PDPN+ cancer-associated fibroblasts enhance gastric cancer angiogenesis via AKT/NF-κB activation and the CCL2-ACKR1 axis

Zhenxiong Zhao , Hui Sun , Yingxue Liu , Yanqiu Zhang , Xin Wang , Xu Wang , Cong Tan , Shujuan Ni , Weiwei Weng , Meng Zhang , Lei Wang , Dan Huang , Wenchao Gu , Jinjia Chang , Weiqi Sheng , Mi-die Xu

MedComm ›› 2025, Vol. 6 ›› Issue (1) : e70037

PDF
MedComm ›› 2025, Vol. 6 ›› Issue (1) : e70037 DOI: 10.1002/mco2.70037
ORIGINAL ARTICLE

PDPN+ cancer-associated fibroblasts enhance gastric cancer angiogenesis via AKT/NF-κB activation and the CCL2-ACKR1 axis

Author information +
History +
PDF

Abstract

Cancer-associated fibroblasts (CAFs) are intrinsic components of the tumor microenvironment that promote cancer progression and metastasis. Through an unbiased integrated analysis of gastric tumor grade and stage, we identified a subset of proangiogenic CAFs characterized by high podoplanin (PDPN) expression, which are significantly enriched in metastatic lesions and secrete chemokine (CC-motif) ligand 2 (CCL2). Mechanistically, PDPN(+) CAFs enhance angiogenesis by activating the AKT/NF-κB signaling pathway. The canonical NF-κB signaling protein P65 binds to the promoter region of CCL2, inducing its expression. Additionally, we found that CCL2 interacts with its nonclassical receptor ACKR1 (expressed on endothelial cells) to exert its proangiogenic effects. Furthermore, the disruption of CCL2-ACKR1 communication via a CCL2 neutralizing antibody or the inhibition of AKT signaling transduction using AKT inhibitors effectively suppressed tumor growth. Together, this study elucidates the mechanism by which PDPN(+) CAFs promote angiogenesis, providing a deeper understanding of the molecular processes underlying CAF-mediated angiogenesis and suggesting potential therapeutic targets for gastric cancer treatment.

Keywords

angiogenesis / cancer-associated fibroblasts / CCL2 / gastric cancer / PDPN

Cite this article

Download citation ▾
Zhenxiong Zhao, Hui Sun, Yingxue Liu, Yanqiu Zhang, Xin Wang, Xu Wang, Cong Tan, Shujuan Ni, Weiwei Weng, Meng Zhang, Lei Wang, Dan Huang, Wenchao Gu, Jinjia Chang, Weiqi Sheng, Mi-die Xu. PDPN+ cancer-associated fibroblasts enhance gastric cancer angiogenesis via AKT/NF-κB activation and the CCL2-ACKR1 axis. MedComm, 2025, 6(1): e70037 DOI:10.1002/mco2.70037

登录浏览全文

4963

注册一个新账户 忘记密码

References

[1]

Bray F, Ferlay J, Soerjomataram I, Siegel RL, Torre LA, Jemal A. Global cancer statistics 2018: GLOBOCAN estimates of incidence and mortality worldwide for 36 cancers in 185 countries. CA Cancer J Clin. 2018; 68(6): 394-424.

[2]

Shah MA. Update on metastatic gastric and esophageal cancers. J Clin Oncol. 2015; 33(16): 1760-1769.

[3]

Claesson-Welsh L, Welsh M. VEGFA and tumour angiogenesis. J Intern Med. 2013; 273(2): 114-127.

[4]

Nienhüser H, Schmidt T. Angiogenesis and anti-angiogenic therapy in gastric cancer. Int J Mol Sci. 2017; 19(1): 43.

[5]

Kang Y-K, Kang W, Di Bartolomeo M, et al. Randomized phase III ANGEL study of rivoceranib (apatinib)+ best supportive care (BSC) vs placebo+ BSC in patients with advanced/metastatic gastric cancer who failed≥ 2 prior chemotherapy regimens. Ann Oncol. 2019; 30: v877-v878.

[6]

Paskeh MDA, Ghadyani F, Hashemi M, et al. Biological impact and therapeutic perspective of targeting PI3K/Akt signaling in hepatocellular carcinoma: promises and challenges. Pharmacol Res. 2023; 187: 106553.

[7]

Xue C, Li G, Lu J, Li L. Crosstalk between circRNAs and the PI3K/AKT signaling pathway in cancer progression. Signal Transduct Target Ther. 2021; 6(1): 400.

[8]

Wang X, Wang X, Xu M, Sheng W. Effects of CAF-derived microRNA on tumor biology and clinical applications. Cancers (Basel). 2021; 13(13): 3160.

[9]

Sun H, Wang X, Wang X, Xu M, Sheng W. The role of cancer-associated fibroblasts in tumorigenesis of gastric cancer. Cell Death Dis. 2022; 13(10): 874.

