Cancer-Associated Fibroblast-Derived GDF15 Induces Oxidative Stress and Neutrophil Infiltration in Head and Neck Squamous Cell Carcinoma through the PI3K/AKT/STAT3 Axis Cascade.

IF 10.7 1区 综合性期刊 Q1 Multidisciplinary
Research Pub Date : 2025-09-30 eCollection Date: 2025-01-01 DOI:10.34133/research.0901
Zhijie Zhao, Huabao Cai, Zhenzhen Zhao, Xiaojing Wang, Wenyang Nie, Fu Zhao, Yisheng Chen, Yanyu Ding, Zhiwen Luo, Zhiheng Lin, Yantao Ding
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引用次数: 0

Abstract

Background: Head and neck squamous cell carcinoma (HNSCC) is a malignant tumor of the oral mucosal epithelium. The high incidence of recurrence and metastasis presents substantial challenges for treatment, underscoring the complex molecular landscape underlying the disease. The purpose of this work is to clarify how HNSCC tumor cells and cancer-associated fibroblasts (CAFs) interact. Methods: Spatial transcriptome sequencing and single-cell RNA sequencing had been employed to describe the biological characteristics of CAFs in HNSCC. The biological connection between CAFs and tumor cells was verified by molecular interaction experiments. In addition, the regulatory effect of CAFs on oxidative stress in tumor cells and the phenotypic conversion of neutrophils were explored through a coculture system, a knockdown/overexpression method, flow cytometry, and animal experiments. Finally, potential small-molecule inhibitors were screened by molecular dynamics simulation and validated through in vitro and in vivo assays. Results: Growth differentiation factor 15 (GDF15) promoted tumor cell growth and invasion by enhancing PCNA clamp associated factor (PCLAF) transcription through interferon regulatory factor 5 modulation. Its interaction with the receptor GDNF family receptor alpha like (GFRAL) triggered chronic inflammatory signaling via the phosphatidylinositol-3 kinase/protein kinase b/signal transducer and activator of transcription 3 pathway, which led to oxidative stress imbalance and contributed to tumor progression and the development of drug resistance. Moreover, GDF15 activated the extracellular signal-regulated kinase 1/2 pathway through tumor necrosis factor-α, thereby facilitating neutrophil infiltration and promoting lung metastasis in HNSCC. Notably, risperidone (SM-2) emerged as a potential inhibitory regulator capable of disrupting the cascade effects mediated by the GDF15-GFRAL axis, underscoring its therapeutic relevance. Conclusion: This study identifies the GDF15-GFRAL signaling axis as a critical regulator of oxidative stress and immune evasion in HNSCC and demonstrates that the novel small-molecule SM-2 effectively targets this pathway, highlighting its potential as a promising therapeutic strategy.

癌症相关成纤维细胞衍生的GDF15通过PI3K/AKT/STAT3轴级联诱导头颈部鳞状细胞癌的氧化应激和中性粒细胞浸润
背景:头颈部鳞状细胞癌(HNSCC)是一种口腔黏膜上皮恶性肿瘤。复发和转移的高发生率给治疗带来了巨大的挑战,强调了疾病背后复杂的分子景观。这项工作的目的是阐明HNSCC肿瘤细胞和癌症相关成纤维细胞(CAFs)如何相互作用。方法:采用空间转录组测序和单细胞RNA测序方法描述HNSCC中cas的生物学特性。分子相互作用实验证实了CAFs与肿瘤细胞之间的生物学联系。此外,通过共培养系统、敲低/过表达法、流式细胞术和动物实验,探讨了CAFs对肿瘤细胞氧化应激和中性粒细胞表型转化的调节作用。最后,通过分子动力学模拟筛选潜在的小分子抑制剂,并通过体外和体内实验进行验证。结果:生长分化因子15 (Growth differentiation factor 15, GDF15)通过干扰素调节因子5调控PCNA clamp associated factor (PCLAF)转录,促进肿瘤细胞生长和侵袭。它与受体GDNF家族受体α样(GFRAL)相互作用,通过磷脂酰肌醇-3激酶/蛋白激酶b/信号转导和转录激活因子3通路触发慢性炎症信号,导致氧化应激失衡,促进肿瘤进展和耐药的发生。此外,GDF15通过肿瘤坏死因子-α激活细胞外信号调节激酶1/2通路,从而促进中性粒细胞浸润,促进HNSCC肺转移。值得注意的是,利培酮(SM-2)作为一种潜在的抑制调节剂,能够破坏由GDF15-GFRAL轴介导的级联效应,强调其治疗相关性。结论:本研究确定了GDF15-GFRAL信号轴是HNSCC中氧化应激和免疫逃避的关键调节因子,并证明了新型小分子SM-2有效靶向该途径,突出了其作为一种有前景的治疗策略的潜力。
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来源期刊
Research
Research Multidisciplinary-Multidisciplinary
CiteScore
13.40
自引率
3.60%
发文量
0
审稿时长
14 weeks
期刊介绍: Research serves as a global platform for academic exchange, collaboration, and technological advancements. This journal welcomes high-quality research contributions from any domain, with open arms to authors from around the globe. Comprising fundamental research in the life and physical sciences, Research also highlights significant findings and issues in engineering and applied science. The journal proudly features original research articles, reviews, perspectives, and editorials, fostering a diverse and dynamic scholarly environment.
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