Chitin in your home: a safety profile
Low risk for your homeNot medical or professional safety advice, and not a substitute for a qualified clinician — consult one. Full disclaimer →
(Your Household-specific data is limited; this page draws from human adult context.) Chitin is a linear polysaccharide of beta-(1->4)-linked N-acetylglucosamine, the second most abundant natural polymer after cellulose. It is a structural component of fungal cell walls and arthropod exoskeletons (insects, crustaceans, arachnids). In the context of fungal exposure, chitin is a potent modulator of innate immunity: it is recognized by multiple pattern recognition receptors including TLR2, Dectin-1, and mannose receptor, and activates the NLRP3 inflammasome. Chitin particle size determines immune response: large chitin fragments (>70 um) are inert; intermediate fragments (40-70 um) induce alternative macrophage activation (anti-inflammatory); small fragments (<40 um, typical of inhaled fungal debris) trigger NLRP3-dependent IL-1beta and IL-18 release, promoting Th2 inflammation and eosinophilia. This size-dependent immune activation is relevant to asthma pathogenesis — chitin exposure is associated with airway eosinophilia and mucus production. Chitinase enzymes (AMCase, chitotriosidase) are elevated in asthma and serve as biomarkers. Occupational exposure: shellfish processing workers show increased respiratory symptoms. Dietary chitin from mushrooms is generally well-tolerated and may have prebiotic properties.
What is chitin?
- CAS number
- 1398-61-4
- Molecular formula
- (C8H13NO5)n
- Molecular weight
- variable (polymer) g/mol
- SMILES
- CC(=O)NC1C(C(C(OC1O)CO)O)O
- PubChem CID
- 6857375
Risk for your household
Low riskChitin is a linear polysaccharide of beta-(1->4)-linked N-acetylglucosamine, the second most abundant natural polymer after cellulose. It is a structural component of fungal cell walls and arthropod exoskeletons (insects, crustaceans, arachnids). In the context of fungal exposure, chitin is a potent modulator of innate immunity: it is recognized by multiple pattern recognition receptors including TLR2, Dectin-1, and mannose receptor, and activates the NLRP3 inflammasome. Chitin particle size determines immune response: large chitin fragments (>70 um) are inert; intermediate fragments (40-70 um) induce alternative macrophage activation (anti-inflammatory); small fragments (<40 um, typical of inhaled fungal debris) trigger NLRP3-dependent IL-1beta and IL-18 release, promoting Th2 inflammation and eosinophilia. This size-dependent immune activation is relevant to asthma pathogenesis — chitin exposure is associated with airway eosinophilia and mucus production. Chitinase enzymes (AMCase, chitotriosidase) are elevated in asthma and serve as biomarkers. Occupational exposure: shellfish processing workers show increased respiratory symptoms. Dietary chitin from mushrooms is generally well-tolerated and may have prebiotic properties.
Regulatory consensus
No regulatory classifications on file for Chitin at this time.
No regulatory classifications on file for this compound.
Where your home encounter chitin
- Biological — Fungal cell walls, Insect exoskeletons, Crustacean shells
- Indoor Environment — House dust (fungal and insect debris)
- Food — Mushrooms, Shellfish, Cricket flour
Frequently asked questions
What products contain chitin?
Chitin appears in: Fungal cell walls (Biological); Insect exoskeletons (Biological); House dust (fungal and insect debris) (Indoor environment); Mushrooms (Food); Shellfish (Food).
See Chitin in the home app
Look up products containing chitin, compare to alternatives, and explore the full data record.
Open in home View raw API dataSources (2)
- PubChem (2026) — database
- ALETHEIA fungi compound batch (2026) — batch_creation
Reference data, not professional advice. Aggregates publicly available regulatory and scientific data; not a substitute for medical, legal, or regulatory advice. Why we built ALETHEIA →