CAS: 2433-96-7; Tricosanoic Acid

该化合物是一种长链饱和脂肪酸,配有分子式C23H46O2.其特征是直链结构,由23个碳原子和一端的碳球酸功能组组成,该化合物通常存在于各种天然脂肪和油类中,特别是一些动物脂肪和植物蜡中.三氯氮酸在室温下是一种白色,蜡状固体,由于长期的缺水碳链,在水中溶解不透,但可溶于乙醇和醚等有机溶剂中.它可用于表面活性剂,润滑剂的生产,并可作为生物柴油生产的潜在原料.此外,其衍生物可能用于各种化学化合物的合成.与许多长链脂肪酸一样,它在某些条件下可能表现出高熔点和稳定性等特性,使之与工业和生物化学环境相关.

结构式图片

相似化合物

2433-97-8 1002-84-2 112-37-8

欧盟法规

ECHA物质C&L通报REACH预注册

上下游产品

2-hydroxytetracosanoic acid 8-oxo-tricosanoic acid 5-oxo-tricosanoic acid 10-oxo-tricosanoic acidtricosanoic acid methyl ester ethyl tricosanoate 2-tricosanoylamino-1-O-(2,3,4,6-tetra-O-benzyl-α-D-galactopyranosyl)-3,4-O-isopropylidene-D-ribo-1,3,4-nonanetriol tricosanoyl chloride

合成工艺路线路线简述

  • 合成目标产物 Tricosanoic Acid 主要起始原料 Diethyl Sebacate
  • (文献来源)合成步骤主要原料 Diethyl Sebacate
癸二酸二乙酯置于氢氧化钾,Sodium Ethanolate,一水合肼,二乙二醇,苯体系中,化学反应生成二十三烷酸
参考文献:Ames Et Al.,Journal Of The Chemical Society,1950,P. 174,176
标题:Ames Et Al.,Journal Of The Chemical Society,1950,P. 174,176

海关参考信息

专利信息


专利号:US-9643915-B2
优先权日:2013-03-15
标题:Methods for the synthesis of sphingomyelins and dihydrosphingomyelins
发明人:ONICIU DANIELA CARMEN; HECKHOFF STEFAN; OSWALD BENOIT; REBMANN PETER; PEER ANDREAS; GONZALEZ MIGUEL; SAUTER PATRIK
权利人:CERENIS THERAPEUTICS HOLDING SA
摘要:The present invention includes methods for the synthesis of sphingomyelins and dihydrosphingomyelins. The present invention also includes methods for the synthesis of sphingosines and dihydrosphingosines. The present invention further includes methods for the synthesis of ceramides and dihydroceramides.

专利号:US-9708354-B2
优先权日:2013-03-15
标 题:Methods for the synthesis of sphingomyelins and dihydrosphingomyelins
发明人:ONICIU DANIELA CARMEN; HECKHOFF STEFAN; OSWALD BENOIT; REBMANN PETER; PEER ANDREAS; GONZALEZ MIGUEL; SAUTER PATRIK
权利人:CERENIS THERAPEUTICS HOLDING SA
摘要:The present invention includes methods for the synthesis of sphingomyelins and dihydrosphingomyelins. The present invention also includes methods for the synthesis of sphingosines and dihydrosphingosines. The present invention further includes methods for the synthesis of ceramides and dihydroceramides.

专利号:US-12018313-B2
优先权日:2016-12-28
标题:Methods, apparatuses, and systems for microorganism strain analysis of complex heterogeneous communities with tracer analytics, determination of functional relationships and interactions thereof, and synthesis of microbial ensembles
发明人:EMBREE MALLORY
权利人:NATIVE MICROBIALS INC
摘要:Methods, apparatuses, and systems for microorganism strain analysis of complex heterogeneous communities with tracer analytics, determination of functional relationships and interactions thereof, and synthesis of microbial ensembles, including dosed microbial ensembles and inoculative microbial ensembles, are disclosed.

专利号:US-11583842-B2
优先权日:2019-07-24
标题 :Zwitterionic catalysts for (trans)esterification: application in fluoroindole-derivatives and biodiesel synthesis
发明人:YEUNG YING-YEUNG; LAM YING-PONG; KE ZHIHAI; WANG XINYAN; TAN FEI; NG WING-HIN; TSE YING-LUNG STEVE
权利人:UNIV HONG KONG CHINESE
摘要:An amide/iminium zwitterion catalyst has a catalyst pocket size that promotes transesterification and dehydrative esterification. The amide/iminium zwitterions are easily prepared by reacting aziridines with aminopyridines. The reaction can be applied a wide variety of esterification processes including the large-scale synthesis of biodiesel. The amide/iminium zwitterions allow the avoidance of strongly basic or acidic condition and avoidance of metal contamination in the products. Reactions are carried out at ambient or only modestly elevated temperatures. The amide/iminium zwitterion catalyst is easily recycled and reactions proceed in high to quantitative yields.

