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Minocycline selectively inhibits M1 polarization of microglia

机译:米诺环素有选择性地抑制微胶质细胞的M1偏振

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摘要

Minocycline is commonly used to inhibit microglial activation. It is widely accepted that activated microglia exert dual functions, that is, pro-inflammatory (M1) and anti-inflammatory (M2) functions. The in vivo status of activated microglia is probably on a continuum between these two extreme states. However, the mechanisms regulating microglial polarity remain elusive. Here, we addressed this question focusing on minocycline. We used SOD1G93A mice as a model, which exhibit the motor neuron-specific neurodegenerative disease, amyotrophic lateral sclerosis. Administration of minocycline attenuated the induction of the expression of M1 microglia markers during the progressive phase, whereas it did not affect the transient enhancement of expression of M2 microglia markers during the early pathogenesis phase. This selective inhibitory effect was confirmed using primary cultured microglia stimulated by lipopolysaccharide (LPS) or interleukin (IL)-4, which induced M1 or M2 polarization, respectively. Furthermore, minocycline inhibited the upregulation of NF- κ B in the LPS-stimulated primary cultured microglia and in the spinal cord of SOD1G93A mice. On the other hand, IL-4 did not induce upregulation of NF- κ B. This study indicates that minocycline selectively inhibits the microglia polarization to a proinflammatory state, and provides a basis for understanding pathogeneses of many diseases accompanied by microglial activation.
机译:米诺环素通常用于抑制微胶质激活。众所周度地接受了激活的微胶质细胞施加双重功能,即促炎(M1)和抗炎(M2)功能。激活的微胶质细胞的体内状态可能是这两个极端状态之间的连续体。然而,调节微胶质极性的机制仍然难以捉摸。在这里,我们解决了专注于米诺环素的这个问题。我们使用SOD1 G93a 小鼠作为一种模型,其表现出电机神经元特异性神经变性疾病,肌营养的侧面硬化。米诺环素施用诱导渐进期期间M1微胶质细胞标记物的表达,而在早期发病阶段期间,它不会影响M2微胶质细胞标记表达的瞬时增强。使用由脂多糖(LPS)或白细胞介素(IL)-4刺激的初级培养的小凝血蛋白分别诱导M1或M2偏振的初级培养的小胶质细胞来确认这种选择性抑制效果。此外,米诺环素抑制了LPS刺激的初级培养的小胶质细胞和SOD1 G93A 小鼠脊髓中NF-κB的上调。另一方面,IL-4没有诱导NF-κB的上调。该研究表明米诺环素选择性地抑制小胶质细胞偏振对促炎症状态,并为理解许多伴随的伴有小胶质激活的病理原因提供了基础。

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