Plant and Algal Hydrogels for Drug Delivery and Regenerative MedicineTapan Kumar Giri, Bijaya Ghosh Woodhead Publishing, 12 ביוני 2021 - 590 עמודים Plant and Algal Hydrogels for Drug Delivery and Regenerative Medicine offers a materials-focused and systematic overview of biopolymeric hydrogels utilized for biomedical applications. The book details the synthesis and characterization of plant and algal-based hydrogels, with each chapter addressing a separate polysaccharide hydrogel type. Specific applications in drug delivery and regenerative medicine are also discussed, highlighting the efficacy, biocompatibility, benefits and challenges for each polysaccharide hydrogel subtype. There is increasing demand for biomaterials which reduce/prevent the host response, inflammation and rejection, hence this book provides a timely resource. Biopolymeric hydrogels have skyrocketed because of their necessity in in vivo applications. They create an environment similar to living tissue, which is both biocompatible and biodegradable. Plant and algal polysaccharides in particular are well-equipped with functional groups that are easily modified for beneficial results. - Systematically covers each plant and algal polysaccharide hydrogel subtype, from starch-based hydrogels to pectin and alginate-based hydrogels - Provides an end-to-end description of the synthesis, characterization and application of biopolymeric hydrogels for drug delivery and regenerative medicine - Appeals to a diverse readership, including those in biomedicine, pharmacy, polymer chemistry, biochemistry, materials science, biomedical engineering, and other biotechnology related disciplines |
תוכן
| 1 | |
| 37 | |
Chapter 3 Starchbased hydrogels | 75 |
Chapter 4 Cyclodextrinsbased hydrogel | 113 |
Chapter 5 Potential of guar gum hydrogels in drug delivery | 143 |
Chapter 6 Hemicellulosesbased hydrogels | 181 |
Chapter 7 Locust bean gumderived hydrogels | 217 |
Chapter 8 Inulinbased hydrogel | 261 |
Chapter 11 Alginatebased hydrogels | 357 |
Chapter 12 Alginatebased nanocomposite hydrogels | 395 |
Chapter 13 Cellulosebased stimuliresponsive hydrogels | 423 |
Chapter 14 Hydrogels based on cellulose nanocomposites | 471 |
Chapter 15 Composite hydrogels of pectin and alginate | 507 |
Chapter 16 Clinical applications of biopolymerbased hydrogels | 535 |
| 569 | |
Back Cover | 577 |
Chapter 9 Hydrogels based on carrageenan | 293 |
Chapter 10 Hydrogels based on gum ghatti | 327 |
מהדורות אחרות - הצג הכל
מונחים וביטויים נפוצים
acrylic alginate hydrogels aqueous biocompatibility biodegradable Biol Macromol Biomaterials biomedical applications biopolymers blend bone Carbohydr Polym carrageenan cartilage CBHGs cell cellulose nanocrystals chains characterization Chem chitosan CNCs concentration controlled release copolymer Copyright cross-linking cross-linking agent cyclodextrins degradation developed drogels Drug Deliv drug delivery drug delivery systems drug release encapsulation enhanced Food formation formulations functional gelation graft copolymer grafting groups guar gum gum ghatti hemicellulose hyaluronic acid hydro hydrogel beads hydrogels hydrogels based hydrophilic hydrophobic hydroxyl injectable Int J Biol Int J Pharm interactions inulin ionic kappa-carrageenan locust bean gum materials matrix mechanical properties methacrylate method microspheres molecular molecules nanocellulose nanocomposite nanocomposite hydrogels nanoparticles oral oxide pectin permission from Elsevier pH-sensitive poly polymer network polymerization polysaccharides prepared produced protein scaffolds sodium alginate solubility solution starch stimuli-responsive structure swelling synthesis tablets Technol temperature tion tissue engineering vitro Wang xylan Zhang