专利号:US-11981938-B2
优先权日:2017-10-05
标 题 :Microorganisms and methods for the fermentation of cannabinoids
发明人:SZAMECZ BELA KRISZTIAN; VARSZEGI SZILVIA; NEMETH ATTILA; SZABO LORAND; KUMAR ABHINAV
权利人:ELESZTO GENETIKA INC
摘要:Disclosed herein are microorganism and methods that can be used for the synthesis of cannabigerolic acid (CBGA) and cannabinoids. The methods disclosed can be used to produce CBGA, Δ9-tetrahydrocannabinolic acid (THCA), cannabidiolic acid (CBDA), cannabichromenic acid (CBCA), Δ9-tetrahydrocannabinol (THC), cannabidiol (CBD), cannabichromene (CBC). Enzymes useful for the synthesis of CBGA and cannabinoids, include but are not limited to acyl activating enzyme (AAE1), polyketide synthase (PKS), olivetolic acid cyclase (OAC), prenyltransferase (PT), THCA synthase (THCAS), CBDA synthase (CBDAS), CBCA synthase (CBCAS), HMG-Co reductase (HMG1), and/or farnesyl pyrophosphate synthetase (ERG20). The microorganisms can also have one or more genes disrupted, such as gene that that controls beta oxidation of long chain fatty acids.

专利号:US-2022170057-A1
优先权日:2019-04-11
标题:Microorganisms and methods for the fermentation of cannabinoids
发明人:SZAMECZ BELA KRISZTIAN; VARSZEGI SZILVIA; NEMETH ATTILA; SZABO LORAND
权利人:ELESZTO GENETIKA INC
摘要:Disclosed herein are microorganism and methods that can be used for the synthesis of cannabigerolic acid (CBGA) and cannabinoids. The methods disclosed can be used to produce CBGA, Δ 9 -tetrahydrocannabinolic acid (THCA), cannabidiolic acid (CBDA), cannabichromenic acid (CBGA), Δ 9 -tetrahydrocannabivarinic acid (THCVA), cannabidivarinic acid (CBDVA), cannabichromevarinic acid (CBCVA), Δ 9 -tetrahydrocannabinol (THC), cannabidiol (CBD), cannabichromene (CBC). Enzymes useful for the synthesis of CBGA and cannabinoids, include but are not limited to acyl activating enzyme (AAE1), polyketide synthase (PKS), olivetolic acid cyclase (OAC), prenyltransferase (PT), THCA synthase (THCAS), CBDA synthase (CBDAS), CBC A synthase (CBCAS), HMG-Co reductase (HMG1), and/or famesyl pyrophosphate synthetase (ERG20). The microorganisms can also have one or more genes disrupted, such as gene that that controls beta oxidation of long chain fatty acids.
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1: Sultana N, Roddick F, Pramanik BK. Innovative grease interceptor to enhance fat, oil and grease removal from the wastewater generated from food service establishments. Chemosphere. 2025 Feb;370:143987. doi: 10.1016/j.chemosphere.2024.143987. Epub 2024 Dec 20. 21(1):72. doi: 10.1186/s12986-024-00844-6.
3: Lv X, Zhao Q, Liu Q, Ji Q, Huang X, Zhou L, Hu Z, Liu M, Zhan Y. Serum Fatty Acid Profiles and Neurofilament Light Chain Levels in the General Population. J Nutr. 2024 Oct;154(10):3070-3078. doi: 10.1016/j.tjnut.2024.07.007. Epub 2024 Jul 14.
476:135081. doi: 10.1016/j.jhazmat.2024.135081. Epub 2024 Jul 2. 70(5):248-252. doi: 10.14715/cmb/2024.70.5.45. 65(6):100557. doi: 10.1016/j.jlr.2024.100557. Epub 2024 May 7.

合成参考文献


参考文献:10.1007/s10661-005-9102-8
摘要:Rushdi AI, Al-Zarban S, Simoneit BRT. Chemical Compositions and Sources of Organic Matter in Fine Particles of Soils and Sands from the Vicinity of Kuwait City. Environmental Monitoring and Assessment. 2006 Jun 07;120(1-3):537–57. doi: 10.1007/s10661-005-9102-8.
参考文献:10.1007/s11626-011-9427-2
摘要:Lee D, Bajracharya P, Lee EJ, Kim J, Lee H, Chun T, Kim J, Cho KH, Chang J, Hong S, Choi I. Effects of gender-specific adult bovine serum on myogenic satellite cell proliferation, differentiation and lipid accumulation. In Vitro Cellular & Developmental Biology - Animal. 2011 May 26;47(7):438–44. doi: 10.1007/s11626-011-9427-2.
参考文献:10.1007/s00253-020-10822-6
摘要:Wang W, Sheng Y. Gene expression concerning fatty acid and amino acid metabolism in Chlorella vulgaris cultured with antibiotics. Applied Microbiology and Biotechnology. 2020 Aug 14;104(18):8025–36. doi: 10.1007/s00253-020-10822-6.
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