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Natural killer cell enumeration and function in HIV-infected and high-risk uninfected adolescents.

Douglas SD, Durako SJ, Tustin NB, Houser J, Muenz L, Starr SE, Wilson C; Adolescent Medicine HIV/AIDS Research Network.

AIDS Res Hum Retroviruses. 2001 Apr 10;17(6):543-52.


The relationships between substance abuse, psychosocial variables, and natural killer cell enumeration and function in HIV-infected and high-risk uninfected adolescents.

Douglas SD, Camarca M, Xu J, Durako S, Murphy D, Moscicki B, Wilson CM; Reaching for Excellence in Adolescent Care and Health Project, Adolescent Medicine HIV/AIDS Research Network.

AIDS Res Hum Retroviruses. 2003 May;19(5):399-408.


Peripheral blood mononuclear cell markers in antiretroviral therapy-naive HIV-infected and high risk seronegative adolescents. Adolescent Medicine HIV/AIDS Research Network.

Douglas SD, Rudy B, Muenz L, Moscicki AB, Wilson CM, Holland C, Crowley-Nowick P, Vermund SH.

AIDS. 1999 Sep 10;13(13):1629-35.


High CD56++CD16- natural killer (NK) cells among suboptimal immune responders after four years of suppressive antiretroviral therapy in an African adult HIV treatment cohort.

Bayigga L, Nabatanzi R, Sekiziyivu PN, Mayanja-Kizza H, Kamya MR, Kambugu A, Olobo J, Kiragga A, Kirimunda S, Joloba M, Nakanjako D.

BMC Immunol. 2014 Jan 31;15:2. doi: 10.1186/1471-2172-15-2.


Natural killer cell immunodeficiency in HIV disease is manifest by profoundly decreased numbers of CD16+CD56+ cells and expansion of a population of CD16dimCD56- cells with low lytic activity.

Hu PF, Hultin LE, Hultin P, Hausner MA, Hirji K, Jewett A, Bonavida B, Detels R, Giorgi JV.

J Acquir Immune Defic Syndr Hum Retrovirol. 1995 Nov 1;10(3):331-40.


Reference ranges of lymphocyte subsets in healthy adults and adolescents with special mention of T cell maturation subsets in adults of South Florida.

Valiathan R, Deeb K, Diamante M, Ashman M, Sachdeva N, Asthana D.

Immunobiology. 2014 Jul;219(7):487-96. doi: 10.1016/j.imbio.2014.02.010. Epub 2014 Mar 2.


Increased Natural Killer Cell Activation in HIV-Infected Immunologic Non-Responders Correlates with CD4+ T Cell Recovery after Antiretroviral Therapy and Viral Suppression.

Luo Z, Li Z, Martin L, Hu Z, Wu H, Wan Z, Kilby M, Heath SL, Huang L, Jiang W.

PLoS One. 2017 Jan 11;12(1):e0167640. doi: 10.1371/journal.pone.0167640. eCollection 2017.


Terminal Differentiation of CD56(dim)CD16(+) Natural Killer Cells Is Associated with Increase in Natural Killer Cell Frequencies After Antiretroviral Treatment in HIV-1 Infection.

Ahmad F, Tufa DM, Mishra N, Jacobs R, Schmidt RE.

AIDS Res Hum Retroviruses. 2015 Dec;31(12):1206-12. doi: 10.1089/aid.2015.0115. Epub 2015 Sep 9.


Short communication: Longitudinal changes in peripheral blood NK cells during the first year of HIV-1 Infection in CD4Low and CD4High patient groups.

Jiao Y, Song J, Zhang Y, Li W, Zhang T, Qi SM, Wu H.

AIDS Res Hum Retroviruses. 2015 Feb;31(2):229-36. doi: 10.1089/aid.2014.0083. Epub 2014 Nov 11.


A Novel Toll-Like Receptor 9 Agonist, MGN1703, Enhances HIV-1 Transcription and NK Cell-Mediated Inhibition of HIV-1-Infected Autologous CD4+ T Cells.

