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线性分子式:
HOC6H4CH2CH2COCH3
化学文摘社编号:
分子量:
164.20
FEMA Number:
2588
Council of Europe no.:
755
UNSPSC Code:
12164502
PubChem Substance ID:
Flavis number:
7.055
EC Number:
226-806-4
NACRES:
NA.21
MDL number:
Beilstein/REAXYS Number:
776080
Organoleptic:
berry; jam; raspberry; sweet
Grade:
FG, Fragrance grade, Halal, Kosher, natural
Agency:
follows IFRA guidelines, meets purity specifications of JECFA
Food allergen:
no known allergens
SMILES string
CC(=O)CCc1ccc(O)cc1
InChI
1S/C10H12O2/c1-8(11)2-3-9-4-6-10(12)7-5-9/h4-7,12H,2-3H2,1H3
InChI key
NJGBTKGETPDVIK-UHFFFAOYSA-N
grade
FG, Fragrance grade, Halal, Kosher, natural
agency
follows IFRA guidelines, meets purity specifications of JECFA
reg. compliance
EU Regulation 1223/2009, EU Regulation 1334/2008 & 178/2002, FCC, FDA 21 CFR 117
assay
≥98%
greener alternative product characteristics
Less Hazardous Chemical Syntheses
Use of Renewable Feedstocks
Learn more about the Principles of Green Chemistry.
sustainability
Greener Alternative Product
mp
81-85 °C (lit.)
application(s)
flavors and fragrances
documentation
see Safety & Documentation for available documents
food allergen
no known allergens
fragrance allergen
no known allergens
greener alternative category
organoleptic
berry; jam; raspberry; sweet
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General description
We are committed to bringing you greener alternative products, which adhere to one or more of The 12 Principles of Greener Chemistry. This product is Biobased and thus aligns with "Less Hazardous Chemical Syntheses" and "Use of Renewable Feedstocks".
Application
- Sex-Specific Effects on Total Body Fat Gain with 4-Week Daily Dosing of Raspberry Ketone [4-(4-Hydroxyphenyl)-2-butanone] and Ketogenic Diet in Mice.: This research investigates the effects of daily dosing of raspberry ketone on body fat and metabolic health, providing insights into gender-specific responses and potential therapeutic uses of raspberry ketone for obesity and metabolic syndrome (Hao L et al., 2023).
- Metabolic gene signature in white adipose tissue of oral doses raspberry ketone [4-(4-hydroxyphenyl)-2-butanone] that prevent diet-induced weight gain and induce loss of righting reflex.: This study delves into the molecular mechanisms through which raspberry ketone influences weight management and metabolic health, highlighting its potential applications in nutraceuticals and metabolic research (Kshatriya D et al., 2023).
- Reduced Body Fat and Epididymal Adipose Apelin Expression Associated With Raspberry Ketone [4-(4-Hydroxyphenyl)-2-Butanone] Weight Gain Prevention in High-Fat-Diet Fed Mice.: Demonstrates the bioactive properties of raspberry ketone in modulating fat metabolism and adipose tissue function, offering a potential strategy for combating obesity and related metabolic disorders (Hao L et al., 2021).
Chie Morimoto et al.
Life sciences, 77(2), 194-204 (2005-05-03)
Raspberry ketone (4-(4-hydroxyphenyl) butan-2-one; RK) is a major aromatic compound of red raspberry (Rubus idaeus). The structure of RK is similar to the structures of capsaicin and synephrine, compounds known to exert anti-obese actions and alter the lipid metabolism. The
Sunil K Chattopadhyay et al.
Bioorganic & medicinal chemistry letters, 14(7), 1729-1731 (2004-03-18)
The title chiral amine, 3-(4-methoxyphenyl)-1-methylpropylamine 5 has been synthesized from naturally abundant betuligenol 1 in three steps and also in good yield. Furthermore, the versatile intermediate 3 could be manipulated for the preparation of chiral disulphide 7. The amine derivative
Lili Wang et al.
Journal of medicinal food, 15(5), 495-503 (2012-05-04)
The protective effect of raspberry ketone against nonalcoholic steatohepatitis (NASH) was tested by using a high-fat diet-induced NASH model, and its mechanism was explored. Forty Sprague-Dawley rats with a 1:1 male to female ratio were randomly divided into five groups:
Daniela E Taupp et al.
Mycologia, 100(4), 529-538 (2008-10-07)
Exposition to UV-A light stimulated the growth and synthesis of raspberry ketone in submerged cultures of the basidiomycete Nidula niveotomentosa. To investigate the fungus' response to UV-A light differentially expressed proteins were identified by means of 2D-electrophoresis. Light induced proteins
S P Crispim et al.
Food additives & contaminants. Part A, Chemistry, analysis, control, exposure & risk assessment, 27(4), 433-446 (2010-01-16)
This study aimed to compare different methods of assessing dietary exposure to flavourings in the context of a stepwise approach. The dietary exposure to four flavourings--raspberry ketone, glycyrrhizinic acid, coumarin, and caffeine--was determined. When dietary exposure exceeded the safety limits
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