Spatial transcriptomics reveals that metabolic characteristics define the tumor immunosuppression microenvironment via iCAF transformation in oral squamous cell carcinoma.

IF 10.8 1区 医学 Q1 DENTISTRY, ORAL SURGERY & MEDICINE International Journal of Oral Science Pub Date : 2024-01-30 DOI:10.1038/s41368-023-00267-8
Zheqi Liu, Zhen Zhang, Yu Zhang, Wenkai Zhou, Xu Zhang, Canbang Peng, Tong Ji, Xin Zou, Zhiyuan Zhang, Zhenhu Ren
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Abstract

Tumor progression is closely related to tumor tissue metabolism and reshaping of the microenvironment. Oral squamous cell carcinoma (OSCC), a representative hypoxic tumor, has a heterogeneous internal metabolic environment. To clarify the relationship between different metabolic regions and the tumor immune microenvironment (TME) in OSCC, Single cell (SC) and spatial transcriptomics (ST) sequencing of OSCC tissues were performed. The proportion of TME in the ST data was obtained through SPOTlight deconvolution using SC and GSE103322 data. The metabolic activity of each spot was calculated using scMetabolism, and k-means clustering was used to classify all spots into hyper-, normal-, or hypometabolic regions. CD4T cell infiltration and TGF-β expression is higher in the hypermetabolic regions than in the others. Through CellPhoneDB and NicheNet cell-cell communication analysis, it was found that in the hypermetabolic region, fibroblasts can utilize the lactate produced by glycolysis of epithelial cells to transform into inflammatory cancer-associated fibroblasts (iCAFs), and the increased expression of HIF1A in iCAFs promotes the transcriptional expression of CXCL12. The secretion of CXCL12 recruits regulatory T cells (Tregs), leading to Treg infiltration and increased TGF-β secretion in the microenvironment and promotes the formation of a tumor immunosuppressive microenvironment. This study delineates the coordinate work axis of epithelial cells-iCAFs-Tregs in OSCC using SC, ST and TCGA bulk data, and highlights potential targets for therapy.

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空间转录组学揭示了代谢特征通过口腔鳞状细胞癌的 iCAF 转化定义了肿瘤免疫抑制微环境。
肿瘤的进展与肿瘤组织的新陈代谢和微环境的重塑密切相关。口腔鳞状细胞癌(OSCC)是缺氧性肿瘤的代表,其内部代谢环境具有异质性。为了明确OSCC中不同代谢区域与肿瘤免疫微环境(TME)之间的关系,研究人员对OSCC组织进行了单细胞(SC)和空间转录组学(ST)测序。利用 SC 和 GSE103322 数据通过 SPOTlight 解卷积获得了 ST 数据中 TME 的比例。使用 scMetabolism 计算了每个点的代谢活性,并使用 k-means 聚类将所有点划分为高代谢区、正常代谢区或低代谢区。高代谢区的 CD4T 细胞浸润和 TGF-β 表达高于其他区域。通过 CellPhoneDB 和 NicheNet 细胞-细胞通讯分析发现,在高代谢区,成纤维细胞可以利用上皮细胞糖酵解产生的乳酸转化为炎症癌相关成纤维细胞(iCAFs),而 iCAFs 中 HIF1A 的表达增加促进了 CXCL12 的转录表达。CXCL12 的分泌会招募调节性 T 细胞(Tregs),导致 Treg 的浸润和微环境中 TGF-β 分泌的增加,并促进肿瘤免疫抑制微环境的形成。本研究利用SC、ST和TCGA批量数据描述了OSCC中上皮细胞-iCAFs-Tregs的协调工作轴,并强调了潜在的治疗靶点。
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来源期刊
International Journal of Oral Science
International Journal of Oral Science DENTISTRY, ORAL SURGERY & MEDICINE-
CiteScore
31.80
自引率
1.30%
发文量
53
审稿时长
>12 weeks
期刊介绍: The International Journal of Oral Science covers various aspects of oral science and interdisciplinary fields, encompassing basic, applied, and clinical research. Topics include, but are not limited to: Oral microbiology Oral and maxillofacial oncology Cariology Oral inflammation and infection Dental stem cells and regenerative medicine Craniofacial surgery Dental material Oral biomechanics Oral, dental, and maxillofacial genetic and developmental diseases Craniofacial bone research Craniofacial-related biomaterials Temporomandibular joint disorder and osteoarthritis The journal publishes peer-reviewed Articles presenting new research results and Review Articles offering concise summaries of specific areas in oral science.
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