Offersen R, Nissen SK, Rasmussen TA, Østergaard L, Denton PW, Søgaard OS, Tolstrup M.

J Virol. 2016 Apr 14;90(9):4441-53. doi: 10.1128/JVI.00222-16. Print 2016 May.


Virologically suppressed HIV patients show activation of NK cells and persistent innate immune activation.

Lichtfuss GF, Cheng WJ, Farsakoglu Y, Paukovics G, Rajasuriar R, Velayudham P, Kramski M, Hearps AC, Cameron PU, Lewin SR, Crowe SM, Jaworowski A.

J Immunol. 2012 Aug 1;189(3):1491-9. doi: 10.4049/jimmunol.1200458. Epub 2012 Jun 27.


Enhancement of natural killer and antibody-dependent cytolytic activities of the peripheral blood mononuclear cells of HIV-infected patients by recombinant IL-15.

Loubeau M, Ahmad A, Toma E, Menezes J.

J Acquir Immune Defic Syndr Hum Retrovirol. 1997 Nov 1;16(3):137-45.


Changes in NK cell counts and receptor expressions and emergence of CD3(dim)/CD56+ cells in HIV-1 infected patients in China.

Fu GF, Hao S, Zhao JL, Xu XQ, Guo HX, Hu HY, Yang HT, Li L, Xu JS, Qiu T, Huan XP, Hou YY.

Viral Immunol. 2009 Apr;22(2):105-16. doi: 10.1089/vim.2008.0081.


Natural killer cells from human immunodeficiency virus (HIV)-infected individuals are an important source of CC-chemokines and suppress HIV-1 entry and replication in vitro.

Oliva A, Kinter AL, Vaccarezza M, Rubbert A, Catanzaro A, Moir S, Monaco J, Ehler L, Mizell S, Jackson R, Li Y, Romano JW, Fauci AS.

J Clin Invest. 1998 Jul 1;102(1):223-31.


Increased NKG2A found in cytotoxic natural killer subset in HIV-1 patients with advanced clinical status.

Zhang R, Xu J, Hong K, Yuan L, Peng H, Tang H, Ma P, Zhang Y, Xing H, Ruan Y, Shao Y.

AIDS. 2007 Dec;21 Suppl 8:S9-17. doi: 10.1097/01.aids.0000304691.32014.19.


Are increased frequency of macrophage-like and natural killer (NK) cells, together with high levels of NKT and CD4+CD25high T cells balancing activated CD8+ T cells, the key to control Chagas' disease morbidity?

Vitelli-Avelar DM, Sathler-Avelar R, Massara RL, Borges JD, Lage PS, Lana M, Teixeira-Carvalho A, Dias JC, Elói-Santos SM, Martins-Filho OA.

Clin Exp Immunol. 2006 Jul;145(1):81-92.


Epinephrine-induced mobilization of natural killer (NK) cells and NK-like T cells in HIV-infected patients.

Sondergaard SR, Ullum H, Skinhoj P, Pedersen BK.

Cell Immunol. 1999 Nov 1;197(2):91-8.


Evidence of a selective depletion of a CD16+ CD56+ CD8+ natural killer cell subset during HIV infection.

Lucia B, Jennings C, Cauda R, Ortona L, Landay AL.

Cytometry. 1995 Mar 15;22(1):10-5.


Short Communication: Natural killer cells and expression of KIR receptors in chronic HIV type 1-infected patients after different strategies of structured therapy interruption.

Mestre G, Garcia F, Martinez E, Milinkovic A, Lopez A, León A, Mora B, Argelich R, Lozano JM, Peña J, Gatell JM, Plana M.

AIDS Res Hum Retroviruses. 2008 Dec;24(12):1485-95. doi: 10.1089/aid.2008.0135.


Perturbation of the natural killer cell compartment during primary human immunodeficiency virus 1 infection primarily involving the CD56 bright subset.

Mantegani P, Tambussi G, Galli L, Din CT, Lazzarin A, Fortis C.

Immunology. 2010 Feb;129(2):220-33. doi: 10.1111/j.1365-2567.2009.03171.x. Epub 2009 Aug 4.

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