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Mast cell–expressed Mrgprb2/MRGPRX2 mediates gout pain and inflammation via a neuroimmune axis
Lin Yang, Chengxi Liu, Jin Xiao, Yu Song, Huan Chen, Dan Li, Cong Zou, Tao Hong, Yinglan Liu, Dake Qi, Nathachit Limjunyawong, Wenjie Liu, Lintao Qu
Lin Yang, Chengxi Liu, Jin Xiao, Yu Song, Huan Chen, Dan Li, Cong Zou, Tao Hong, Yinglan Liu, Dake Qi, Nathachit Limjunyawong, Wenjie Liu, Lintao Qu
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Research Article Immunology Neuroscience

Mast cell–expressed Mrgprb2/MRGPRX2 mediates gout pain and inflammation via a neuroimmune axis

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Abstract

Acute severe joint pain is a major symptom in gouty arthritis (GA), and its adequate treatment represents an unmet medical need. Mrgprb2, a specific mast cell receptor, has been implicated in the generation of chronic pain by mobilizing mast cell degranulation, yet its significance in GA pain and joint inflammation is still not well defined. Here, we found that Mrgprb2 was expressed in mouse synovial mast cells. In a murine model of GA, acute blockade or genetic deletion of Mrgprb2 significantly attenuated arthritis pain and hyperexcitability of joint nociceptors with significant reductions in innate immune cell recruitment in the synovium. Under naive conditions, activation of synovial Mrgprb2 was sufficient to excite peripheral terminals of joint nociceptors to induce acute joint hypernociception via the mobilization of mast cell degranulation. Additionally, the level of the neuropeptide substance P (SP) was elevated in the synovium of GA model mice. Using humanized MRGPRX2-knockin mice, we revealed that SP contributed to joint pain and inflammation by activating mast cells through Mrgprb2/MRGPRX2. These findings suggest that synovial mast cell–expressed Mrgprb2/MRGPRX2 merits consideration as a key neuroimmune player and a potential therapeutic target for treating GA pain and joint inflammation.

Authors

Lin Yang, Chengxi Liu, Jin Xiao, Yu Song, Huan Chen, Dan Li, Cong Zou, Tao Hong, Yinglan Liu, Dake Qi, Nathachit Limjunyawong, Wenjie Liu, Lintao Qu

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Figure 3

Pharmacological inhibition of Mrgprb2 reverses GA pain and joint inflammation.

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Pharmacological inhibition of Mrgprb2 reverses GA pain and joint inflamm...
(A) Experimental schematic showing once-daily i.p. injection with osthole (3 mg, 20 μL) or vehicle (Veh) (1% DMSO; 20 μL) on days 0 and 1 in mice challenged with PBS (Ctrl) or MSU (GA). Pain-related behaviors were measured 1 hour after injection. Figure created in BioRender (Qu L, 2026, https://BioRender.com/0i7869s). (B–E) The effect of repeated daily i.p. injection of osthole or vehicle on mechanical threshold in the ankle (B), paw withdrawal frequency (PWF) responding to 0.07g force (C), paw withdrawal latency (PWL) (D), and ankle diameter (E) in GA model mice. n = 7 mice per group; *P < 0.05, **P < 0.01, ***P < 0.001 vs. Ctrl; ##P < 0.01, ###P < 0.001 vs. Veh; repeated 2-way ANOVA with Bonferroni’s post hoc test. (F) Images of knee joints taken 1 hour after the second i.p. injection with vehicle or osthole and stained with CD45, CD68, or Ly6G. S, synovium. Scale bar: 100 μm. (G–I) Quantification showed that osthole significantly reduced the infiltration of CD45+ (G), CD68+ (H), and Ly6G+ (I) cells into the inflamed synovium of GA mice. n = 6 mice per group; ***P < 0.001 vs. Ctrl; #P < 0.05, ##P < 0.01, ###P < 0.001 vs. Veh; 2-way ANOVA (repeated measures) with Bonferroni’s post hoc test.

Copyright © 2026 American Society for Clinical Investigation
ISSN 2379-3708

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