Multi-omics profiling reveals distinct microenvironment characterization of endometrial cancer

Endometrial cancer is a heterogeneous disease with distinct molecular characteristics, however, the current clinical trials in immunotherapies have reported only a 13% response rate in endometrial cancer. In this study, we aim to estimate the relative abundance of immune cells infiltrating into the...

Full description

Bibliographic Details
Main Authors: Yixuan Cai, Yue Chang, Yun Liu
Format: Article
Language:English
Published: Elsevier 2019-10-01
Series:Biomedicine & Pharmacotherapy
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S0753332219326344
id doaj-0bf54947a75448c2849d4a0c7f9c942d
record_format Article
spelling doaj-0bf54947a75448c2849d4a0c7f9c942d2021-05-21T04:17:54ZengElsevierBiomedicine & Pharmacotherapy0753-33222019-10-01118Multi-omics profiling reveals distinct microenvironment characterization of endometrial cancerYixuan Cai0Yue Chang1Yun Liu2Department of Obstetrics and Gynecology, Beijing Friendship Hospital Affiliated to Capital Medical University, Beijing, ChinaDepartment of Obstetrics and Gynecology, Beijing Friendship Hospital Affiliated to Capital Medical University, Beijing, ChinaCorresponding author at: Department of Obstetrics and Gynecology, Beijing Friendship Hospital Affiliated to Capital Medical University, No. 95, Yong’an Road, Beijing, 100050, China.; Department of Obstetrics and Gynecology, Beijing Friendship Hospital Affiliated to Capital Medical University, Beijing, ChinaEndometrial cancer is a heterogeneous disease with distinct molecular characteristics, however, the current clinical trials in immunotherapies have reported only a 13% response rate in endometrial cancer. In this study, we aim to estimate the relative abundance of immune cells infiltrating into the tumor tissues. The samples were clustered based on the immune cell abundance. Most of cluster-specifically mutated genes were detected in clusters I and II, while the copy number alterations were specifically detected in cluster III. Overrepresentation enrichment analysis (ORA) of the genes specifically upregulated in a specific cluster revealed that the immune-related pathways were enriched by the genes in cluster I. Moreover, immune checkpoint proteins and immune co-stimulators were also observed to be highly expressed in cluster I. In addition, we also built a multivariable Cox regression model based on the immune checkpoint genes and co-stimulators. The high-risk and low-risk groups stratified by the risk scores of the Cox model exhibited significant prognostic difference in both training and validation datasets. In summary, the systematic analysis greatly improves our understanding of the immunophenotype of endometrial cancer and its association with biomarkers and prognosis.http://www.sciencedirect.com/science/article/pii/S0753332219326344Endometrial cancerImmunotherapiesImmune cell abundanceImmune checkpoint proteinsImmune co-stimulators
collection DOAJ
language English
format Article
sources DOAJ
author Yixuan Cai
Yue Chang
Yun Liu
spellingShingle Yixuan Cai
Yue Chang
Yun Liu
Multi-omics profiling reveals distinct microenvironment characterization of endometrial cancer
Biomedicine & Pharmacotherapy
Endometrial cancer
Immunotherapies
Immune cell abundance
Immune checkpoint proteins
Immune co-stimulators
author_facet Yixuan Cai
Yue Chang
Yun Liu
author_sort Yixuan Cai
title Multi-omics profiling reveals distinct microenvironment characterization of endometrial cancer
title_short Multi-omics profiling reveals distinct microenvironment characterization of endometrial cancer
title_full Multi-omics profiling reveals distinct microenvironment characterization of endometrial cancer
title_fullStr Multi-omics profiling reveals distinct microenvironment characterization of endometrial cancer
title_full_unstemmed Multi-omics profiling reveals distinct microenvironment characterization of endometrial cancer
title_sort multi-omics profiling reveals distinct microenvironment characterization of endometrial cancer
publisher Elsevier
series Biomedicine & Pharmacotherapy
issn 0753-3322
publishDate 2019-10-01
description Endometrial cancer is a heterogeneous disease with distinct molecular characteristics, however, the current clinical trials in immunotherapies have reported only a 13% response rate in endometrial cancer. In this study, we aim to estimate the relative abundance of immune cells infiltrating into the tumor tissues. The samples were clustered based on the immune cell abundance. Most of cluster-specifically mutated genes were detected in clusters I and II, while the copy number alterations were specifically detected in cluster III. Overrepresentation enrichment analysis (ORA) of the genes specifically upregulated in a specific cluster revealed that the immune-related pathways were enriched by the genes in cluster I. Moreover, immune checkpoint proteins and immune co-stimulators were also observed to be highly expressed in cluster I. In addition, we also built a multivariable Cox regression model based on the immune checkpoint genes and co-stimulators. The high-risk and low-risk groups stratified by the risk scores of the Cox model exhibited significant prognostic difference in both training and validation datasets. In summary, the systematic analysis greatly improves our understanding of the immunophenotype of endometrial cancer and its association with biomarkers and prognosis.
topic Endometrial cancer
Immunotherapies
Immune cell abundance
Immune checkpoint proteins
Immune co-stimulators
url http://www.sciencedirect.com/science/article/pii/S0753332219326344
work_keys_str_mv AT yixuancai multiomicsprofilingrevealsdistinctmicroenvironmentcharacterizationofendometrialcancer
AT yuechang multiomicsprofilingrevealsdistinctmicroenvironmentcharacterizationofendometrialcancer
AT yunliu multiomicsprofilingrevealsdistinctmicroenvironmentcharacterizationofendometrialcancer
_version_ 1721432828495790080