PO.MCB08.05 · 分子与细胞生物学

在单细胞分辨率下理解皮肤免疫相关不良事件

Understanding cutaneous immune-related adverse events at single-cell resolution

海报缩略图:在单细胞分辨率下理解皮肤免疫相关不良事件
编号 7276 展板 16 时间 4/22 09:00–12:00 区域 Section 21 主讲 Olivia Cheng, PhD
分会场 Genomic Approaches to Define Tumor Biology and Clinical Stratification
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作者与单位 Authors & Affiliations

Olivia J. Cheng1, Nabeela Khan2, Terri Clister2, Rebecca Nichols2, Khanh Doan2, Connor Hall2, Rajan Kulkarni2, Aik Choon Tan1

1University of Utah Huntsman Cancer Institute, Salt Lake City, UT,2OHSU, Lake Oswego, OR

摘要 Abstract

中文摘要
背景:免疫检查点抑制剂(ICI)治疗在多种癌症中已显示出临床疗效。然而,在ICI抗肿瘤效应带来获益的同时,一部分患者会经历免疫相关不良事件(irAE),这可能导致治疗终止,严重情况下还会引起病残和死亡。皮肤irAE往往发生较早,是ICI治疗患者中最常见的irAE之一。特别是,ICI与其他抗癌药物的联合使用可增加irAE的发生频率和严重程度。本研究的目标是理解免疫相关皮疹(ir-Rash)的分子因素,并识别用于早期风险预测和基于机制管理的生物标志物。 方法:五名前列腺癌患者接受了pembrolizumab和enzalutamide(雄激素受体阻断剂)治疗,并在多个治疗后时间点采集皮肤样本进行纵向单细胞RNA测序(scRNA-seq):第0周、第12周,以及对于发生ir-Rash者的皮疹时间点。进行了细胞类型注释、基因集富集、细胞比例和细胞间相互作用分析,以识别与ir-Rash风险及时间发展相关的细胞类型和生物学通路。为识别与ir-Rash风险相关的预测性生物标志物,对皮疹组(R)与无皮疹组(NR)之间的基线第0周样本进行了比较。为理解ir-Rash发生和消退过程中的时间变化和作用机制,我们比较了皮疹患者在三个时间点的样本。 结果:细胞比例分析显示,ir-Rash患者与NR患者相比,基线时树突状细胞(DC)比例更高。在ir-Rash患者中,细胞毒性细胞丰度在皮疹时间点相对于基线增加。对5种条件(Week0-NR、Week0-R、Rash、Week12-NR和Week12-R)下50个MSigDB标志性基因集进行单样本基因集富集分析(ssGSEA)显示,在皮疹时富集了包括干扰素应答和PI3K-AKT-MTOR信号在内的通路。Week0-Rash样本还额外表现出MYC靶点、IL2-STAT5信号、缺氧、mTORC1信号和E2F靶点的富集。特别是在DC中,干扰素-gamma应答在Week0-Rash和Rash两个时间点均富集。而在细胞毒性细胞中,notch信号、MTORC1信号和WNT-BETA-Catenin信号在皮疹时间点富集。 结论:我们的结果表明,免疫相关皮疹与基线时树突状细胞频率增加以及发病时细胞毒性细胞增加相关,并伴有包括干扰素应答在内的通路富集。这些结果可能有助于阐明ICI治疗期间皮肤毒性的潜在机制。
查看英文原文 English abstract
Background: Immune checkpoint inhibitor (ICI) treatment has demonstrated clinical efficacies in various cancers. However, alongside the benefits of ICI's anti-tumor effect, a subset of patients experience immune-related adverse events (irAEs) that could lead to the termination of treatment, and in severe cases, morbidity and mortality. Cutaneous irAEs often occur early and are among the most common irAE in patients treated with ICIs. In particular, combinations of ICI with other anti-cancer agents can heighten the frequency and severity of irAEs. The goal of this study is to understand the molecular factors of immune-related rash (ir-Rash) and identifying biomarkers for early risk prediction and mechanism-based management. Method: Five prostate cancer patients were treated with pembrolizumab and enzalutamide (androgen receptor blocker), and skin samples were collected for longitudinal single cell RNA sequencing (scRNA-seq) at various post-treatment timepoints: Week 0, Week 12, and Rash for those who developed ir-Rash. Cell type annotation, gene set enrichment, cell proportion and cell-cell interaction analyses were performed to identify cell types and biological pathways associated with ir-Rash risk and temporal development. To identify predictive biomarkers correlated with the risk of ir-Rash, baseline Week 0 samples were compared between the rash (R) and no-rash (NR) groups. To understand the temporal changes and mechanisms of actions through ir-Rash onset and resolution, we compared samples from patients with rash at the three timepoints. Results: Cell proportion analysis revealed a higher baseline proportion of dendritic cells (DCs) in ir-Rash patients compared to NR patients. Among ir-Rash patients, cytotoxic cell abundance increased at rash timepoint relative to baseline. Single sample gene set enrichment analysis (ssGSEA) of 50 MSigDB hallmark gene sets across 5 conditions (Week0-NR, Week0-R, Rash, Week12-NR, and Week12-R) showed enrichment of pathways including interferon responses and PI3K-AKT-MTOR signaling at Rash. Week0-Rash samples additionally exhibited enrichment of MYC targets, IL2-STAT5 signaling, hypoxia, mTORC1 signaling, and E2F targets. Particularly in DCs, interferon-gamma response was enriched at both Week0-Rash and Rash timepoints. And among cytotoxic cells, notch signaling, MTORC1 signaling, WNT-BETA-Catenin signaling were enriched at the Rash timepoint. Conclusions: Our results suggest that immune-related rash is associated with an increase in dendritic cell frequency at baseline and an increase in cytotoxic cells at onset, accompanied by enrichment of pathways including interferon responses. These results may help elucidate potential mechanisms underlying cutaneous toxicity during ICI treatment.
利益披露 Disclosure
O. J. Cheng, None.. N. Khan, None.. T. Clister, None.. R. Nichols, None.. K. Doan, None.. C. Hall, None.. R. Kulkarni, None.. A. Tan, None.

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