-
1
-
-
0031717605
-
+ T-cell clones: Flavivirus cross-reactivity, protein recognition, and cytotoxic activity
-
+ T-cell clones: flavivirus cross-reactivity, protein recognition, and cytotoxic activity. J. Virol. 72:8032-8036.
-
(1998)
J. Virol.
, vol.72
, pp. 8032-8036
-
-
Aihara, H.1
Takasaki, T.2
Matsutani, T.3
Suzuki, R.4
Kurane, I.5
-
2
-
-
1642269154
-
Maintenance of memory CTL responses by T helper cells and CD40-CD40 ligand: Antibodies provide the key
-
Bachmann, M. F., L. Hunziker, R. M. Zinkernagel, T. Storni, and M. Kopf. 2004. Maintenance of memory CTL responses by T helper cells and CD40-CD40 ligand: antibodies provide the key. Eur. J. Immunol. 34:317-326.
-
(2004)
Eur. J. Immunol.
, vol.34
, pp. 317-326
-
-
Bachmann, M.F.1
Hunziker, L.2
Zinkernagel, R.M.3
Storni, T.4
Kopf, M.5
-
4
-
-
33746215291
-
Cutting edge: Cognate CD4 help promotes recruitment of antigen-specific CD8 T cells around dendritic cells
-
Beuneu, H., Z. Garcia, and P. Bousso. 2006. Cutting edge: cognate CD4 help promotes recruitment of antigen-specific CD8 T cells around dendritic cells. J. Immunol. 177:1406-1410.
-
(2006)
J. Immunol.
, vol.177
, pp. 1406-1410
-
-
Beuneu, H.1
Garcia, Z.2
Bousso, P.3
-
5
-
-
2342653586
-
CD4 T cell responses to influenza infection
-
Brown, D. M., E. Roman, and S. L. Swain. 2004. CD4 T cell responses to influenza infection. Semin. Immunol. 16:171-177.
-
(2004)
Semin. Immunol.
, vol.16
, pp. 171-177
-
-
Brown, D.M.1
Roman, E.2
Swain, S.L.3
-
6
-
-
0036723873
-
West Nile virus
-
Campbell, G. L., A. A. Marfin, R. S. Lanciotti, and D. J. Gubler. 2002. West Nile virus. Lancet Infect. Dis. 2:519-529.
-
(2002)
Lancet Infect. Dis.
, vol.2
, pp. 519-529
-
-
Campbell, G.L.1
Marfin, A.A.2
Lanciotti, R.S.3
Gubler, D.J.4
-
8
-
-
0037319970
-
B cells and antibody play critical roles in the immediate defense of disseminated infection by West Nile encephalitis virus
-
Diamond, M. S., B. Shrestha, A. Marri, D. Mahan, and M. Engle. 2003. B cells and antibody play critical roles in the immediate defense of disseminated infection by West Nile encephalitis virus. J. Virol. 77:2578-2586.
-
(2003)
J. Virol.
, vol.77
, pp. 2578-2586
-
-
Diamond, M.S.1
Shrestha, B.2
Marri, A.3
Mahan, D.4
Engle, M.5
-
9
-
-
0347593991
-
A critical role for induced IgM in the protection against West Nile virus infection
-
Diamond, M. S., E. M. Sitati, L. D. Friend, S. Higgs, B. Shrestha, and M. Engle. 2003. A critical role for induced IgM in the protection against West Nile virus infection. J. Exp. Med. 198:1853-1862.
-
(2003)
J. Exp. Med.
, vol.198
, pp. 1853-1862
-
-
Diamond, M.S.1
Sitati, E.M.2
Friend, L.D.3
Higgs, S.4
Shrestha, B.5
Engle, M.6
-
10
-
-
0026314908
-
+ cytotoxic T lymphocytes specific for herpes simplex virus-1: Implications for the development of herpetic stromal keratitis in mice
-
+ cytotoxic T lymphocytes specific for herpes simplex virus-1: implications for the development of herpetic stromal keratitis in mice. Clin. Immunol. Immunopathol. 61:398-409.
