Transient Immune Activation in BCG-Vaccinated Infant Rhesus Macaques Is Not Sufficient to Influence Oral Simian Immunodeficiency Virus Infection
JOURNAL OF INFECTIOUS DISEASES
Authors: Wood, Matthew P.; Wood, Lianna F.; Templeton, Megan; Fisher, Bridget; Lippy, Adriana; Jones, Chloe I.; Lindestam Arlehamn, Cecilia S.; Sette, Alessandro; Fuller, James T.; Murapa, Patience; Jaspan, Heather B.; Fuller, Deborah H.; Sodora, Donald L.
Abstract
BCG vaccination has been demonstrated to increase levels of activated CD4(+) T cells, thus potentially influencing mother-to-child transmission of human immunodeficiency virus (HIV). To assess the risk of BCG vaccination in HIV infection, we randomly assigned newborn rhesus macaques to receive BCG vaccine or remain unvaccinated and then undergo oral simian immunodeficiency virus (SIV) challenges 3 weeks later. We observed elevated levels of activated peripheral CD4(+) T cells (ie, HLA-DR(+)CD38(+)CCR5(+)CD4(+) T cells) by week 3 after vaccination. BCG was also associated with an altered immune gene expression profile, as well as with monocyte activation in both peripheral blood and the draining axillary lymph node, indicating significant BCG vaccine-induced immune activation. Despite these effects, BCG vaccination did not increase the rate of SIV oral transmission or disease progression. Our findings therefore identify patterns of T-cell and monocyte activation that occur after BCG vaccination but do not support the hypothesis that BCG vaccination is a risk factor for postnatal HIV transmission or increased pathogenesis in infants.
Development of the First Potential Nonpeptidic Positron Emission Tomography Tracer for the Imaging of CCR2 Receptors
CHEMMEDCHEM
Authors: Wagner, Stefan; Gatti, Fernando de Moura; Silva, Daniel G.; Zacarias, Natalia V. Ortiz; Zweemer, Annelien J. M.; Hermann, Sven; De Maria, Monica; Koch, Michael; Weiss, Christina; Schepmann, Dirk; Heitman, Laura H.; Tschammer, Nuska; Kopka, Klaus; Junker, Anna
Abstract
Herein we report the design and synthesis of a series of highly selective CCR2 antagonists as F-18-labeled PET tracers. The derivatives were evaluated extensively for their off-target profile at 48 different targets. The most potent and selective candidate was applied in vivo in a biodistribution study, demonstrating a promising profile for further preclinical development. This compound represents the first potential nonpeptidic PET tracer for the imaging of CCR2 receptors.