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Acetyl ester from synthesis

An attempted synthesis of 9-methylnaphtho[crf]oxepine-2-one 494 by heterocyclization of 8-acetyl-1-naphthoic acid 491 (R = Me, R = H) has failed. In acidic medium or on heating acid 491 to 150°C, as well as under formation conditions for the acid chloride or ester from acid 491, 2-acetylacenaphthene-l-one 495 is obtained (79ZOR1562). A synthesis of tribenzo[c]oxepine derivatives 499 and 501 has been described as resulting from heterocyclization of the products of reduction (498) or oxidation (500) of 4-formyl-5-carboxyphenanthrene 497. The latter compound was obtained on ozonolysis of pyrene 496 [71JCS(C)729]. [Pg.83]

It is well known that the nucleophilic displacement reactions at tosylated polysaccharides are limited or at least mainly directed towards the primary positions . Therefore, our interest was focused on 6-0-tosyl starch samples with DStos 1- One suitable synthesis path is the protection of 0-2 and the subsequent tosylation. A useful protecting group may be the acetyl ester function. It was recently found that in contrast to conventional esterification processes of starch with acetic anhydride, which leads to a statistic distribution of the ester groups, an acetylation of starch dissolved in DMSO with acetic acid vinyl ester in the presence of sodium chloride yields 2-0-acetyl starch of varying DSac from 0.1 to 1.0. The functionalisation patterns of these new starch products were unambiguously proved by means of various NMR measurements including two dimensional methods . [Pg.215]

Biosynthesis of adrenai corticosteroids. The primary precursor is acetyl-CoA and biosynthesis proceeds via cholesterol (see Terpenes, Steroids). The adrenal cortex also utilizes cholesterol which it receives as cholesterol esters from extra- adrenal sources (see Lipoproteins). The adrenal cortex is differentiated into 3 concentric layers. The outermost layer (zona glomerulosa) is primarily responsible for synthesis and secretion of aldosterone It contains the 18-hydroxylase and lacks the 17a-hydroxylase. The intermediate layer (zona fasciculata) and innermost layer (zona reticularis) are responsible for the synthesis of glucocorticoids (mainly cortisol) and adrenal androgens they possess the 17a-hydroxy-lase and lack the 18-hydroxylase. [Pg.19]

FIGURE 25.7 The pathway of palmhate synthesis from acetyl-CoA and malonyl-CoA. Acetyl and malonyl building blocks are introduced as acyl carrier protein conjugates. Decarboxylation drives the /3-ketoacyl-ACP synthase and results in the addition of two-carbon units to the growing chain. Concentrations of free fatty acids are extremely low in most cells, and newly synthesized fatty acids exist primarily as acyl-CoA esters. [Pg.809]

Three types of synthases catalyze the addition of phosphoenolpyruvate (PEP) to aldoses or the corresponding terminal phosphate esters. By concurrent release of inorganic phosphate from the preformed enolate nucleophile, the additions are essentially irreversible. None of the enzymes are yet commercially available and little data are available oil the individual specificities for the aldehydic substrates. A bacterial NeuAc synthase (EC 4.1.3.19) has been used for the microscale synthesis of A -acetylncuraminic acid from Af-acetyl-D-mannosamine31 and its 9-azido analog from 2-acetamido-6-azido-2,6-dideoxy-D-mannose32. [Pg.593]

A similar series of reactions was performed by Paulsen and Hdlck141 for the preparation of the T-antigenic, unprotected, amino acid-disaccha-rides 200 and 201, starting from the 4,6-0-benzylidene-N-(benzyloxy-carbonyl) benzyl esters 198 and 199, respectively, by condensation with 110 in the presence of mercury dicyanide-mercury dichloride and molecular sieves 4A, and deprotection of the product. Sinay and co-workers148 also reported the synthesis of hexa-O-acetyl derivatives of 200 and 201 by application of the sequence of azido-nitration-bromination. [Pg.175]


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See also in sourсe #XX -- [ Pg.12 , Pg.14 , Pg.471 , Pg.472 , Pg.473 , Pg.474 , Pg.475 , Pg.553 , Pg.554 , Pg.555 , Pg.556 , Pg.557 , Pg.558 ]




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Acetyl esters

Ester acetylation

Esters synthesis from

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