-
(1991)
Clin. Immunol. Immunopathol.
, vol.61
, pp. 398-409
-
-
Doymaz, M.Z.1
Foster, C.M.2
Destephano, D.3
Rouse, B.T.4
-
11
-
-
0034857547
-
Partial genetic characterization of West Nile virus strains, New York State, 2000
-
Ebel, G. D., A. P. Dupuis II, K. Ngo, D. Nicholas, E. Kauffman, S. A. Jones, D. Young, J. Maffei, P. Y. Shi, K. Bernard, and L. D. Kramer. 2001. Partial genetic characterization of West Nile virus strains, New York State, 2000. Emerg. Infect. Dis. 7:650-653.
-
(2001)
Emerg. Infect. Dis.
, vol.7
, pp. 650-653
-
-
Ebel, G.D.1
Dupuis II, A.P.2
Ngo, K.3
Nicholas, D.4
Kauffman, E.5
Jones, S.A.6
Young, D.7
Maffei, J.8
Shi, P.Y.9
Bernard, K.10
Kramer, L.D.11
-
12
-
-
0344304693
-
Antibody prophylaxis and therapy against West Nile virus infection in wild-type and immunodeficient mice
-
Engle, M. J., and M. S. Diamond. 2003. Antibody prophylaxis and therapy against West Nile virus infection in wild-type and immunodeficient mice. J. Virol. 77:12941-12949.
-
(2003)
J. Virol.
, vol.77
, pp. 12941-12949
-
-
Engle, M.J.1
Diamond, M.S.2
-
13
-
-
0031927461
-
T-cell independent IgM and enduring protective IgG antibodies induced by chimeric measles viruses
-
Fehr, T., H. Y. Naim, M. F. Bachmann, A. F. Ochsenbein, P. Spielhofer, E. Bucher, H. Hengartner, M. A. Billeter, and R. M. Zinkernagel. 1998. T-cell independent IgM and enduring protective IgG antibodies induced by chimeric measles viruses. Nat. Med. 4:945-948.
-
(1998)
Nat. Med.
, vol.4
, pp. 945-948
-
-
Fehr, T.1
Naim, H.Y.2
Bachmann, M.F.3
Ochsenbein, A.F.4
Spielhofer, P.5
Bucher, E.6
Hengartner, H.7
Billeter, M.A.8
Zinkernagel, R.M.9
-
14
-
-
0025906133
-
CD8 is needed for development of cytotoxic T cells but not helper T cells
-
Fung-Leung, W. P., M. W. Schilham, A. Rahemtulla, T. M. Kundig, M. Vollenweider, J. Potter, W. van Ewijk, and T. W. Mak. 1991. CD8 is needed for development of cytotoxic T cells but not helper T cells. Cell 65:443-449.
-
(1991)
Cell
, vol.65
, pp. 443-449
-
-
Fung-Leung, W.P.1
Schilham, M.W.2
Rahemtulla, A.3
Kundig, T.M.4
Vollenweider, M.5
Potter, J.6
Van Ewijk, W.7
Mak, T.W.8
-
16
-
-
26844529383
-
Chemokine receptor CCR5 promotes leukocyte trafficking to the brain and survival in West Nile virus infection
-
Glass, W. G., J. K. Lim, R. Cholera, A. G. Pletnev, J. L. Gao, and P. M. Murphy. 2005. Chemokine receptor CCR5 promotes leukocyte trafficking to the brain and survival in West Nile virus infection. J. Exp. Med. 202:1087-1098.
