PO.TB01.01 · 肿瘤生物学
CXCL17驱动血管生成以促进皮肤鳞状细胞癌的进展
CXCL17 Drives angiogenesis to promote progression in cutaneous squamous cell carcinoma
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
皮肤鳞状细胞癌(cSCC)是一项日益严峻的公共卫生挑战,每年有20万美国人确诊,且治疗干预手段有限。尽管人们普遍认识到紫外线B(UVB)辐射是主要病因,但目前的预防策略仍不充分,突显了对基于机制的方法以阻断cSCC发生和进展的迫切需求。我们的研究揭示了CXCL17在人微血管内皮细胞中驱动促血管生成信号的一个关键分子机制。全面的分子分析显示,CXCL17处理后关键的致癌和血管生成通路被深度激活,内皮型一氧化氮合酶(eNOS)、蛋白激酶B(pAKT)、核因子κB(NFκB)和缺氧诱导因子-1α(HIF-1α)均发生显著磷酸化。这些信号分子的协同激活提示存在一种强健的血管生成重编程机制。值得注意的是,eNOS磷酸化提示一氧化氮生成增强,而一氧化氮是内皮增殖和血管形成的关键介导者。同时发生的AKT激活促进内皮细胞存活,而NFκB和HIF-1α的上调则表明支持侵袭性血管重塑的代谢和炎症适应。同基因肿瘤细胞异种移植模型证实了这些分子发现,显示CXCL17敲除肿瘤中CD31染色显著减少,直接将CXCL17与肿瘤血管生成联系起来。临床相关性研究进一步证实了CXCL17在转移潜能中的作用,其表达升高与神经周围浸润增加和肿瘤侵袭性相关。我们的全面分析确立了CXCL17作为皮肤鳞状细胞癌中血管生成过程的关键分子协调者,为肿瘤进展机制提供了新的见解。
查看英文原文 English abstract
Cutaneous squamous cell carcinoma (cSCC) represents a growing public health challenge, with 200,000 Americans diagnosed annually and limited therapeutic interventions. Despite widespread awareness of ultraviolet B (UVB) radiation as a primary etiologic factor, current prevention strategies remain inadequate, underscoring the urgent need for mechanism-based approaches to interrupt cSCC development and progression. Our investigation unveils a critical molecular mechanism by which CXCL17 drives pro-angiogenic signaling in human microvascular endothelial cells. Comprehensive molecular analysis revealed a profound activation of key oncogenic and angiogenic pathways upon CXCL17 treatment, with significant phosphorylation of endothelial nitric oxide synthase (eNOS), protein kinase B (pAKT), nuclear factor kappa B (NFκB), and hypoxia-inducible factor-1alpha (HIF-1alpha). The coordinated activation of these signaling molecules suggests a robust angiogenic reprogramming mechanism. Notably, eNOS phosphorylation indicates enhanced nitric oxide production, a critical mediator of endothelial proliferation and vessel formation. Concurrent AKT activation promotes endothelial cell survival, while NFκB and HIF-1alpha upregulation demonstrates metabolic and inflammatory adaptations that support aggressive vascular remodeling. Syngeneic Tumor-Cell Xenograft model corroborated these molecular findings, demonstrating significantly reduced CD31 staining in CXCL17-knockout tumors, directly linking CXCL17 to tumor angiogenesis. Clinical correlation studies further substantiated CXCL17's role in metastatic potential, with elevated expression associated with increased perineural invasion and tumor aggressiveness. Our comprehensive analysis establishes CXCL17 as a pivotal molecular orchestrator of angiogenic processes in cutaneous squamous cell carcinoma, offering novel insights into tumor progression mechanisms.
利益披露 Disclosure
A. R. Khandelwal, None..
C. O. Nathan, None..
K. Jaganmohan, None.