Function of mast cell and bile-cholangiocarcinoma interplay in cholangiocarcinoma microenvironment

Author:

Shi Anda,Liu Zengli,Fan Zhongqi,Li Kangshuai,Liu Xingkai,Tang Yongchang,Hu Jiaming,Li Xingyong,Shu Lizhuang,Zhao Liming,Huang Lingling,Zhang Zhiyue,Lv GuoyueORCID,Zhang Zongli,Xu YunfeiORCID

Abstract

Objective The correlation between cholangiocarcinoma (CCA) progression and bile is rarely studied. Here, we aimed to identify differential metabolites in benign and malignant bile ducts and elucidate the generation, function and degradation of bile metabolites. Design Differential metabolites in the bile from CCA and benign biliary stenosis were identified by metabonomics. Biliary molecules able to induce mast cell (MC) degranulation were revealed by in vitro and in vivo experiments, including liquid chromatography-mass spectrometry (MS)/MS and bioluminescence resonance energy transfer assays. Histamine (HA) receptor expression in CCA was mapped using a single-cell mRNA sequence. HA receptor functions were elucidated by patient-derived xenografts (PDX) in humanised mice and orthotopic models in MC-deficient mice. Genes involved in HA-induced proliferation were screened by CRISPR/Cas9. Results Bile HA was elevated in CCA and indicated poorer prognoses. Cancer-associated fibroblasts (CAFs)-derived stem cell factor (SCF) recruited MCs, and bile N,N-dimethyl-1,4-phenylenediamine (DMPD) stimulated MCs to release HA through G protein-coupled receptor subtype 2 (MRGPRX2)-Gαq signalling. Bile-induced MCs released platelet-derived growth factor subunit B (PDGF-B) and angiopoietin 1/2 (ANGPT1/2), which enhanced CCA angiogenesis and lymphangiogenesis. Histamine receptor H1 (HRH1) and HRH2 were predominantly expressed in CCA cells and CAFs, respectively. HA promoted CCA cell proliferation by activating HRH1-Gαq signalling and hastened CAFs to secrete hepatocyte growth factor by stimulating HRH2-Gαs signalling. Solute carrier family 22 member 3 (SLC22A3) inhibited HA-induced CCA proliferation by importing bile HA into cells for degradation, and SLC22A3 deletion resulted in HA accumulation. Conclusion Bile HA is released from MCs through DMPD stimulation and degraded via SLC22A3 import. Different HA receptors exhibit a distinct expression profile in CCA and produce different oncogenic effects. MCs promote CCA progression in a CCA-bile interplay pattern.

Funder

National Key Research and Development Program of China

Clinical Research Foundation of Shandong University

National Natural Science Foundation of China

Natural Science Foundation of Shandong Province

Flexible Talent Guidance Project of Qilu Hospital (Qingdao) of Shandong University

Taishan Young Scholar Program of Shandong Province

Shandong University Multidisciplinary Research and Innovation Team of Young Scholars

Qilu Young Scholar Program

Shandong Province Key Research and Development Project

Publisher

BMJ

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