ICBcomb: a comprehensive expression database for immune checkpoint blockade combination therapy

Author:

Xia Yun12ORCID,Gao Yan12,Liu Ming-Yu12,Li Lei12,Pan Wen12,Mao Ling-Zi12,Yang Zhongzheng3,Yang Mei12,Guo An-Yuan1245

Affiliation:

1. Hubei Bioinformatics and Molecular Imaging Key Laboratory , College of Life Science and Technology, , Wuhan, 430074, China

2. Huazhong University of Science and Technology , College of Life Science and Technology, , Wuhan, 430074, China

3. Wuhan Biobank Co., Ltd., Wuhan Institute of Biotechnology , Wuhan, 430000, China

4. Department of Thoracic Surgery , West China Biomedical Big Data Center, Med-X Center for Informatics, , Chengdu, 610041, China

5. West China Hospital, Sichuan University , West China Biomedical Big Data Center, Med-X Center for Informatics, , Chengdu, 610041, China

Abstract

Abstract The success of immune checkpoint blockade (ICB) promotes the immunotherapy to be a new pillar in cancer treatment. However, the low response rate of the ICB therapy limits its application. To increase the response rate and enhance efficacy, the ICB combination therapy has emerged and its clinical trials are increasing. Nevertheless, the gene expression profile and its pattern of ICB combination were not comprehensively studied, which limits the understanding of the ICB combination therapy and the identification of new drugs. Here, we constructed ICBcomb (http://bioinfo.life.hust.edu.cn/ICBcomb/), a comprehensive database, by analyzing the human and mouse expression data of the ICB combination therapy and comparing them between groups treated with ICB, other drugs or their combinations. ICBcomb contains 1399 samples across 29 cancer types involving 52 drugs. It provides a user-friendly web interface for demonstrating the results of the available comparisons in the ICB combination therapy datasets with five functional modules: [1, 2] the ‘Dataset/Disease’ modules for browsing the expression, enrichment and comparison results in each dataset or disease; [3] the ‘Gene’ module for inputting a gene symbol and displaying its expression and comparison results across datasets/diseases; [4] the ‘Gene Set’ module for GSVA/GSEA enrichment analysis on the built-in gene sets and the user-input gene sets in different comparisons; [5] the ‘Immune Cell’ module for immune cell infiltration comparison between different groups by immune cell abundance analysis. The ICBcomb database provides the first resource for gene expression profile and comparison in ICB combination therapy, which may provide clues for discovering the mechanism of effective combination strategies and new combinatory drugs.

Funder

Major Scientific and Technological Project of Hubei Province

National Natural Science Foundation of China

Publisher

Oxford University Press (OUP)

Subject

Molecular Biology,Information Systems

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