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Category: nail conditioning agents
US / EU / FDA / JECFA / FEMA / FLAVIS / Scholar / Patent Information:
Physical Properties:
| Assay: | 95.00 to 100.00 %
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| Food Chemicals Codex Listed: | No |
| Boiling Point: | 271.40 °C. @ 760.00 mm Hg (est)
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| Flash Point: | 238.00 °F. TCC ( 114.50 °C. ) (est)
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| logP (o/w): | 0.600 (est) |
| Soluble in: |
| | water, 7.877e+004 mg/L @ 25 °C (est) |
Organoleptic Properties:
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| Odor and/or flavor descriptions from others (if found). |
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Cosmetic Information:
Suppliers:
Safety Information:
| Preferred SDS: View |
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| Hazards identification |
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| Classification of the substance or mixture |
| GHS Classification in accordance with 29 CFR 1910 (OSHA HCS) |
| None found. |
| GHS Label elements, including precautionary statements |
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| Pictogram | |
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| Hazard statement(s) |
| None found. |
| Precautionary statement(s) |
| None found. |
| Oral/Parenteral Toxicity: |
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Not determined
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| Dermal Toxicity: |
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Not determined
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| Inhalation Toxicity: |
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Not determined
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Safety in Use Information:
| Category: | nail conditioning agents |
| Recommendation for carboxyethyl acrylate usage levels up to: | | | not for fragrance use.
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| Recommendation for carboxyethyl acrylate flavor usage levels up to: |
| | not for flavor use.
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Safety References:
References:
Other Information:
Potential Blenders and core components note
Potential Uses:
Occurrence (nature, food, other): note
Synonyms:
| 3-( | acryloyloxy)propanoic acid | | 3- | acryloyloxypropionic acid | | 2- | carboxyethyl 2-propenoate | | 2- | carboxyethyl acrylate | | 2- | carboxyethylacrylate | | | hydracrylic acid, acrylate (6CI,8CI) | | 3- | prop-2-enoyloxypropanoic acid | | 2- | propenoic acid, 2-carboxyethyl ester |
Articles:
| PubMed: | Microfluidic conceived pH sensitive core-shell particles for dual drug delivery. |
| PubMed: | Acrylate-Tethering Drug Carrier: Covalently Linking Carrier to Biological Surface and Application in the Treatment of Helicobacter pylori Infection. |
| PubMed: | Thermal preparation of chitosan-acrylic acid superabsorbent: Optimization, characteristic and water absorbency. |
| PubMed: | Click conjugation of Peptide to hydrogel nanoparticles for tumor-targeted drug delivery. |
| PubMed: | pH-control of the protein resistance of thin hydrogel gradient films. |
| PubMed: | Overcoming cancer multidrug resistance by codelivery of doxorubicin and verapamil with hydrogel nanoparticles. |
| PubMed: | Modifying surface resistivity and liquid moisture management property of keratin fibers through thiol-ene click reactions. |
| PubMed: | Multifunctional polyampholyte hydrogels with fouling resistance and protein conjugation capacity. |
| PubMed: | Evidence for endogenous formation of the hepatocarcinogen N-nitrosodihydrouracil in rats treated with dihydrouracil and sodium nitrite: a potential source of human hepatic DNA carboxyethylation. |
| PubMed: | Near-monodisperse poly(2-(methacryloyloxy)ethyl phosphorylcholine)-based macromonomers prepared by atom transfer radical polymerization and thiol-ene click chemistry: novel reactive steric stabilizers for aqueous emulsion polymerization. |
| PubMed: | Binding affinity of a small molecule to an amorphous polymer in a solvent. Part 2: preferential binding to local sites on a surface. |
