We believe that basic research and the cultivation of scientific knowledge is critical for us to stay connected with our customers and to drive scientific breakthroughs. At NEB, over 30 labs participate in research projects, which are aided by post-doctoral fellows and students in Masters and Ph.D. programs. NEB researchers have authored or co-authored over 1,200 publications (as of 1/19) many of which are in peer-reviewed journals. Further, NEB products have been used successfully in numerous publications by scientists throughout the world.
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Your search returned 2165 results.
|Near-Infrared Fluorescence Imaging of Mammalian Cells and Xenograft Tumors with SNAP-tag||PLoS One||Gong, H.; Kovar, J. L.; Baker, B.; Zhang, A.; Cheung, L.; Draney, D. R.; Corrêa, I. R., Jr.; Xu, M.-Q.; Olive, M. D.|
|2015||Antigenic properties of the human immunodeficiency virus envelope glycoprotein gp120 on virions bound to target cells||PLoS Pathog||Meron Mengistu, Krishanu Ray, George K Lewis, Anthony L DeVico||SNAP Cell,SNAP Surface|
|2014||Structure of the Trehalose-6-phosphate Phosphatase from Brugia malayi Reveals Key Design Principles for Anthelmintic Drugs||PLoS Pathog||Farelli JD, Galvin BD, Li Z, Liu C, Aono M, Garland M, Hallett OE, Causey TB, Ali-Reynolds A, Saltzberg DJ, Carlow CK, Dunaway-Mariano D, Allen KN|
|2014||Insights into the initiation of JC virus DNA replication derived from the crystal structure of the T-antigen origin binding domain||PLoS Pathog||Meinke G, Phelan PJ, Kalekar R, Shin J, Archambault J, Bohm A, Bullock PA||Gibson Assembly®|
|2020||The endosymbiont Wolbachia rebounds following antibiotic treatment||PLoS Pathog||Gunderson, E.L., Vogel, I., Chappell, L., Bulman, C.A., Lim, K.C., Lauo, M., Whitman, J.D., Franklin, C., Choi, Y.-J., Lefoulon, E., Clark, T., Beerntsen, B., Slatko, B., Mitreva,M., Sullivan, W., Sakanari, J.A.|
|2014||The role of an asymmetrically inherited endosymbiont in robust establishment of host embryonic polarity||PLoS�Negl Trop Dis||Landmann, F., Foster, J.M., Michalski, S., Slatko, B., Sullivan, W.|
|2014||Structure of the trehalose-6-phosphate phosphatase from Brugia malayi reveals a rational approach to the discovery of anthelmintic drugs||PLoS�Pathog||Farelli, J.D., Galvin, B.D., Li, Z., Liu, C., Aono, M., Garland, M., Hallett, O.E., Causey, T.B., Ali-Reynolds, A., Carlow, C.K.S., Dunaway-Mariano, D. and Allen, K.N.|
|2012||In vitro RNA interference and immunofluorescence-based phenotype analysis in a human parasitic nematode, Brugia malayi||Parasit Vectors||Landmann, F., Foster, J.M., Slatko, B.E. and Sullivan, W.|
|2012||In vitro RNA interference and immunofluorescence-based phenotype analysis in a human parasitic nematode, Brugia malayi||Parasit Vectors||Landmann, F., Foster, J.M., Slatko, B.E. and Sullivan, W|
|2012||Efficient in vitro RNA interference and immunofluorescence-based phenotype analysis in a human parasitic nematode, Brugia malayi||Parasit Vectors||Landmann, F., Foster, J. M., Slatko, B. E. and Sullivan, W.|