scientific-toxicology-env

Integrate CTD toxicology data to reveal chemical-gene-disease links and screening patterns.

3|1|Updated Feb 11, 2026
One-click install
npx skills add https://github.com/nahisaho/satori --skill scientific-toxicology-env
Or copy as Structured Prompt for Agent▼
Please help me install this Agent Skill.
Skill: scientific-toxicology-env
Source: https://github.com/nahisaho/satori/tree/main/src/.github/skills/scientific-toxicology-env
Command: npx skills add https://github.com/nahisaho/satori --skill scientific-toxicology-env

SYSTEM DOCUMENTATION & REQUIREMENTS

What problem does it solve?

Integrates CTD-based toxicology data to reveal chemical-gene-disease links and high-throughput screening patterns.

Core Features & Use Cases

  • Chemical-gene-disease queries: CTD-based searches tying chemicals to genes and diseases.
  • High-throughput toxicology data: Access Tox21/ToxCast assays and readouts for mechanistic insights.
  • Risk assessment references: Integrate IRIS risk values and T3DB toxin data for health impact evaluation.
  • Pipeline and enrichment: Supports pathway enrichment (e.g., KEGG via Enrichr) and data fusion for reproducible analyses.

Quick Start

Run a CTD-driven toxicology workflow to fetch gene interactions and disease associations for a chemical.

Frequently Asked Questions about scientific-toxicology-env

High-intent search queries and answers about installing and using this skill.

FAQPage Schema
How do I integrate CTD toxicology data for chemical-gene-disease pathway analysis?▼

To integrate CTD toxicology data for pathway analysis, run a CTD-driven workflow to fetch chemical-gene interactions and disease associations, then apply pathway enrichment using KEGG via Enrichr. This reveals chemical-gene-disease links and yields reproducible outputs.

What's the best way to query Tox21 and ToxCast high-throughput assay readouts for risk screening?▼

To query Tox21 and ToxCast high-throughput assay readouts for risk screening, use the pipeline's modular data retrieval to access assay results. This provides mechanistic insights by fusing high-throughput toxicology data with CTD chemical-gene-disease links.

Can I combine IRIS risk values and T3DB toxin data with PubChem chemical safety assessments?▼

Yes, you can combine IRIS risk values and T3DB toxin data with PubChem for chemical safety assessments. The pipeline supports data fusion across CTD, Tox21/ToxCast, IRIS, T3DB, and PubChem to evaluate health impacts and perform risk screening.

Does this toxicology data pipeline require specific Python templates for reproducible analyses?▼

This toxicology data pipeline uses Python templates to ensure reproducible analyses and outputs. These templates support modular data retrieval, enrichment, and data fusion operations across the integrated CTD, Tox21/ToxCast, IRIS, T3DB, and PubChem databases.

How does CTD data fusion reveal chemical-gene-disease links and high-throughput screening patterns?▼

CTD data fusion reveals chemical-gene-disease links and high-throughput screening patterns by integrating CTD-based toxicology data with Tox21/ToxCast assays. This process ties chemicals to genes and diseases, providing mechanistic insights for risk assessment.

What are the limitations of using CTD-based toxicology data for pathway enrichment?▼

A limitation of using CTD-based toxicology data for pathway enrichment is the dependency on external databases like KEGG via Enrichr. While data fusion across CTD, Tox21/ToxCast, IRIS, T3DB, and PubChem is supported, output reproducibility relies on modular Python templates.