We have collected information about Biodegradable Hydrogels As Drug Delivery Systems For Tissue Engineering Applications for you. Follow the links to find out details on Biodegradable Hydrogels As Drug Delivery Systems For Tissue Engineering Applications.
https://www.mdpi.com/1996-1944/3/3/1746/htm
Hydrogels have many different applications in the field of regenerative medicine. Biodegradable, injectable hydrogels could be utilized as delivery systems, cell carriers, and scaffolds for tissue engineering. Injectable hydrogels are an appealing scaffold because they are structurally similar to the extracellular matrix of many tissues, can often be processed under relatively mild conditions ...Author: Huaping Tan, Kacey G. Marra
https://www.sciencedirect.com/science/article/pii/B9781782421054000079
Investigation of degradable hydrogel materials for biomedical applications is highly extensive. The amount of techniques, precursors, functionalities and degradation mechanisms available for synthesis of hydrogels and the variety of applications for these materials are …Author: B. Ozcelik
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4669007/
These hybrid macromolecules are capable of self-assembly into organized structures such as micelles or thin films, which are useful in drug delivery and tissue engineering applications [ 38 ]. Peptide incorporation within polymer systems also provides the opportunity for enzyme-triggered responses,...Author: Jennifer M. Knipe, Nicholas A. Peppas
https://link.springer.com/referenceworkentry/10.1007%2F978-3-319-76573-0_47-1
Jun 22, 2018 · Hence the author has made an attempt to discuss biodegradable polymers of natural and synthetic origin, the biodegradation mechanisms, hydrogel engineering strategies, drug-hydrogel interactions, and release kinetics and mechanisms of such hydrogels to attain controlled delivery of drugs to different site of action in this chapter.
https://www.hindawi.com/journals/ijps/2019/3160732/
Hydrogels with responsive performance have a broad range of potential applications in biological tissue engineering, including drug delivery and controlled release, artificial muscles, sensors, and enzyme catalysis [71–73].Author: Ke Wang, Yuting Hao, Yingna Wang, Jinyuan Chen, Lianzhi Mao, Yudi Deng, Junlin Chen, Sijie Yuan, Tia...
https://www.researchgate.net/publication/226263218_Hydrogels_for_Tissue_Engineering_Applications
Hydrogels have been widely applied in biomedical applications, such as drug delivery and tissue engineering, due to their many favorable characteristics. Their high water content renders them...
https://pubs.acs.org/doi/10.1021/bm901235g
Jan 22, 2010 · Tethering drug substances to a gel network is an effective way of controlling the release kinetics of hydrogel-based drug delivery systems. Here, we report on in situ forming, biodegradable hydrogels that allow for the covalent attachment of peptides or proteins.Author: Ferdinand Brandl, Nadine Hammer, Torsten Blunk, Joerg Tessmar, Achim Goepferich
https://www.sciencedirect.com/science/article/pii/S0142961202001758
Photopolymerized hydrogels are being investigated for a number of tissue engineering applications because of the ability to form these materials in situ in a minimally invasive manner such as by injection.Author: Kytai Truong Nguyen, Jennifer L. West
https://www.researchgate.net/publication/285964581_Hydrogels_as_a_drug_delivery_system_and_applications_A_review
Also, they can trap and release drugs or other compounds and could be used in the biomedical field as drug delivery devices, cell scaffolds and applied in wound dressings or tissue engineering ...
https://www.sciencedirect.com/science/article/pii/S0142961203003405
We have chosen to focus on a subset of these hydrogels (PEO, PVA, P(PF-co-EG), alginate, chitosan, collagen, and HA) because of their current prevalent use in tissue engineering applications. The chemistry, gelling conditions, and degradation modes of each are described in this section.Author: Jeanie L. Drury, David J. Mooney
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