Effect of Monomer Sequence Distribution on the Glass Transition Temperature of Poly(d,l-lactic-co-glycolic acid) (PLGA)
Author:
Affiliation:
1. Davidson School of Chemical Engineering, Purdue University, West Lafayette, Indiana 47907, United States of America
2. Purdue University Institute for Cancer Research, Purdue University, West Lafayette, Indiana 47907, United States of America
Funder
Division of Chemical, Bioengineering, Environmental, and Transport Systems
Publisher
American Chemical Society (ACS)
Link
https://pubs.acs.org/doi/pdf/10.1021/acs.macromol.4c00106
Reference77 articles.
1. Development of mAb-loaded 3D-printed (FDM) implantable devices based on PLGA
2. Geared Toward Applications: A Perspective on Functional Sequence-Controlled Polymers
3. Poly(lactic‐co‐glycolic acid) devices: Production and applications for sustained protein delivery
4. An Overview of Poly(lactic-co-glycolic) Acid (PLGA)-Based Biomaterials for Bone Tissue Engineering
5. Microfabricated PLGA scaffolds: a comparative study for application to tissue engineering
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