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https://onlinelibrary.wiley.com/doi/10.1002/9781118164792.ch19
Biopolymers Employed in Drug Delivery. Betina Giehl Zanetti Ramos. Research, Development and Innovation Department, Nanovetores, Florianópolis, Brazil. Search for more papers by this author. Betina Giehl Zanetti Ramos.Author: Betina Giehl Zanetti Ramos
https://www.omicsonline.org/open-access/biopolymers-in-drug-delivery-89541.html
The major reason that biopolymers have gained popularity as carriers for drug delivery is that they offer a plethora of advantages over conventional polymers. Biopolymers are non-toxic and biocompatible, thus making them a versatile carrier. They offer the economic advantage as they are relatively cheap.Author: Anil Kumar Sharma
https://www.researchgate.net/publication/230844374_Polymers_and_Biopolymers_as_Drug_Delivery_Systems_in_Nanomedicine
Polymers and Biopolymers as Drug Delivery Systems in Nanomedicine. ... Natural biopolymers are widely used in the field of drug and gene delivery. ... and anticancer drug delivery were prepared ...Author: Thomas Goudoulas
https://www.sciencedirect.com/science/article/pii/S2468519418300880
Drug delivery systems (DDS) are used to achieve a higher therapeutic effects of a pharmaceutical drug or natural compound in a specific diseased site with minimal toxicological effect and these systems consists of liposomes, microspheres, gels, prodrugs and many.Author: Joby Jacob, Józef T. Haponiuk, Sabu Thomas, Sreeraj Gopi
https://www.researchgate.net/publication/272817366_Biopolymers_in_Drug_Delivery_Applications
Advances in polymers have led to the development of novel drug-delivery devices. A proper understanding of surface and bulk properties of polymers can help in …
https://onlinelibrary.wiley.com/doi/pdf/10.1002/macp.201900126
biopolymers for the drug-delivery and tissue-engineering appli-cations. Ni et al. described the importance of protein-based hydrogel formulation for biomedical application.[2,5,15,16] This review provides the new trend in the field of polypeptides and their formulations currently employed for the fabrication ofAuthor: Sakthivel Nagarajan, Socrates Radhakrishnan, S. Narayana Kalkura, Sebastien Balme, Philippe Miele, P...
https://www.sciencedirect.com/topics/biochemistry-genetics-and-molecular-biology/biopolymer
Mónica C. García, in Engineering of Biomaterials for Drug Delivery Systems, 2018. Abstract. Biopolymers have attracted considerable interest for the development of drug delivery systems (DDSs) owing to their biocompatibility, nontoxicity, renewability, and mild processing conditions. These polymers are degradable in vivo, either enzymatically or nonenzymatically, and can be metabolized and ...
https://www.intechopen.com/books/advanced-technology-for-delivering-therapeutics/introductory-chapter-drug-delivery-concepts
However, controlled release systems do not exclusively deliver the drug to the target organ. For this reason, the target-specific drug delivery systems must be designed in order to control biodistribution of the drug. Consequently, various novel concepts have been emerged to meet the specific needs of an ideal drug delivery system.Author: Sabyasachi Maiti, Kalyan Kumar Sen
https://www.wiley.com/en-us/Biopolymers%3A+Biomedical+and+Environmental+Applications-p-9780470639238
This handbook focuses on biopolymers for both environmental and biomedical applications. It shows recent advances in technology in all areas from chemical synthesis or biosynthesis to end use applications. These areas have not been covered in a single book before and they include biopolymers for chemical and biotechnological modifications, material structures, characterization, processing ...
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3438887/
Modern advances in drug delivery are now predicated upon the rational design of polymers tailored for specific cargo and engineered to exert distinct biological functions. In this review, we highlight the fundamental drug delivery systems and their mathematical foundations and discuss the physiological barriers to drug delivery.Author: William B. Liechty, David R. Kryscio, Brandon V. Slaughter, Nicholas A. Peppas
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