-
(2005)
J. Exp. Med.
, vol.202
, pp. 1087-1098
-
-
Glass, W.G.1
Lim, J.K.2
Cholera, R.3
Pletnev, A.G.4
Gao, J.L.5
Murphy, P.M.6
-
17
-
-
31344465937
-
CCR5 deficiency increases risk of symptomatic West Nile virus infection
-
Glass, W. G., D. H. McDermott, J. K. Lim, S. Lekhong, S. F. Yu, W. A. Frank, J. Pape, R. C. Cheshier, and P. M. Murphy. 2006. CCR5 deficiency increases risk of symptomatic West Nile virus infection. J. Exp. Med. 203:35-40.
-
(2006)
J. Exp. Med.
, vol.203
, pp. 35-40
-
-
Glass, W.G.1
McDermott, D.H.2
Lim, J.K.3
Lekhong, S.4
Yu, S.F.5
Frank, W.A.6
Pape, J.7
Cheshier, R.C.8
Murphy, P.M.9
-
18
-
-
4344647820
-
West Nile virus: Where are we now?
-
Granwehr, B. P., K. M. Lillibridge, S. Higgs, P. W. Mason, J. F. Aronson, G. A. Campbell, and A. D. Barrett. 2004. West Nile virus: where are we now? Lancet Infect. Dis. 4:547-556.
-
(2004)
Lancet Infect. Dis.
, vol.4
, pp. 547-556
-
-
Granwehr, B.P.1
Lillibridge, K.M.2
Higgs, S.3
Mason, P.W.4
Aronson, J.F.5
Campbell, G.A.6
Barrett, A.D.7
-
20
-
-
0028954224
-
Immune responses in MHC class II-deficient mice
-
Grusby, M. J., and L. H. Glimcher. 1995. Immune responses in MHC class II-deficient mice. Annu. Rev. Immunol. 13:417-435.
-
(1995)
Annu. Rev. Immunol.
, vol.13
, pp. 417-435
-
-
Grusby, M.J.1
Glimcher, L.H.2
-
22
-
-
22944469727
-
Epidemiology and transmission dynamics of West Nile virus disease
-
Hayes, E. B., N. Komar, R. S. Nasci, S. P. Montgomery, D. R. O'Leary, and G. L. Campbell. 2005. Epidemiology and transmission dynamics of West Nile virus disease. Emerg. Infect. Dis. 11:1167-1173.
-
(2005)
Emerg. Infect. Dis.
, vol.11
, pp. 1167-1173
-
-
Hayes, E.B.1
Komar, N.2
Nasci, R.S.3
Montgomery, S.P.4
O'Leary, D.R.5
Campbell, G.L.6
-
23
-
-
0034759315
-
How the immune system protects the host from infection
-
Janeway, C. A., Jr. 2001. How the immune system protects the host from infection. Microbes Infect. 3:1167-1171.
-
(2001)
Microbes Infect.
, vol.3
, pp. 1167-1171
-
-
Janeway Jr., C.A.1
-
24
-
-
0023818573
-
+ T cells: Specificity and function
-
+ T cells: specificity and function. Immunol. Rev. 101:39-80.
-
(1988)
Immunol. Rev.
, vol.101
, pp. 39-80
-
-
Janeway Jr., C.A.1
Carding, S.2
Jones, B.3
Murray, J.4
Portoles, P.5
Rasmussen, R.6
Rojo, J.7
Saizawa, K.8
West, J.9
Bottomly, K.10
-
25
-
-
0003732734
-
-
Garland Publishing, New York, N.Y.
-
Janeway, C. A., P. Travers, M. Walport, and M. Shlomick. 2001. Immunobiology: the immune system in health and disease, 5th ed. Garland Publishing, New York, N.Y.
-
(2001)
Immunobiology: The Immune System in Health and Disease, 5th Ed.
-
-
Janeway, C.A.1
Travers, P.2
Walport, M.3
Shlomick, M.4
-
27
-
-
11844264031
-
Cutting edge: MHC class II-restricted killing in vivo during viral infection
-
Jellison, E. R., S. K. Kim, and R. M. Welsh. 2005. Cutting edge: MHC class II-restricted killing in vivo during viral infection. J. Immunol. 174:614-618.
