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Methods in Molecular Medicine
|
February 15, 2011
Nonviral DNA delivery from polymeric systems
L D Shea, D J Mooney
Gene Therapy
|
May 21, 2010
Gene delivery by surface immobilization of plasmid to tissue-engineering scaffolds
D M Salvay, M Zelivyanskaya, L D Shea
Life Sciences
|
February 24, 2001
Timing is everything the role of kinetics in G protein activation
L D Shea, R R Neubig, J J Linderman
Biophysical Journal
|
December 31, 1997
Calculation of diffusion-limited kinetics for the reactions in collision coupling and receptor cross-linking
L D Shea, G M Omann, J J Linderman
Nature Biotechnology
|
June 29, 1999
DNA delivery from polymer matrices for tissue engineering
L D Shea, E Smiley, J Bonadio, et al.
Cancer Microenvironment : Official Journal of the International Cancer Microenvironment Society
|
October 24, 2012
Transcription factor networks in invasion-promoting breast carcinoma-associated fibroblasts
A Siletz, E Kniazeva, J S Jeruss, et al.
Tissue Engineering
|
December 5, 2000
Engineered bone development from a pre-osteoblast cell line on three-dimensional scaffolds
L D Shea, D Wang, R T Franceschi, et al.
Journal of Controlled Release : Official Journal of the Controlled Release Society
|
January 21, 2000
Bioabsorbable polymer scaffolds for tissue engineering capable of sustained growth factor delivery
M H Sheridan, L D Shea, M C Peters, et al.
Reproduction (Cambridge, England)
|
October 31, 2012
Multiple follicle culture supports primary follicle growth through paracrine-acting signals
J E Hornick, F E Duncan, L D Shea, et al.
Human Reproduction (Oxford, England)
|
March 30, 2012
Isolated primate primordial follicles require a rigid physical environment to survive and grow in vitro
J E Hornick, F E Duncan, L D Shea, et al.
Page
of 3
Search research articles
Search
Showing results (1-10 of 22) with videos related to
Sort By:
Page
of 3
Methods in Molecular Medicine
|
February 15, 2011
Nonviral DNA delivery from polymeric systems
L D Shea, D J Mooney
Gene Therapy
|
May 21, 2010
Gene delivery by surface immobilization of plasmid to tissue-engineering scaffolds
D M Salvay, M Zelivyanskaya, L D Shea
Life Sciences
|
February 24, 2001
Timing is everything the role of kinetics in G protein activation
L D Shea, R R Neubig, J J Linderman
Biophysical Journal
|
December 31, 1997
Calculation of diffusion-limited kinetics for the reactions in collision coupling and receptor cross-linking
L D Shea, G M Omann, J J Linderman
Nature Biotechnology
|
June 29, 1999
DNA delivery from polymer matrices for tissue engineering
L D Shea, E Smiley, J Bonadio, et al.
Cancer Microenvironment : Official Journal of the International Cancer Microenvironment Society
|
October 24, 2012
Transcription factor networks in invasion-promoting breast carcinoma-associated fibroblasts
A Siletz, E Kniazeva, J S Jeruss, et al.
Tissue Engineering
|
December 5, 2000
Engineered bone development from a pre-osteoblast cell line on three-dimensional scaffolds
L D Shea, D Wang, R T Franceschi, et al.
Journal of Controlled Release : Official Journal of the Controlled Release Society
|
January 21, 2000
Bioabsorbable polymer scaffolds for tissue engineering capable of sustained growth factor delivery
M H Sheridan, L D Shea, M C Peters, et al.
Reproduction (Cambridge, England)
|
October 31, 2012
Multiple follicle culture supports primary follicle growth through paracrine-acting signals
J E Hornick, F E Duncan, L D Shea, et al.
Human Reproduction (Oxford, England)
|
March 30, 2012
Isolated primate primordial follicles require a rigid physical environment to survive and grow in vitro
J E Hornick, F E Duncan, L D Shea, et al.
Page
of 3