- Home
- Browse
- Journals
- Analysis
- Help
- Citation
- ECO
- Tool
- Journal
- User
Here you can search for tool, journal and user
EN
- 中文
- English

contact us

MitoTox
MitoTox: a comprehensive mitochondrial toxicity database
ID:51215Uploader:BioTreasury
2022.01.19
7
Collect
Collect
Like
Like
DetailComments (0)
Abstract
Background: Mitochondria play essential roles in regulating cellular functions. Some drug treatments and molecular interventions have been reported to have off-target effects damaging mitochondria and causing severe side effects. The development of a database for the management of mitochondrial toxicity-related molecules and their targets is important for further analyses. Results: To correlate chemical, biological and mechanistic information on clinically relevant mitochondria-related toxicity, a comprehensive mitochondrial toxicity database (MitoTox) was developed. MitoTox is an electronic repository that integrates comprehensive information about mitochondria-related toxins and their targets. Information and data related to mitochondrial toxicity originate from various sources, including scientific journals and other electronic databases. These resources were manually verified and extracted into MitoTox. The database currently contains over 1400 small-molecule compounds, 870 mitochondrial targets, and more than 4100 mitochondrial toxin-target associations. Each MitoTox data record contains over 30 fields, including biochemical properties, therapeutic classification, target proteins, toxicological data, mechanistic information, clinical side effects, and references. Conclusions: MitoTox provides a fully searchable database with links to references and other databases. Potential applications of MitoTox include toxicity classification, prediction, reference and education. MitoTox is available online at http://www.mitotox.org .
Keywords
Database; Mitochondria; Mitochondrial toxicity; Toxin-target association
Screenshot

Publication
MitoTox: a comprehensive mitochondrial toxicity database
Yu-Te Lin,Ko-Hong Lin,Chi-Jung Huang,An-Chi WeiBMC Bioinformatics. 2021
Cited by 39 articles
Time to Change: A Systems Pharmacology Approach to Disentangle Mechanisms of Drug-Induced Mitochondrial Toxicity
Charlotte A. Hoogstraten, Jonathan J. Lyon, Jan A.M. Smeitink, Frans G.M. Russel, Tom J.J. Schirris, John Schuetz Pharmacological Reviews. 2023
DEBBIE: The Open Access Database of Experimental Scaffolds and Biomaterials Built Using an Automated Text Mining Pipeline
Javier O. Corvi, Austin McKitrick, José M. Fernández, Carla V. Fuenteslópez, Josep L. Gelpí, Maria‐Pau Ginebra, Salvador Capella‐Gutierrez, Osnat Hakimi Advanced Healthcare Materials. 2023
Ruthenium(II)–Tris-pyrazolylmethane Complexes Inhibit Cancer Cell Growth by Disrupting Mitochondrial Calcium Homeostasis
Jakub Cervinka, Alberto Gobbo, Lorenzo Biancalana, Lenka Markova, Vojtech Novohradsky, Massimo Guelfi, Stefano Zacchini, Jana Kasparkova, Viktor Brabec, Fabio Marchetti Journal of Medicinal Chemistry. 2022
Assessing Drug-Induced Mitochondrial Toxicity in Cardiomyocytes: Implications for Preclinical Cardiac Safety Evaluation
Xiaoli Tang, Zengwu Wang, Shengshou Hu, Bingying Zhou Pharmaceutics. 2022
Advancing predictive toxicology: overcoming hurdles and shaping the future
Sara Masarone, Katie V. Beckwith, Matthew R. Wilkinson, Shreshth Tuli, Amy Lane, Sam Windsor, Jordan Lane, Layla Hosseini-Gerami Digital Discovery. 2025
Impact Factor:7.1
Aggregate score
Citations
Altmetric
Ratings
No ratings
Check update
Tag
Genomics
Proteins & Proteomes
Genes & Genomes
Molecular interactions, pathways and networks
Operating system
LINUX
LINUX
WINDOWS
WINDOWS
MAC
MAC
Author
The author has not claimed it yet