-
(2005)
J. Immunol.
, vol.174
, pp. 614-618
-
-
Jellison, E.R.1
Kim, S.K.2
Welsh, R.M.3
-
28
-
-
0026071798
-
CD4-positive T lymphocytes are required for the generation of the primary but not the secondary CD8-positive cytolytic T lymphocyte response to herpes simplex virus in C57BL/6 mice
-
Jennings, S. R., R. H. Bonneau, P. M. Smith, R. M. Wolcott, and R. Chervenak. 1991. CD4-positive T lymphocytes are required for the generation of the primary but not the secondary CD8-positive cytolytic T lymphocyte response to herpes simplex virus in C57BL/6 mice. Cell. Immunol. 133:234-252.
-
(1991)
Cell. Immunol.
, vol.133
, pp. 234-252
-
-
Jennings, S.R.1
Bonneau, R.H.2
Smith, P.M.3
Wolcott, R.M.4
Chervenak, R.5
-
31
-
-
23844435550
-
+ T-cell recruitment and control of West Nile virus encephalitis
-
+ T-cell recruitment and control of West Nile virus encephalitis. J. Virol. 79:11457-11466.
-
(2005)
J. Virol.
, vol.79
, pp. 11457-11466
-
-
Klein, R.S.1
Lin, E.2
Zhang, B.3
Luster, A.D.4
Tollett, J.5
Samuel, M.A.6
Engle, M.7
Diamond, M.S.8
-
33
-
-
0026077140
-
In vitro T-cell proliferative response to the flavivirus, West Nile
-
Kulkarni, A. B., A. Mullbacher, and R. V. Blanden. 1991. In vitro T-cell proliferative response to the flavivirus, West Nile. Viral Immunol. 4:73-82.
-
(1991)
Viral Immunol.
, vol.4
, pp. 73-82
-
-
Kulkarni, A.B.1
Mullbacher, A.2
Blanden, R.V.3
-
34
-
-
0026637069
-
Analysis of murine major histocompatibility complex class II-restricted T-cell responses to the flavivirus Kunjin by using vaccinia virus expression
-
Kulkarni, A. B., A. Mullbacher, C. R. Parrish, E. G. Westaway, G. Coia, and R. V. Blanden. 1992. Analysis of murine major histocompatibility complex class II-restricted T-cell responses to the flavivirus Kunjin by using vaccinia virus expression. J. Virol. 66:3583-3592.
-
(1992)
J. Virol.
, vol.66
, pp. 3583-3592
-
-
Kulkarni, A.B.1
Mullbacher, A.2
Parrish, C.R.3
Westaway, E.G.4
Coia, G.5
Blanden, R.V.6
-
35
-
-
0034458762
-
Rapid detection of West Nile virus from human clinical specimens, field-collected mosquitoes, and avian samples by a TaqMan reverse transcriptase-PCR assay
-
Lanciotti, R. S., A. J. Kerst, R. S. Nasci, M. S. Godsey, C. J. Mitchell, H. M. Savage, N. Komar, N. A. Panella, B. C. Allen, K. E. Volpe, B. S. Davis, and J. T. Roehrig. 2000. Rapid detection of West Nile virus from human clinical specimens, field-collected mosquitoes, and avian samples by a TaqMan reverse transcriptase-PCR assay. J. Clin. Microbiol. 38:4066-4071.
-
(2000)
J. Clin. Microbiol.
, vol.38
, pp. 4066-4071
-
-
Lanciotti, R.S.1
Kerst, A.J.2
Nasci, R.S.3
Godsey, M.S.4
Mitchell, C.J.5
Savage, H.M.6
Komar, N.7
Panella, N.A.8
Allen, B.C.9
Volpe, K.E.10
Davis, B.S.11
Roehrig, J.T.12
-
36
-
-
0142092614
-
+ T cells stimulated by virus-induced type I interferon
-
+ T cells stimulated by virus-induced type I interferon. Nat. Immunol. 4:1009-1015.
