首页> 美国卫生研究院文献>Immunology >Contact sensitivity and the DNA response in mice to high and low doses of oxazolone: low dose unresponsiveness following painting and feeding and its prevention by pretreatment with cyclophosphamide.
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Contact sensitivity and the DNA response in mice to high and low doses of oxazolone: low dose unresponsiveness following painting and feeding and its prevention by pretreatment with cyclophosphamide.

机译:小鼠对高剂量和低剂量恶唑酮的接触敏感性和DNA响应:绘画和喂养后低剂量无反应性以及通过环磷酰胺预处理可预防这种反应。

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摘要

Cyclophosphamide was used to assess the role of suppressor cells in the contact sensitivity reaction. A single painting with 300 microgram and 30 microgram oxazolone produced poor contact sensitivity reactions (ear swelling). Cyclophosphamide (200 mg/kg) 2 days before painting increased the response to the lower doses but had less effect on the response to 3 mg oxazolone. A single feed with 10 mg oxazolone caused strong contact sensitivity while lower doses (10-1000 microgram) caused poor responses. Cyclophosphamide increased the response to the lower doses but not to the highest dose of oxazolone. These results suggested that the poor response to painting and feeding lower doses of oxazolone was due to a suppressor system which was sensitive to cyclophosphamide. A different result was obtained when contact sensitivity was measured by arrival of radioactively labelled cells. Cyclophosphamide had the greatest effect on cell arrival when high doses were fed. This indicates that ear swelling and cell arrival measure separate aspects of the contact sensitivity response. The lower doses of oxazolone, which caused little contact sensitivity, reduced the response to a standard immunizing dose. This low dose unresponsiveness occurred after either painting or feeding (Chase-Sulzberger phenomenon). It did not occur in mice treated with cyclophosphamide before the first exposure to oxazolone. This suggested that the low dose unresponsiveness was due to suppressor cells. The response to oxazolone was also assessed by DNA synthesis in the regional lymph nodes. A small dose of oxazolone (30 microgram) caused a peak of DNA synthesis on day four while a high dose (3 mg) caused a peak on day three. Pretreatment with cyclophosphamide depressed the response to 30 microgram although it increased contact sensitivity. The secondary response was smaller than the primary on days 3, 4 and 5 after immunization but larger on day two. The depression but not the increase was prevented by cyclophosphamide and was probably due to a suppressor system.
机译:环磷酰胺用于评估抑制细胞在接触敏感性反应中的作用。一次涂有300微克和30微克恶唑酮的涂料会产生较差的接触敏感性反应(耳肿胀)。涂装前2天使用环磷酰胺(200 mg / kg)可提高对较低剂量的反应,但对3 mg恶唑酮的反应影响较小。单一饲料含10毫克恶唑酮会引起强烈的接触敏感性,而较低剂量(10-1000微克)会引起较差的反应。环磷酰胺增加了对低剂量恶唑酮的响应,但没有增加对最高剂量的恶唑酮的响应。这些结果表明,对油漆和进料低剂量的恶唑酮的反应较差,是由于对环磷酰胺敏感的抑制剂系统所致。当通过放射性标记细胞的到达来测量接触灵敏度时,获得了不同的结果。高剂量喂养时,环磷酰胺对细胞到达的影响最大。这表明耳朵肿胀和细胞到达可测量接触敏感性反应的不同方面。较低的恶唑酮剂量引起极小的接触敏感性,降低了对标准免疫剂量的反应。这种低剂量无反应性是在绘画或进食后发生的(Chase-Sulzberger现象)。在首次暴露于恶唑酮之前,用环磷酰胺治疗的小鼠未发生这种情况。这表明低剂量无反应性是由于抑制细胞引起的。还通过区域淋巴结中的DNA合成评估了对恶唑酮的反应。小剂量的恶唑酮(30微克)在第四天引起DNA合成峰,而大剂量的3mg)在第三天引起峰顶。尽管使用环磷酰胺进行预处理可以增加30克的接触敏感性,但仍可将其抑制至30微克。免疫后第3、4和5天的次要反应小于主​​要反应,但在第二天较大。环磷酰胺预防了抑郁症但没有增加,这可能是由于抑制系统所致。

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