A Hiplot‐based web service for cold atmospheric plasma high‐throughput data integration and analysis on breast cancer

Abstract Incremental evidence on the effect of cold atmospheric plasma (CAP) in specifically killing transformed cells and advances in sequencing technologies at multiple omics have led to the demand of in‐depth exploration on the mechanisms of action driving the potency of CAP against cancer cells...

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Main Authors: Xiaofeng Dai, Mingjie Wang, Yang Liu
Format: Article
Language:English
Published: Wiley 2025-08-01
Series:iMeta
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Online Access:https://doi.org/10.1002/imt2.70045
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author Xiaofeng Dai
Mingjie Wang
Yang Liu
author_facet Xiaofeng Dai
Mingjie Wang
Yang Liu
author_sort Xiaofeng Dai
collection DOAJ
description Abstract Incremental evidence on the effect of cold atmospheric plasma (CAP) in specifically killing transformed cells and advances in sequencing technologies at multiple omics have led to the demand of in‐depth exploration on the mechanisms of action driving the potency of CAP against cancer cells at the molecular level. However, high‐throughput data detailing the effect of CAP on cancer cells is lacking, let alone the corresponding database and analytical tool. Here, we sequenced the whole transcriptome, proteome, phosphorylome, acetylome, and lactylome of transformed cells in response to CAP using breast cancer cells as the disease model; and advanced our previously developed Hiplot platform by establishing a focus‐driven tumor‐specific module, namely CAP medicine in breast cancer (CAPmed‐BC) (https://capbc.hiplot.com.cn). CAPmed‐BC is the first multi‐omics data resource in plasma medicine for analyzing the treatment response of breast cancer cells to CAP. It can analyze each type of omics data regarding differentially expressed biomarkers, expression landscape, gene ontology analysis, pathway interpretation, gene set enrichment analysis, and protein‐protein interaction network. It can also interrogate the dynamic fluctuation, functional activity, and metabolic vulnerability of cancer cells in response to CAP by combinatorially analyzing omics at multiple carefully defined dimensions. We also built in a visualization module to support users for producing personalized graphs via adjusting parameters. We believe that CAPmed‐BC will become a valuable resource for characterizing the outcome of CAP on breast cancers at the omics and molecular levels, and make considerable contributions to both plasma medicine and oncology.
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spelling doaj-art-5da16822cbf64eeb8c189e73b11c097a2025-08-22T08:13:03ZengWileyiMeta2770-596X2025-08-0144n/an/a10.1002/imt2.70045A Hiplot‐based web service for cold atmospheric plasma high‐throughput data integration and analysis on breast cancerXiaofeng Dai0Mingjie Wang1Yang Liu2National Local Joint Engineering Research Center for Precision Surgery & Regenerative Medicine, Shaanxi Provincial Center for Regenerative Medicine and Surgical Engineering The First Affiliated Hospital of Xi'an Jiaotong University, Xi'an Jiaotong University Xi'an ChinaDepartment of Gastroenterology, Ruijin Hospital Shanghai Jiaotong University, School of Medicine Shanghai ChinaNational Local Joint Engineering Research Center for Precision Surgery & Regenerative Medicine, Shaanxi Provincial Center for Regenerative Medicine and Surgical Engineering The First Affiliated Hospital of Xi'an Jiaotong University, Xi'an Jiaotong University Xi'an ChinaAbstract Incremental evidence on the effect of cold atmospheric plasma (CAP) in specifically killing transformed cells and advances in sequencing technologies at multiple omics have led to the demand of in‐depth exploration on the mechanisms of action driving the potency of CAP against cancer cells at the molecular level. However, high‐throughput data detailing the effect of CAP on cancer cells is lacking, let alone the corresponding database and analytical tool. Here, we sequenced the whole transcriptome, proteome, phosphorylome, acetylome, and lactylome of transformed cells in response to CAP using breast cancer cells as the disease model; and advanced our previously developed Hiplot platform by establishing a focus‐driven tumor‐specific module, namely CAP medicine in breast cancer (CAPmed‐BC) (https://capbc.hiplot.com.cn). CAPmed‐BC is the first multi‐omics data resource in plasma medicine for analyzing the treatment response of breast cancer cells to CAP. It can analyze each type of omics data regarding differentially expressed biomarkers, expression landscape, gene ontology analysis, pathway interpretation, gene set enrichment analysis, and protein‐protein interaction network. It can also interrogate the dynamic fluctuation, functional activity, and metabolic vulnerability of cancer cells in response to CAP by combinatorially analyzing omics at multiple carefully defined dimensions. We also built in a visualization module to support users for producing personalized graphs via adjusting parameters. We believe that CAPmed‐BC will become a valuable resource for characterizing the outcome of CAP on breast cancers at the omics and molecular levels, and make considerable contributions to both plasma medicine and oncology.https://doi.org/10.1002/imt2.70045acetylomebreast cancercold atmospheric plasmaHiplotphosphorylomeproteome
spellingShingle Xiaofeng Dai
Mingjie Wang
Yang Liu
A Hiplot‐based web service for cold atmospheric plasma high‐throughput data integration and analysis on breast cancer
iMeta
acetylome
breast cancer
cold atmospheric plasma
Hiplot
phosphorylome
proteome
title A Hiplot‐based web service for cold atmospheric plasma high‐throughput data integration and analysis on breast cancer
title_full A Hiplot‐based web service for cold atmospheric plasma high‐throughput data integration and analysis on breast cancer
title_fullStr A Hiplot‐based web service for cold atmospheric plasma high‐throughput data integration and analysis on breast cancer
title_full_unstemmed A Hiplot‐based web service for cold atmospheric plasma high‐throughput data integration and analysis on breast cancer
title_short A Hiplot‐based web service for cold atmospheric plasma high‐throughput data integration and analysis on breast cancer
title_sort hiplot based web service for cold atmospheric plasma high throughput data integration and analysis on breast cancer
topic acetylome
breast cancer
cold atmospheric plasma
Hiplot
phosphorylome
proteome
url https://doi.org/10.1002/imt2.70045
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