Laboratory of Immunology and Animal Health, Department of Biological Sciences, University of Alberta, Edmonton, AB, Canada.
Department of Agricultural, Food and Nutritional Sciences, University of Alberta, Edmonton, AB, Canada.
Front Immunol. 2020 Apr 7;11:584. doi: 10.3389/fimmu.2020.00584. eCollection 2020.
Combinatorial effects of xenobiotics in water on health may occur even at levels within current acceptable guidelines for individual chemicals. Herein, we took advantage of the sensitivity of the immune system and an avian animal model to examine the impact of xenobiotic mixtures on animal health. Water was derived from an underground well in Alberta, Canada and met guidelines for consumption, but contained a number of contaminants. Changes to chicken immunity were evaluated following acute (7d) exposure to contaminated water under basal and immune challenged conditions. An increase in resident macrophages and a decrease in CD8+ lymphocytes were identified in the abdominal cavity, which served as a relevant site where immune leukocytes could be examined. Subsequent intra-abdominal immune stimulation detected differential acute inflammatory responses to fungal and bacterial challenges. Leukocyte recruitment into the challenge site and activation of phagocyte antimicrobial responses were affected. These functional responses paralleled molecular changes in the expression for pro-inflammatory and regulatory genes. In all, this study primarily highlights dysregulation of phagocyte responses following acute (7d) exposure of poultry to contaminated water. Given that production food animals hold a unique position at the interface of animal, environmental and human health, this emphasizes the need to consider the impact of xenobiotic mixtures in our assessments of water quality.
即使在当前可接受的个别化学物质水平范围内,水中的外源化学物质组合对健康的影响也可能发生。在此,我们利用免疫系统的敏感性和禽类动物模型来研究外源化学物质混合物对动物健康的影响。水取自加拿大阿尔伯塔省的一口地下井,符合饮用水标准,但含有多种污染物。在基础和免疫挑战条件下,急性(7 天)接触污染水后,评估了鸡的免疫变化。在腹腔中发现常驻巨噬细胞增加和 CD8+淋巴细胞减少,这是一个可以检查免疫白细胞的相关部位。随后对腹腔内免疫刺激进行检测,发现真菌和细菌挑战的急性炎症反应存在差异。白细胞向挑战部位的募集和吞噬细胞抗菌反应的激活受到影响。这些功能反应与促炎和调节基因表达的分子变化平行。总之,这项研究主要强调了家禽在急性(7 天)接触污染水后,吞噬细胞反应失调。鉴于生产食品的动物在动物、环境和人类健康的界面上处于独特的地位,这强调了在评估水质时需要考虑外源化学物质混合物的影响。