-
(2003)
Nat. Immunol.
, vol.4
, pp. 1009-1015
-
-
Le Bon, A.1
Etchart, N.2
Rossmann, C.3
Ashton, M.4
Hou, S.5
Gewert, D.6
Borrow, P.7
Tough, D.F.8
-
37
-
-
27144530970
-
CD4 T cell-independent antibody response promotes resolution of primary influenza infection and helps to prevent reinfection
-
Lee, B. O., J. Rangel-Moreno, J. E. Moyron-Quiroz, L. Hartson, M. Makris, F. Sprague, F. E. Lund, and T. D. Randall. 2005. CD4 T cell-independent antibody response promotes resolution of primary influenza infection and helps to prevent reinfection. J. Immunol. 175:5827-5838.
-
(2005)
J. Immunol.
, vol.175
, pp. 5827-5838
-
-
Lee, B.O.1
Rangel-Moreno, J.2
Moyron-Quiroz, J.E.3
Hartson, L.4
Makris, M.5
Sprague, F.6
Lund, F.E.7
Randall, T.D.8
-
38
-
-
33745485344
-
CCR5: No longer a 'good for nothing' gene - Chemokine control of West Nile virus infection
-
Lim, J. K., W. G. Glass, D. H. McDermott, and P. M. Murphy. 2006. CCR5: no longer a 'good for nothing' gene - chemokine control of West Nile virus infection. Trends Immunol. 27:308-312.
-
(2006)
Trends Immunol.
, vol.27
, pp. 308-312
-
-
Lim, J.K.1
Glass, W.G.2
McDermott, D.H.3
Murphy, P.M.4
-
40
-
-
0033621150
-
Mice lacking all conventional MHC class II genes
-
Madsen, L., N. Labrecque, J. Engberg, A. Dierich, A. Svejgaard, C. Benoist, D. Mathis, and L. Fugger. 1999. Mice lacking all conventional MHC class II genes. Proc. Natl. Acad. Sci. USA 96:10338-10343.
-
(1999)
Proc. Natl. Acad. Sci. USA
, vol.96
, pp. 10338-10343
-
-
Madsen, L.1
Labrecque, N.2
Engberg, J.3
Dierich, A.4
Svejgaard, A.5
Benoist, C.6
Mathis, D.7
Fugger, L.8
-
41
-
-
0025938827
-
T-helper cell and associated antibody response to synthetic peptides of the E glycoprotein of Murray Valley encephalitis virus
-
Mathews, J. H., J. E. Allan, J. T. Roehrig, J. R. Brubaker, M. F. Uren, and A. R. Hunt. 1991. T-helper cell and associated antibody response to synthetic peptides of the E glycoprotein of Murray Valley encephalitis virus. J. Virol. 65:5141-5148.
-
(1991)
J. Virol.
, vol.65
, pp. 5141-5148
-
-
Mathews, J.H.1
Allan, J.E.2
Roehrig, J.T.3
Brubaker, J.R.4
Uren, M.F.5
Hunt, A.R.6
-
42
-
-
33646707490
-
Protective immune responses against West Nile virus are primed by distinct complement activation pathways
-
Mehlhop, E., and M. S. Diamond. 2006. Protective immune responses against West Nile virus are primed by distinct complement activation pathways. J. Exp. Med. 203:1371-1381.
-
(2006)
J. Exp. Med.
, vol.203
, pp. 1371-1381
-
-
Mehlhop, E.1
Diamond, M.S.2
-
43
-
-
19944405462
-
Complement activation is required for induction of a protective antibody response against West Nile virus infection
-
Mehlhop, E., K. Whitby, T. Oliphant, A. Marri, M. Engle, and M. S. Diamond. 2005. Complement activation is required for induction of a protective antibody response against West Nile virus infection. J. Virol. 79:7466-7477.
