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Items: 1 to 20 of 1098

1.

Cytomegalovirus rather than HIV triggers the outgrowth of effector CD8+CD45RA+CD27- T cells in HIV-1-infected children.

Bekker V, Bronke C, Scherpbier HJ, Weel JF, Jurriaans S, Wertheim-van Dillen PM, van Leth F, Lange JM, Tesselaar K, van Baarle D, Kuijpers TW.

AIDS. 2005 Jul 1;19(10):1025-34.

PMID:
15958833
2.
3.

Human immunodeficiency virus-infected patients receiving highly active antiretroviral therapy maintain activated CD8+ T cell subsets as a strong adaptive immune response to cytomegalovirus.

Villacres MC, Lacey SF, La Rosa C, Krishnan R, Auge C, Longmate J, Zaia JA, Leedom JM, Diamond DJ.

J Infect Dis. 2001 Aug 1;184(3):256-67. Epub 2001 Jul 10.

PMID:
11443550
4.
5.

HIV-1-infected children on HAART: immunologic features of three different levels of viral suppression.

Zaccarelli-Filho CA, Ono E, Machado DM, Brunialti M, Succi RC, Salomão R, Kallás EG, de Moraes-Pinto MI.

Cytometry B Clin Cytom. 2007 Jan 15;72(1):14-21.

6.

Frequencies of circulating cytolytic, CD45RA+CD27-, CD8+ T lymphocytes depend on infection with CMV.

Kuijpers TW, Vossen MT, Gent MR, Davin JC, Roos MT, Wertheim-van Dillen PM, Weel JF, Baars PA, van Lier RA.

J Immunol. 2003 Apr 15;170(8):4342-8.

7.

Dynamics of cytomegalovirus (CMV)-specific T cells in HIV-1-infected individuals progressing to AIDS with CMV end-organ disease.

Bronke C, Palmer NM, Jansen CA, Westerlaken GH, Polstra AM, Reiss P, Bakker M, Miedema F, Tesselaar K, van Baarle D.

J Infect Dis. 2005 Mar 15;191(6):873-80. Epub 2005 Jan 31.

PMID:
15717261
8.

Modulation of interleukin-7 receptor expression characterizes differentiation of CD8 T cells specific for HIV, EBV and CMV.

Boutboul F, Puthier D, Appay V, Pellé O, Ait-Mohand H, Combadière B, Carcelain G, Katlama C, Rowland-Jones SL, Debré P, Nguyen C, Autran B.

AIDS. 2005 Nov 18;19(17):1981-6.

PMID:
16260904
9.

Persistent and selective deficiency of CD4+ T cell immunity to cytomegalovirus in immunocompetent young children.

Tu W, Chen S, Sharp M, Dekker C, Manganello AM, Tongson EC, Maecker HT, Holmes TH, Wang Z, Kemble G, Adler S, Arvin A, Lewis DB.

J Immunol. 2004 Mar 1;172(5):3260-7.

10.
11.

Infrequent detection of HIV-1-specific, but not cytomegalovirus-specific, CD8(+) T cell responses in young HIV-1-infected infants.

Scott ZA, Chadwick EG, Gibson LL, Catalina MD, McManus MM, Yogev R, Palumbo P, Sullivan JL, Britto P, Gay H, Luzuriaga K; PACTG(Pediatric AIDS Clinical Trial Group) 345 Investigators.

J Immunol. 2001 Dec 15;167(12):7134-40.

12.

Progression to CMV end-organ disease in HIV-1-infected individuals despite abundance of highly differentiated CMV-specific CD8+ T-cells.

Bronke C, Westerlaken GH, Miedema F, Tesselaar K, van Baarle D.

Immunol Lett. 2005 Mar 15;97(2):215-24. Epub 2004 Nov 28.

PMID:
15752561
13.

Simultaneous activation of viral antigen-specific memory CD4+ and CD8+ T-cells using mRNA-electroporated CD40-activated autologous B-cells.

Van den Bosch GA, Van Gulck E, Ponsaerts P, Nijs G, Lenjou M, Apers L, Kint I, Heyndrickx L, Vanham G, Van Bockstaele DR, Berneman ZN, Van Tendeloo VF.

J Immunother. 2006 Sep-Oct;29(5):512-23.

PMID:
16971807
15.

Direct measurement of CD4+ and CD8+ T-cell responses to CMV in HIV-1-infected subjects.

Komanduri KV, Donahoe SM, Moretto WJ, Schmidt DK, Gillespie G, Ogg GS, Roederer M, Nixon DF, McCune JM.

Virology. 2001 Jan 20;279(2):459-70.

16.

Characterizing the immune system after long-term undetectable viral load in HIV-1-infected children.

Resino S, Galán I, Bellón JM, Navarro ML, León JA, Muñoz-Fernandez MA.

J Clin Immunol. 2003 Jul;23(4):279-89.

PMID:
12959220
17.

Shift of CMV-specific CD4+ T-cells to the highly differentiated CD45RO-CD27- phenotype parallels loss of proliferative capacity and precedes progression to HIV-related CMV end-organ disease.

Bronke C, Jansen CA, Westerlaken GH, De Cuyper IM, Miedema F, Tesselaar K, van Baarle D.

Clin Immunol. 2007 Aug;124(2):190-9. Epub 2007 Jun 6.

PMID:
17556025
18.

Protective immunity to cytomegalovirus (CMV) retinitis in AIDS is associated with CMV-specific T cells that express interferon- gamma and interleukin-2 and have a CD8+ cell early maturational phenotype.

Sinclair E, Tan QX, Sharp M, Girling V, Poon C, Natta MV, Jabs DA, Inokuma M, Maecker HT, Bredt B, Jacobson MA; Studies of Ocular Complications of AIDS Research Group.

J Infect Dis. 2006 Dec 1;194(11):1537-46. Epub 2006 Oct 26.

PMID:
17083038
19.

Distribution and functional analysis of memory antiviral CD8 T cell responses in HIV-1 and cytomegalovirus infections.

Ellefsen K, Harari A, Champagne P, Bart PA, Sékaly RP, Pantaleo G.

Eur J Immunol. 2002 Dec;32(12):3756-64.

20.

CCR5 and CXCR4 expression on memory and naive T cells in HIV-1 infection and response to highly active antiretroviral therapy.

Nicholson JK, Browning SW, Hengel RL, Lew E, Gallagher LE, Rimland D, McDougal JS.

J Acquir Immune Defic Syndr. 2001 Jun 1;27(2):105-15.

PMID:
11404531

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