Engineered Nanoparticles as Drug Delivery Systems

Engineered Nanoparticles as Drug Delivery Systems by Nahid Rehman, published by CRC Press on October 9, 2024, is a comprehensive exploration of the application of nanomaterials in drug delivery and therapy. This 106-page book provides an overview of various stimuli-sensitive drug delivery systems, detailing the physical, chemical, biological, and multi-stimuli-responsive nanosystems involved in modern medical applications.
Readers will find a thorough analysis of the clinical status of different types of nanoplatforms, as well as a discussion on the advantages and disadvantages of using nanomaterials for targeted drug delivery. The book emphasizes the innovative methods that nanotechnology can offer to enhance treatment efficacy, making it a valuable resource for researchers and graduate students in fields such as biomedical engineering, pharmacy, and materials science.
Official synopsis Publisher
This book highlights application of nanomaterials for drug delivery, therapy, and engineering. It covers stimuli-sensitive drug delivery systems including an overview of the physical, chemical, biological, and multi-stimuli-responsive nanosystems. It also presents analysis of clinical status for different types of nanoplatforms and assesses novel applications of nanomaterials in the areas of smart delivery and drug targeting. It further discusses the advantages and disadvantages of each application of pertinent nanomaterials.
Features:
- Provides academic introduction to the uses of nanotechnology in drug delivery.
- Discusses use of nanomaterials in targeting a drug to specific tissues and cells.
- Presents an analysis of clinical status for different types of nanoplatforms.
- Covers applications in drug delivery, therapy, and engineering.
- Focuses on how novel nanotechnology-orientated methods can help improve treatment.
This book is aimed at researchers and graduate students in biomedical and biochemical engineering, pharmaceutical, chemical and bioprocess engineering, materials science, and drug delivery mechanisms.
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