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Publications

Found 698 results
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2012
Melchers M, Bontjer I, Tong T, P Y Chung N, Klasse PJohan, Eggink D, Montefiori DC, Gentile M, Cerutti A, Olson WC et al..  2012.  Targeting HIV-1 envelope glycoprotein trimers to B cells by using APRIL improves antibody responses.. J Virol. 86(5):2488-500.
2011
Sonnenberg GF, Monticelli LA, M Elloso M, Fouser LA, Artis D.  2011.  CD4(+) lymphoid tissue-inducer cells promote innate immunity in the gut.. Immunity. 34(1):122-34.
Rhee KY, de Carvalho LPedro Sori, Bryk R, Ehrt S, Marrero J, Park SWoong, Schnappinger D, Venugopal A, Nathan C.  2011.  Central carbon metabolism in Mycobacterium tuberculosis: an unexpected frontier.. Trends Microbiol. 19(7):307-14.
van Montfort T, Melchers M, Isik G, Menis S, Huang P-S, Matthews K, Michael E, Berkhout B, Schief WR, Moore JP et al..  2011.  A chimeric HIV-1 envelope glycoprotein trimer with an embedded granulocyte-macrophage colony-stimulating factor (GM-CSF) domain induces enhanced antibody and T cell responses.. J Biol Chem. 286(25):22250-61.
van Montfort T, Melchers M, Isik G, Menis S, Huang P-S, Matthews K, Michael E, Berkhout B, Schief WR, Moore JP et al..  2011.  A chimeric HIV-1 envelope glycoprotein trimer with an embedded granulocyte-macrophage colony-stimulating factor (GM-CSF) domain induces enhanced antibody and T cell responses.. J Biol Chem. 286(25):22250-61.
van Montfort T, Melchers M, Isik G, Menis S, Huang P-S, Matthews K, Michael E, Berkhout B, Schief WR, Moore JP et al..  2011.  A chimeric HIV-1 envelope glycoprotein trimer with an embedded granulocyte-macrophage colony-stimulating factor (GM-CSF) domain induces enhanced antibody and T cell responses.. J Biol Chem. 286(25):22250-61.
van Montfort T, Melchers M, Isik G, Menis S, Huang P-S, Matthews K, Michael E, Berkhout B, Schief WR, Moore JP et al..  2011.  A chimeric HIV-1 envelope glycoprotein trimer with an embedded granulocyte-macrophage colony-stimulating factor (GM-CSF) domain induces enhanced antibody and T cell responses.. J Biol Chem. 286(25):22250-61.
van Montfort T, Melchers M, Isik G, Menis S, Huang P-S, Matthews K, Michael E, Berkhout B, Schief WR, Moore JP et al..  2011.  A chimeric HIV-1 envelope glycoprotein trimer with an embedded granulocyte-macrophage colony-stimulating factor (GM-CSF) domain induces enhanced antibody and T cell responses.. J Biol Chem. 286(25):22250-61.
Wei J-R, Krishnamoorthy V, Murphy K, Kim J-H, Schnappinger D, Alber T, Sassetti CM, Rhee KY, Rubin EJ.  2011.  Depletion of antibiotic targets has widely varying effects on growth.. Proc Natl Acad Sci U S A. 108(10):4176-81.
Park SWoong, Klotzsche M, Wilson DJ, Boshoff HI, Eoh H, Manjunatha U, Blumenthal A, Rhee K, Barry CE, Aldrich CC et al..  2011.  Evaluating the sensitivity of Mycobacterium tuberculosis to biotin deprivation using regulated gene expression.. PLoS Pathog. 7(9):e1002264.
Monticelli LA, Sonnenberg GF, Abt MC, Alenghat T, Ziegler CGK, Doering TA, Angelosanto JM, Laidlaw BJ, Yang CY, Sathaliyawala T et al..  2011.  Innate lymphoid cells promote lung-tissue homeostasis after infection with influenza virus.. Nat Immunol. 12(11):1045-54.
Burton DR, Hessell AJ, Keele BF, Klasse PJohan, Ketas TA, Moldt B, D Dunlop C, Poignard P, Doyle LA, Cavacini L et al..  2011.  Limited or no protection by weakly or nonneutralizing antibodies against vaginal SHIV challenge of macaques compared with a strongly neutralizing antibody.. Proc Natl Acad Sci U S A. 108(27):11181-6.
