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camelina sativa seed oil
fixed oil expressed from the seeds of the gold of pleasure, camelina sativa (l.), brassicaceae

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Category:cosmetic ingredient for skin conditioning
 
US / EU / FDA / JECFA / FEMA / FLAVIS / Scholar / Patent Information:
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 FDA/DG SANTE Petitions, Reviews, Notices:
GRN 642 Camelina oil View - notice PDF
 
Physical Properties:
Appearance:yellow liquid (est)
Food Chemicals Codex Listed: No
 
Organoleptic Properties:
Odor and/or flavor descriptions from others (if found).
 
Cosmetic Information:
CosIng:cosmetic data
Cosmetic Uses: skin conditioning
 
Suppliers:
Augustus Oils
Camelina Sativa Fixed Oil
Odor: characteristic
Use: Hair care products.
Services
Camden-Grey Essential Oils
Camelina oil, Bulk
Odor: characteristic
Use: This oil has a mild nutty flavor ideal for salad dressings. The revival of interest in camelina oil is due to its high linolenic acid (38%) content. Linolenic acid is one of the Omega-3 fatty acids which are generally found in substantial commercial quantities only in linseed (flax) and fish oils. Camelina offers an opportunity to supply the growing demand for high quality edible oils rich in Omega-3 fatty acids. The oil contains 35% to 40% linolenic acid compared to 8% in canola and 1% or less in soy bean and corn oils.
Charkit Chemical
CAMELINA OIL
Charkit Chemical
GOLD OF PLEASURE OIL CAMELINA DEODERIZED
 
Safety Information:
 
Hazards identification
 
Classification of the substance or mixture
GHS Classification in accordance with 29 CFR 1910 (OSHA HCS)
None found.
GHS Label elements, including precautionary statements
 
Pictogram
 
Hazard statement(s)
None found.
Precautionary statement(s)
None found.
Oral/Parenteral Toxicity:
Not determined
Dermal Toxicity:
Not determined
Inhalation Toxicity:
Not determined
 
Safety in Use Information:
Category:
cosmetic ingredient for skin conditioning
Recommendation for camelina sativa seed oil usage levels up to:
 not for fragrance use.
 
Recommendation for camelina sativa seed oil flavor usage levels up to:
 not for flavor use.
 
Safety References:
None found
 
References:
None found
 
Other Information:
Wikipedia:View
 
Potential Blenders and core components note
None Found
 
Potential Uses:
None Found
 
Occurrence (nature, food, other):note
 flax false flax seed
Search Trop Picture
 
Synonyms:
 camelina oil
 fixed oil expressed from the seeds of the gold of pleasure, camelina sativa (l.), brassicaceae
 gold of pleasure seed oil
 

Articles:

PubMed:Efficacy of Organic Soil Amendments for Management of Heterodera glycines in Greenhouse Experiments.
PubMed:Acyl-ACP thioesterases from Camelina sativa: Cloning, enzymatic characterization and implication in seed oil fatty acid composition.
PubMed:Extracellular lipids of Camelina sativa: characterization of chloroform-extractable waxes from aerial and subterranean surfaces.
PubMed:Redirection of metabolic flux for high levels of omega-7 monounsaturated fatty acid accumulation in camelina seeds.
PubMed:Camelina sativa Defatted Seed Meal Contains Both Alkyl Sulfinyl Glucosinolates and Quercetin That Synergize Bioactivity.
PubMed:A fatty acid condensing enzyme from Physaria fendleri increases hydroxy fatty acid accumulation in transgenic oilseeds of Camelina sativa.
PubMed:Alteration of leaf shape, improved metal tolerance, and productivity of seed by overexpression of CsHMA3 in Camelina sativa.
PubMed:Comparative plant sphingolipidomic reveals specific lipids in seeds and oil.
PubMed:Characterization of oilseed lipids from "DHA-producing Camelina sativa": a new transformed land plant containing long-chain omega-3 oils.
PubMed:Pigs fed camelina meal increase hepatic gene expression of cytochrome 8b1, aldehyde dehydrogenase, and thiosulfate transferase.
PubMed:Successful high-level accumulation of fish oil omega-3 long-chain polyunsaturated fatty acids in a transgenic oilseed crop.
PubMed:Moist and dry heating-induced changes in protein molecular structure, protein subfractions, and nutrient profiles in camelina seeds.
PubMed:Evaluation of Camelina sativa (L.) Crantz meal as an alternative protein source in ruminant rations.
PubMed:Constitutive or seed-specific overexpression of Arabidopsis G-protein γ subunit 3 (AGG3) results in increased seed and oil production and improved stress tolerance in Camelina sativa.
PubMed:De novo transcriptome analysis of an imminent biofuel crop, Camelina sativa L. using Illumina GAIIX sequencing platform and identification of SSR markers.
PubMed:Imaging heterogeneity of membrane and storage lipids in transgenic Camelina sativa seeds with altered fatty acid profiles.
PubMed:Molecular cloning, characterization, and stress-responsive expression of genes encoding glycine-rich RNA-binding proteins in Camelina sativa L.
PubMed:Camelina seed transcriptome: a tool for meal and oil improvement and translational research.
PubMed:Effects of environmental factors on edible oil quality of organically grown Camelina sativa.
PubMed:Cold stress causes rapid but differential changes in properties of plasma membrane H(+)-ATPase of camelina and rapeseed.
PubMed:The temperature response of CO2 assimilation, photochemical activities and Rubisco activation in Camelina sativa, a potential bioenergy crop with limited capacity for acclimation to heat stress.
PubMed:Over-expression of AtPAP2 in Camelina sativa leads to faster plant growth and higher seed yield.
PubMed:Paclobutrazol treatment as a potential strategy for higher seed and oil yield in field-grown Camelina sativa L. Crantz.
PubMed:The role of Δ6-desaturase acyl-carrier specificity in the efficient synthesis of long-chain polyunsaturated fatty acids in transgenic plants.
PubMed:Identification of three genes encoding microsomal oleate desaturases (FAD2) from the oilseed crop Camelina sativa.
PubMed:Fatty acid and stable carbon isotope characterization of Camelina sativa oil: implications for authentication.
PubMed:Generation of transgenic plants of a potential oilseed crop Camelina sativa by Agrobacterium-mediated transformation.
PubMed:Genetic mapping of agronomic traits in false flax (Camelina sativa subsp. sativa).
PubMed:High-yield preparation of wax esters via lipase-catalyzed esterification using fatty acids and alcohols from crambe and camelina oils.
 
Notes:
None found
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