探索肝细胞癌中肿瘤内皮细胞的异质性:单细胞测序和伪时间分析的启示。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-10-28 eCollection Date: 2024-01-01 DOI:10.7717/peerj.18362
Jiachun Sun, Shujun Zhang, Yafeng Liu, Kaijie Liu, Xinyu Gu
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引用次数: 0

摘要

研究目的本研究旨在探讨肝细胞癌(HCC)中肿瘤内皮细胞(TECs)的异质性及其在肿瘤进展中的作用,从而确定新的治疗靶点和策略,改善患者预后:方法:分析了基因表达总库(GEO)数据库中九个原发性肝癌样本的单细胞RNA测序数据。数据预处理、归一化、降维以及批次效应校正均基于Seurat软件包进行。利用统一流形逼近和投影(UMAP)和聚类分析确定了 HCC 细胞类型,并使用 CellMarker 数据库对不同的细胞类型进行了注释。利用Monocle进行了伪时间轨迹分析,以探索TECs的分化轨迹。结合癌症基因组图谱(The Cancer Genome Atlas,TCGA)的数据分析了TECs中MAPK信号通路的活性和拷贝数变异(CNV):结果:发现了两个 TECs 亚群(TECs 1 和 TECs 2),它们表现出不同的功能活性和信号通路。具体来说,TECs 1 可能参与了肿瘤细胞增殖和炎症反应,而 TECs 2 不仅参与了细胞增殖途径,还丰富了代谢合成等途径。伪时间分析揭示了 TECs 亚群在 HCC 进展过程中的动态变化,并与特定基因表达(如 PDGFRB、PGF、JUN 和 NR4A1)相关。随后,根据结合位点预测出了 JUN 基因,并证明它是一种转录因子,可调控 PGF 基因的表达。CNV分析强调了TECs中可能影响HCC进展的关键基因和通路,而PGF是介导细胞增殖和迁移的关键调控因子:该研究揭示了 TECs 在 HCC 中的异质性及其在肿瘤进展中的潜在作用,为 HCC 分子机制提供了新的视角和潜在的治疗靶点。这些发现强调了进一步探索 TECs 异质性对于了解 HCC 发病机制和制定个性化治疗策略的重要性。
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Exploring tumor endothelial cells heterogeneity in hepatocellular carcinoma: insights from single-cell sequencing and pseudotime analysis.

Objective: This study aimed to explore the heterogeneity of tumor endothelial cells (TECs) in hepatocellular carcinoma (HCC) and their role in tumor progression, with the goal of identifying new therapeutic targets and strategies to improve patient prognosis.

Methods: Single-cell RNA sequencing data from nine primary liver cancer samples were analyzed, obtained from the Gene Expression Omnibus (GEO) database. Data preprocessing, normalization, dimensionality reduction, and batch effect correction were performed based on the Seurat package. HCC cell types were identified using uniform manifold approximation and projection (UMAP) and cluster analysis, and the different cell types were annotated using the CellMarker database. Pseudotime trajectory analysis was conducted with Monocle to explore the differentiation trajectory of TECs. MAPK signaling pathway activity and copy number variations (CNV) in TECs were analyzed in conjunction with data from The Cancer Genome Atlas (TCGA), the trans-well and wound healing assay was used for cell invasion and migration activity assessment.

Results: Two subgroups of TECs (TECs 1 and TECs 2) were identified, exhibiting distinct functional activities and signaling pathways. Specifically, TECs 1 may be involved in tumor cell proliferation and inflammatory responses, whereas TECs 2 is not only involved in cell proliferation pathways, but also enriched in pathways such as metabolic synthesis. Pseudotime analysis revealed dynamic changes in TECs subgroups during HCC progression, correlating specific gene expressions (such as PDGFRB, PGF, JUN, and NR4A1). Subsequently, the JUN gene was predicted by performing binding sites and was shown to act as a transcription factor that may regulate the expression of the PGF gene. CNV analysis highlighted key genes and pathways in TECs that might influence HCC progression, and the PGF as key regulatory factor mediated cell proliferation and migration.

Conclusion: The study revealed the heterogeneity of TECs in HCC and their potential roles in tumor progression, offering new perspectives and potential therapeutic targets for HCC molecular mechanisms. The findings emphasize the importance of further exploring TECs heterogeneity for understanding HCC pathogenesis and developing personalized treatment strategies.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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