Identification

Namelanolin hydrous
CAS Number8020-84-6
FDA UNIISearch
Molecular Formulaunspecified

Regulatory

FDA Mainterm (SATF)8020-84-6 ; LANOLIN
FDA RegulationFDA PART 172 -- FOOD ADDITIVES PERMITTED FOR DIRECT ADDITION TO FOOD FOR HUMAN CONSUMPTION

Physical Properties

Food Chemicals Codex Listed No

Organoleptic Properties

Odor Strength low
Odor Description at 100.00 %.

Safety Information

Oral/Parenteral ToxicityNot determined
Dermal ToxicityNot determined
Inhalation ToxicityNot determined

GHS Classification

['GHS Classification in accordance with 29 CFR 1910 (OSHA HCS)', 'GHS Label elements, including precautionary statements']

Safety in Use

Categoryindirect food additives: adhesives and components of coatings
Recommendation for lanolin hydrous usage levels up tonot for fragrance use.
Recommendation for lanolin hydrous flavor usage levels up tonot for flavor use.

ECSA Chemicals

Human Chemistry

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Potential Uses

None Found

Natural Occurrence

natural

Synonyms

degras neutral wool grease fatty acid wool wax PubMed: Responses to betaine and inorganic sulphur of sheep in growth performance and fibre growth. PubMed: Microencapsulation of citronella oil for mosquito-repellent application: formulation and in vitro permeation studies. PubMed: [Periocular surgery and the impact of split-thickness skin grafts]. PubMed: Highly selective and sensitive gas chromatography-electron-capture negative-ion mass spectrometry method for the indirect enantioselective identification of 2- and 3-hydroxy fatty acids in food and biological samples. PubMed: Comparative characterization of a wool-wax extract by two complementary chromatographic techniques. PubMed: [Contact allergies in patients with chronic wounds: results of a study from 1999 to 2004]. PubMed: Characterization of lipids in complex samples using comprehensive two-dimensional gas chromatography with time-of-flight mass spectrometry. PubMed: Mechanism of aerobic biological destabilisation of wool scour effluent emulsions. PubMed: Photodegradation of phosmet in wool wax models and on sheep wool: determination of wool wax bound phosmet by means of isotope ratio mass spectrometry. PubMed: Photodegradation chemistry of the insecticide phosmet in lipid models and in the presence of wool wax, employing a 15N-labeled compound. PubMed: Treatment of strongflow wool scouring effluent by biological emulsion destabilisation. PubMed: Photolysis experiments on phosmet, an organophosphorus insecticide. PubMed: The release profiles of intact and enzymatically digested hyaluronic acid from semisolid formulations using multi-layer membrane system. PubMed: Systematic characterisation of long-chain aliphatic esters of wool wax by gas chromatography-electron impact ionisation mass spectrometry. PubMed: The association between size of test chamber and patch test reaction: a statistical reanalysis. PubMed: The myth of lanolin allergy. PubMed: Contact sensitization in chronic venous insufficiency: modern wound dressings. PubMed: More positive patch test reactions with larger test chambers? Results from a study group of the German Contact Dermatitis Research Group (DKG). PubMed: Discrepancy in patch test results with wool wax alcohols and Amerchol L-101. PubMed: The lanolin paradox. PubMed: [Contact allergy to dexpanthenol]. PubMed: Conversion of sterols and triterpenes by mycobacteria. II. Transformation of 7-oxygenated sterols into androstane derivatives via a 7-deoxygenation. PubMed: [Quantitative aspects of the percutaneous uptake of wool wax alcohols (cetyl alcohol) and paraffins (octadecane) from different ointment bases]. PubMed: Utilisation of wool wax by fleece-rot isolates of Pseudomonas aeruginosa. PubMed: Detection and quantification of lanosterol and dihydrolanosterol esters by measurements of metastable decompositions. Application to their direct analysis in wool wax. PubMed: [Investigation of contact allergies in 100 cases of ulcus cruris (author's transl)]. PubMed: Ester-splitting of wool wax in fleece-rot and mycotic dermatitis. PubMed: Penetration, permeation, and resorption of 8-methoxypsoralen. Comperative in vitro and in vivo studies after topical application of four standard preparations. PubMed: [Study of the surface-active, colloid-micellar and solubilizing properties of a series of hydroxyethylated alcohols of wool wax]. PubMed: Absolute concentrations of dithranol and triacetyl-dithranol in the skin layers after local treatment: in vivo investigations with four different types of pharmaceutical vehicles. PubMed: Constitution of some steroid esters of wool wax. PubMed: [Formation of oxygenated lanostan-derivatives in wool wax]. PubMed: [Oxygen containing lanostan derivatives from wool wax]. PubMed: [Study of viscosity of oxyethylated alcohols of wool wax]. PubMed: [Gas chromatographic and infrared spectrometric studies on allergenic wool-wax alcohols]. PubMed: [Experimental studies on the allergic effect of wool wax alcohols]. PubMed: [Study of surface-active and emulsifying properties of oxyethylated alcohols of wool wax in the preparation of ointments and emulsions. I]. PubMed: [Effect of wool wax alcohol as an ointment base]. PubMed: [Method for obtaining wool-wax alcohols]. PubMed: The paraffin hydrocarbons of wool wax. Homologous series of methyl alkanes. PubMed: Wool wax emulsions. PubMed: Emulsion reactions: the hydrolysis of wool wax.