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Keto derivatives of, synthesis

The synthetic procedure currently used consists in the direct oxidation of an isolated hydroxyl group in the sugar moiety of suitably protected nucleosides. In the meantime, the synthesis of some keto derivatives of aldopentose nucleosides by selective-elimination processes has been reported.4 8... [Pg.229]

This Subsection deals with the preparation of 2 - and 4 -ketohexosyl-purines and -pyrimidines, which have proved to be versatile synthetic intermediates. A 5 -keto derivative of a hexofuranose nucleoside is also described. The synthesis of epoxy-, halogeno-, unsaturated, epimino-, and thio-ketonucleosides will be developed in subsequent Subsections and Sections. [Pg.237]

Many uses for the addition of lithiated dichloromethane to keto-sugars have been illustrated thus far. With respect to diversity, this noteworthy addition to a 2-keto derivative of D-glucose was used as a key step in the synthesis of sphingofungin E [80]. Additionally, a recent paper by Sato [81] provides a new process for the synthesis of chloroepoxides. [Pg.518]

Wasserman et al. have published details of their studies on the synthesis of a-keto-derivatives of ketones, lactones, esters, lactams and amides, by an approach which involves the cleavage of enamino carbonyl systems by reaction with singlet oxygen [equation (39)]. Several methods for the preparation of the enamino compounds are described with different reagents being preferred for different substrates. Thus, with ketones Bredereck s reagent [Bu OCH(NMe2)2 used, but esters and... [Pg.55]

To date (ca 1996) many potentially usefiil sucrose derivatives have been synthesized. However, the economics and complexities of sucrochemical syntheses and the avadabiLity of cheaper substitutes have limited their acceptance hence, only a few of them are in commercial use. A change in the price and availability of petroleum feedstocks could reverse this trend. Additional impetus may come from regioselective, site-specific modifications of sucrose to produce derivatives to facilitate and improve the economics of sucrochemical syntheses. For example, the microbe yigwbacterium tumifaciens selectively oxidizes sucrose to a three-keto derivative, a precursor of alkylated sucroses for detergent use (50). Similarly, enzymes have been used for selective synthesis of specific sucrose derivatives (21). [Pg.6]

These formulae explain the scission products of the two alkaloids and the conversion of evodiamine into rutaecarpine, and were accepted by Asahina. A partial synthesis of rutaecarpine was effected by Asahina, Irie and Ohta, who prepared the o-nitrobenzoyl derivative of 3-)3-amino-ethylindole-2-carboxylic acid, and reduced this to the corresponding amine (partial formula I), which on warming with phosphorus oxychloride in carbon tetrachloride solution furnished rutaecarpine. This synthesis was completed in 1928 by the same authors by the preparation of 3-)S-amino-ethylindole-2-carboxylic acid by the action of alcoholic potassium hydroxide on 2-keto-2 3 4 5-tetrahydro-3-carboline. An equally simple synthesis was effected almost simultaneously by Asahina, Manske and Robinson, who condensed methyl anthranilate with 2-keto-2 3 4 5-tetrahydro-3-carboline (for notation, see p. 492) by the use of phosphorus trichloride (see partial formulae II). Ohta has also synthesised rutaecarpine by heating a mixture of 2-keto-2 3 4 5-tetrahydrocarboline with isatoic anhydride at 195° for 20 minutes. [Pg.499]

Some advantages of this reaction are high yield if the tosylate is in a sterically accessible position excellent isotopic purity of the product (usually higher than-95%) and perhaps most important, access to stereospecifically labeled methylene derivatives. For example, deuteride displacement of 3j -tosylates (183) yields the corresponding Sa-d derivative (185) in 96-98% isotopic purity. Application of this method to the labeled sulfonate (184), obtained. by lithium aluminum deuteride reduction of a 3-ketone precursor (see section HI-A) followed by tosylation, provides an excellent synthesis of 3,3-d2 labeled steroids (186) without isotopic scrambling at the adjacent positions. The only other method which provides products of comparable isotopic purity at this position is the reduction of the tosyl-hydrazone derivative of 3-keto steroids (section IV-B). [Pg.197]

The reaction with the siloxy derivative 29 is an interesting example because the product 30 is a 1,5-dicarbonyl derivative (Equation (36)).96 1,5-Dicarbonyls are classically prepared by a Michael addition, but the synthesis of 30 by a Michael addition is not possible because it would require addition to the keto form of 1-naphthol. The acetoxy derivative 31 resulted in a different outcome, leading to the direct synthesis of the naphthalene derivative 32 (Equation (37)).96 In this case, the combined C-H activation/Cope rearrangement intermediate was aromatized by elimination of acetic acid before undergoing a reverse Cope rearrangement. [Pg.180]

The synthesis of a substituted derivative of 2-keto-l,2,3,4-tetrahydro-dibenzothiophene is discussed in Section VI, D. [Pg.235]

Relatively acidic carbon acids such as malonic esters and jS-keto esters were the first class of carbanions for which reliable conditions for alkylation were developed. The reason being that these carbanions are formed using easily accessible alkoxide ions. The preparation of 2-substiuted /i-kcto esters (entries 1, 4, and 8) and 2-substituted derivatives of malonic ester (entries 2 and 7) by the methods illustrated in Scheme 1.5 are useful for the synthesis of ketones and carboxylic acids, since both /1-ketoacids and malonic acids undergo facile decarboxylation ... [Pg.13]


See other pages where Keto derivatives of, synthesis is mentioned: [Pg.42]    [Pg.49]    [Pg.233]    [Pg.960]    [Pg.960]    [Pg.350]    [Pg.330]    [Pg.156]    [Pg.385]    [Pg.502]    [Pg.243]    [Pg.312]    [Pg.353]    [Pg.610]    [Pg.112]    [Pg.116]    [Pg.1286]    [Pg.56]    [Pg.218]    [Pg.577]    [Pg.74]    [Pg.6]    [Pg.329]    [Pg.169]    [Pg.1008]    [Pg.397]    [Pg.425]    [Pg.605]    [Pg.258]    [Pg.480]    [Pg.252]    [Pg.169]   
See also in sourсe #XX -- [ Pg.42 , Pg.234 ]




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Synthesis of derivatives

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