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Intraspinal TLR4 activation promotes iron storage but does not protect neurons or oligodendrocytes from progressive iron-mediated damage

机译:椎管内TLR4激活可促进铁的储存但不能保护神经元或少突胶质细胞免于进行性铁介导的损伤

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摘要

Iron is essential for basic cellular functions but in excess is highly toxic. For this reason, free iron and iron storage are controlled in the periphery by elaborate regulatory mechanisms. In contrast, iron regulation in the central nervous system (CNS) is not well defined. Given that excess iron is present after trauma, hemorrhagic stroke and neurodegeneration, understanding normal iron regulation and promoting iron uptake in CNS pathology is crucial. Peripherally, toll-like receptor 4 (TLR4) activation promotes iron sequestration by macrophages. Notably, iron-rich sites of CNS pathology typically contain TLR4 agonists, which may promote iron uptake. Indeed, our recent work showed impaired iron storage after acute spinal cord injury in mice with TLR4 deficiency. Here we used a reductionist model to ask if TLR4 activation in the CNS stimulates iron uptake and promotes neuroprotection from iron-induced toxicity. For this, we measured the ability of microglia/macrophages to sequester exogenous iron and prevent pathology with and without concomitant intraspinal TLR4 activation. Results show that, similar to the periphery, activating intraspinal TLR4 via focal LPS injection increased mRNA encoding iron uptake and storage proteins and promoted iron sequestration into ferritin-expressing macrophages. However, this did not prevent oligodendrocyte and neuron loss. Moreover, replacement of oligodendrocytes by progenitor cells – a normally robust response to in vivo macrophage TLR4 activation – was significantly reduced if iron was present concomitant with TLR4 activation. Thus, while TLR4 signaling promotes CNS iron uptake, future work needs to determine ways to enhance iron removal without blocking the reparative effects of innate immune receptor signaling.
机译:铁对于基本的细胞功能是必不可少的,但铁的毒性很高。由于这个原因,自由铁和铁的储存在外围通过精密的调节机制来控制。相反,中枢神经系统(CNS)中的铁调节尚不明确。鉴于创伤,出血性中风和神经退行性病变后存在过量铁,了解中枢神经系统病理中正常的铁调节和促进铁摄取至关重要。周围,​​通行费样受体4(TLR4)激活促进巨噬细胞对铁的隔离。值得注意的是,CNS病理学中富含铁的位点通常包含TLR4激动剂,这可能会促进铁的吸收。确实,我们最近的工作表明,患有TLR4缺乏症的小鼠急性脊髓损伤后铁的储存能力受损。在这里,我们使用还原论模型询问中枢神经系统中的TLR4激活是否刺激铁摄取并促进神经保护免受铁诱导的毒性作用。为此,我们测量了小胶质细胞/巨噬细胞螯合外源铁并预防和不伴有椎管内TLR4活化的病理学的能力。结果表明,类似于外周,通过局灶性LPS注射激活脊髓内TLR4可以增加编码铁摄取和储存蛋白的mRNA,并促进铁螯合到表达铁蛋白的巨噬细胞中。但是,这不能防止少突胶质细胞和神经元的丢失。此外,如果铁与TLR4活化同时存在,则祖细胞对少突胶质细胞的替代(对体内巨噬细胞TLR4活化通常是强有力的应答)将大大减少。因此,尽管TLR4信号传导促进中枢神经系统铁的吸收,但未来的工作需要确定在不阻碍先天免疫受体信号传导的修复作用的情况下增强铁去除的方法。

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