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poly(glycerol phosphate) teichoic acid biosynthetic process
Known as:
poly(glycerol phosphate) teichoic acid synthesis
, poly(glycerol phosphate) teichoic acid biosynthesis
, poly(glycerol phosphate) teichoic acid anabolism
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The chemical reactions and pathways resulting in the formation of poly(glycerol phosphate) teichoic acid. [GOC:TermGenie, PMID:11882717, UniPathway…
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National Institutes of Health
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Papers overview
Semantic Scholar uses AI to extract papers important to this topic.
Highly Cited
2017
Highly Cited
2017
Electrospinning of poly(glycerol sebacate)-based nanofibers for nerve tissue engineering.
Jue Hu
,
D. Kai
,
+4 authors
X. Loh
Materials Science and Engineering C: Materials…
2017
Corpus ID: 45816806
Highly Cited
2016
Highly Cited
2016
Self-healing supramolecular bioelastomers with shape memory property as a multifunctional platform for biomedical applications via modular assembly.
Yaobin Wu
,
Ling Wang
,
Xin Zhao
,
Sen Hou
,
Baolin Guo
,
P. Ma
Biomaterials
2016
Corpus ID: 24392133
Highly Cited
2014
Highly Cited
2014
Tri-layered elastomeric scaffolds for engineering heart valve leaflets.
N. Masoumi
,
N. Annabi
,
+7 authors
A. Khademhosseini
Biomaterials
2014
Corpus ID: 206056459
Highly Cited
2013
Highly Cited
2013
PGS:Gelatin nanofibrous scaffolds with tunable mechanical and structural properties for engineering cardiac tissues.
M. Kharaziha
,
M. Nikkhah
,
+5 authors
A. Khademhosseini
Biomaterials
2013
Corpus ID: 2233278
Highly Cited
2013
Highly Cited
2013
Mechanically tissue-like elastomeric polymers and their potential as a vehicle to deliver functional cardiomyocytes.
Bing Xu
,
Yuan Li
,
+4 authors
Qi-zhi Chen
Journal of The Mechanical Behavior of Biomedical…
2013
Corpus ID: 42209191
Highly Cited
2011
Highly Cited
2011
Substantial expression of mature elastin in arterial constructs
Keewon Lee
,
D. Stolz
,
Yadong Wang
Proceedings of the National Academy of Sciences…
2011
Corpus ID: 9519274
Mature elastin synthesis is a key challenge in arterial tissue engineering. Most engineered vessels lack elastic fibers in the…
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Highly Cited
2009
Highly Cited
2009
Degradation behavior of poly(glycerol sebacate).
I. Pomerantseva
,
Nicholas J. Krebs
,
A. Hart
,
C. Neville
,
Albert Y Huang
,
C. Sundback
Journal of Biomedical Materials Research. Part A
2009
Corpus ID: 29124534
Poly(glycerol sebacate) (PGS), a promising scaffold material for soft tissue engineering applications, is a soft, tough elastomer…
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Highly Cited
2006
Highly Cited
2006
Three‐Dimensional Microfluidic Tissue‐Engineering Scaffolds Using a Flexible Biodegradable Polymer
C. Bettinger
,
E. Weinberg
,
+4 authors
Robert Langer
Advances in Materials
2006
Corpus ID: 205232955
Organ loss and failure is one of the most critical issues facing the healthcare industry in developed nations. The shortage of…
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Highly Cited
2006
Highly Cited
2006
Macroporous elastomeric scaffolds with extensive micropores for soft tissue engineering.
Jin Gao
,
Peter M. Crapo
,
Yadong Wang
Tissue engineering
2006
Corpus ID: 44392398
Macroporous scaffolds are of great value in tissue engineering. We have developed a method to fabricate macroporous scaffolds…
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Highly Cited
2005
Highly Cited
2005
Biocompatibility analysis of poly(glycerol sebacate) as a nerve guide material.
C. Sundback
,
J. Y. Shyu
,
+4 authors
T. Hadlock
Biomaterials
2005
Corpus ID: 206009298
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