Diaz G J, Boermans H J
Facultad de Medicina Veterinaria y de Zootecnia, Universidad Nacional de Colombia, Santafe de Bogota DC.
Vet Hum Toxicol. 1994 Dec;36(6):548-55.
Fumonisins are the most recently discovered group of mycotoxins with important implications in animal health. Equine leucoencephalomalacia and porcine pulmonary edema are diseases observed for many years, but their etiology was unknown. These 2 syndromes were recently reproduced experimentally after administration of purified fumonisin B1 (FB1). The main target organs for the toxic actions of FB1 are the brain in horses and the lungs in the case of swine. However, severe liver damage in both species and pancreatic lesions in swine are also observed, especially when Fusarium moniliforme culture material (FCM) or naturally contaminated corn are used as the source of the fumonisins. Experimentally induced fumonisin toxicosis has been studied in poultry and cattle using FCM or naturally contaminated corn or corn screenings as the mycotoxin source. Results have shown a much lower sensitivity of these species to the toxic action of fumonisins when compared to horses and pigs. However, adverse effects on performance parameters of broiler chickens and turkey poults and on selected immune parameters of chickens and cattle were reported. In order to confirm these observations, toxicological studies using purified fumonisins are required. Studies to determine the interaction of fumonisin with other Fusarium toxins and other mycotoxins are also needed. No studies on the toxicokinetics of fumonisins have been reported. The toxicodynamics (mechanism of action) of fumonisins appears to be a blockage in the synthesis of sphingolipids and thus constitute a unique toxicological action among the known mycotoxins.(ABSTRACT TRUNCATED AT 250 WORDS)
伏马菌素是最近发现的一组对动物健康有重要影响的霉菌毒素。马脑白质软化症和猪肺水肿是已被观察多年的疾病,但其病因不明。最近在给予纯化的伏马菌素B1(FB1)后,这两种综合征在实验中被重现。FB1毒性作用的主要靶器官在马是脑,在猪是肺。然而,在这两个物种中都观察到了严重的肝脏损伤,在猪中还观察到胰腺病变,尤其是当使用串珠镰刀菌培养物(FCM)或天然污染的玉米作为伏马菌素来源时。使用FCM或天然污染的玉米或玉米筛屑作为霉菌毒素来源,在家禽和牛中对实验诱导的伏马菌素中毒进行了研究。结果表明,与马和猪相比,这些物种对伏马菌素的毒性作用敏感性要低得多。然而,有报道称,伏马菌素对肉鸡和小火鸡的生产性能参数以及鸡和牛的某些免疫参数有不良影响。为了证实这些观察结果,需要使用纯化的伏马菌素进行毒理学研究。还需要研究伏马菌素与其他镰刀菌毒素及其他霉菌毒素的相互作用。尚未有关于伏马菌素毒代动力学的研究报道。伏马菌素的毒效动力学(作用机制)似乎是鞘脂合成受阻,因此在已知的霉菌毒素中构成一种独特的毒理学作用。(摘要截短于250词)