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Matrix Metalloproteinase-2 and -9 Secreted by Leukemic Cells Increase the Permeability of Blood-Brain Barrier by Disrupting Tight Junction Proteins

机译:白血病细胞分泌的基质金属蛋白酶2和-9通过破坏紧密连接蛋白来增加血脑屏障的通透性

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摘要

Central nervous system (CNS) involvement remains an important cause of morbidity and mortality in acute leukemia, the mechanisms of leukemic cell infiltration into the CNS have not yet been elucidated. The blood-brain barrier (BBB) makes CNS become a refugee to leukemic cells and serves as a resource of cells that seed extraneural sites. How can the leukemic cells disrupt this barrier and invasive the CNS, even if many of the currently available chemotherapies can not cross the BBB? Tight junction in endothelial cells occupies a central role in the function of the BBB. Except the well known role of degrading extracellular matrix in metastasis of cancer cells, here we show matrix metalloproteinase (MMP)-2 and -9, secreted by leukemic cells, mediate the BBB opening by disrupting tight junction proteins in the CNS leukemia. We demonstrated that leukemic cells impaired tight junction proteins ZO-1, claudin-5 and occludin resulting in increased permeability of the BBB. However, these alterations reduced when MMP-2 and -9 activities were inhibited by RNA interference strategy or by MMP inhibitor GM6001 in an in vitro BBB model. We also found that the disruption of the BBB in company with the down-regulation of ZO-1, claudin-5 and occludin and the up-regulation of MMP-2 and -9 in mouse brain tissues with leukemic cell infiltration by confocal imaging and the assay of in situ gelatin zymography. Besides, GM6001 protected all mice against CNS leukemia. Our findings suggest that the degradation of tight junction proteins ZO-1, claudin-5 and occludin by MMP-2 and -9 secreted by leukemic cells constitutes an important mechanism in the BBB breakdown which contributes to the invasion of leukemic cells to the CNS in acute leukemia.
机译:中枢神经系统(CNS)的参与仍然是急性白血病发病率和死亡率的重要原因,尚不清楚白血病细胞向CNS浸润的机制。血脑屏障(BBB)使中枢神经系统成为白血病细胞的难民,并成为播种神经外部位的细胞资源。即使许多目前可用的化学疗法无法通过血脑屏障,白血病细胞又如何破坏这种屏障并侵入中枢神经系统?内皮细胞中的紧密连接在BBB的功能中起着核心作用。除了在癌细胞转移中降解细胞外基质的众所周知的作用外,我们在这里显示白血病细胞分泌的基质金属蛋白酶(MMP)-2和-9通过破坏CNS白血病中的紧密连接蛋白来介导BBB的开放。我们证明白血病细胞损害紧密连接蛋白ZO-1,claudin-5和occludin导致血脑屏障通透性增加。但是,在体外BBB模型中,当RNA干扰策略或MMP抑制剂GM6001抑制MMP-2和-9活性时,这些改变减少。我们还发现,通过共聚焦成像和电镜观察,在白血病细胞浸润的小鼠脑组织中,ZO-1,claudin-5和occludin的下调以及MMP-2和-9的上调会破坏BBB。原位明胶酶谱测定法。此外,GM6001保护所有小鼠免受中枢神经系统白血病的侵害。我们的发现表明白血病细胞分泌的MMP-2和-9降解紧密连接蛋白ZO-1,claudin-5和occludin构成了BBB分解的重要机制,这有助于白血病细胞向CNS的侵袭。急性白血病。

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