cetyl palmitate

palmityl palmitate

CAS: 100231-74-1 C32 H64 O2 MW: 480.86048000

Identification

Namecetyl palmitate
IUPAChexadecyl hexadecanoate
CAS Number100231-74-1
EINECS309-375-8
FDA UNII5ZA2S6B08X
Molecular FormulaC32 H64 O2
Molecular Weight480.86048000
Nikkaji NumberJ65.556B

Regulatory

Physical Properties

Assay 95.00 to 100.00
Food Chemicals Codex Listed No
Boiling Point 507.00 °C. @ 760.00 mm Hg (est)
Flash Point 518.00 °F. TCC ( 269.80 °C. ) (est)
logP (o/w) 15.590 (est)
Soluble in water, 3.134e-010 mg/L @ 25 °C (est)

No sensory data available

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

Categorynatural substances and extractives
Recommendation for cetyl palmitate usage levels up tonot for fragrance use.
Recommendation for cetyl palmitate flavor usage levels up tonot for flavor use.

No supplier data available

Potential Uses

None Found

Natural Occurrence

found in nature

Synonyms

hexadecyl hexadecanoate hexadecyl palmitate palmityl palmitate PubMed: Formulation of solid lipid nanoparticles (SLN): The value of different alkyl polyglucoside surfactants. PubMed: Idebenone loaded solid lipid nanoparticles: calorimetric studies on surfactant and drug loading effects. PubMed: FA-loaded lipid drug delivery systems: preparation, characterization and biological studies. PubMed: Influence of process parameters on properties of Nanostructured Lipid Carriers (NLC) formulation. PubMed: Improved brain delivery of vincristine using dextran sulfate complex solid lipid nanoparticles: optimization and in vivo evaluation. PubMed: Modeling the effect of sonication parameters on size and dispersion temperature of solid lipid nanoparticles (SLNs) by response surface methodology (RSM). PubMed: All-trans retinoic acid-loaded lipid nanoparticles as a transdermal drug delivery carrier. PubMed: Lipid nanoparticles based on butyl-methoxydibenzoylmethane: in vitro UVA blocking effect. 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PubMed: Polyhydroxy surfactants for the formulation of lipid nanoparticles (SLN and NLC): effects on size, physical stability and particle matrix structure. PubMed: In vitro evaluation of idebenone-loaded solid lipid nanoparticles for drug delivery to the brain. PubMed: Cationic solid lipid nanoparticles loaded by cysteine proteinase genes as a novel anti-leishmaniasis DNA vaccine delivery system: characterization and in vitro evaluations. PubMed: Physicochemical characterization and in vivo bioluminescence imaging of nanostructured lipid carriers for targeting the brain: apomorphine as a model drug. PubMed: The influence of lipid characteristics on the formation, in vitro release, and in vivo absorption of protein-loaded SLN prepared by the double emulsion process. PubMed: Preparation, optimization and characteristic of huperzine a loaded nanostructured lipid carriers. PubMed: Nondestructive rheological measurement of aqueous dispersions of solid lipid nanoparticles: effects of lipid types and concentrations on dispersion consistency. PubMed: Chemical and structural investigation of lipid nanoparticles: drug-lipid interaction and molecular distribution. PubMed: Corticosteroid solubility and lipid polarity control release from solid lipid nanoparticles. PubMed: Lipid nanoparticles with different oil/fatty ester ratios as carriers of buprenorphine and its prodrugs for injection. PubMed: Influence of oil content on physicochemical properties and skin distribution of Nile red-loaded NLC. PubMed: In vitro skin permeation of sunscreen agents from O/W emulsions. PubMed: The effect of cetyl palmitate crystallinity on physical properties of gamma-oryzanol encapsulated in solid lipid nanoparticles. PubMed: Oral insulin delivery by means of solid lipid nanoparticles. PubMed: Cetyl palmitate-based NLC for topical delivery of Coenzyme Q(10) - development, physicochemical characterization and in vitro release studies. PubMed: Development and evaluation of nitrendipine loaded solid lipid nanoparticles: influence of wax and glyceride lipids on plasma pharmacokinetics. PubMed: A water activity control system for enzymatic reactions in organic media. PubMed: Solid lipid nanoparticles (SLN)--effects of lipid composition on in vitro degradation and in vivo toxicity. PubMed: Preparation and characterization of n-dodecyl-ferulate-loaded solid lipid nanoparticles (SLN). PubMed: Solid lipid micro-particles carrying insulin formed by solvent-in-water emulsion-diffusion technique. PubMed: The development of Cutina lipogels and gel microemulsion for topical administration of fluconazole. PubMed: Semisolid SLN dispersions for topical application: influence of formulation and production parameters on viscoelastic properties. PubMed: Solid lipid nanoparticles (SLN)--a novel carrier for UV blockers. PubMed: Bioavailability of diazepam from aqueous-organic solution, submicron emulsion and solid lipid nanoparticles after rectal administration in rabbits. PubMed: Encapsulation of retinoids in solid lipid nanoparticles (SLN). PubMed: Preserved solid lipid nanoparticles (SLN) at low concentrations do cause neither direct nor indirect cytotoxic effects in peritoneal macrophages. PubMed: Comparison of wax and glyceride solid lipid nanoparticles (SLN). PubMed: Crystallographic investigation of cetylpalmitate solid lipid nanoparticles. PubMed: Solid lipid nanoparticles (SLN/Lipopearls)--a pharmaceutical and cosmetic carrier for the application of vitamin E in dermal products. PubMed: Spray-drying of solid lipid nanoparticles (SLN TM). PubMed: Effect of topical preparation of mycophenolic acid on experimental allergic contact dermatitis of guinea-pigs induced by dinitrofluorobenzene. PubMed: The esterase profile of a lipase from Candida cylindracea. PubMed: Growth of Acinetobacter sp. strain HO1-N on n-hexadecanol: physiological and ultrastructural characteristics. PubMed: Collaborative study of a GLC method for vitamin E. PubMed: [Aqueous petroleum-oxidizing Arthrobacter]. PubMed: [Formation of cetyl palmitate from n-hexadecane by Mycobacterium strain 3' cultures]. PubMed: ORIGIN OF PALMITIC ACID CARBON IN PALMITATES FORMED FROM HEXADECANE-1-C-14 AND TETRADECANE-1-C-14 BY MICROCOCCUS CERIFICANS.