-
(2005)
J. Virol.
, vol.79
, pp. 7466-7477
-
-
Mehlhop, E.1
Whitby, K.2
Oliphant, T.3
Marri, A.4
Engle, M.5
Diamond, M.S.6
-
44
-
-
1842631032
-
T-cell-B-cell cooperation
-
Mitchison, N. A. 2004. T-cell-B-cell cooperation. Nat. Rev. Immunol. 4:308-311.
-
(2004)
Nat. Rev. Immunol.
, vol.4
, pp. 308-311
-
-
Mitchison, N.A.1
-
46
-
-
0344661292
-
Immunobiology of mosquito-borne encephalitic flaviviruses
-
Müllbacher, A., M. Lobigs, and E. Lee. 2003. Immunobiology of mosquito-borne encephalitic flaviviruses. Adv. Virus Res. 60:87-120.
-
(2003)
Adv. Virus Res.
, vol.60
, pp. 87-120
-
-
Müllbacher, A.1
Lobigs, M.2
Lee, E.3
-
48
-
-
0025788218
-
T helper cell-dependent B cell activation
-
Noelle, R. J., and E. C. Snow. 1991. T helper cell-dependent B cell activation. FASEB J. 5:2770-2776.
-
(1991)
FASEB J.
, vol.5
, pp. 2770-2776
-
-
Noelle, R.J.1
Snow, E.C.2
-
50
-
-
21044448356
-
Development of a humanized monoclonal antibody with therapeutic potential against West Nile virus
-
Oliphant, T., M. Engle, G. E. Nybakken, C. Doane, S. Johnson, L. Huang, S. Gorlatov, E. Mehlhop, A. Marri, K. M. Chung, G. D. Ebel, L. D. Kramer, D. H. Fremont, and M. S. Diamond. 2005. Development of a humanized monoclonal antibody with therapeutic potential against West Nile virus. Nat. Med. 11:522-530.
-
(2005)
Nat. Med.
, vol.11
, pp. 522-530
-
-
Oliphant, T.1
Engle, M.2
Nybakken, G.E.3
Doane, C.4
Johnson, S.5
Huang, L.6
Gorlatov, S.7
Mehlhop, E.8
Marri, A.9
Chung, K.M.10
Ebel, G.D.11
Kramer, L.D.12
Fremont, D.H.13
Diamond, M.S.14
-
51
-
-
0030014527
-
+ T cell functions
-
+ T cell functions. J. Exp. Med. 183:2209-2218.
-
(1996)
J. Exp. Med.
, vol.183
, pp. 2209-2218
-
-
Oxenius, A.1
Campbell, K.A.2
Maliszewski, C.R.3
Kishimoto, T.4
Kikutani, H.5
Hengartner, H.6
Zinkernagel, R.M.7
Bachmann, M.F.8
-
53
-
-
32844457056
-
A rapid and quantitative assay for measuring antibody-mediated neutralization of West Nile virus infection
-
Pierson, T. C., M. D. Sanchez, B. A. Puffer, A. A. Ahmed, B. J. Geiss, L. E. Valentine, L. A. Altamura, M. S. Diamond, and R. W. Doms. 2006. A rapid and quantitative assay for measuring antibody-mediated neutralization of West Nile virus infection. Virology 346:53-65.
-
(2006)
Virology
, vol.346
, pp. 53-65
-
-
Pierson, T.C.1
Sanchez, M.D.2
Puffer, B.A.3
Ahmed, A.A.4
Geiss, B.J.5
Valentine, L.E.6
Altamura, L.A.7
Diamond, M.S.8
Doms, R.W.9
-
54
-
-
27144486896
-
Alpha/beta interferon protects against lethal West Nile virus infection by restricting cellular tropism and enhancing neuronal survival
-
Samuel, M. A., and M. S. Diamond. 2005. Alpha/beta interferon protects against lethal West Nile virus infection by restricting cellular tropism and enhancing neuronal survival. J. Virol. 79:13350-13361.
