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3. CTLA-4 and PD-1 dual blockade induces SIV reactivation without control of rebound after antiretroviral therapy interruption

7. Fingolimod treatment at ART initiation delays SIV rebound after ART interruption

8. Lineage-specific T-cell reconstitution following in vivo CD4+ and CD8+ lymphocyte depletion in nonhuman primates

11. WEAA0103: Production and characterization of human anti-V3 monoclonal antibodies from Indian clade C human immunodeficiency virus type-1 (HIV-1) infected patients

22. A novel CCR5 mutation common in sooty mangabeys reveals sivsmm infection of CCR5-null natural hosts and efficient alternative coreceptor use in vivo

23. Lineage-specific T-cell reconstitution following in vivo CD4+ and CD8+ lymphocyte depletion in nonhuman primates.

25. The loss of CCR6+and CD161+CD4+T-cell homeostasis contributes to disease progression in SIV-infected rhesus macaques

26. Administration of Fludarabine-Loaded Autologous Red Blood Cells in Simian Immunodeficiency Virus-Infected Sooty Mangabeys Depletes pSTAT-1-Expressing Macrophages and Delays the Rebound of Viremia after Suspension of Antiretroviral Therapy

30. Cyclin D1 expression in pre-cancerous and cancerous lesions of the canine mammary gland

31. Abnormal intracellular kinetics of cell-cycle-dependent proteins in lymphocytes from patients infected with human immunodeficiency virus: A novel biologic link between immune activation, accelerated T-cell turnover, and high levels of apoptosis

32. Lymph-Node-Based CD3 + CD20 + Cells Emerge from Membrane Exchange between T Follicular Helper Cells and B Cells and Increase Their Frequency following Simian Immunodeficiency Virus Infection.

33. HIV-1 DNA and Immune Activation Levels Differ for Long-Lived T-Cells in Lymph Nodes, Compared with Peripheral Blood, during Antiretroviral Therapy.

34. Limited impact of fingolimod treatment during the initial weeks of ART in SIV-infected rhesus macaques.

35. The role of CD101-expressing CD4 T cells in HIV/SIV pathogenesis and persistence.

36. Interleukin-10 contributes to reservoir establishment and persistence in SIV-infected macaques treated with antiretroviral therapy.

37. Tissue-specific transcriptional profiling of plasmacytoid dendritic cells reveals a hyperactivated state in chronic SIV infection.

38. CTLA-4 and PD-1 dual blockade induces SIV reactivation without control of rebound after antiretroviral therapy interruption.

39. Author Correction: Robust and persistent reactivation of SIV and HIV by N-803 and depletion of CD8 + cells.

40. Robust and persistent reactivation of SIV and HIV by N-803 and depletion of CD8 + cells.

41. Fingolimod retains cytolytic T cells and limits T follicular helper cell infection in lymphoid sites of SIV persistence.

42. Antibiotics-Driven Gut Microbiome Perturbation Alters Immunity to Vaccines in Humans.

43. Bone Marrow-Derived CD4 + T Cells Are Depleted in Simian Immunodeficiency Virus-Infected Macaques and Contribute to the Size of the Replication-Competent Reservoir.

44. Divergent CD4+ T memory stem cell dynamics in pathogenic and nonpathogenic simian immunodeficiency virus infections.

45. Increased stability and limited proliferation of CD4+ central memory T cells differentiate nonprogressive simian immunodeficiency virus (SIV) infection of sooty mangabeys from progressive SIV infection of rhesus macaques.

46. Immunological and virological analyses of rhesus macaques immunized with chimpanzee adenoviruses expressing the simian immunodeficiency virus Gag/Tat fusion protein and challenged intrarectally with repeated low doses of SIVmac.

47. Antitumoral activity of indole-3-carbinol cyclic tri- and tetrameric derivatives mixture in human breast cancer cells: in vitro and in vivo studies.

48. Maintenance of intestinal Th17 cells and reduced microbial translocation in SIV-infected rhesus macaques treated with interleukin (IL)-21.

49. Paucity of IL-21-producing CD4(+) T cells is associated with Th17 cell depletion in SIV infection of rhesus macaques.

50. Low levels of SIV infection in sooty mangabey central memory CD⁴⁺ T cells are associated with limited CCR5 expression.

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