nanotechnology for cancer therapy and imaging is expected to overcome the limitations of conventional treatments, such as poor drug bioavailability, nonspecific systemic drug distribution, inadequate drug concentrations reaching the tumor and inability to monitor therapeutic responses in real time.
Author | : Abderrazzak Douhal |
Publisher | : Elsevier |
Total Pages | : 465 |
Release | : 2019-07-04 |
Genre | : Science |
ISBN | : 0128178140 |
Chemistry of Silica and Zeolite-Based Materials covers a wide range of topics related to silica-based materials from design and synthesis to applications in different fields of science and technology. Since silica is transparent and inert to the light, it is a very attractive host material for constructing artificial photosynthesis systems. As an earth-abundant oxide, silica is an ideal and basic material for application of various oxides, and the science and technology of silica-based materials are fundamentally important for understanding other oxide-based materials. The book examines nanosolvation and confined molecules in silica hosts, catalysis and photocatalysis, photonics, photosensors, photovoltaics, energy, environmental sciences, drug delivery, and health. Written by a highly experienced and internationally renowned team from around the world, Chemistry of Silica and Zeolite-Based Materials is ideal for chemists, materials scientists, chemical engineers, physicists, biologists, biomedical sciences, environmental scientists, toxicologists, and pharma scientists. --- "The enormous versatility of silica for building a large variety of materials with unique properties has been very well illustrated in this book.... The reader will be exposed to numerous potential applications of these materials – from photocatalytic, optical and electronic applications, to chemical reactivity in confined spaces and biological applications. This book is of clear interest not only to PhD students and postdocs, but also to researchers in this field seeking an understanding of the possible applications of meso and microporous silica-derived materials." - Professor Avelino Corma, Institute of Chemical Technology (ITQ-CSIC) and Polytechnical University of Valencia, Spain - Discusses the most important advances in various fields using silica materials, including nanosolvation and confined molecules in silica hosts, catalysis and photocatalysis, and other topics - Written by a global team of experts from a variety of science and technology disciplines - Ideal resource for chemists, materials scientists, and chemical engineers working with oxide-based materials
Author | : Shyam Mohapatra |
Publisher | : Elsevier |
Total Pages | : 684 |
Release | : 2018-10-05 |
Genre | : Science |
ISBN | : 0128140321 |
Characterization and Biology of Nanomaterials for Drug Delivery: Nanoscience and Nanotechnology in Drug Delivery describes the techniques successfully employed for the application of nanocarriers loaded with the antioxidant enzyme, catalase, and thus targeted to endothelial cells. Methods of nanocarrier synthesis, loading within various systems, and the characterization of nanocarriers for targeting activities are covered, as are their advantages, disadvantages and applications. Reflecting the interdisciplinary nature of the subject matter, this book includes contributions by experts from different fields, all with various backgrounds and expertise. It will appeal to researchers and students from different disciplines, such as materials science, technology and various biomedical fields. - Enables readers from different fields to access recent research and protocols across traditional boundaries - Focuses on protocols and techniques, as well as the knowledge base of the field, thus enabling those in R&D to learn about, and successfully deploy, cutting-edge techniques - Explores both current and emerging classes of nanomaterials, along with their fundamentals and applications
Author | : Inamuddin |
Publisher | : Woodhead Publishing |
Total Pages | : 988 |
Release | : 2018-06-18 |
Genre | : Technology & Engineering |
ISBN | : 0128137584 |
Applications of Nanocomposite in Drug Delivery discusses and explores the applications of nanocomposites in the area of drug delivery. Starting with a scientific understanding of drug delivery fundamentals, the book explores the utility of nanocomposites in the area of controlled, transdermal, osteo-articular tuberculosis and stimulus sensitive drug delivery applications. The book intricately details and discusses a variety of methods for their preparation, while also highlighting specific applications of nanocomposites in targeted drug delivery. - Discusses nanocomposite and nanotechnology for drug delivery - Outlines the mechanisms involved in targeted drug delivery using nanocomposites - Includes synthesis methods for nanocomposites used in controlled drug delivery - Lists various applications of nanocomposites in drug delivery
Author | : Somashekar, R. |
Publisher | : IGI Global |
Total Pages | : 356 |
Release | : 2017-09-13 |
Genre | : Technology & Engineering |
ISBN | : 152253024X |
Innovative textile materials are used for numerous applications. Understanding the properties of such materials is imperative to ensure proper utilization. Emergent Research on Polymeric and Composite Materials is an essential reference work featuring the latest scholarly research on the synthesis, characterizations, and physico-chemical properties of textile materials. Including coverage on a range of topics such as nanomaterials, ceramics, and clays, this book is ideally designed for researchers, academicians, industries, and students seeking current research on emerging developments and applications of polymeric and composite materials.