[10]

Eiro N, González L, Martínez-Ordoñez A, et al. Cancer-associated fibroblasts affect breast cancer cell gene expression, invasion and angiogenesis. Cell Oncol (Dordrecht). 2018; 41(4): 369-378.

[11]

Inoue KI, Kishimoto S, Akimoto K, et al. Cancer-associated fibroblasts show heterogeneous gene expression and induce vascular endothelial growth factor A (VEGFA) in response to environmental stimuli. Ann Gastroenterol Surg. 2019; 3(4): 416-425.

[12]

Shi Y, Zhu H, Jiang H, Yue H, Yuan F, Wang F. Cancer-associated fibroblasts-derived exosomes from chemoresistant patients regulate cisplatin resistance and angiogenesis by delivering VEGFA in colorectal cancer. Anti-Cancer Drugs. 2023; 34(3): 422-430.

[13]

Kugeratski FG, Atkinson SJ, Neilson LJ, et al. Hypoxic cancer-associated fibroblasts increase NCBP2-AS2/HIAR to promote endothelial sprouting through enhanced VEGF signaling. Sci Signal. 2019; 12(567): eaan8247.

[14]

Pula B, Wojnar A, Witkiewicz W, Dziegiel P, Podhorska-Okolow M. Podoplanin expression in cancer-associated fibroblasts correlates with VEGF-C expression in cancer cells of invasive ductal breast carcinoma. Neoplasma. 2013; 60(5): 516-524.

[15]

Zeng H, Hou Y, Zhou X, et al. Cancer-associated fibroblasts facilitate premetastatic niche formation through lncRNA SNHG5-mediated angiogenesis and vascular permeability in breast cancer. Theranostics. 2022; 12(17): 7351-7370.

[16]

Chen Y, McAndrews KM, Kalluri R. Clinical and therapeutic relevance of cancer-associated fibroblasts. Nat Rev Clin Oncol. 2021; 18(12): 792-804.

[17]

Luo H, Xia X, Huang LB, et al. Pan-cancer single-cell analysis reveals the heterogeneity and plasticity of cancer-associated fibroblasts in the tumor microenvironment. Nat Commun. 2022; 13(1): 6619.

[18]

Zhao Z, Zhang Y, Guo E, Zhang Y, Wang Y. Periostin secreted from podoplanin-positive cancer-associated fibroblasts promotes metastasis of gastric cancer by regulating cancer stem cells via AKT and YAP signaling pathway. Mol Carcinog. 2023; 62(5): 685-699.

[19]

Tian Y, Chen X, Wang X, Song Y. Podoplanin promotes the carcinogenicity of gastric cancer by activating ezrin and mediating the crosstalk between tumour cells and cancer-associated fibroblasts. Exp Physiol. 2023; 108(5): 740-751.

[20]

Yu D, Xu H, Zhou J, Fang K, Zhao Z, Xu K. PDPN/CCL2/STAT3 feedback loop alter CAF heterogeneity to promote angiogenesis in colorectal cancer. Angiogenesis. 2024; 27(4): 809-825.

[21]

Sun H, Wang X, Zhang X, et al. Multiplexed immunofluorescence analysis of CAF-markers, EZH2 and FOXM1 in gastric tissue: associations with clinicopathological parameters and clinical outcomes. BMC Cancer. 2022; 22(1): 1188.

[22]

Kumar V, Ramnarayanan K, Sundar R, et al. Single-cell atlas of lineage states, tumor microenvironment, and subtype-specific expression programs in gastric cancer. Cancer Discov. 2022; 12(3): 670-691.

[23]

Lin Z, Shi JL, Chen M, Zheng ZM, Li MQ, Shao J. CCL2: an important cytokine in normal and pathological pregnancies: a review. Front Immunol. 2022; 13: 1053457.

[24]

Qiu X, Mao Q, Tang Y, et al. Reversed graph embedding resolves complex single-cell trajectories. Nat Methods. 2017; 14(10): 979-982.

[25]

Tsuyada A, Chow A, Wu J, et al. CCL2 mediates cross-talk between cancer cells and stromal fibroblasts that regulates breast cancer stem cells. Cancer Res. 2012; 72(11): 2768-2779.

[26]

Yang YI, Wang YY, Ahn JH, Kim BH, Choi JH. CCL2 overexpression is associated with paclitaxel resistance in ovarian cancer cells via autocrine signaling and macrophage recruitment. Biomed Pharmacother. 2022; 153: 113474.

[27]

Calvo F, Ege N, Grande-Garcia A, et al. Mechanotransduction and YAP-dependent matrix remodelling is required for the generation and maintenance of cancer-associated fibroblasts. Nat Cell Biol. 2013; 15(6): 637-646.

