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Molecular mechanism of systemic delivery of neural precursor cells to the brain: assembly of brain endothelial apical cups and control of transmigration by CD44.

机译:将神经前体细胞全身性递送至大脑的分子机制:大脑内皮尖杯的组装和CD44的转运控制。

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摘要

Systemically injected neural precursor cells (NPCs) were unexpectedly shown to reach the cerebral parenchyma and induce recovery in various diffuse brain pathologies, including animal models of multiple sclerosis. However, the molecular mechanisms supporting NPC migration across brain endothelium remain elusive. Brain endothelium constitutes the blood-brain barrier, which uniquely controls the access of drugs and trafficking of cells, including leukocytes, from the blood to the brain. Taking advantage of the availability of in vitro models of human and rat blood-brain barrier developed in our laboratory and validated by us and others, we show here that soluble hyaluronic acid, the major ligand of the adhesion molecule CD44, as well as anti-CD44 blocking antibodies, largely prevents NPC adhesion to and migration across brain endothelium in inflammatory conditions. We present further evidence that NPCs, surprisingly, induce the formation of apical cups at the surface of brain endothelial cells, enriched in CD44 and other adhesion molecules, thus hijacking the endothelial signaling recently shown to be involved in leukocyte extravasation. These results demonstrate the pivotal role of CD44 in the trans-endothelial migration of NPCs across brain endothelial cells: we propose that they may help design new strategies for the delivery of therapeutic NPCs to the brain by systemic administration.
机译:意外地显示了系统注射的神经前体细胞(NPC)到达脑实质并诱导各种弥漫性脑部疾病的恢复,包括多发性硬化症的动物模型。但是,支持NPC跨脑内皮迁移的分子机制仍然难以捉摸。脑内皮构成血脑屏障,它独特地控制药物的访问以及从血液到大脑的细胞(包括白细胞)的运输。利用我们实验室开发并经过我们和其他人验证的人和大鼠血脑屏障体外模型的可用性,我们在这里表明可溶性透明质酸(粘附分子CD44的主要配体)以及抗CD44阻断抗体可在炎症条件下很大程度上防止NPC粘附至脑内皮并在脑内皮之间迁移。我们提供了进一步的证据,令人惊讶的是,NPCs诱导了脑内皮细胞表面的顶杯形成,富含CD44和其他粘附分子,从而劫持了最近显示参与白细胞外渗的内皮信号传导。这些结果证明了CD44在NPC跨脑内皮细胞跨内皮迁移中的关键作用:我们建议它们可以帮助设计通过全身给药将治疗性NPC输送至大脑的新策略。

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