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首页> 外文期刊>Muscle and Nerve >Costimulation blockade inhibits the indirect pathway of allorecognition in nerve allograft rejection.
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Costimulation blockade inhibits the indirect pathway of allorecognition in nerve allograft rejection.

机译:共刺激阻滞抑制同种异体神经排斥中同种异体认知的间接途径。

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摘要

Nerve allografts provide a temporary scaffold for host nerve regeneration. The need for systemic immunosuppression limits clinical application. Characterization of the immunological mechanisms that induce immune hyporesponsiveness may provide a basis for optimizing immunomodulating regimens. We utilized wild-type and MHC class II-deficient mice, as both recipients and donors. Host treatment consisted of triple costimulatory blockade. Quantitative assessment was made at 3 weeks using nerve histomorphometry, and muscle testing was performed on a subset of animals at 7 weeks. Nerve allograft rejection occurred as long as either the direct or indirect pathways were functional. Indirect antigen presentation appeared to be more important. Nerve allograft rejection occurs in the absence of a normal direct or indirect immune response but may be more dependent on indirect allorecognition. The indirect pathway is required to induce costimulatory blockade immune hyporesponsiveness.
机译:同种异体神经为宿主神经再生提供了一个临时支架。对全身免疫抑制的需求限制了临床应用。诱导免疫低反应性的免疫机制的表征可为优化免疫调节方案提供基础。我们利用野生型和MHC II类缺陷小鼠作为受体和供体。宿主治疗包括三重共刺激封锁。使用神经组织形态学在3周时进行定量评估,并在7周时对部分动物进行肌肉测试。只要直接或间接途径起作用,就会发生神经移植排斥反应。间接抗原呈递似乎更重要。神经同种异体移植排斥反应在没有正常的直接或间接免疫反应的情况下发生,但可能更依赖于间接同种异体认知。需要间接途径来诱导共刺激性封锁免疫反应低下。

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