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572 related items for PubMed ID: 10580402
41. CD4+ memory T cells are the predominant population of HIV-1-infected lymphocytes in neonates and children. Sleasman JW, Aleixo LF, Morton A, Skoda-Smith S, Goodenow MM. AIDS; 1996 Nov; 10(13):1477-84. PubMed ID: 8931781 [Abstract] [Full Text] [Related]
42. Productive human immunodeficiency virus type 1 infection in peripheral blood predominantly takes place in CD4/CD8 double-negative T lymphocytes. Kaiser P, Joos B, Niederöst B, Weber R, Günthard HF, Fischer M. J Virol; 2007 Sep; 81(18):9693-706. PubMed ID: 17609262 [Abstract] [Full Text] [Related]
44. Naïve CD4+ cell counts significantly decay and high HIV RNA levels contribute to immunological progression in long-term non-progressors infected with HIV by blood products: a cohort study. Xu L, Liu Y, Song X, Li Y, Han Y, Zhu T, Cao W, Li T. BMC Immunol; 2021 Jun 03; 22(1):36. PubMed ID: 34082709 [Abstract] [Full Text] [Related]
47. Frequency of provirus-bearing CD4+ cells in HIV type 1 infection correlates with extent of in vitro apoptosis of CD8+ but not of CD4+ cells. Carbonari M, Cibati M, Pesce AM, Sbarigia D, Grossi P, D'Offizi G, Luzi G, Fiorilli M. AIDS Res Hum Retroviruses; 1995 Jul 03; 11(7):789-94. PubMed ID: 7546905 [Abstract] [Full Text] [Related]
48. Delayed virus-specific CD8+ cytotoxic T lymphocyte activity in an HIV-infected individual with high CD4+ cell counts: correlations with various parameters of disease progression. Dalod M, Fiorentino S, Delamare C, Rouzioux C, Sicard D, Guillet JG, Gomard E. AIDS Res Hum Retroviruses; 1996 Apr 10; 12(6):497-506. PubMed ID: 8679305 [Abstract] [Full Text] [Related]
49. Increased CD38 expression on T lymphocytes as a marker of HIV dissemination into the central nervous system. Dentone C, Fenoglio D, Schenone E, Cenderello G, Prinapori R, Signori A, Parodi A, Kalli F, Battaglia F, Feasi M, Bruzzone B, Viscoli C, Filaci G, Di Biagio A. HIV Clin Trials; 2015 Oct 10; 16(5):190-6. PubMed ID: 26365593 [Abstract] [Full Text] [Related]
50. Effects of primary HIV-1 infection on subsets of CD4+ and CD8+ T lymphocytes. Zaunders J, Carr A, McNally L, Penny R, Cooper DA. AIDS; 1995 Jun 10; 9(6):561-6. PubMed ID: 7662193 [Abstract] [Full Text] [Related]
51. Human immunodeficiency virus type 1 replication, immune activation, and circulating cytotoxic T cells against uninfected CD4+ T cells. Kottilil S, Gamberg J, Bowmer I, Trahey J, Howley C, Gallant M, Grant M. J Clin Immunol; 2000 May 10; 20(3):175-86. PubMed ID: 10941825 [Abstract] [Full Text] [Related]
52. Characterization of CD31 expression in CD4+ and CD8+T cell subpopulations in chronic untreated HIV infection. Briceño O, Peralta-Prado A, Garrido-Rodríguez D, Romero-Mora K, Chávez-Torres M, de la Barrera CA, Reyes-Terán G, Ávila-Ríos S. Immunol Lett; 2021 Jul 10; 235():22-31. PubMed ID: 33852965 [Abstract] [Full Text] [Related]
53. Flow cytometric characterisation of the "false naive" (CD45RA+, CD45RO-, CD29 bright+) peripheral blood T-lymphocytes in health and in rheumatoid arthritis. Neidhart M, Pataki F, Schönbächler J, Brühlmann P. Rheumatol Int; 1996 Jul 10; 16(2):77-87. PubMed ID: 8853229 [Abstract] [Full Text] [Related]
54. The number of CCR5 expressing CD4+ T lymphocytes is lower in HIV-infected long-term non-progressors with viral control compared to normal progressors: a cross-sectional study. Meijerink H, Indrati AR, van Crevel R, Joosten I, Koenen H, van der Ven AJ. BMC Infect Dis; 2014 Dec 13; 14():683. PubMed ID: 25495598 [Abstract] [Full Text] [Related]
55. Immunophenotyping of blood lymphocytes at birth, during childhood, and during adulthood in HIV-1-uninfected Ethiopians. Tsegaye A, Wolday D, Otto S, Petros B, Assefa T, Alebachew T, Hailu E, Adugna F, Measho W, Dorigo W, Fontanet AL, van Baarle D, Miedema F. Clin Immunol; 2003 Dec 13; 109(3):338-46. PubMed ID: 14697749 [Abstract] [Full Text] [Related]
56. Relationship between T cell activation and CD4+ T cell count in HIV-seropositive individuals with undetectable plasma HIV RNA levels in the absence of therapy. Hunt PW, Brenchley J, Sinclair E, McCune JM, Roland M, Page-Shafer K, Hsue P, Emu B, Krone M, Lampiris H, Douek D, Martin JN, Deeks SG. J Infect Dis; 2008 Jan 01; 197(1):126-33. PubMed ID: 18171295 [Abstract] [Full Text] [Related]
57. Prospective study of CD8+ lymphocyte activation in relation to viral load in HIV-infected patients with > or = 400 CD4+ lymphocytes per microliter. Bouscarat F, Levacher M, Dazza MC, Chau F, Desforges B, Muffat-Joly M, Matheron S, Girard PM, Sinet M. AIDS Res Hum Retroviruses; 1999 Nov 01; 15(16):1419-25. PubMed ID: 10555104 [Abstract] [Full Text] [Related]
58. T cell receptor excision circle (TREC) content following maximum HIV suppression is equivalent in HIV-infected and HIV-uninfected individuals. Steffens CM, Smith KY, Landay A, Shott S, Truckenbrod A, Russert M, Al-Harthi L. AIDS; 2001 Sep 28; 15(14):1757-64. PubMed ID: 11579236 [Abstract] [Full Text] [Related]
59. Killing of Latently HIV-Infected CD4 T Cells by Autologous CD8 T Cells Is Modulated by Nef. Sevilya Z, Chorin E, Gal-Garber O, Zelinger E, Turner D, Avidor B, Berke G, Hassin D. Front Immunol; 2018 Sep 28; 9():2068. PubMed ID: 30254642 [Abstract] [Full Text] [Related]
60. Increase in percentage of CD45RO+/CD8+ cells is associated with previous severe primary HIV infection. Bruunsgaard H, Pedersen C, Scheibel E, Pedersen BK. J Acquir Immune Defic Syndr Hum Retrovirol; 1995 Oct 01; 10(2):107-14. PubMed ID: 7552473 [Abstract] [Full Text] [Related] Page: [Previous] [Next] [New Search]