首页> 外文期刊>Transplantation: Official Journal of the Transplantation Society >Depletion of cells of monocyte lineage prevents loss of renal microvasculature in murine kidney transplantation.
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Depletion of cells of monocyte lineage prevents loss of renal microvasculature in murine kidney transplantation.

机译:单核细胞谱系细胞的消耗可防止鼠肾移植中肾微脉管系统的丧失。

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BACKGROUND: Acute rejection increases the risk of late renal allograft loss with tubular atrophy, interstitial fibrosis, and microvascular rarefaction. Evidence supports a role for macrophages in promoting allograft injury, but the pathogenic mechanisms are unclear. Using a model of acute rejection, we sought evidence of macrophage-mediated endothelial cell cytotoxicity leading to loss of the renal microvasculature. METHODS: We used a transgenic conditional ablation strategy to deplete circulating monocytes and infiltrating renal macrophages after kidney transplantation. CD11b-DTR mice (FVBj strain) are transgenic for the human diphtheria toxin receptor gene under the control of the CD11b promoter. Administration of diphtheria toxin results in rapid ablation of circulating monocytes and resident/infiltrating renal macrophages. Transplants were performed between fully mismatched strains (Balb/c donor into control nontransgenic FVBj recipient; allograft group), between FVBj littermates (isograft group), and from Balb/c donors into CD11b-DTR mice (DT-treated group). Diphtheria toxin was administered at days 3 and 5, and the effect of monocyte/macrophage depletion on changes in renal microvasculature was determined at day 7. RESULTS: Conditional monocyte and macrophage ablation effectively depleted infiltrating macrophages in murine renal allografts at day 7. Macrophage ablation reduced histologic features of rejection (arteritis, tubulitis) and the accompanying rarefaction of peritubular capillaries at 7 days. The identification of macrophages immunopositive for inducible nitric oxide synthase implicated nitric oxide generation as a possible mechanism of endothelial cell cytotoxicity. CONCLUSION: These data indicate a significant role for macrophages in causing acute rejection-related tissue injury that is, at least in part, targeted to the microcirculation.
机译:背景:急性排斥反应增加肾小管萎缩,间质纤维化和微血管稀疏的晚期同种异体肾移植的风险。证据支持巨噬细胞在促进同种异体移植损伤中的作用,但致病机制尚不清楚。使用急性排斥模型,我们寻求导致巨噬细胞介导的内皮细胞细胞毒性导致肾微脉管系统丧失的证据。方法:我们采用转基因条件性消融策略,耗竭肾脏移植后循环的单核细胞并浸润肾巨噬细胞。 CD11b-DTR小鼠(FVB / nj株)在CD11b启动子的控制下对人白喉毒素受体基因进行了转基因。白喉毒素的给药导致循环单核细胞和驻留/浸润性肾巨噬细胞的快速消融。在完全错配的品系之间进行移植(将Balb / c供体移植到对照非转基因FVB / nj受体;同种异体移植组),在FVB / nj同窝仔之间(同种移植组),从Balb / c供体移植到CD11b-DTR小鼠(DT治疗组) )。在第3天和第5天施用白喉毒素,并在第7天确定单核细胞/巨噬细胞耗竭对肾微血管系统变化的影响。结果:有条件的单核细胞和巨噬细胞消融在第7天有效地耗尽了小鼠肾同种异体移植物中的浸润巨噬细胞。减少排斥反应(动脉炎,肾小管炎)的组织学特征,并伴有7天的肾小管周围毛细血管稀疏。诱导型一氧化氮合酶免疫阳性的巨噬细胞的鉴定牵涉一氧化氮的产生是内皮细胞细胞毒性的可能机制。结论:这些数据表明巨噬细胞在引起急性排斥相关的组织损伤中起着重要作用,该损伤至少部分地针对微循环。

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