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Ultraviolet radiation-induced immunosuppression of delayed-type hypersensitivity in mice.

机译:紫外线引起的小鼠迟发型超敏反应的免疫抑制。

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Ultraviolet (UV) radiation present in sunlight plays a critical role in the initiation and promotion of nonmelanoma skin carcinogenesis and immune suppression. The immune suppressive effects of UV have been identified as a risk factor for skin cancer induction. For these reasons, scientists have focused on elucidating the mechanisms of UV-induced immune suppression to better understand the pathogenesis of skin cancer induction. A hallmark of UV-induced immune suppression is the generation of antigen-specific suppressor T cells. These suppressor cells have been shown to suppress antitumor immunity as well as other cell-mediated responses such as delayed-type hypersensitivity (DTH) reactions. Due to the excessive cost and time involved in traditional UV carcinogenic experiments, scientists have opted to use UV-induced suppression of DTH reactions as a surrogate model. DTH has been, and continues to be, a widely used assay system to measure in vivo immune function. Although somewhat unsophisticated by today's standards, this assay has great advantages because it presents a fast, inexpensive, and reliable model system to help dissect the mechanisms involved in UV-induced immune suppression. Furthermore, the murine model of DTH enables scientists to perform additional procedures, such as adoptive transfer studies with suppressor T cells, which are currently unavailable with human subjects.
机译:阳光中存在的紫外线(UV)在引发和促进非黑素瘤皮肤癌变和免疫抑制中起着关键作用。紫外线的免疫抑制作用已被确定为诱发皮肤癌的危险因素。由于这些原因,科学家一直致力于阐明紫外线诱导的免疫抑制机制,以更好地了解皮肤癌诱导的发病机理。 UV诱导的免疫抑制的标志是抗原特异性抑制T细胞的产生。这些抑制细胞已显示出抑制抗肿瘤免疫以及其他细胞介导的反应,例如延迟型超敏反应(DTH)反应。由于传统的紫外线致癌实验涉及大量成本和时间,因此科学家选择使用紫外线诱导的DTH反应抑制作为替代模型。 DTH已经并且将继续是一种广泛使用的用于测量体内免疫功能的测定系统。尽管目前的标准还有些复杂,但该检测方法具有很大的优势,因为它提供了一种快速,便宜且可靠的模型系统,可以帮助剖析涉及UV诱导的免疫抑制的机制。此外,DTH的鼠模型使科学家能够执行其他程序,例如使用抑制性T细胞进行过继转移研究,而这是目前人类受试者无法获得的。

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