Author | : Ashutosh Kumar Shukla |
Publisher | : Elsevier |
Total Pages | : 552 |
Release | : 2018-11-26 |
Genre | : Technology & Engineering |
ISBN | : 0081025807 |
Green Synthesis, Characterization and Applications of Nanoparticles shows how eco-friendly nanoparticles are engineered and used. In particular, metal nanoparticles, metal oxide nanoparticles and other categories of nanoparticles are discussed. The book outlines a range of methodologies and explores the appropriate use of each. Characterization methods include spectroscopic, microscopic and diffraction methods, but magnetic resonance methods are also included as they can be used to understand the mechanism of nanoparticle synthesis using organisms. Applications covered include targeted drug delivery, water purification and hydrogen generation. This is an important research resource for those wishing to learn more about how eco-efficient nanoparticles can best be used. Theoretical details and mathematical derivations are kept to a necessary minimum to suit the need of interdisciplinary audiences and those who may be relatively new to the field. - Explores recent trends in growth, characterization, properties and applications of nanoparticles - Gives readers an understanding on how they are applied through the use of case studies and examples - Assesses the advantages and disadvantages of a variety of synthesis and characterization techniques for green nanoparticles in different situations
Author | : Management Association, Information Resources |
Publisher | : IGI Global |
Total Pages | : 1917 |
Release | : 2021-03-19 |
Genre | : Technology & Engineering |
ISBN | : 1799887367 |
The use of nanotechnologies continues to grow, as nanomaterials have proven their versatility and use in many different fields and industries within the scientific profession. Using nanotechnology, materials can be made lighter, more durable, more reactive, and more efficient leading nanoscale materials to enhance many everyday products and processes. With many different sizes, shapes, and internal structures, the applications are endless. These uses range from pharmaceutics to materials such as cement or cloth, electronics, environmental sustainability, and more. Therefore, there has been a recent surge of research focused on the synthesis and characterizations of these nanomaterials to better understand how they can be used, their applications, and the many different types. The Research Anthology on Synthesis, Characterization, and Applications of Nanomaterials seeks to address not only how nanomaterials are created, used, or characterized, but also to apply this knowledge to the multidimensional industries, fields, and applications of nanomaterials and nanoscience. This includes topics such as both natural and manmade nanomaterials; the size, shape, reactivity, and other essential characteristics of nanomaterials; challenges and potential effects of using nanomaterials; and the advantages of nanomaterials with multidisciplinary uses. This book is ideally designed for researchers, engineers, practitioners, industrialists, educators, strategists, policymakers, scientists, and students working in fields that include materials engineering, engineering science, nanotechnology, biotechnology, microbiology, drug design and delivery, medicine, and more.
Author | : Rajendra Kumar Goyal |
Publisher | : CRC Press |
Total Pages | : 462 |
Release | : 2017-10-30 |
Genre | : Technology & Engineering |
ISBN | : 1351649310 |
The main aims of this book are to summarize the fundamentals, synthesis methods, properties and applications of nanomaterials, so as to provide readers with a systematic knowledge on nanomaterials. In addition, the book covers most commonly used characterization tools pertaining to nanomaterials. Further, it deals with relevant aspects of nanocomposites which contains dispersion of nano-sized particulates, and carbon nanotubes (CNTs) in the matrices (polymer, metal and ceramic). It also discusses development of smart nano textiles (intelligent textiles), self-cleaning glass, sensors, actuators, ferro-fluids, and wear resistant nano coatings. Aimed at senior undergraduate and graduate students, the key features on this book include: Top-down and bottom-up approaches for the synthesis of nanomaterials included Illustrates sample preparation and basic principle of characterization tools for nanomaterials Explains calculation of ratios of surface area to volume and surface atoms to bulk atoms Reviews synthesis, properties and applications of carbon nanotubes and magnetic nanomaterials Discusses size effect on thermal, mechanical, optical, magnetic and electrical properties
Author | : Hiran Mayookh Lal |
Publisher | : Springer Nature |
Total Pages | : 286 |
Release | : 2021-02-12 |
Genre | : Technology & Engineering |
ISBN | : 3030442594 |
This book focuses on polymer/silver nanocomposites as the main component in bioengineering systems. It describes in detail the synthesis and characterization (morphological, thermal, mechanical & dynamic mechanical properties), as well as the different applications of these composites. A special chapter is dedicated to the toxicity aspects of silver nanoparticles