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Friday, October 9

Nanoparticulate Drug Delivery Systems

For many decades, the need to change the delivery systems was a major boost pharmaceutical research. In recent years, due to the tremendous expansion in the various fields of science and skill sets, its scope was expanded to incorporate many colleges in drug research, covering the physical delivery, polymer sciences, pharmaceutical electrical engineering, bioelectronics, genetics, biotechnology and molecular

Culture pharmaceutical research industry is facing an uncertain future. Increased cost of clinical development along with declining drug discovery process and lower rates of clinical success is to reduce the flow of new chemical entities in research and product development. Due to the advent of analytical techniques and capabilities to measure the particle size of nanometer-scale particles of drug-delivery systems development and research was moving from micro to nano scale size. Significant research interests are oriented to use the techniques where the particles can be reduced almost nm intervals, thereby reducing the dose and the reactive nature of the molecule. This can deliver the drug at places of destination.

The book presented here is an attempt to describe the research efforts being made accordingly by the scientific community. Nanoparticles drug-delivery systems is a challenging area, and there are changes happening pulsating almost every day. This is an attempt to cover recent trends and emerging technologies in the field of nanoparticles drug-delivery systems.

 Nanoparticulate Drug Delivery Systems The first chapter covers a complete overview of the system of nanoparticles drugdelivery, covering wide applications of nanoparticles and evaluation system for drug delivery in various fields. Chapter 2 covers formulations nanosuspensions for parenteral delivery. The third chapter discusses the polymerbased nanoparticles drug-delivery systems. Chapters 4 to 6 focus nanofibers, nanoparticles and nanocrystals lipid-based delivery systems for drugs, respectively. Chapters 7-10 discuss the engineering aspects and the different techniques used for nanoparticle delivery systems, including nanoengineering EACTOR flow, aerosols, supercooled smectic nanoparticles and metal nanoparticles, respectively. Chapters 11 and 12 focus on biological needs and the role of nanobiotechnology on the development of nanomedicine. Chapters 13-21 cover extensively the applications of nanoparticles drug-delivery systems, including lipid nanoparticles for dermal applications, carriers of the gene for restenosis, ocular, central nervous system, gastrointestinal applications, systems adjuvant for vaccine development and patch.

This book is also relevant for academics, industry, and scientists working in the world pharmaceutical drug delivery. The text is designed so that each chapter represents a separate area of research and can be easily followed without referring to other chapters.
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