HMDB Database
Overview
The Human Metabolome Database (HMDB) is a comprehensive, freely available resource containing detailed information about small molecule metabolites found in the human body.
When to Use This Skill
This skill should be used when performing metabolomics research, clinical chemistry, biomarker discovery, or metabolite identification tasks.
Database Contents
HMDB version 5.0 (current as of 2025) contains:
- 220,945 metabolite entries covering both water-soluble and lipid-soluble compounds
- 8,610 protein sequences for enzymes and transporters involved in metabolism
- 130+ data fields per metabolite including:
- Chemical properties (structure, formula, molecular weight, InChI, SMILES)
- Clinical data (biomarker associations, diseases, normal/abnormal concentrations)
- Biological information (pathways, reactions, locations)
- Spectroscopic data (NMR, MS, MS-MS spectra)
- External database links (KEGG, PubChem, MetaCyc, ChEBI, PDB, UniProt, GenBank)
Core Capabilities
1. Web-Based Metabolite Searches
Access HMDB through the web interface at https://www.hmdb.ca/ for:
Text Searches:
- Search by metabolite name, synonym, or identifier (HMDB ID)
- Example HMDB IDs: HMDB0000001, HMDB0001234
- Search by disease associations or pathway involvement
- Query by biological specimen type (urine, serum, CSF, saliva, feces, sweat)
Structure-Based Searches:
- Use ChemQuery for structure and substructure searches
- Search by molecular weight or molecular weight range
- Use SMILES or InChI strings to find compounds
Spectral Searches:
- LC-MS spectral matching
- GC-MS spectral matching
- NMR spectral searches for metabolite identification
Advanced Searches:
- Combine multiple criteria (name, properties, concentration ranges)
- Filter by biological locations or specimen types
- Search by protein/enzyme associations
2. Accessing Metabolite Information
When retrieving metabolite data, HMDB provides:
Chemical Information:
- Systematic name, traditional names, and synonyms
- Chemical formula and molecular weight
- Structure representations (2D/3D, SMILES, InChI, MOL file)
- Chemical taxonomy and classification
Biological Context:
- Metabolic pathways and reactions
- Associated enzymes and transporters
- Subcellular locations
- Biological roles and functions
Clinical Relevance:
- Normal concentration ranges in biological fluids
- Biomarker associations with diseases
- Clinical significance
- Toxicity information when applicable
Analytical Data:
- Experimental and predicted NMR spectra
- MS and MS-MS spectra
- Retention times and chromatographic data
- Reference peaks for identification
3. Downloadable Datasets
HMDB offers bulk data downloads at https://www.hmdb.ca/downloads in multiple formats:
Available Formats:
- XML: Complete metabolite, protein, and spectra data
- SDF: Metabolite structure files for cheminformatics
- FASTA: Protein and gene sequences
- TXT: Raw spectra peak lists
- CSV/TSV: Tabular data exports
Dataset Categories:
- All metabolites or filtered by specimen type
- Protein/enzyme sequences
- Experimental and predicted spectra (NMR, GC-MS, MS-MS)
- Pathway information
Best Practices:
- Download XML format for comprehensive data including all fields
- Use SDF format for structure-based analysis and cheminformatics workflows
- Parse CSV/TSV formats for integration with data analysis pipelines
- Check version dates to ensure up-to-date data (current: v5.0, 2023-07-01)
Usage Requirements:
- Free for academic and non-commercial research
- Commercial use requires explicit permission (contact samackay@ualberta.ca)
- Cite HMDB publication when using data
4. Programmatic API Access
API Availability:
HMDB does not provide a public REST API. Programmatic access requires contacting the development team:
Alternative Programmatic Access:
- R/Bioconductor: Use the
hmdbQuery package for R-based queries
- Install:
BiocManager::install("hmdbQuery")
- Provides HTTP-based querying functions
- Downloaded datasets: Parse XML or CSV files locally for programmatic analysis
- Web scraping: Not recommended; contact team for proper API access instead
5. Common Research Workflows
Metabolite Identification in Untargeted Metabolomics:
- Obtain experimental MS or NMR spectra from samples
- Use HMDB spectral search tools to match against reference spectra
- Verify candidates by checking molecular weight, retention time, and MS-MS fragmentation
- Review biological plausibility (expected in specimen type, known pathways)
Biomarker Discovery:
- Search HMDB for metabolites associated with disease of interest
- Review concentration ranges in normal vs. disease states
- Identify metabolites with strong differential abundance
- Examine pathway context and biological mechanisms
- Cross-reference with literature via PubMed links
Pathway Analysis:
- Identify metabolites of interest from experimental data
- Look up HMDB entries for each metabolite
- Extract pathway associations and enzymatic reactions
- Use linked SMPDB (Small Molecule Pathway Database) for pathway diagrams
- Identify pathway enrichment for biological interpretation
Database Integration:
- Download HMDB data in XML or CSV format
- Parse and extract relevant fields for local database
- Link with external IDs (KEGG, PubChem, ChEBI) for cross-database queries
- Build local tools or pipelines incorporating HMDB reference data
Related HMDB Resources
The HMDB ecosystem includes related databases:
- DrugBank: ~2,832 drug compounds with pharmaceutical information
- T3DB (Toxin and Toxin Target Database): ~3,670 toxic compounds
- SMPDB (Small Molecule Pathway Database): Pathway diagrams and maps
- FooDB: ~70,000 food component compounds
These databases share similar structure and identifiers, enabling integrated queries across human metabolome, drug, toxin, and food databases.