Burton DR, Hessell AJ, Keele BF, Klasse PJohan, Ketas TA, Moldt B, D Dunlop C, Poignard P, Doyle LA, Cavacini L et al..  2011.  Limited or no protection by weakly or nonneutralizing antibodies against vaginal SHIV challenge of macaques compared with a strongly neutralizing antibody.. Proc Natl Acad Sci U S A. 108(27):11181-6.
Berro R, Klasse PJohan, Lascano D, Flegler A, Nagashima KA, Sanders RW, Sakmar TP, Hope TJ, Moore JP.  2011.  Multiple CCR5 conformations on the cell surface are used differentially by human immunodeficiency viruses resistant or sensitive to CCR5 inhibitors.. J Virol. 85(16):8227-40.
Forbes CJ, Lowry D, Geer L, Veazey RS, Shattock RJ, Klasse PJohan, Mitchnick M, Goldman L, Doyle LA, Muldoon BCO et al..  2011.  Non-aqueous silicone elastomer gels as a vaginal microbicide delivery system for the HIV-1 entry inhibitor maraviroc.. J Control Release. 156(2):161-9.
Forbes CJ, Lowry D, Geer L, Veazey RS, Shattock RJ, Klasse PJohan, Mitchnick M, Goldman L, Doyle LA, Muldoon BCO et al..  2011.  Non-aqueous silicone elastomer gels as a vaginal microbicide delivery system for the HIV-1 entry inhibitor maraviroc.. J Control Release. 156(2):161-9.
Forbes CJ, Lowry D, Geer L, Veazey RS, Shattock RJ, Klasse PJohan, Mitchnick M, Goldman L, Doyle LA, Muldoon BCO et al..  2011.  Non-aqueous silicone elastomer gels as a vaginal microbicide delivery system for the HIV-1 entry inhibitor maraviroc.. J Control Release. 156(2):161-9.
Forbes CJ, Lowry D, Geer L, Veazey RS, Shattock RJ, Klasse PJohan, Mitchnick M, Goldman L, Doyle LA, Muldoon BCO et al..  2011.  Non-aqueous silicone elastomer gels as a vaginal microbicide delivery system for the HIV-1 entry inhibitor maraviroc.. J Control Release. 156(2):161-9.
Koo M-S, Manca C, Yang G, O'Brien P, Sung N, Tsenova L, Subbian S, Fallows D, Muller G, Ehrt S et al..  2011.  Phosphodiesterase 4 inhibition reduces innate immunity and improves isoniazid clearance of Mycobacterium tuberculosis in the lungs of infected mice.. PLoS One. 6(2):e17091.
Koo M-S, Manca C, Yang G, O'Brien P, Sung N, Tsenova L, Subbian S, Fallows D, Muller G, Ehrt S et al..  2011.  Phosphodiesterase 4 inhibition reduces innate immunity and improves isoniazid clearance of Mycobacterium tuberculosis in the lungs of infected mice.. PLoS One. 6(2):e17091.
Pejchal R, Doores KJ, Walker LM, Khayat R, Huang P-S, Wang S-K, Stanfield RL, Julien J-P, Ramos A, Crispin M et al..  2011.  A potent and broad neutralizing antibody recognizes and penetrates the HIV glycan shield.. Science. 334(6059):1097-103.
Pejchal R, Doores KJ, Walker LM, Khayat R, Huang P-S, Wang S-K, Stanfield RL, Julien J-P, Ramos A, Crispin M et al..  2011.  A potent and broad neutralizing antibody recognizes and penetrates the HIV glycan shield.. Science. 334(6059):1097-103.
Pejchal R, Doores KJ, Walker LM, Khayat R, Huang P-S, Wang S-K, Stanfield RL, Julien J-P, Ramos A, Crispin M et al..  2011.  A potent and broad neutralizing antibody recognizes and penetrates the HIV glycan shield.. Science. 334(6059):1097-103.
Pejchal R, Doores KJ, Walker LM, Khayat R, Huang P-S, Wang S-K, Stanfield RL, Julien J-P, Ramos A, Crispin M et al..  2011.  A potent and broad neutralizing antibody recognizes and penetrates the HIV glycan shield.. Science. 334(6059):1097-103.
malERA Consultative Group on Basic Science and Enabling Technologies.  2011.  A research agenda for malaria eradication: basic science and enabling technologies.. PLoS Med. 8(1):e1000399.