[28]

Verginadis II, Avgousti H, Monslow J, et al. A stromal integrated stress response activates perivascular cancer-associated fibroblasts to drive angiogenesis and tumour progression. Nat Cell Biol. 2022; 24(6): 940-953.

[29]

Heichler C, Scheibe K, Schmied A, et al. STAT3 activation through IL-6/IL-11 in cancer-associated fibroblasts promotes colorectal tumour development and correlates with poor prognosis. Gut. 2020; 69(7): 1269-1282.

[30]

Du R, Zhang X, Lu X, et al. PDPN positive CAFs contribute to HER2 positive breast cancer resistance to trastuzumab by inhibiting antibody-dependent NK cell-mediated cytotoxicity. Drug Resist Updat. 2023; 68: 100947.

[31]

Friedman G, Levi-Galibov O, David E, et al. Cancer-associated fibroblast compositions change with breast cancer progression linking the ratio of S100A4(+) and PDPN(+) CAFs to clinical outcome. Nat Cancer. 2020; 1(7): 692-708.

[32]

Yoshida T, Ishii G, Goto K, et al. Podoplanin-positive cancer-associated fibroblasts in the tumor microenvironment induce primary resistance to EGFR-TKIs in lung adenocarcinoma with EGFR mutation. Clin Cancer Res. 2015; 21(3): 642-651.

[33]

Yu Z, Zhang J, Zhang Q, et al. Single-cell sequencing reveals the heterogeneity and intratumoral crosstalk in human endometrial cancer. Cell Prolif. 2022; 55(6): e13249.

[34]

Zhang M, Yang H, Wan L, et al. Single-cell transcriptomic architecture and intercellular crosstalk of human intrahepatic cholangiocarcinoma. J Hepatol. 2020; 73(5): 1118-1130.

[35]

Ohta M, Kitadai Y, Tanaka S, et al. Monocyte chemoattractant protein-1 expression correlates with macrophage infiltration and tumor vascularity in human gastric carcinomas. Int J Oncol. 2003; 22(4): 773-778.

[36]

Kuroda T, Kitadai Y, Tanaka S, et al. Monocyte chemoattractant protein-1 transfection induces angiogenesis and tumorigenesis of gastric carcinoma in nude mice via macrophage recruitment. Clin Cancer Res. 2005; 11(21): 7629-7636.

[37]

Fan F, Gao J, Zhao Y, et al. Elevated mast cell abundance is associated with enrichment of CCR2+ cytotoxic T cells and favorable prognosis in lung adenocarcinoma. Cancer Res. 2023; 83(16): 2690-2703.

[38]

Zhu Q, Zhang X, Zhang L, et al. The IL-6-STAT3 axis mediates a reciprocal crosstalk between cancer-derived mesenchymal stem cells and neutrophils to synergistically prompt gastric cancer progression. Cell Death Dis. 2014; 5(6): e1295.

[39]

Su S, Chen J, Yao H, et al. CD10(+)GPR77(+) cancer-associated fibroblasts promote cancer formation and chemoresistance by sustaining cancer stemness. Cell. 2018; 172(4): 841-856.e16.

[40]

Mathieson L, Koppensteiner L, Dorward DA, O’Connor RA, Akram AR. Cancer-associated fibroblasts expressing fibroblast activation protein and podoplanin in non-small cell lung cancer predict poor clinical outcome. Br J Cancer. 2024; 130(11): 1758-1769.

[41]

Li Q, Li Z, Luo T, Shi H. Targeting the PI3K/AKT/mTOR and RAF/MEK/ERK pathways for cancer therapy. Mol Biomed. 2022; 3(1): 47.

[42]

Zhao ZX, Zhang YQ, Sun H, et al. Calcipotriol abrogates cancer-associated fibroblast-derived IL-8-mediated oxaliplatin resistance in gastric cancer cells via blocking PI3K/Akt signaling. Acta Pharmacol Sin. 2023; 44(1): 178-188.

[43]

McGinnis CS, Murrow LM, Gartner ZJ. DoubletFinder: doublet detection in single-cell RNA sequencing data using artificial nearest neighbors. Cell Syst. 2019; 8(4): 329-337.e4.

[44]

Korsunsky I, Millard N, Fan J, et al. Fast, sensitive and accurate integration of single-cell data with Harmony. Nat Methods. 2019; 16(12): 1289-1296.

[45]

Jin S, Guerrero-Juarez CF, Zhang L, et al. Inference and analysis of cell-cell communication using CellChat. Nat Commun. 2021; 12(1): 1088.

RIGHTS & PERMISSIONS

2025 The Author(s). MedComm published by Sichuan International Medical Exchange & Promotion Association (SCIMEA) and John Wiley & Sons Australia, Ltd.

AI Summary AI Mindmap
PDF

179

Accesses

0

Citation

Detail

Sections
Recommended

AI思维导图

/