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Polymeric Nanosystems: Theranostic Nanosystems, Volume 1

Editat de Md Saquib Hasnain, Amit Kumar Nayak, Tejraj M. Aminabhavi
Notă GoodReads:
en Limba Engleză Paperback – 28 Oct 2022
Polymeric Nanosystems: Theranostic Nanosystems, Volume One examines the applications of nanotherapeutic systems and nanodiagnostics in relation to polymeric nanosystems. In the last decade, numerous biopolymers have been utilized to prepare polymeric nanosystems for therapeutic applications. These biopolymers include polylactic acid, polylactide-co-glycolide, polycaprolactone, acrylic polymers, cellulose and cellulose derivatives, alginates, chitosan, gellan gum, gelatin, albumin, chontroitin sulfate, hyaluronic acid, guar gum, gum Arabic, gum tragacanth, xanthan gum, and starches. Besides these biopolymers, grafted polymers are also being used as advanced polymeric materials to prepare many theranostic nanocarriers and nanoformulations. This book explores the array of polymeric nanosystems to understand therapeutic potentials.
It will be useful to pharmaceutical scientists, including industrial pharmacists and analytical scientists, health care professionals, and regulatory scientists actively involved in the pharmaceutical product and process development of tailor-made polysaccharides in drug delivery applications.


  • Contains in-depth discussions of the polymeric nanosystems including high-quality graphics, flowcharts, and graphs for enhanced understanding
  • Reviews the literature on polymeric nanosystems while also suggesting new avenues
  • Includes contributions in all areas of polymeric nanosystems, providing a thorough and interdisciplinary work
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Specificații

ISBN-13: 9780323856560
ISBN-10: 032385656X
Pagini: 730
Ilustrații: Approx. 130 illustrations (30 in full color)
Dimensiuni: 191 x 235 mm
Editura: ELSEVIER SCIENCE

Public țintă

Primary: Pharmaceutical scientists including industrial pharmacists & analytical scientists, health care professionals and regulatory scientists actively involved in pharmaceutical product and process development of tailored-made polysaccharides in drug delivery applications.
Secondary: Advanced students in Pharmacy (M. Pharm, Ph.D, Pharm D, RPh), Basic Sciences (B. Sc, M. Sc, M.Phil, Ph.D), Biotechnology and Biomedical Engineering sciences (M. Sc, M.Tech, Ph.D)

Cuprins

1. Polymer-based nanotheranostics: Current status and challenges
2. Polylactic acid and poly(lactic-co-glycolic acid)-based nanocarrier systems for theranostic applications
3. Polycaprolactone-based nanoparticles for advanced therapeutic applications
4. Acrylate-based polymeric nanotheranostics
5. Cellulose and cellulose derivatives-based nanosystems as therapeutic platform
6. Alginate based nanosysyems for therapeutic use
7. Chitin and chitosan-based nanomaterials for therapeutic applications
8. Gellan gum-based nanosystems for therapeutic applications
9. Chondroitin sulfate derived theranostic nanosystems
10. Hyaluronic acid-based nanosystems for theranostic delivery and imaging
11. Pullulan-based nanocarriers for therapeutic applications
12. Xanthan gum-based nanocarriers for therapeutic delivery
13. Gum tragacanth-based nanosystems for therapeutic applications
14. Pectin-based nanoformulations for therapeutic applications
15. Guar gum-based nanocarriers for drug delivery and targeting
16. Carrageenan-based nanosystems for therapeutic applications
17. Starch-based nanosystems for theranostic applications
18. Gelatin-based nanosystems for therapeutic applications
19. Albumin-based nanocarriers for therapeutic applications
20. Silk protein-based nanoparticles for therapeutic applications
21. Zein-based nanoparticles for drug delivery and targeting
22. Casein-based nanosystems for therapeutic applications
23. Polymeric nanosystems for cancer theranostics
24. Polymeric nanosystems for cardiovascular therapeutics
25. Polymeric nanosystems for neurological therapeutics
26. Polymeric nanosystems for antidiabetic therapeutics
27. Molecular imprinting and surface grafting of glycoprotein fragments in polymeric nanosystems: From cancer diagnosis to virus targeting