Proteomic characterization of ocular tear fluid reveals preclinical markers of sulfur mustard toxicity.

IF 5.2 3区 医学 Q2 TOXICOLOGY
Sreekala P V Shenoy, Cameron A Sousa, Aaron T Doney, Adrienne B Stone, Christel Y Anthony, Steven Cayea, Hadi Pourhadi, Jingyun Lee, Saleh Ahmed, Ashok Sharma, Sarfaraz Ahmad, Ratnakar Tripathi, Patrick M McNutt
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引用次数: 0

Abstract

Sulfur mustard (SM) vapor causes ocular injury after a short latent period, when molecular damage has occurred, but clinical signs are not yet apparent. Characterizing ocular responses during this early phase is important for understanding SM pathogenesis, identifying molecular readouts of injury progression, and developing biomarkers of exposure. Tear fluid is well-suited for this purpose because it can be collected noninvasively and captures responses from injured ocular tissues. We tested whether temporal changes in the tear fluid proteome reflect cellular and molecular responses to corneal SM exposure. Rabbits were exposed to SM vapor using a corneal vapor cap, and tear fluid was collected at baseline, 4 h, 1 d, and 5 d, corresponding to the latent period, acute lesion, and early recovery. A large proteomic response was detected at 4 h, involving extracellular injury signaling, epithelial injury, and innate immune activation. By 1 d, the tear fluid proteome transitioned to inflammatory cell activation with metabolic, redox, and proteostasis stress. By 5 d, evidence of acute injury response was reduced but the proteome retained a residual signature of immune, epithelial, and stress responses. This temporal progression is consistent with the molecular mechanisms of SM toxicity and provides insight into acute ocular vesicant injury. These findings establish tear fluid as a noninvasive molecular reporter of ocular SM injury progression. They also reveal a molecular signature of vesicant exposure, which emerges prior to clinical signs, and provide foundational data for developing tear-based biomarkers of chemical exposure, injury assessment, and therapeutic testing.

眼泪液的蛋白质组学特征揭示了硫芥毒性的临床前标志物。
硫芥子气(SM)蒸气引起眼损伤的潜伏期较短,此时已发生分子损伤,但临床症状尚不明显。在这一早期阶段表征眼部反应对于理解SM发病机制、识别损伤进展的分子读数和开发暴露的生物标志物非常重要。泪液非常适合这一目的,因为它可以非侵入性地收集,并捕获受伤眼组织的反应。我们测试了泪液蛋白质组的时间变化是否反映了角膜SM暴露的细胞和分子反应。用角膜蒸汽帽将家兔暴露于SM蒸汽中,分别在基线、4 h、1 d和5 d收集泪液,分别对应潜伏期、急性病变和早期恢复。在4小时检测到一个大的蛋白质组反应,包括细胞外损伤信号,上皮损伤和先天免疫激活。到第1天,泪液蛋白质组在代谢、氧化还原和蛋白质稳态应激下转变为炎症细胞活化。到第5天,急性损伤反应的证据减少,但蛋白质组保留了免疫、上皮和应激反应的残余特征。这种时间进展与SM毒性的分子机制一致,并为急性眼水肿损伤提供了见解。这些发现证实泪液是眼SM损伤进展的非侵入性分子报告因子。它们还揭示了泡剂暴露的分子特征,这在临床症状出现之前就出现了,并为开发基于眼泪的化学暴露生物标志物、损伤评估和治疗测试提供了基础数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Toxicological Sciences
Toxicological Sciences 医学-毒理学
CiteScore
7.70
自引率
7.90%
发文量
118
审稿时长
1.5 months
期刊介绍: The mission of Toxicological Sciences, the official journal of the Society of Toxicology, is to publish a broad spectrum of impactful research in the field of toxicology. The primary focus of Toxicological Sciences is on original research articles. The journal also provides expert insight via contemporary and systematic reviews, as well as forum articles and editorial content that addresses important topics in the field. The scope of Toxicological Sciences is focused on a broad spectrum of impactful toxicological research that will advance the multidisciplinary field of toxicology ranging from basic research to model development and application, and decision making. Submissions will include diverse technologies and approaches including, but not limited to: bioinformatics and computational biology, biochemistry, exposure science, histopathology, mass spectrometry, molecular biology, population-based sciences, tissue and cell-based systems, and whole-animal studies. Integrative approaches that combine realistic exposure scenarios with impactful analyses that move the field forward are encouraged.
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