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Bioactive Materials|July 14, 2018
Therapeutic neovascularization promoted by injectable hydrogelsAmrita Pal, Brent L Vernon, Mehdi Nikkhah
Biomacromolecules|March 21, 2007
New hydrolysis-dependent thermosensitive polymer for an injectable degradable systemZhanwu Cui, Bae Hoon Lee, Brent L Vernon
Journal of Biomedical Materials Research. Part B, Applied Biomaterials|May 2, 2006
Controlling delivery properties of a waterborne, in-situ-forming biomaterialRyan McLemore, Mark C Preul, Brent L Vernon
Journal of Biomedical Materials Research. Part B, Applied Biomaterials|June 11, 2013
In vitro characteristics of a gelling PEGDA-QT polymer system with model drug release for cerebral aneurysm embolizationKristen F Soodak, Celeste R Brennecka, Brent L Vernon
Biomacromolecules|April 13, 2010
Bioresponsive copolymers of poly(N-isopropylacrylamide) with enzyme-dependent lower critical solution temperaturesDerek J Overstreet, Harshil D Dhruv, Brent L Vernon
Journal of Biomedical Materials Research. Part B, Applied Biomaterials|April 20, 2012
In vitro delivery, cytotoxicity, swelling, and degradation behavior of a liquid-to-solid gelling polymer system for cerebral aneurysm embolizationCeleste R Brennecka, Mark C Preul, Brent L Vernon
Journal of Biomedical Materials Research. Part B, Applied Biomaterials|March 5, 2014
In vitro characteristics of a gelling PEGDA-QT polymer system with model drug release for cerebral aneurysm embolizationKristen F Soodak, Celeste R Brennecka, Brent L Vernon
Scientific Reports|July 28, 2019
Plasma-based fast-gelling biohybrid gels for biomedical applicationsAmrita Pal, Kunal Tripathi, Chandrashekhar Pathak, et al.
Journal of Biomedical Materials Research. Part A|January 30, 2013
Cytotoxicity, in vitro models and preliminary in vivo study of dual physical and chemical gels for endovascular embolization of cerebral aneurysmsHanin H Bearat, Mark C Preul, Brent L Vernon
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