检测葡萄膜黑色素瘤中具有转移特性的肿瘤免疫杂交细胞。

IF 9.5 2区 医学 Q1 MEDICINE, RESEARCH & EXPERIMENTAL
Ashley N Anderson, Patrick Conley, Christopher D Klocke, Sidharth K Sengupta, Amara Pang, Hannah C Farley, Abigail R Gillingham, Aubrey D Dawson, Yichen Fan, Jocelyn A Jones, Summer L Gibbs, Alison H Skalet, Guanming Wu, Melissa H Wong
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引用次数: 0

摘要

背景:葡萄膜黑色素瘤是最常见的非皮肤黑色素瘤,也是一种眼内恶性肿瘤,全世界每年有近 7,000 人受到影响。其中,约 50%的患者会发展为转移性疾病,目前尚无有效的根治疗法。尽管在葡萄膜黑色素瘤肿瘤的分子谱分析和转移分层方面取得了进展,但人们对其潜在的转移生物学特性知之甚少。我们的研究小组在葡萄膜黑色素瘤患者中发现了一种以免疫蛋白和黑色素瘤蛋白共同表达为特征的扩散性肿瘤细胞群,即循环混合细胞(杂交细胞)。与缺乏免疫蛋白表达的循环肿瘤细胞相比,杂交细胞在外周血中的检测率更高,可用作预测转移进展的非侵入性生物标记物:为了确定杂交细胞传播增强的机制,我们使用单细胞 RNA 测序(n = 8)鉴定了原发性葡萄膜黑色素瘤肿瘤内的杂交细胞,并评估了它们的基因表达和预测的配体-受体相互作用与原发性肿瘤内其他黑色素瘤细胞和免疫细胞的关系。然后,我们使用循环免疫荧光验证了患者匹配的肿瘤和外周血杂交细胞(n = 4)中上调的杂交通路的表达,并量化了它们相对于其他非杂交肿瘤和播散肿瘤细胞的蛋白表达:结果:杂交细胞中上调最多的基因和通路包括细胞运动性增强、细胞骨架重排、免疫逃避和细胞代谢改变。在与患者相匹配的肿瘤和外周血中,我们通过检测每个通路类别的一致蛋白质表达来验证基因表达:TMSB10(细胞运动)、CD74(免疫逃避)和 GPX1(新陈代谢)。与循环肿瘤细胞相比,TMSB10 和 GPX1 在散播的杂交细胞中的表达量明显更高,CD74 和 GPX1 在散播的杂交细胞中的表达量高于肿瘤存留的杂交细胞。最后,我们发现杂交细胞表达与促进转移有关的配体-受体信号通路,包括 GAS6-AXL、CXCL12-CXCR4、LGALS9-P4HB 和 IGF1-IGFR1:这些发现强调了 TMSB10、GPX1 和 CD74 对于杂交细胞成功扩散和在循环中存活的重要性。我们的研究结果有助于人们了解葡萄膜黑色素瘤的肿瘤进展以及肿瘤微环境中肿瘤细胞和免疫细胞之间的相互作用,这种相互作用可能会促进转移。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Detection of neoplastic-immune hybrid cells with metastatic properties in uveal melanoma.

Background: Uveal melanoma is the most common non-cutaneous melanoma and is an intraocular malignancy affecting nearly 7,000 individuals per year worldwide. Of these, approximately 50% will progress to metastatic disease for which there are currently no effective curative therapies. Despite advances in molecular profiling and metastatic stratification of uveal melanoma tumors, little is known regarding their underlying biology of metastasis. Our group has identified a disseminated neoplastic cell population characterized by co-expression of immune and melanoma proteins, circulating hybrid cells (hybrids), in patients with uveal melanoma. Compared to circulating tumor cells, which lack expression of immune proteins, hybrids are detected at an increased prevalence in peripheral blood and can be used as a non-invasive biomarker to predict metastatic progression.

Methods: To ascertain mechanisms underlying enhanced hybrid cell dissemination we identified hybrid cells within primary uveal melanoma tumors using single cell RNA sequencing (n = 8) and evaluated their gene expression and predicted ligand-receptor interactions in relation to other melanoma and immune cells within the primary tumor. We then verified expression of upregulated hybrid pathways within patient-matched tumor and peripheral blood hybrids (n = 4) using cyclic immunofluorescence and quantified their protein expression relative to other non-hybrid tumor and disseminated tumor cells.

Results: Among the top upregulated genes and pathways in hybrid cells were those involved in enhanced cell motility and cytoskeletal rearrangement, immune evasion, and altered cellular metabolism. In patient-matched tumor and peripheral blood, we verified gene expression by examining concordant protein expression for each pathway category: TMSB10 (cell motility), CD74 (immune evasion) and GPX1 (metabolism). Both TMSB10 and GPX1 were expressed on significantly higher numbers of disseminated hybrid cells compared to circulating tumor cells, and CD74 and GPX1 were expressed on more disseminated hybrids than tumor-resident hybrids. Lastly, we identified that hybrid cells express ligand-receptor signaling pathways implicated in promoting metastasis including GAS6-AXL, CXCL12-CXCR4, LGALS9-P4HB and IGF1-IGFR1.

Conclusion: These findings highlight the importance of TMSB10, GPX1 and CD74 for successful hybrid cell dissemination and survival in circulation. Our results contribute to the understanding of uveal melanoma tumor progression and interactions between tumor cells and immune cells in the tumor microenvironment that may promote metastasis.

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来源期刊
Biomarker Research
Biomarker Research Biochemistry, Genetics and Molecular Biology-Molecular Medicine
CiteScore
15.80
自引率
1.80%
发文量
80
审稿时长
10 weeks
期刊介绍: Biomarker Research, an open-access, peer-reviewed journal, covers all aspects of biomarker investigation. It seeks to publish original discoveries, novel concepts, commentaries, and reviews across various biomedical disciplines. The field of biomarker research has progressed significantly with the rise of personalized medicine and individual health. Biomarkers play a crucial role in drug discovery and development, as well as in disease diagnosis, treatment, prognosis, and prevention, particularly in the genome era.
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