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在骨破坏中对骨免疫细胞相互作用进行成像。

Imaging the Bone-Immune Cell Interaction in Bone Destruction.

机构信息

Department of Immunology and Cell Biology, Graduate School of Medicine and Frontier Biosciences, Osaka University, Osaka, Japan.

Division of Rheumatology, Department of Internal Medicine, Keio University School of Medicine, Tokyo, Japan.

出版信息

Front Immunol. 2019 Mar 26;10:596. doi: 10.3389/fimmu.2019.00596. eCollection 2019.

Abstract

Bone is a highly dynamic organ that is continuously being remodeled by the reciprocal interactions between bone and immune cells. We have originally established an advanced imaging system for visualizing the behavior of osteoclasts and their precursors in the bone marrow cavity using two-photon microscopy. Using this system, we found that the blood-enriched lipid mediator, sphingosine-1-phosphate, controlled the migratory behavior of osteoclast precursors. We also developed pH-sensing chemical fluorescent probes to detect localized acidification by bone-resorbing osteoclasts on the bone surface , and identified two distinct functional states of differentiated osteoclasts, "bone-resorptive" and "non-resorptive." Here, we summarize our studies on the dynamics and functions of bone and immune cells within the bone marrow. We further discuss how our intravital imaging techniques can be applied to evaluate the mechanisms of action of biological agents in inflammatory bone destruction. Our intravital imaging techniques would be beneficial for studying the cellular dynamics in arthritic inflammation and bone destruction and would also be useful for evaluating novel therapies in animal models of bone-destroying diseases.

摘要

骨骼是一个高度动态的器官,其不断地通过骨骼与免疫细胞的相互作用进行重塑。我们最初建立了一个先进的成像系统,用于使用双光子显微镜观察骨髓腔中破骨细胞及其前体的行为。使用该系统,我们发现富含血液的脂质介质——1-磷酸鞘氨醇控制破骨细胞前体的迁移行为。我们还开发了 pH 感应化学荧光探针来检测骨吸收性破骨细胞在骨表面上的局部酸化,并确定分化的破骨细胞的两种不同功能状态,“骨吸收性”和“非吸收性”。在这里,我们总结了我们关于骨髓中骨骼和免疫细胞的动态和功能的研究。我们进一步讨论了我们的活体成像技术如何可用于评估生物制剂在炎症性骨破坏中的作用机制。我们的活体成像技术将有益于研究关节炎炎症和骨破坏中的细胞动力学,并有助于评估骨破坏性疾病动物模型中的新型疗法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d37/6443987/2357ed068e80/fimmu-10-00596-g0001.jpg

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