EFFECTS OF INVIVO DEPLETION OF IMMUNOCYTE POPULATIONS ON HERPES-SIMPLEX VIRUS GLYCOPROTEIN-D VACCINE-INDUCED RESISTANCE TO HSV2 CHALLENGE
VIRAL IMMUNOLOGY
Authors: MISHKIN, EM; BLASIAK, M; GIORGIO, D; ISHIZAKA, ST
Abstract
BALB/c mice, preimmunized with a protective dose of native herpes simplex virus type 1 glycoprotein D (ngD1) vaccine, were depleted of selected immunocyte populations in vivo using monoclonal antibodies directed at Thy1+, L3T4+, or Lyt2+ cells. Following immunization and depletion, animals were inoculated with varied challenge levels of herpes simplex virus type 2 (HSV2) in the footpad and were monitored for disease. Both depleted and undepleted gD-immunized mice were significantly protected when compared with placebo controls. T-cell-independent protection in Thy1 and L3T4-depleted ngD1-immunized animals was effective at low and moderate levels of HSV2 challenge levels, high levels of HSV2 giving high symptom scores in immunized and depleted mice. Depletion of Lyt2+ cells had no significant effect on the outcome of HSV2 infection. Depleted and nondepleted animals also were assessed in parallel for cellular and humoral responsiveness to ngD1 and to HSV antigens in vitro. Lymphoproliferative responses were abrogated in gD-immunized mice treated with anti-Thy1 or anti-L3T4, anti-Lyt2 treatment having little effect. Postimmunization T-cell depletion did not undermine ELISA or neutralizing antibody responses. These findings suggest that at low to moderate levels of virus challenge vaccine-elicited antibody plays a primary role in limiting the severity of infection, T-cell-mediated protective responses being of enhanced significance only at high levels of virus challenge.
Co-Expression of HSV2 and Chlamydia trachomatis in HPV-Positive Cervical Cancer and Cervical Intraepithelial Neoplasia Lesions Is Associated with Aberrations in Key Intracellular Pathways
INTERVIROLOGY
Authors: Paba, Pierpaolo; Bonifacio, Daniela; Di Bonito, Luigi; Ombres, Domenico; Favalli, Cartesio; Syrjaenen, Kari; Ciotti, Marco
Abstract
Objective: Oncogenic human papillomaviruses (HPVs) are the etiological agents of cervical cancer. Different cofactors might be needed for malignant transformation, but they still remain elusive. Methods: To delineate the role of Chlamydia trachomatis (CT) and herpes simplex virus type 2 (HSV2) in HPV-positive cervical intraepithelial neoplasia (CIN) lesions and cervical carcinoma a series of 149 cervical cancer and CIN biopsies were analyzed for CT and HSV2 DNA by PCR, and HPV genotyped by InnoLipa. Monitoring of aberrations in key intracellular pathways due to CT/HSV2 and HPV co-expression were analyzed with 13 biomarkers. Results: Of the 149 samples tested, 136 were HPV DNA positive; 32/136 contained also CT DNA and 29 HSV2 DNA. Detection of CT was significantly (p = 0.0001) related to multiple-type HPV infections, while HSV2 was of borderline significance (p = 0.053). Of the 13 biomarkers tested, cytoplasmic and nuclear NF-kappa B and VEGF-C were significantly increased in CT+/ HPV+ lesions; p = 0.023, p = 0.045, and p = 0.020 as well as survivin, p = 0.026. Survivin was the only marker that was overexpressed also in HSV2+/HPV+ lesions, p = 0.027. Conclusions: CT infection favors the entry and persistence of multiple HR-HPV types, which leads to viral integration, inhibition of apoptosis, overexpression of E6/E7 oncogenes and cell transformation. Copyright (C) 2008 S. Karger AG, Basel