Division of Biochemistry, Department of Physiology and Biochemistry, University of Veterinary Medicine, Budapest, H-1078, Hungary.
Division of Biochemistry, Department of Physiology and Biochemistry, University of Veterinary Medicine, Budapest, H-1078, Hungary; National Laboratory of Infectious Animal Diseases, Antimicrobial Resistance, Veterinary Public Health and Food Chain Safety, University of Veterinary Medicine, Budapest, H-1078, Hungary.
Poult Sci. 2024 Mar;103(3):103471. doi: 10.1016/j.psj.2024.103471. Epub 2024 Jan 17.
Contamination of feed with mycotoxins has become a severe issue worldwide. Among the most prevalent trichothecene mycotoxins, T-2 toxin is of particular importance for livestock production, including poultry posing a significant threat to animal health and productivity. This review article aims to comprehensively analyze the pathological consequences, metabolism, and toxic effects of T-2 toxin in poultry. Trichothecene mycotoxins, primarily produced by Fusarium species, are notorious for their potent toxicity. T-2 toxin exhibits a broad spectrum of negative effects on poultry species, leading to substantial economic losses as well as concerns about animal welfare and food safety in modern agriculture. T-2 toxin exposure easily results in negative pathological consequences in the gastrointestinal tract, as well as in parenchymal tissues like the liver (as the key organ for its metabolism), kidneys, or reproductive organs. In addition, it also intensely damages immune system-related tissues such as the spleen, the bursa of Fabricius, or the thymus causing immunosuppression and increasing the susceptibility of the animals to infectious diseases, as well as making immunization programs less effective. The toxin also damages cellular processes on the transcriptional and translational levels and induces apoptosis through the activation of numerous cellular signaling cascades. Furthermore, according to recent studies, besides the direct effects on the abovementioned processes, T-2 toxin induces the production of reactive molecules and free radicals resulting in oxidative distress and concomitantly occurring cellular damage. In conclusion, this review article provides a complex and detailed overview of the metabolism, pathological consequences, mechanism of action as well as the immunomodulatory and oxidative stress-related effects of T-2 toxin. Understanding these effects in poultry is crucial for developing strategies to mitigate the impact of the T-2 toxin on avian health and food safety in the future.
饲料中的霉菌毒素污染已成为全球范围内的严重问题。在最常见的单端孢霉烯族毒素中,T-2 毒素对畜牧业生产,包括家禽业具有重要意义,对动物健康和生产力构成重大威胁。本文旨在全面分析 T-2 毒素对家禽的病理后果、代谢和毒性作用。单端孢霉烯族毒素主要由镰刀菌属产生,其毒性很强。T-2 毒素对家禽具有广泛的负面影响,导致巨大的经济损失,同时也引起了现代畜牧业中对动物福利和食品安全的关注。家禽接触 T-2 毒素很容易导致胃肠道以及肝脏(作为其代谢的关键器官)、肾脏或生殖器官等实质组织出现负面的病理后果。此外,它还强烈损伤与免疫系统相关的组织,如脾脏、法氏囊或胸腺,导致免疫抑制,使动物更容易感染传染病,使免疫接种计划效果降低。该毒素还会在转录和翻译水平上破坏细胞过程,并通过激活许多细胞信号级联反应诱导细胞凋亡。此外,根据最近的研究,除了对上述过程的直接影响外,T-2 毒素还会诱导活性分子和自由基的产生,导致氧化应激和随之发生的细胞损伤。总之,本文对 T-2 毒素的代谢、病理后果、作用机制以及免疫调节和氧化应激相关效应进行了复杂而详细的综述。了解这些在家禽中的效应对于未来制定减轻 T-2 毒素对禽类健康和食品安全影响的策略至关重要。