-
(2005)
J. Virol.
, vol.79
, pp. 13350-13361
-
-
Samuel, M.A.1
Diamond, M.S.2
-
55
-
-
33748933523
-
Pathogenesis of West Nile virus infection: A balance between virulence, innate and adaptive immunity, and viral evasion
-
Samuel, M. A., and M. S. Diamond. 2006. Pathogenesis of West Nile virus infection: a balance between virulence, innate and adaptive immunity, and viral evasion. J. Virol. 80:9349-9360.
-
(2006)
J. Virol.
, vol.80
, pp. 9349-9360
-
-
Samuel, M.A.1
Diamond, M.S.2
-
57
-
-
0037432787
-
Requirement for CD4 T cell help in generating functional CD8 T cell memory
-
Shedlock, D. J., and H. Shen. 2003. Requirement for CD4 T cell help in generating functional CD8 T cell memory. Science 300:337-339.
-
(2003)
Science
, vol.300
, pp. 337-339
-
-
Shedlock, D.J.1
Shen, H.2
-
58
-
-
1542317760
-
Interferon-dependent immunity is essential for resistance to primary dengue virus infection in mice, whereas T- and B-cell-dependent immunity are less critical
-
Shresta, S., J. L. Kyle, H. M. Snider, M. Basavapatna, P. R. Beatty, and E. Harris. 2004. Interferon-dependent immunity is essential for resistance to primary dengue virus infection in mice, whereas T- and B-cell-dependent immunity are less critical. J. Virol. 78:2701-2710.
-
(2004)
J. Virol.
, vol.78
, pp. 2701-2710
-
-
Shresta, S.1
Kyle, J.L.2
Snider, H.M.3
Basavapatna, M.4
Beatty, P.R.5
Harris, E.6
-
59
-
-
3242677841
-
+ T cells in control of West Nile virus infection
-
+ T cells in control of West Nile virus infection. J. Virol. 78:8312-8321.
-
(2004)
J. Virol.
, vol.78
, pp. 8312-8321
-
-
Shrestha, B.1
Diamond, M.S.2
-
60
-
-
33645992767
-
+ T cells require perform to clear West Nile virus from infected neurons
-
+ T cells require perform to clear West Nile virus from infected neurons. J. Virol. 80:119-129.
-
(2006)
J. Virol.
, vol.80
, pp. 119-129
-
-
Shrestha, B.1
Samuel, M.A.2
Diamond, M.S.3
-
61
-
-
22544471814
-
CD4 T cell control of acute and latent murine gammaherpesvirus infection requires IFNγ
-
Sparks-Thissen, R. L., D. C. Braaten, K. Hildner, T. L. Murphy, K. M. Murphy, and H. W. Virgin IV. 2005. CD4 T cell control of acute and latent murine gammaherpesvirus infection requires IFNγ. Virology 338:201-208.
-
(2005)
Virology
, vol.338
, pp. 201-208
-
-
Sparks-Thissen, R.L.1
Braaten, D.C.2
Hildner, K.3
Murphy, T.L.4
Murphy, K.M.5
Virgin IV, H.W.6
-
62
-
-
2942693575
-
An optimized CD4 T-cell response can control productive and latent gammaherpesvirus infection
-
Sparks-Thissen, R. L., D. C. Braaten, S. Kreher, S. H. Speck, and H. W. Virgin IV. 2004. An optimized CD4 T-cell response can control productive and latent gammaherpesvirus infection. J. Virol. 78:6827-6835.
