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短暂激活 Hedgehog 信号通路可通过保留固有巨噬细胞抑制辐射猪唾液腺的细胞衰老和炎症。

Transient Activation of Hedgehog Signaling Inhibits Cellular Senescence and Inflammation in Radiated Swine Salivary Glands through Preserving Resident Macrophages.

机构信息

Salivary Gland Disease Center and Beijing Key Laboratory of Tooth Regeneration and Function Reconstruction, Beijing Laboratory of Oral Health, School of Stomatology, Capital Medical University, Beijing 100050, China.

Outpatient Department of Oral and Maxillofacial Surgery, School of Stomatology, Capital Medical University, Beijing 100050, China.

出版信息

Int J Mol Sci. 2021 Dec 16;22(24):13493. doi: 10.3390/ijms222413493.

Abstract

Salivary gland function is commonly and irreversibly damaged by radiation therapy for head and neck cancer. This damage greatly decreases the patient's quality of life and is difficult to remedy. Previously, we found that the transient activation of Hedgehog signaling alleviated salivary hypofunction after radiation in both mouse and pig models through the inhibition of radiation-induced cellular senescence that is mediated by resident macrophages in mouse submandibular glands. Here we report that in swine parotid glands sharing many features with humans, the Hedgehog receptor PTCH1 is mainly expressed in macrophages, and levels of PTCH1 and multiple macrophage markers are significantly decreased by radiation but recovered by transient Hedgehog activation. These parotid macrophages mainly express the M2 macrophage marker ARG1, while radiation promotes expression of pro-inflammatory cytokine that is reversed by transient Hedgehog activation. Hedgehog activation likely preserves parotid macrophages after radiation through inhibition of P53 signaling and consequent cellular senescence. Consistently, VEGF, an essential anti-senescence cytokine downstream of Hedgehog signaling, is significantly decreased by radiation but recovered by transient Hedgehog activation. These findings indicate that in the clinically-relevant swine model, transient Hedgehog activation restores the function of irradiated salivary glands through the recovery of resident macrophages and the consequent inhibition of cellular senescence and inflammation.

摘要

唾液腺功能通常会被头颈部癌症的放射疗法不可逆地损害。这种损害极大地降低了患者的生活质量,且难以补救。此前,我们发现 Hedgehog 信号的瞬时激活通过抑制辐射诱导的细胞衰老,减轻了小鼠和猪模型中辐射后的唾液功能减退,而这种细胞衰老由小鼠颌下腺中的常驻巨噬细胞介导。在这里,我们报告说,在与人有许多共同特征的猪腮腺中,Hedgehog 受体 PTCH1 主要在巨噬细胞中表达,并且 PTCH1 和多种巨噬细胞标志物的水平在受到辐射后显著降低,但通过瞬时 Hedgehog 激活得到恢复。这些腮腺巨噬细胞主要表达 M2 巨噬细胞标志物 ARG1,而辐射则促进了促炎细胞因子的表达,这种表达可被瞬时 Hedgehog 激活所逆转。Hedgehog 激活可能通过抑制 P53 信号和随后的细胞衰老来保护辐射后的腮腺巨噬细胞。一致的是,Hedgehog 信号下游的必需抗衰老细胞因子 VEGF 在受到辐射后显著降低,但通过瞬时 Hedgehog 激活得到恢复。这些发现表明,在临床上相关的猪模型中,瞬时 Hedgehog 激活通过恢复常驻巨噬细胞以及随后抑制细胞衰老和炎症,来恢复受照射唾液腺的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e4b6/8708934/97e593a96da5/ijms-22-13493-g001.jpg

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