Zobrazeno 1 - 4
of 4
pro vyhledávání: '"Jasdeep Singh Nanra"'
Autor:
Kathrin U. Jansen, Lisa K. McNeil, Ingrid L. Scully, Paul A. Liberator, Yury V. Matsuka, Yekaterina Timofeyeva, Annaliesa S. Anderson, Jasdeep Singh Nanra, David Keeney, Elena Severina, George Hu
Publikováno v:
Vaccine. 33:5452-5457
The Staphylococcus aureus virulence factor clumping factor A (ClfA) is a component of an investigational S. aureus prophylactic vaccine. ClfA enables S. aureus to bind to fibrinogen and platelets during the initial stages of invasive disease. Here we
Autor:
Julio Cesar Hawkins, José Miguel Aste-Amézaga, David A. Cooper, Lisa K. McNeil, Shomari Crawford, Pamela S. Fink, Ingrid L. Scully, Jennifer Ng, Sandra M. Buitrago, Annaliesa S. Anderson, Jasdeep Singh Nanra, Kathrin U. Jansen
Publikováno v:
Human Vaccines & Immunotherapeutics
Staphylococcus aureus can cause severe life threatening invasive diseases. The principal immune effector mechanism by which humans are protected from Gram positive bacteria such as S. aureus is antigen specific antibody- and complement-dependent opso
Autor:
Bruce A. Green, Nunez Lorna Del Pilar, Deborah A. Dilts, Sandra M. Buitrago, Yury V. Matsuka, Jasdeep Singh Nanra, Bret R. Sellman, Kathrin U. Jansen, Annaliesa S. Anderson, Viliam Pavliak, Michael Hagen, Pamela S. Fink, Duzhang Zhu, Mininni Terri L, Yekaterina Timofeyeva
Publikováno v:
Vaccine. 27:3276-3280
There is a clear unmet medical need for a vaccine that would prevent infections from Staphylococcus aureus (S. aureus). To validate antigens as potential vaccine targets it has to be demonstrated that the antigens are expressed in vivo. Using murine
Expression of Staphylococcus epidermidis SdrG Increases following Exposure to an In Vivo Environment
Autor:
Adrienne Scott, Bret R. Sellman, Yekaterina Timofeyeva, Yury V. Matsuka, Jasdeep Singh Nanra, Steve M. Baker, James P. Fulginiti
Publikováno v:
Infection and Immunity. 76:2950-2957
SdrG is a surface-associated fibrinogen binding protein present in most strains of Staphylococcus epidermidis . Surface expression of SdrG was not detected by flow cytometry or immunofluorescence microscopy on S. epidermidis 0-47 grown in nutrient br