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Adjuvant effect of diphtheria toxin after mucosal administration in both wild type and diphtheria toxin receptor engineered mouse strains

机译:在野生型和白喉毒素受体工程小鼠品系中粘膜给药后白喉毒素的佐剂作用

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摘要

The finding that murine and simian cells have differential susceptibility to diphtheria toxin (DTx) led to the development of genetically engineered mouse strains that express the simian or human diphtheria toxin receptor (DTR) under the control of various mouse gene promoters. Injection of DTx into DTR engineered mice allows for rapid and transient depletion of various cell populations. There are several advantages to this approach over global knockout mice, including normal mouse development and temporal control over when cell depletion occurs. As a result, many DTR engineered mouse strains have been developed, resulting in significant insights into the cell biology of various disease states. We used Foxp3DTR mice to attempt local depletion of Foxp3+ cells in the lung in a model of tolerance breakdown. Intratracheal administration of DTx resulted in robust depletion of lung Foxp3+ cells. However, DTx administration was accompanied by significant local inflammation, even in control C57Bl/6 mice. These data suggest that DTx administration to non-transgenic mice is not always an immunologically inert event, and proper controls must be used to assess various DTx-mediated depletion regimens.
机译:鼠和猿猴细胞对白喉毒素(DTx)的敏感性不同的发现导致了在各种小鼠基因启动子的控制下表达猿猴或人白喉毒素受体(DTR)的基因工程小鼠品系的发展。将DTx注射到DTR工程小鼠中可以快速而短暂地消耗各种细胞。这种方法相对于整体基因敲除小鼠有几个优点,包括正常的小鼠发育和对何时发生细胞耗竭的时间控制。结果,已经开发了许多DTR工程改造的小鼠品系,从而对各种疾病状态的细胞生物学有了重要的认识。我们使用Foxp3 DTR 小鼠尝试在耐受性破坏模型中对肺中的Foxp3 +细胞进行局部消耗。气管内施用DTx导致肺Foxp3 +细胞大量耗竭。然而,即使在对照C57Bl / 6小鼠中,DTx施用也伴有明显的局部炎症。这些数据表明,向非转基因小鼠施用DTx并不总是一种免疫学惰性事件,必须使用适当的对照来评估各种DTx介导的耗竭方案。

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