慢性热暴露调节消防员的先天性免疫反应和适应性免疫反应

Brijesh Yadav, Afzaal Nadeem Mohammed, Brittney Graham, Amit Bhattacharya, Jagjit Singh Yadav
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引用次数: 0

摘要

由于气候变化,全球火灾活动日益加剧,对环境和人类健康都造成了危害。消防员作为第一反应者,经常暴露在高温环境中,这可能会影响他们的免疫系统和整体健康。然而,关于长期暴露在高温环境中对免疫功能的影响,目前还没有对消防员进行深入研究。在这项研究中,对 22 名暴露于 "浓烟火灾(结构性火灾)"的消防员进行了采样,分为 "高暴露组"(大于 0.15 次结构性火灾/周)和 "低暴露组"(小于 0.15 次结构性火灾/周)。根据细胞总数和差异细胞数检测外周血的免疫细胞概况,根据先天性免疫和适应性免疫的驱动因子和关键炎症介质的转录表达检测免疫功能,以及热应力标记物 HSP70。两个暴露组的白细胞(WBC)计数、平均血球容积、平均血球血红蛋白以及中性粒细胞绝对计数和分段计数均下降到正常范围以下。在 "高暴露组",收费样受体(TLR2、TLR4,但不是 TLR7)及其适配蛋白 MYD88 的基因转录水平较低,而 T 细胞转录因子(RORC/RORγ、FoxP3)和炎症介质(TNF-α、Granzyme-B)的基因转录水平较高,表明存在混合反应;然而,适应性免疫的促炎和抗炎转录因子,即 T-bet/FoxP3 (Th1/Treg)和 RORC/FoxP3 (Th17/Treg)之间的比率较低。总之,免疫细胞数量减少、先天性免疫关键受体下调以及Tregs占主导地位表明,消防员长期暴露于高温环境中会导致先天性和适应性免疫失调,从而导致整体免疫抑制和炎症。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chronic Heat Exposure Modulates Innate and Adaptive Immune Responses in Firefighters
Global fire activities, which are getting worse due to climate change, cause both environmental and human health hazards. Firefighters, being the first responders, are frequently exposed to heat which may impact their immune system and overall health. However, the nature of the impact of chronic heat exposure on immune function has not been studied in-depth in firefighters. In this study, 22 firefighters exposed to “heavy-smoke fires (structural fires)”, categorized as the “high-exposure group” (>0.15 structural fires/week) and “low-exposure group” (<0.15 structural fires/week), were sampled. Peripheral blood was examined for immune cell profile based on total and differential cell counts, immune function based on the transcriptional expression of drivers of innate and adaptive immunity and key inflammation mediators, and heat stress marker HSP70. The white blood cell (WBC) count, mean corpuscular volume, mean corpuscular hemoglobin, and absolute and segmented neutrophil counts decreased below the normal range in both exposure groups. The gene transcript levels for toll-like receptors (TLR2, TLR4, but not TLR7) and their adaptor protein MYD88 were lower whereas those for T-cell transcription factors (RORC/RORγ, FoxP3) and inflammatory mediators (TNF-α, Granzyme-B) were higher in the “high-exposure group”, indicating mixed response; however, the ratios between pro-inflammatory and anti-inflammatory transcription factors of adaptive immunity, namely T-bet/FoxP3 (Th1/Treg) and RORC/FoxP3 (Th17/Treg), were lower. Collectively, decreased immune cell landscape, downregulated key innate immunity receptors, and Tregs’ dominance suggested that chronic heat exposure in firefighters dysregulated innate and adaptive immunity, skewed towards an overall immunosuppressive condition with inflammation.
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