Cargando…

HFIP: an integrated multi-omics data and knowledge platform for the precision medicine of heart failure

As the terminal clinical phenotype of almost all types of cardiovascular diseases, heart failure (HF) is a complex and heterogeneous syndrome leading to considerable morbidity and mortality. Existing HF-related omics studies mainly focus on case/control comparisons, small cohorts of special subtypes...

Descripción completa

Detalles Bibliográficos
Autores principales: Wu, Jing, Zhao, Min, Li, Tao, Sun, Jinxiu, Chen, Qi, Yin, Chengliang, Jia, Zhilong, Zhao, Chenghui, Lin, Gui, Ni, Yuan, Xie, Guotong, Shi, Jinlong, He, Kunlun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8607296/
https://www.ncbi.nlm.nih.gov/pubmed/34791105
http://dx.doi.org/10.1093/database/baab076
_version_ 1784602538312466432
author Wu, Jing
Zhao, Min
Li, Tao
Sun, Jinxiu
Chen, Qi
Yin, Chengliang
Jia, Zhilong
Zhao, Chenghui
Lin, Gui
Ni, Yuan
Xie, Guotong
Shi, Jinlong
He, Kunlun
author_facet Wu, Jing
Zhao, Min
Li, Tao
Sun, Jinxiu
Chen, Qi
Yin, Chengliang
Jia, Zhilong
Zhao, Chenghui
Lin, Gui
Ni, Yuan
Xie, Guotong
Shi, Jinlong
He, Kunlun
author_sort Wu, Jing
collection PubMed
description As the terminal clinical phenotype of almost all types of cardiovascular diseases, heart failure (HF) is a complex and heterogeneous syndrome leading to considerable morbidity and mortality. Existing HF-related omics studies mainly focus on case/control comparisons, small cohorts of special subtypes, etc., and a large amount of multi-omics data and knowledge have been generated. However, it is difficult for researchers to obtain biological and clinical insights from these scattered data and knowledge. In this paper, we built the Heart Failure Integrated Platform (HFIP) for data exploration, fusion analysis and visualization by collecting and curating existing multi-omics data and knowledge from various public sources and also provided an auto-updating mechanism for future integration. The developed HFIP contained 253 datasets (7842 samples), multiple analysis flow, and 14 independent tools. In addition, based on the integration of existing databases and literature, a knowledge base for HF was constructed with a scoring system for evaluating the relationship between molecular signals and HF. The knowledge base includes 1956 genes and annotation information. The literature mining module was developed to assist the researcher to overview the hotspots and contexts in basic and clinical research. HFIP can be used as a data-driven and knowledge-guided platform for the basic and clinical research of HF. Database URL: http://heartfailure.medical-bigdata.com
format Online
Article
Text
id pubmed-8607296
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-86072962021-11-23 HFIP: an integrated multi-omics data and knowledge platform for the precision medicine of heart failure Wu, Jing Zhao, Min Li, Tao Sun, Jinxiu Chen, Qi Yin, Chengliang Jia, Zhilong Zhao, Chenghui Lin, Gui Ni, Yuan Xie, Guotong Shi, Jinlong He, Kunlun Database (Oxford) Original Article As the terminal clinical phenotype of almost all types of cardiovascular diseases, heart failure (HF) is a complex and heterogeneous syndrome leading to considerable morbidity and mortality. Existing HF-related omics studies mainly focus on case/control comparisons, small cohorts of special subtypes, etc., and a large amount of multi-omics data and knowledge have been generated. However, it is difficult for researchers to obtain biological and clinical insights from these scattered data and knowledge. In this paper, we built the Heart Failure Integrated Platform (HFIP) for data exploration, fusion analysis and visualization by collecting and curating existing multi-omics data and knowledge from various public sources and also provided an auto-updating mechanism for future integration. The developed HFIP contained 253 datasets (7842 samples), multiple analysis flow, and 14 independent tools. In addition, based on the integration of existing databases and literature, a knowledge base for HF was constructed with a scoring system for evaluating the relationship between molecular signals and HF. The knowledge base includes 1956 genes and annotation information. The literature mining module was developed to assist the researcher to overview the hotspots and contexts in basic and clinical research. HFIP can be used as a data-driven and knowledge-guided platform for the basic and clinical research of HF. Database URL: http://heartfailure.medical-bigdata.com Oxford University Press 2021-11-13 /pmc/articles/PMC8607296/ /pubmed/34791105 http://dx.doi.org/10.1093/database/baab076 Text en © The Author(s) 2021. Published by Oxford University Press. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Wu, Jing
Zhao, Min
Li, Tao
Sun, Jinxiu
Chen, Qi
Yin, Chengliang
Jia, Zhilong
Zhao, Chenghui
Lin, Gui
Ni, Yuan
Xie, Guotong
Shi, Jinlong
He, Kunlun
HFIP: an integrated multi-omics data and knowledge platform for the precision medicine of heart failure
title HFIP: an integrated multi-omics data and knowledge platform for the precision medicine of heart failure
title_full HFIP: an integrated multi-omics data and knowledge platform for the precision medicine of heart failure
title_fullStr HFIP: an integrated multi-omics data and knowledge platform for the precision medicine of heart failure
title_full_unstemmed HFIP: an integrated multi-omics data and knowledge platform for the precision medicine of heart failure
title_short HFIP: an integrated multi-omics data and knowledge platform for the precision medicine of heart failure
title_sort hfip: an integrated multi-omics data and knowledge platform for the precision medicine of heart failure
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8607296/
https://www.ncbi.nlm.nih.gov/pubmed/34791105
http://dx.doi.org/10.1093/database/baab076
work_keys_str_mv AT wujing hfipanintegratedmultiomicsdataandknowledgeplatformfortheprecisionmedicineofheartfailure
AT zhaomin hfipanintegratedmultiomicsdataandknowledgeplatformfortheprecisionmedicineofheartfailure
AT litao hfipanintegratedmultiomicsdataandknowledgeplatformfortheprecisionmedicineofheartfailure
AT sunjinxiu hfipanintegratedmultiomicsdataandknowledgeplatformfortheprecisionmedicineofheartfailure
AT chenqi hfipanintegratedmultiomicsdataandknowledgeplatformfortheprecisionmedicineofheartfailure
AT yinchengliang hfipanintegratedmultiomicsdataandknowledgeplatformfortheprecisionmedicineofheartfailure
AT jiazhilong hfipanintegratedmultiomicsdataandknowledgeplatformfortheprecisionmedicineofheartfailure
AT zhaochenghui hfipanintegratedmultiomicsdataandknowledgeplatformfortheprecisionmedicineofheartfailure
AT lingui hfipanintegratedmultiomicsdataandknowledgeplatformfortheprecisionmedicineofheartfailure
AT niyuan hfipanintegratedmultiomicsdataandknowledgeplatformfortheprecisionmedicineofheartfailure
AT xieguotong hfipanintegratedmultiomicsdataandknowledgeplatformfortheprecisionmedicineofheartfailure
AT shijinlong hfipanintegratedmultiomicsdataandknowledgeplatformfortheprecisionmedicineofheartfailure
AT hekunlun hfipanintegratedmultiomicsdataandknowledgeplatformfortheprecisionmedicineofheartfailure