| PubMed: | Binding affinity of a small molecule to an amorphous polymer in a solvent. Part 1: free energy of binding to a binding site. |
| PubMed: | Surface design for controlled crystallization: the role of surface chemistry and nanoscale pores in heterogeneous nucleation. |
| PubMed: | Photopolymerized water-soluble chitosan-based hydrogel as potential use in tissue engineering. |
| PubMed: | Influencing solvent miscibility and aqueous stability of aluminum nanoparticles through surface functionalization with acrylic monomers. |
| PubMed: | Detection of 7-(2'-carboxyethyl)guanine but not 7-carboxymethylguanine in human liver DNA. |
| PubMed: | Lateral control of protein adsorption on charged polymer gradients. |
| PubMed: | Single-walled carbon nanotube modification on photograft-polymerized nation films via covalent and ionic bonding. |
| PubMed: | In situ mineralization of hydroxyapatite on electrospun chitosan-based nanofibrous scaffolds. |
| PubMed: | Rational design of MOFs constructed from modified aromatic amino acids. |
| PubMed: | Synthesis and characterization of in situ chitosan-based hydrogel via grafting of carboxyethyl acrylate. |
| PubMed: | Slow-onset inhibition of fumarylacetoacetate hydrolase by phosphinate mimics of the tetrahedral intermediate: kinetics, crystal structure and pharmacokinetics. |
| PubMed: | Determination of total tiopronin in human plasma by LC-ESI-MS using tris (2-carboxy-ethyl) phosphine as reducing reagent and methyl acrylate as derivatization reagent for the thiol group. |
| PubMed: | Biodegradable hyaluronic acid/n-carboxyethyl chitosan/protein ternary complexes as implantable carriers for controlled protein release. |
| PubMed: | An epidemic of occupational contact dermatitis from an acrylic glue. |
| PubMed: | Kinetics of swelling of polyether-modified poly(acrylic acid) microgels with permanent and degradable cross-links. |
| PubMed: | Further insights into the mechanism of action of methylmalonyl-CoA mutase by electron paramagnetic resonance studies. |
| PubMed: | Adenosine analogues relax guinea-pig taenia caeci via an adenosine A2B receptor and a xanthine-resistant site. |
| PubMed: | Activation of multiple sites by adenosine analogues in the rat isolated aorta. |
| PubMed: | Biotransformation of acrolein in rat: excretion of mercapturic acids after inhalation and intraperitoneal injection. |
| PubMed: | Biotransformation of acrylates. Excretion of mercapturic acids and changes in urinary carboxylic acid profile in rat dosed with ethyl and 1-butyl acrylate. |
| PubMed: | Metabolic pathways of 1-butyl [3-13C]acrylate. Identification of urinary metabolites in rat using nuclear magnetic resonance and mass spectroscopy. |
| PubMed: | The disposition and metabolism of methyl acrylate in male Wistar albino rats. |
| PubMed: | Identification and comparison of the urinary metabolites of [1,2,3-13C3]acrylic acid and [1,2,3-13C3]propionic acid in the rat by homonuclear 13C nuclear magnetic resonance spectroscopy. |
| PubMed: | Metabolism and disposition of n-butyl acrylate in male Fischer rats. |
| PubMed: | Ethyl acrylate distribution, macromolecular binding, excretion, and metabolism in male Fisher 344 rats. |
| PubMed: | The disposition and metabolism of acrylic acid and ethyl acrylate in male Sprague-Dawley rats. |
| PubMed: | The isolation and characterization of 2-carboxyethyl adducts following in vitro reaction of acrylic acid with calf thymus DNA and bioassay of acrylic acid in female Hsd:(ICR)Br mice. |
| PubMed: | In vitro and in vivo formation of 7-(2'-carboxyethyl)guanine from the liver carcinogen 1-nitroso-5,6-dihydrouracil and its reactions with water and methanol. |
| PubMed: | A new pathway of acrolein metabolism in rats. |
| PubMed: | Inhibition of chorismate mutase activity of chorismate mutase-prephenate dehydrogenase from Aerobacter aerogenes. |
| PubMed: | Identification or urinary mercapturic acids formed from acrylate, methacrylate and crotonate in the rat. |
| PubMed: | Identification of the acrylate porphyrin S-411 from meconium. |
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