Glycyrrhizin alleviates radiation-induced lung injury by regulating the NLRP3 inflammasome through endoplasmic reticulum stress

Author:

Chai Yuqing1,Wang Ziming1,Li Yun23,Wang Yi1,Wan Yu1,Chen Xue1,Xu Yang1,Ge Lei1,Li Hongxia1ORCID

Affiliation:

1. Department of Oncology, The Third Affiliated Hospital of Anhui Medical University , No. 3200, Changsha Road, Baohe District, Hefei, Anhui 230000 , China

2. Kindstar Global Precision Medicine Institute , Gaoxin 2nd Road, Jiangxia District, Wuhan, Hubei 43000 , China

3. Department of Scientific Research Project, Wuhan Kindstar Medical Laboratory Co., Ltd. , Guanggu Biological City, No. 666 Gaoxin Avenue, Hongshan District, Wuhan, Hubei 43000 , China

Abstract

Abstract Objective Radiation pneumonitis (RP) is the major adverse response of radiation therapy for thoracic malignant tumors, and there is a lack of effective interventions. The aim of this study was to investigate the radioprotective effect of Glycyrrhizin (GL) on RP and its potential mechanism. Method The body weight and lung weight of mice were monitored. HE staining was used to observe lung injury, and the expression of endoplasmic reticulum (ER) stress biomarkers and the activation of NLRP3 inflammasome were determined by Western blotting and immunohistochemistry. Flow cytometry was performed to check MLE-12 apoptosis. ER stress activator, Tunicamycin (Tuni), was used to verify the potential mechanism of GL. A systemic pharmacology explored the potential targets and pathways of GL. Results In this study, the lungs of irradiated mice showed significant pneumonic changes. In vivo and in vitro assay, NLRP3 inflammasome was significantly activated, the expression of ER stress biomarkers was elevated, flow cytometry confirms increased apoptosis in irradiated MLE-12 cells. GL inhibits the activation of NLRP3 inflammasome and ER stress pathways. Furthermore, systemic pharmacology revealed that the radioprotective effect of GL may be related to the MAPK signaling pathway. Conclusion In the present study, the results indicated that GL may regulate NLRP3 inflammasome through ER stress, thus exerting irradiation-protective effects on RP, and the ER stress pathway may be a potential target for RP treatment.

Funder

Anhui Province Key Research and Development Project

Anhui Province University Research Project

Publisher

Oxford University Press (OUP)

Subject

Health, Toxicology and Mutagenesis,Toxicology

Reference48 articles.

1. Radiation-induced lung injury: current evidence;Arroyo-Hernandez;BMC Pulm Med,2021

2. Radiation-induced lung injury: assessment and management;Hanania;Chest,2019

3. Radiation pneumonitis: old problem;Jain;New Tricks Cancers (Basel),2018

4. Exploration of radiation-induced lung injury, from mechanism to treatment: a narrative review;Yan;Transl Lung Cancer Res,2022

5. Biology of radiation-induced lung injury;Roy;Semin Radiat Oncol,2021

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