Multiparameter single-cell proteomic technologies give new insights into the biology of ovarian tumors.

IF 7.9 2区 医学 Q1 IMMUNOLOGY
Ionut-Gabriel Funingana, Jacob S Bedia, Ying-Wen Huang, Antonio Delgado Gonzalez, Kenyi Donoso, Veronica D Gonzalez, James D Brenton, Alan Ashworth, Wendy J Fantl
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引用次数: 2

Abstract

High-grade serous ovarian cancer (HGSOC) is the most lethal gynecological malignancy. Its diagnosis at advanced stage compounded with its excessive genomic and cellular heterogeneity make curative treatment challenging. Two critical therapeutic challenges to overcome are carboplatin resistance and lack of response to immunotherapy. Carboplatin resistance results from diverse cell autonomous mechanisms which operate in different combinations within and across tumors. The lack of response to immunotherapy is highly likely to be related to an immunosuppressive HGSOC tumor microenvironment which overrides any clinical benefit. Results from a number of studies, mainly using transcriptomics, indicate that the immune tumor microenvironment (iTME) plays a role in carboplatin response. However, in patients receiving treatment, the exact mechanistic details are unclear. During the past decade, multiplex single-cell proteomic technologies have come to the forefront of biomedical research. Mass cytometry or cytometry by time-of-flight, measures up to 60 parameters in single cells that are in suspension. Multiplex cellular imaging technologies allow simultaneous measurement of up to 60 proteins in single cells with spatial resolution and interrogation of cell-cell interactions. This review suggests that functional interplay between cell autonomous responses to carboplatin and the HGSOC immune tumor microenvironment could be clarified through the application of multiplex single-cell proteomic technologies. We conclude that for better clinical care, multiplex single-cell proteomic technologies could be an integral component of multimodal biomarker development that also includes genomics and radiomics. Collection of matched samples from patients before and on treatment will be critical to the success of these efforts.

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多参数单细胞蛋白质组学技术为卵巢肿瘤的生物学研究提供了新的见解。
高级别浆液性卵巢癌(HGSOC)是最致命的妇科恶性肿瘤。其晚期诊断加上其过度的基因组和细胞异质性使治疗具有挑战性。需要克服的两个关键治疗挑战是卡铂耐药性和对免疫治疗缺乏反应。卡铂耐药源于不同的细胞自主机制,这些机制在肿瘤内部和肿瘤之间以不同的组合运作。缺乏对免疫治疗的反应很可能与免疫抑制的HGSOC肿瘤微环境有关,这种微环境超过了任何临床益处。许多主要利用转录组学的研究结果表明,免疫肿瘤微环境(iTME)在卡铂应答中起作用。然而,在接受治疗的患者中,确切的机制细节尚不清楚。在过去的十年中,多重单细胞蛋白质组学技术已经成为生物医学研究的前沿。质量细胞术或飞行时间细胞术,在悬浮的单个细胞中测量多达60个参数。多重细胞成像技术允许在单个细胞中同时测量多达60种蛋白质,具有空间分辨率和细胞间相互作用的询问。这一综述表明,细胞对卡铂的自主反应与HGSOC免疫肿瘤微环境之间的功能相互作用可以通过应用多重单细胞蛋白质组学技术来阐明。我们的结论是,为了更好的临床护理,多重单细胞蛋白质组学技术可以成为包括基因组学和放射组学在内的多模式生物标志物开发的一个组成部分。在治疗前和治疗后从患者身上收集匹配的样本对这些努力的成功至关重要。
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来源期刊
Seminars in Immunopathology
Seminars in Immunopathology 医学-病理学
CiteScore
19.80
自引率
2.20%
发文量
69
审稿时长
12 months
期刊介绍: The aim of Seminars in Immunopathology is to bring clinicians and pathologists up-to-date on developments in the field of immunopathology.For this purpose topical issues will be organized usually with the help of a guest editor.Recent developments are summarized in review articles by authors who have personally contributed to the specific topic.
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