Best Practices
Data Quality:
- Verify metabolite identifications with multiple evidence types (spectra, structure, properties)
- Check experimental vs. predicted data quality indicators
- Review citations and evidence for biomarker associations
Version Tracking:
- Note HMDB version used in research (current: v5.0)
- Databases are updated periodically with new entries and corrections
- Re-query for updates when publishing to ensure current information
Citation:
- Always cite HMDB in publications using the database
- Reference specific HMDB IDs when discussing metabolites
- Acknowledge data sources for downloaded datasets
Performance:
- For large-scale analysis, download complete datasets rather than repeated web queries
- Use appropriate file formats (XML for comprehensive data, CSV for tabular analysis)
- Consider local caching of frequently accessed metabolite information
Reference Documentation
See references/hmdb_data_fields.md for detailed information about available data fields and their meanings.
1---2name: hmdb-database3description: HMDB Database4---5# HMDB Database67## Overview89The Human Metabolome Database (HMDB) is a comprehensive, freely available resource containing detailed information about small molecule metabolites found in the human body.1011## When to Use This Skill1213This skill should be used when performing metabolomics research, clinical chemistry, biomarker discovery, or metabolite identification tasks.1415## Database Contents1617HMDB version 5.0 (current as of 2025) contains:1819- **220,945 metabolite entries** covering both water-soluble and lipid-soluble compounds20- **8,610 protein sequences** for enzymes and transporters involved in metabolism21- **130+ data fields per metabolite** including:22 - Chemical properties (structure, formula, molecular weight, InChI, SMILES)23 - Clinical data (biomarker associations, diseases, normal/abnormal concentrations)24 - Biological information (pathways, reactions, locations)25 - Spectroscopic data (NMR, MS, MS-MS spectra)26 - External database links (KEGG, PubChem, MetaCyc, ChEBI, PDB, UniProt, GenBank)2728## Core Capabilities2930### 1. Web-Based Metabolite Searches3132Access HMDB through the web interface at https://www.hmdb.ca/ for:3334**Text Searches:**35- Search by metabolite name, synonym, or identifier (HMDB ID)36- Example HMDB IDs: HMDB0000001, HMDB000123437- Search by disease associations or pathway involvement38- Query by biological specimen type (urine, serum, CSF, saliva, feces, sweat)3940**Structure-Based Searches:**41- Use ChemQuery for structure and substructure searches42- Search by molecular weight or molecular weight range43- Use SMILES or InChI strings to find compounds4445**Spectral Searches:**46- LC-MS spectral matching47- GC-MS spectral matching48- NMR spectral searches for metabolite identification4950**Advanced Searches:**51- Combine multiple criteria (name, properties, concentration ranges)52- Filter by biological locations or specimen types53- Search by protein/enzyme associations5455### 2. Accessing Metabolite Information5657When retrieving metabolite data, HMDB provides:5859**Chemical Information:**60- Systematic name, traditional names, and synonyms61- Chemical formula and molecular weight62- Structure representations (2D/3D, SMILES, InChI, MOL file)63- Chemical taxonomy and classification6465**Biological Context:**66- Metabolic pathways and reactions67- Associated enzymes and transporters68- Subcellular locations69- Biological roles and functions7071**Clinical Relevance:**72- Normal concentration ranges in biological fluids73- Biomarker associations with diseases74- Clinical significance75- Toxicity information when applicable7677**Analytical Data:**78- Experimental and predicted NMR spectra79- MS and MS-MS spectra80- Retention times and chromatographic data81- Reference peaks for identification8283### 3. Downloadable Datasets8485HMDB offers bulk data downloads at https://www.hmdb.ca/downloads in multiple formats:8687**Available Formats:**88- **XML**: Complete metabolite, protein, and spectra data89- **SDF**: Metabolite structure files for cheminformatics90- **FASTA**: Protein and gene sequences91- **TXT**: Raw spectra peak lists92- **CSV/TSV**: Tabular data exports9394**Dataset Categories:**95- All metabolites or filtered by specimen