Zobrazeno 1 - 5
of 5
pro vyhledávání: '"Glenda Castellanos"'
Publikováno v:
Frontiers in Cardiovascular Medicine, Vol 5 (2018)
Heart valve replacement options remain exceedingly limited for pediatric patients because they cannot accommodate somatic growth. To overcome this shortcoming, heart valve tissue engineering using human bone marrow stem cells (HBMSCs) has been consid
Externí odkaz:
https://doaj.org/article/166a040fb2964ae082e3d903244ad2bc
Autor:
Rupak Dua, Kristin Comella, Ryan Butler, Glenda Castellanos, Bryn Brazille, Andrew Claude, Arvind Agarwal, Jun Liao, Sharan Ramaswamy
Publikováno v:
PLoS ONE, Vol 11, Iss 2, p e0149121 (2016)
We investigated the effectiveness of integrating tissue engineered cartilage derived from human bone marrow derived stem cells (HBMSCs) to healthy as well as osteoarthritic cartilage mimics using hydroxyapatite (HA) nanoparticles immersed within a hy
Externí odkaz:
https://doaj.org/article/6829c6202266484094867c239c8dbf12
Publikováno v:
Frontiers in Cardiovascular Medicine, Vol 5 (2018)
Heart valve replacement options remain exceedingly limited for pediatric patients because they cannot accommodate somatic growth. To overcome this shortcoming, heart valve tissue engineering using human bone marrow stem cells (HBMSCs) has been consid
Autor:
Todd A. Wyatt, Horacio Alvarez-Ramirez, Joseph H. Sisson, Glenda Castellanos, Diane Allen-Gipson, Kusum K. Kharbanda, Matthew C. Zimmerman, Hui Zhang, Jennifer K. O’Malley
Publikováno v:
American journal of respiratory cell and molecular biology. 48(5)
Adenosine concentrations are elevated in the lungs of patients with asthma and chronic obstructive pulmonary disease, where it balances between tissue repair and excessive airway remodeling. We previously demonstrated that the activation of the adeno
Autor:
Ryan Butler, Kristin Comella, Andrew Claude, Arvind Agarwal, Jun Liao, Sharan Ramaswamy, Rupak Dua, Glenda Castellanos, Bryn Brazille
Publikováno v:
PLoS ONE, Vol 11, Iss 2, p e0149121 (2016)
PLoS ONE
PLoS ONE
We investigated the effectiveness of integrating tissue engineered cartilage derived from human bone marrow derived stem cells (HBMSCs) to healthy as well as osteoarthritic cartilage mimics using hydroxyapatite (HA) nanoparticles immersed within a hy