Immunoregulation Unit of the Laboratory of Applied Toxinology (CeTICs/FAPESP), Butantan Institute, São Paulo 05503900, Brazil.
Int J Mol Sci. 2022 Oct 17;23(20):12402. doi: 10.3390/ijms232012402.
The environmental and occupational risk we confront from agricultural chemicals increases as their presence in natural habitats rises to hazardous levels, building a major part of the exposome. This is of particular concern in low- and middle-income countries, such as Brazil, known as a leading producer of agricultural commodities and consumer of pesticides. As long as public policies continue to encourage the indiscriminate use of pesticides and governments continue to support this strategy instead of endorsing sustainable agricultural alternatives, the environmental burden that damages epithelial barriers will continue to grow. Chronic exposure to environmental contaminants in early life can affect crucial barrier tissue, such as skin epithelium, airways, and intestine, causing increased permeability, leaking, dysbiosis, and inflammation, with serious implications for metabolism and homeostasis. This vicious cycle of exposure to environmental factors and the consequent damage to the epithelial barrier has been associated with an increase in immune-mediated chronic inflammatory diseases. Understanding how the harmful effects of pesticides on the epithelial barrier impact cellular interactions mediated by endogenous sensors that coordinate a successful immune system represents a crucial challenge. In line with the epithelial barrier hypothesis, this narrative review reports the available evidence on the effects of pesticides on epithelial barrier integrity, dysbiosis, AhR signaling, and the consequent development of immune-mediated inflammatory diseases.
随着农业化学品在自然栖息地中的存在上升到危险水平,我们面临的环境和职业风险来自农业化学品,这构成了暴露组学的主要部分。在巴西等中低收入国家,这尤其令人担忧,巴西是农业大宗商品的主要生产国和农药消费国。只要公共政策继续鼓励滥用农药,而政府继续支持这一策略,而不是支持可持续的农业替代品,损害上皮屏障的环境负担将继续增加。儿童早期慢性接触环境污染物会影响关键的屏障组织,如皮肤上皮、气道和肠道,导致通透性增加、渗漏、菌群失调和炎症,对新陈代谢和体内平衡产生严重影响。这种暴露于环境因素和上皮屏障损伤的恶性循环与免疫介导的慢性炎症性疾病的增加有关。了解农药对上皮屏障的有害影响如何影响协调成功免疫系统的内源性传感器介导的细胞相互作用,是一个至关重要的挑战。根据上皮屏障假说,本叙述性综述报告了关于农药对上皮屏障完整性、菌群失调、AhR 信号转导以及随后发生的免疫介导的炎症性疾病的影响的现有证据。