LBPO.CL04 · 临床研究 · Late-Breaking

共过表达CEACAM6的胰腺导管腺癌中免疫检查点的临床价值

Clinical value of immune checkpoints in pancreatic ductal adenocarcinomaco-overexpressing with CEACAM6

海报缩略图:共过表达CEACAM6的胰腺导管腺癌中免疫检查点的临床价值
编号 LB422 展板 12 时间 4/22 09:00–12:00 区域 Section 51 主讲 Ritu Pandey, MS;PhD;MHA
分会场 Late-Breaking Research: Clinical Research 4
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作者与单位 Authors & Affiliations

Daruka Mahadevan1, Chenbo Sun2, Yuliang Chen2, Aisha Al-Khinji3, Ritu Pandey4

1University of Texas Health, San Antonio, San Antonio, TX,2University of Arizona Cancer Center, Tucson, AZ,3Qatar University, Doha, Qatar,4Department of Cellular and Molecular Medicine, University of Arizona Cancer Center, Tucson, AZ

摘要 Abstract

中文摘要
背景:癌胚细胞黏附分子6(CEACAM6)是Ig家族的一种细胞黏附免疫检查点受体,在胰腺导管腺癌(PDA)中过表达。CEACAM6是不良预后标志物和治疗靶点,表达于所有PDA亚型(Pandey等,Sci Rep 2019)。我们在此报告对来自患者的PDA细胞及非癌性邻近细胞的GEO数据进行的单细胞分析,以评估CEACAM6及共存免疫检查点标志物的存在情况。CEACAM6与独特免疫检查点标志物的共存,为在PDA中开发靶向CEACAM6的单克隆抗体(我们已研发)的联合治疗提供了潜在的洞见。方法:scRNA-Seq数据获取自GSE212966。使用Seurat V5.4.0分析来自12例未经既往治疗患者的六个邻近非肿瘤样本和六个PDA样本的基因-细胞数据矩阵。表达经log归一化,差异表达(DE)基因(簇标志物)按log2倍数变化>1进行筛选。采用降维方法UMAP鉴定不同的细胞簇。将特定基因标志物绘制于UMAP上,并将各个细胞簇绘制于小提琴图上以比较细胞类型表达。使用SingleR、celldex R包和celltypist进行细胞类型标注。对临床已批准的第一代免疫检查点靶点和处于研发中的第二代靶点进行了分析。利用String分析各标志物的相互作用伙伴。结果:CEACAM6在PDA样本的许多细胞簇中表达,而在邻近非癌细胞中不表达。CEACAM6存在于肿瘤微环境中的许多细胞类型中,但显著富集于上皮细胞。在比较邻近细胞与PDA时,我们聚焦于在邻近细胞中缺失或极少、而在PDA细胞中存在或相对较高的免疫检查点标志物。PDL1在邻近和PDA中均较稀少,但CTLA4、LAG3、TIGIT在邻近和PDA细胞中均大量存在,主要位于T细胞和NK细胞类型的细胞簇中。TIM3的表达较稀疏,但在肿瘤和非肿瘤细胞中均有发现。LAIR和VSIR在邻近细胞中的富集多于PDAC细胞。与邻近非肿瘤细胞相比,CEACAM1和CD276(B7-H3)在PDA中表达更高。两者均见于上皮细胞类型和巨噬细胞,与CEACAM6的细胞类型表达相似。CD276调节T细胞反应,可通过抗体药物偶联物进行靶向。CD276与C80相互作用,后者结合抑制性受体CTLA4和共刺激受体CD28。CEACAM1表达于多种免疫细胞类型,是一种细胞表面免疫检查点,在PDA中与CEACAM6相互作用,促进免疫抑制。结论:PDA中的免疫抑制性肿瘤微环境十分复杂,解析这一格局对开发新型治疗干预具有临床价值。共靶向CEACAM6和B7-H3(PDA)及CEACAM1(T-Reg)为PDA提供了新的治疗机遇。
查看英文原文 English abstract
Background: Carcinoembryonic cell adhesion molecule 6 (CEACAM6), a cell adhesion immune checkpoint receptor of the Ig-family is overexpressed in Pancreatic Ductal Adenocarcinoma (PDA). CEACAM6 is a poor prognostic marker and a therapeutic target expressed in all subtypes of PDA (Pandey et al. Sci Rep 2019). We report here single cell analysis of the GEO data for PDA cells and non-cancerous adjacent cells from patients for presence of CEACAM6 and co-occurring immune checkpoint markers. Co-presence of CEACAM6 and unique immune checkpoint markers offers insight to potentially develop combination therapy with a monoclonal antibody targeting CEACAM6 in PDA that we have developed. Methods: scRNA-Seq data was obtained from GSE212966. Seurat V5.4.0 was used to analyze gene-cell data matrices for six adjacent non tumor and six PDA samples from 12 patients with no prior treatment. Expression was log normalized and DE genes (cluster markers) were filtered by log2 fold change >1. Dimensionality reduction method UMAP was used to identify distinct clusters. Specific gene markers were plotted on UMAPs and individual clusters on violin plots to compare cell type expression. SingleR, celldex R packages and celltypist were used for cell type marking. First generation immune checkpoint targets that are approved in the clinic and second-generation targets under development were profiled. String was utilized for profiling interaction partners for the markers. Results: CEACAM6 was found to be expressed in many cell clusters in PDA samples and not expressed in adjacent non-cancerous cells. CEACAM6 was present in many cell types in the tumor microenvironment but significantly enriched to epithelial cells. Comparing adjacent cells to PDA, we focused on immune checkpoint markers that were absent or minimum in adjacent cells but were present or relatively higher in PDA cells. PDL1 is scarce in both adjacent and PDA but CTLA4, LAG3, TIGIT were found in abundance in both adjacent and PDA cells, predominantly in T cells and NK cell type clusters. TIM3 was found sparsely but in both tumor and non-tumor cells. LAIR and VSIR were enriched more in adjacent than PDAC cells. CEACAM1 and CD276 (B7-H3) were found to be expressed more in PDA compared to adjacent non tumor cells. Both are found in epithelial cell types and macrophages similar to CEACAM6 cell type expression. CD276, modulates T cell responses and can be targeted by antibody drug conjugates. CD276 interacts with C80 which binds to CTLA4, an inhibitor and CD28, a co-stimulator. CEACAM1, expressed on multiple immune cell types, cell surface immune checkpoint interacts with CEACAM6 in PDA promoting immune suppression. Conclusion: The immune suppressive tumor microenvironment in PDA is complex and deciphering this landscape provides clinical value in developing novel therapeutic interventions. Co-targeting CEACAM6 and B7-H3 (PDA) and CEACAM1 (T-Reg) provides novel therapeutic opportunities in PDA.
利益披露 Disclosure
D. Mahadevan, None.. C. Sun, None.. Y. Chen, None.. A. Al-Khinji, None.. R. Pandey, None.

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