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被忽视的免疫调节:低剂量辐射触发的巨噬细胞 M2 极化在骨再生中发挥重要作用。

Neglected immunoregulation: M2 polarization of macrophages triggered by low-dose irradiation plays an important role in bone regeneration.

机构信息

The Affiliated Changzhou No. 2 People's Hospital of Nanjing Medical University, Changzhou, China.

Jiangsu Province Engineering Research Center of Medical Physics, Changzhou, China.

出版信息

J Cell Mol Med. 2023 Apr;27(8):1095-1109. doi: 10.1111/jcmm.17721. Epub 2023 Mar 16.

Abstract

Current studies have found that low-dose irradiation (IR) can promote bone regeneration. However, mechanism studies of IR-triggered bone regeneration mainly focus on the effects of osteoblasts, neglecting the role of the surrounding immune microenvironment. Here in this study, in vitro proliferation experiments showed that low-dose IR ≤2 Gy could promote the proliferation of bone marrow mesenchymal stem cells (BMSCs), and qRT-PCR assay showed that low-dose IR ≤2 Gy could exert the M2 polarization of Raw264.7 cells, while IR >2 Gy inhibited BMSC proliferation and triggered M1 polarization in Raw264.7 cells. The ALP and mineralized nodules staining showed that low-dose IR ≤2 Gy not only promoted osteoblast mineralization through IR-triggered osteoblast proliferation but also through M2 polarization of Raw264.7 cells, while high-dose IR >2 Gy had the opposite effect. The co-incubation of BMSC with low-dose IR irradiated Raw264.7 cell supernatants increased the mRNA expression of BMP-2 and Osx. The rat cranial defects model revealed that low-dose IR ≤2 Gy gradually promoted bone regeneration, while high-dose IR >2 Gy inhibited bone regeneration. Detection of macrophage polarity in peripheral blood samples showed that low-dose IR ≤2 Gy increased the expression of CD206 and CD163, but decreased the expression of CD86 and CD80 in macrophages, which indicated M2 polarization of macrophages in vivo, while high-dose IR had the opposite effect. Our finding innovatively revealed that low-dose IR ≤2 Gy promotes bone regeneration not only by directly promoting the proliferation of osteoblasts but also by triggering M2 polarization of macrophages, which provided a new perspective for immune mechanism study in the treatment of bone defects with low-dose IR.

摘要

目前的研究发现,低剂量照射(IR)可以促进骨再生。然而,IR 触发骨再生的机制研究主要集中在成骨细胞的作用上,忽略了周围免疫微环境的作用。在本研究中,体外增殖实验表明,低剂量 IR≤2Gy 可以促进骨髓间充质干细胞(BMSCs)的增殖,qRT-PCR 检测表明,低剂量 IR≤2Gy 可以使 Raw264.7 细胞发生 M2 极化,而 IR>2Gy 则抑制 BMSC 的增殖并触发 Raw264.7 细胞的 M1 极化。ALP 和矿化结节染色显示,低剂量 IR≤2Gy 不仅通过 IR 触发的成骨细胞增殖促进成骨细胞矿化,还通过 Raw264.7 细胞的 M2 极化来促进成骨细胞矿化,而高剂量 IR>2Gy 则有相反的作用。共培养 BMSC 和低剂量 IR 照射的 Raw264.7 细胞上清液增加了 BMP-2 和 Osx 的 mRNA 表达。大鼠颅顶骨缺损模型揭示,低剂量 IR≤2Gy 逐渐促进骨再生,而高剂量 IR>2Gy 则抑制骨再生。对外周血样中巨噬细胞极性的检测表明,低剂量 IR≤2Gy 增加了巨噬细胞中 CD206 和 CD163 的表达,降低了 CD86 和 CD80 的表达,表明体内巨噬细胞发生了 M2 极化,而高剂量 IR 则有相反的作用。我们的研究结果创新性地揭示,低剂量 IR≤2Gy 促进骨再生不仅是通过直接促进成骨细胞的增殖,还通过触发巨噬细胞的 M2 极化来实现,这为低剂量 IR 治疗骨缺损的免疫机制研究提供了新的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3bce/10098298/ef05bf626af0/JCMM-27-1095-g001.jpg

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