ENGLISH

Intracellular Delivery: Fundamentals and Applications

Book information

Publisher
Springer Netherlands
Year
2011
ISBN
9400712472, 9789400712478
DOI
10.1007/978-94-007-1248-5
ISSN
1559-7083
Google Books ID
dhCpx2kKo1wC
Language
english
Format
PDF
Filesize
18 MB (19283073 bytes)
Series
Fundamental Biomedical Technologies 5
Edition
1
Pages
867\888
Orientation
yes
Scanned
no
Time added
2012-02-14 18:00:00

Description

This book features a special subsection of Nanomedicine, an application of nanotechnology to achieve breakthroughs in healthcare. It exploits the improved and often novel physical, chemical and biological properties of materials only existent at the nanometer scale. As a consequence of small scale, nanosystems in most cases are efficiently uptaken by cells and appear to act at the intracellular level. Nanotechnology has the potential to improve diagnosis, treatment and follow-up of diseases, and includes targeted drug delivery and regenerative medicine; it creates new tools and methods that impact significantly existing conservative practices. This volume is a collection of authoritative reviews. In the introductory part we define the field (intracellular delivery). Then, we first we cover fundamental routes of nanodelivery devices cellular uptake, types of delivery devices, particularly in terms of localized cellular delivery, both for small drug molecules, macromolecular drugs and genes; all at academic and applied levels. Following is dedicated to enhancing delivery via special targeting motifs. Second, we introduce different types of intracellular nanodelivery devices (their chemistry, although the coverage is far from complete) and ways of producing these different devices. Third, we put special emphasis on particular disease states and on other biomedical applications. Diagnostic and sensing is also included. The intracellular delivery/therapy is a very pregnant topic which will stir great interest. Intracellular delivery enables much more efficient drug delivery since the impact (on different organelles and sites) is intracellular as the drug is not supplied externally within the blood stream. There is a great potential for targeted delivery with improved localized delivery and efficacy.

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