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Origin and Differentiation of Nerve-Associated Macrophages

机译:神经相关巨噬细胞的起源和分化

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摘要

The mature peripheral nervous system is a steady network structure yet shows remarkable regenerative properties. The interaction of peripheral nerves with myeloid cells has largely been investigated in the context of damage, following trauma or infection. Recently, specific macrophages dedicated to homeostatic peripheral nerves have come into focus. These macrophages are defined by tissue and nerve type, are seeded in part prenatally, and self-maintain via proliferation. Thus, they are markedly distinct from monocyte-derived macrophages invading after local disturbance of nerve integrity. The phenotypic and transcriptional adaptation of macrophages to the discrete nervous niche may exert axon guidance and nerve regeneration and thus contribute to the stability of the peripheral nervous network. Deciphering these conserved macrophage-nerve interactions offers new translational perspectives for chronic diseases of the peripheral nervous system, such as diabetic neuropathy and pain.
机译:成熟的外周神经系统是一种稳定的网络结构,但尚未显示出显着的再生性能。 在创伤或感染之后,在损伤的情况下,在损伤的背景下已经研究了外周神经与骨髓细胞的相互作用。 最近,致力于稳态周围神经的特异性巨噬细胞已经焦点。 这些巨噬细胞由组织和神经型定义,部分原产性接种,并通过增殖自我维持。 因此,它们显着不同于局部扰动神经完整性后的单核细胞衍生的巨噬细胞。 巨噬细胞对离散神经利基的表型和转录适应可以施加轴突引导和神经再生,从而有助于外周神经网络的稳定性。 破译这些保守的巨噬细胞神经相互作用为周围神经系统的慢性疾病提供了新的翻译视角,例如糖尿病神经病变和疼痛。

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