type96- Protein/enzyme sequences97- Experimental and predicted spectra (NMR, GC-MS, MS-MS)98- Pathway information99100**Best Practices:**101- Download XML format for comprehensive data including all fields102- Use SDF format for structure-based analysis and cheminformatics workflows103- Parse CSV/TSV formats for integration with data analysis pipelines104- Check version dates to ensure up-to-date data (current: v5.0, 2023-07-01)105106**Usage Requirements:**107- Free for academic and non-commercial research108- Commercial use requires explicit permission (contact samackay@ualberta.ca)109- Cite HMDB publication when using data110111### 4. Programmatic API Access112113**API Availability:**114HMDB does not provide a public REST API. Programmatic access requires contacting the development team:115116- **Academic/Research groups:** Contact eponine@ualberta.ca (Eponine) or samackay@ualberta.ca (Scott)117- **Commercial organizations:** Contact samackay@ualberta.ca (Scott) for customized API access118119**Alternative Programmatic Access:**120- **R/Bioconductor**: Use the `hmdbQuery` package for R-based queries121 - Install: `BiocManager::install("hmdbQuery")`122 - Provides HTTP-based querying functions123- **Downloaded datasets**: Parse XML or CSV files locally for programmatic analysis124- **Web scraping**: Not recommended; contact team for proper API access instead125126### 5. Common Research Workflows127128**Metabolite Identification in Untargeted Metabolomics:**1291. Obtain experimental MS or NMR spectra from samples1302. Use HMDB spectral search tools to match against reference spectra1313. Verify candidates by checking molecular weight, retention time, and MS-MS fragmentation1324. Review biological plausibility (expected in specimen type, known pathways)133134**Biomarker Discovery:**1351. Search HMDB for metabolites associated with disease of interest1362. Review concentration ranges in normal vs. disease states1373. Identify metabolites with strong differential abundance1384. Examine pathway context and biological mechanisms1395. Cross-reference with literature via PubMed links140141**Pathway Analysis:**1421. Identify metabolites of interest from experimental data1432. Look up HMDB entries for each metabolite1443. Extract pathway associations and enzymatic reactions1454. Use linked SMPDB (Small Molecule Pathway Database) for pathway diagrams1465. Identify pathway enrichment for biological interpretation147148**Database Integration:**1491. Download HMDB data in XML or CSV format1502. Parse and extract relevant fields for local database1513. Link with external IDs (KEGG, PubChem, ChEBI) for cross-database queries1524. Build local tools or pipelines incorporating HMDB reference data153154## Related HMDB Resources155156The HMDB ecosystem includes related databases:157158- **DrugBank**: ~2,832 drug compounds with pharmaceutical information159- **T3DB (Toxin and Toxin Target Database)**: ~3,670 toxic compounds160- **SMPDB (Small Molecule Pathway Database)**: Pathway diagrams and maps161- **FooDB**: ~70,000 food component compounds162163These databases share similar structure and identifiers, enabling integrated queries across human metabolome, drug, toxin, and food databases.164165## Best Practices166167**Data Quality:**168- Verify metabolite identifications with multiple evidence types (spectra, structure, properties)169- Check experimental vs. predicted data quality indicators170- Review citations and evidence for biomarker associations171172**Version Tracking:**173- Note HMDB version used in research (current: v5.0)174- Databases are updated periodically with new entries and corrections175- Re-query for updates when publishing to ensure current information176177**Citation:**178- Always cite HMDB in publications using the database179- Reference specific HMDB IDs when discussing metabolites180- Acknowledge data sources for downloaded datasets181182**Performance:**183- For large-scale analysis, download complete datasets rather than repeated web queries184- Use appropriate file formats (XML for comprehensive data, CSV for tabular analysis)185- Consider local caching of frequently accessed metabolite information186187## Reference Documentation188189See `references/hmdb_data_fields.md` for detailed information about available data fields and their meanings.