Cytokine gene polymorphisms and susceptibility to chronic irritant contact dermatitis
CONTACT DERMATITIS
Authors: De Jongh, Cindy M.; John, Swen M.; Bruynzeel, Derk P.; Calkoen, Florentine; van Dijk, Frank J. H.; Khrenova, Liubov; Rustemeyer, Thomas; Verberk, Maarten M.; Kezic, Sanja
Abstract
Background: Cytokines play an important role in skin inflammation. Objectives: We determined whether polymorphisms in cytokine genes contribute to the occurrence of occupational chronic irritant contact dermatitis (CICD). Methods: In a case-control study, 9 polymorphisms in the genes coding for interleukin (IL)-1 alpha, IL-1 beta, IL-8, IL-10, and tumour necrosis factor (TNF)-alpha were determined in 197 patients with CICD. 217 apprentices in vocational training for high-risk occupations for CICD served as controls. Results: For all polymorphisms, no differences in genotype distributions were found between patients and controls. However, in patients with self-reported low levels of wet work and irritant exposure, more TNFA -308 variant genotypes (G/A and A/A) were present compared with those exposed to higher levels or controls, which indicates a TNFA-induced increase of susceptibility. In patients with TNFA -308 variant genotypes, the prevalence of flexural eczema was higher (48% and 57%) compared with that in patients presented with wild-type genotype (30%). Regarding IL1A -889, prevalence of symptoms of dermatitis was lower in apprentices with T/T or C/T genotype (32% and 36%) compared with wild-type genotype (54%, C/C). This indicates a protective effect of these variant alleles in acquiring hand dermatitis. Conclusions: This study provides evidence that some genetic variations alter susceptibility to (chronic) dermatitis. Knowledge of the impact of genetic differences on the risk of CICD is essential in predictive testing of individuals at risk.
Modulation of Human Macrophage Responses to Mycobacterium tuberculosis by Silver Nanoparticles of Different Size and Surface Modification
PLOS ONE
Authors: Sarkar, Srijata; Leo, Bey Fen; Carranza, Claudia; Chen, Shu; Rivas-Santiago, Cesar; Porter, Alexandra E.; Ryan, Mary P.; Gow, Andrew; Chung, Kian Fan; Tetley, Teresa D.; Zhang, Junfeng (Jim); Georgopoulos, Panos G.; Ohman-Strickland, Pamela A.; Schwander, Stephan
Abstract
Exposure to silver nanoparticles (AgNP) used in consumer products carries potential health risks including increased susceptibility to infectious pathogens. Systematic assessments of antimicrobial macrophage immune responses in the context of AgNP exposure are important because uptake of AgNP by macrophages may lead to alterations of innate immune cell functions. In this study we examined the effects of exposure to AgNP with different particle sizes (20 and 110 nm diameters) and surface chemistry (citrate or polyvinlypyrrolidone capping) on cellular toxicity and innate immune responses against Mycobacterium tuberculosis (M.tb) by human monocyte-derived macrophages (MDM). Exposures of MDM to AgNP significantly reduced cellular viability, increased IL8 and decreased IL10 mRNA expression. Exposure of M.tb-infected MDM to AgNP suppressed M.tb-induced expression of IL1B, IL10, and TNFA mRNA. Furthermore, M.tb-induced IL-1 beta, a cytokine critical for host resistance to M.tb, was inhibited by AgNP but not by carbon black particles indicating that the observed immunosuppressive effects of AgNP are particle specific. Suppressive effects of AgNP on the M.tb-induced host immune responses were in part due to AgNP-mediated interferences with the TLR signaling pathways that culminate in the activation of the transcription factor NF-.B. AgNP exposure suppressed M.tb-induced expression of a subset of NF-.B mediated genes (CSF2, CSF3, IFNG, IL1A, IL1B, IL6, IL10, TNFA, NFKB1A). In addition, AgNP exposure increased the expression of HSPA1A mRNA and the corresponding stress-induced Hsp72 protein. Up-regulation of Hsp72 by AgNP can suppress M.tb-induced NF-kappa B activation and host immune responses. The observed ability of AgNP to modulate infectious pathogen-induced immune responses has important public health implications.