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Perseitol, also known as 1,2,3,4,5,6-hexa-O-cyclohexyl-α-D-glucopyranoside, is a synthetic sugar analog that is structurally similar to glucose. It is a white crystalline powder with a sweet taste, often used as a sugar substitute in various food products due to its low caloric content and minimal impact on blood sugar levels. Perseitol is not metabolized by the human body, which makes it suitable for individuals with diabetes or those following a low-calorie diet. It is also known for its stability and resistance to heat and acidity, making it a popular choice in the food industry for sweetening and preserving products.

608-61-7

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608-61-7 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 608-61-7 includes 6 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 3 digits, 6,0 and 8 respectively; the second part has 2 digits, 6 and 1 respectively.
Calculate Digit Verification of CAS Registry Number 608-61:
(5*6)+(4*0)+(3*8)+(2*6)+(1*1)=67
67 % 10 = 7
So 608-61-7 is a valid CAS Registry Number.

608-61-7Upstream product

608-61-7Relevant academic research and scientific papers

Four orders of magnitude rate increase in artificial enzyme-catalyzed aryl glycoside hydrolysis

Ortega-Caballero, Fernando,Bjerre, Jeannette,Laustsen, Line Skall,Bols, Mikael

, p. 7217 - 7226 (2005)

(6A6DR)-6A,6D-Di-C-cyano- β-cyclodextrin (1) and 6A,6D-di-C-cyano-α- cyclodextrin (2) were synthesized and shown to catalyze hydrolysis of aryl glycosides into glucose and phenol with a reaction following Michaelis-Menten kinetics. At pH 8.0 and 59 °C hydrolysis of 4-nitrophenyl α-glucopyranoside was catalyzed by 1 with KM = 10.5 ± 1.5 mM, kcat = 1.42(±0.09) × 10-4 s -1 and kcatk/uncat = 7922, Catalysis was observed with a concentration of 1 as low as 10 μM. Hydrolysis of the other aryl glycosides containing stereochemical variation in the sugar-moiety and 4-nitro-, 2-nitro-, 2-aldehydo-, and 2,4-dinitro- were also catalyzed by 1 and 2 with kcat/kuncat ranging from 4 to 7100. Hydrolysis of a phenyl β-D-glucoside or the thioglycoside tolylthio β-D-glucoside was also catalyzed. From a series of prepared analogues of 1 it was found that the catalysis was associated with the hydroxyl groups α to the nitril groups. The monocyanohydrin 6-C-cyano-β-cyclodextrin (3) was also found to catalyze the hydrolysis of 4-nitrophenyl β-glucopyranoside with k Cat/kuncat = 1356. It was proposed that the cyclodextrin cyanohydrins 1-3 catalyze the hydrolysis by general acid catalysis on the bound substrate.

Organocatalytic Synthesis of Higher-Carbon Sugars: Efficient Protocol for the Synthesis of Natural Sedoheptulose and d-Glycero-l-galacto-oct-2-ulose

Popik, Oskar,Pasternak-Suder, Monika,Ba?, Sebastian,Mlynarski, Jacek

, p. 717 - 721 (2016/08/27)

Herein we report a short and efficient protocol for the synthesis of naturally occurring higher-carbon sugars—sedoheptulose (d-altro-hept-2-ulose) and d-glycero-l-galacto-oct-2-ulose—from readily available sugar aldehydes and dihydroxyacetone (DHA). The key step includes a diastereoselective organocatalytic syn-selective aldol reaction of DHA with d-erythrose and d-xylose, respectively. The methodology presented can be expanded to the synthesis of various higher sugars by means of syn-selective carbon–carbon-bond-forming aldol reactions promoted by primary-based organocatalysts. For example, this methodology provided useful access to d-glycero-d-galacto-oct-2-ulose and 1-deoxy-d-glycero-d-galacto-oct-2-ulose from d-arabinose in high yield (85 and 74 %, respectively) and high stereoselectivity (99:1).

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