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C M Goldsmith

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Gene Therapy|October 1, 2010
AAV2-mediated transfer of the human aquaporin-1 cDNA restores fluid secretion from irradiated miniature pig parotid glandsR Gao, X Yan, C Zheng, et al.
Endocrinology|January 14, 1999
Construction and in vivo efficacy of a replication-deficient recombinant adenovirus encoding murine growth hormoneY Marmary, A F Parlow, C M Goldsmith, et al.
Oral Diseases|March 23, 2017
Effect of Tempol on the prevention of irradiation-induced mucositis in miniature pigsL Hu, Y Wang, A P Cotrim, et al.
The Journal of Gene Medicine|March 28, 2001
Cationic liposome-mediated gene transfer to rat salivary epithelial cells in vitro and in vivoL Baccaglini, A T Shamsul Hoque, R B Wellner, et al.
Gene Therapy|July 18, 2014
AdLTR2EF1α-FGF2-mediated prevention of fractionated irradiation-induced salivary hypofunction in swineL Guo, R Gao, J Xu, et al.
International Journal of Oral and Maxillofacial Surgery|September 2, 2000
Salivary glands as a model for craniofacial applications of gene transferB J Baum, C M Goldsmith, A T Hoque, et al.
Human Gene Therapy|December 10, 1999
Polarized secretion of transgene products from salivary glands in vivoB J Baum, M E Berkman, Y Marmary, et al.
Oral Diseases|November 26, 2016
Immune reactivity after adenoviral-mediated aquaporin-1 cDNA transfer to human parotid glandsI Alevizos, C Zheng, A P Cotrim, et al.
Tissue Engineering|March 2, 2005
Primary culture of polarized human salivary epithelial cells for use in developing an artificial salivary glandS D Tran, J Wang, B C Bandyopadhyay, et al.
Gene Therapy|December 21, 2016
Late responses to adenoviral-mediated transfer of the aquaporin-1 gene for radiation-induced salivary hypofunctionI Alevizos, C Zheng, A P Cotrim, et al.
Pageof 3

Showing results (21-30 of 30) with videos related to

Sort By:
Pageof 3
You have reached the last page of results.This site can display upto 30 results.
Gene Therapy|October 1, 2010
AAV2-mediated transfer of the human aquaporin-1 cDNA restores fluid secretion from irradiated miniature pig parotid glandsR Gao, X Yan, C Zheng, et al.
Endocrinology|January 14, 1999
Construction and in vivo efficacy of a replication-deficient recombinant adenovirus encoding murine growth hormoneY Marmary, A F Parlow, C M Goldsmith, et al.
Oral Diseases|March 23, 2017
Effect of Tempol on the prevention of irradiation-induced mucositis in miniature pigsL Hu, Y Wang, A P Cotrim, et al.
The Journal of Gene Medicine|March 28, 2001
Cationic liposome-mediated gene transfer to rat salivary epithelial cells in vitro and in vivoL Baccaglini, A T Shamsul Hoque, R B Wellner, et al.
Gene Therapy|July 18, 2014
AdLTR2EF1α-FGF2-mediated prevention of fractionated irradiation-induced salivary hypofunction in swineL Guo, R Gao, J Xu, et al.
International Journal of Oral and Maxillofacial Surgery|September 2, 2000
Salivary glands as a model for craniofacial applications of gene transferB J Baum, C M Goldsmith, A T Hoque, et al.
Human Gene Therapy|December 10, 1999
Polarized secretion of transgene products from salivary glands in vivoB J Baum, M E Berkman, Y Marmary, et al.
Oral Diseases|November 26, 2016
Immune reactivity after adenoviral-mediated aquaporin-1 cDNA transfer to human parotid glandsI Alevizos, C Zheng, A P Cotrim, et al.
Tissue Engineering|March 2, 2005
Primary culture of polarized human salivary epithelial cells for use in developing an artificial salivary glandS D Tran, J Wang, B C Bandyopadhyay, et al.
Gene Therapy|December 21, 2016
Late responses to adenoviral-mediated transfer of the aquaporin-1 gene for radiation-induced salivary hypofunctionI Alevizos, C Zheng, A P Cotrim, et al.
Pageof 3