-
(2004)
J. Virol.
, vol.78
, pp. 6827-6835
-
-
Sparks-Thissen, R.L.1
Braaten, D.C.2
Kreher, S.3
Speck, S.H.4
Virgin IV, H.W.5
-
64
-
-
0037432776
-
Defective CD8 T cell memory following acute infection without CD4 T cell help
-
Sun, J. C., and M. J. Bevan. 2003. Defective CD8 T cell memory following acute infection without CD4 T cell help. Science 300:339-342.
-
(2003)
Science
, vol.300
, pp. 339-342
-
-
Sun, J.C.1
Bevan, M.J.2
-
66
-
-
0028989761
-
+ CTL against influenza-sensitized autologous splenocytes
-
+ CTL against influenza-sensitized autologous splenocytes. Immunol. Lett. 46:67-73.
-
(1995)
Immunol. Lett.
, vol.46
, pp. 67-73
-
-
Taylor, S.F.1
Bender, B.S.2
-
67
-
-
1242343668
-
The CD8 population in CD4-deficient mice is heavily contaminated with MHC class II-restricted T cells
-
Tyznik, A. J., J. C. Sun, and M. J. Bevan. 2004. The CD8 population in CD4-deficient mice is heavily contaminated with MHC class II-restricted T cells. J. Exp. Med. 199:559-565.
-
(2004)
J. Exp. Med.
, vol.199
, pp. 559-565
-
-
Tyznik, A.J.1
Sun, J.C.2
Bevan, M.J.3
-
68
-
-
0035183262
-
Role for T cell-independent B cell activity in the resolution of primary rotavirus infection in mice
-
VanCott, J. L., M. M. McNeal, J. Flint, S. A. Bailey, A. H. Choi, and R. L. Ward. 2001. Role for T cell-independent B cell activity in the resolution of primary rotavirus infection in mice. Eur. J. Immunol. 31:3380-3387.
-
(2001)
Eur. J. Immunol.
, vol.31
, pp. 3380-3387
-
-
VanCott, J.L.1
McNeal, M.M.2
Flint, J.3
Bailey, S.A.4
Choi, A.H.5
Ward, R.L.6
-
70
-
-
0042430331
-
IFN-γ-producing γδ cells help control murine West Nile virus infection
-
Wang, T., E. Scully, Z. Yin, J. H. Kim, S. Wang, J. Yan, M. Mamula, J. F. Anderson, J. Craft, and E. Fikrig. 2003. IFN-γ-producing γδ cells help control murine West Nile virus infection. J. Immunol. 171:2524-2531.
-
(2003)
J. Immunol.
, vol.171
, pp. 2524-2531
-
-
Wang, T.1
Scully, E.2
Yin, Z.3
Kim, J.H.4
Wang, S.5
Yan, J.6
Mamula, M.7
Anderson, J.F.8
Craft, J.9
Fikrig, E.10
-
71
-
-
0344736813
-
+ T cells mediate recovery and immunopathology in West Nile virus encephalitis
-
+ T cells mediate recovery and immunopathology in West Nile virus encephalitis. J. Virol. 77:13323-13334.
-
(2003)
J. Virol.
, vol.77
, pp. 13323-13334
-
-
Wang, Y.1
Lobigs, M.2
Lee, E.3
Mullbacher, A.4
-
72
-
-
3042759207
-
The regulation and maturation of antiviral immune responses
-
Whitton, J. L., M. K. Slifka, F. Liu, A. K. Nussbaum, and J. K. Whitmire. 2004. The regulation and maturation of antiviral immune responses. Adv. Virus Res. 63:181-238.
-
(2004)
Adv. Virus Res.
, vol.63
, pp. 181-238
-
-
Whitton, J.L.1
Slifka, M.K.2
Liu, F.3
Nussbaum, A.K.4
Whitmire, J.K.5
-
74
-
-
1542505527
-
Modes of transmission for West Nile virus
-
Williams, K. 2004. Modes of transmission for West Nile virus. Clin. Lab. Sci. 17:56.
-
(2004)
Clin. Lab. Sci.
, vol.17
, pp. 56
-
-
Williams, K.1
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