The fibrogenic activity and neurotoxicity of heat-treated chrysotile.

H Woźniak, E Wiecek, G Bielichowska-Cybula
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Abstract

Thermal degradation of heated chrysotile results in dehydration and changes in its crystalline structure. The impact of heat treatment at 150-1200 degrees C on the biological activity of chrysotile was tested in rats. Heating the chrysotile produced an increase in its biological aggressiveness measured in terms of animal survival rate and fibrogenic activity after intratracheal administration of the dust. The highest death rate (100% of the animals) was noted after administration of chrysotile heated at 600 degrees C. Moreover, increased fibrogenic activity of chrysotile heated at 150 degrees C up to 800 degrees C was found. The biological effect of chrysotile heated at 1200 degrees C did not differ from the effect exerted by unheated chrysotile. After intraperitoneal administration of the dust, the most violent reaction could be observed when chrysotile dust was heated at 600 degrees C, which resulted in symptoms of nervous system impairment (of the hind legs, no reaction to nociceptive stimuli, drop of internal body temperature) and death of the test animals. In male rats, the period between dust administration and the manifestation of symptoms and death was found to be longer than in females.

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热处理温石棉的成纤维活性和神经毒性。
受热温石棉的热降解导致其脱水和晶体结构的改变。在大鼠身上测试了150 ~ 1200℃热处理对温石棉生物活性的影响。加热温石棉会增加其生物攻击性,这是根据动物存活率和气管内给药后的纤维生成活性来衡量的。在600℃加热温石棉后,死亡率最高(100%)。此外,发现在150℃至800℃加热的温石棉的纤维生成活性增加。在1200℃下加热的温石棉的生物效应与未加热的温石棉的生物效应没有区别。经腹腔给药后,温石棉粉尘在600℃加热时反应最剧烈,导致实验动物出现神经系统损伤症状(后腿不反应,对伤害性刺激无反应,体内体温下降)和死亡。在雄性大鼠中,从给药到出现症状和死亡之间的时间比雌性大鼠长。
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