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Subject aminal ester synthesis

Synthesis of a C(8)-C(18) segment of the larger fragment of lb using the same basic strategy is depicted in Scheme 25. Here, hydroxy ketone 176 was subjected to syn-selective (dr of crude product=90 10) reductive amination [42] with sodium cyanoborohydride and benzylamine followed by tetrahydro-oxazine formation using aqueous formaldehyde. The resulting heterocycle 182 was then converted to unsaturated ester 184 by successive desilylation, oxidation, and entirely (Z)-selective Horner-Wadsworth-Emmons olefination. Re-... [Pg.237]

The synthesis of the derivatives (339)-(346) was carried out as shown in Scheme 28. Metalation of the acetal (336), followed by thiolation and alkylation, gave the ester derivative (337). Acetal deprotection to form (338) and subsequent treatment under Knoevenagel conditions with piper-idinium acetate in benzene afforded the desired ester (339). Reduction of compound (339) gave alcohol (340), which was converted to aldehyde (341) and protected as its acetal (342) under standard conditions. Deprotonation was effected by Bu"Li in THF at — 78 °C and subsequent conversion to the sulfonyl chloride was carried out by sequential treatment with sulfur dioxide and A-chloro-succinimide. Treatment of the sulfonyl chloride (343) with concentrated NH4OH in acetone provided the sulfonamide (344), which was deprotected (345) and subjected to reductive amination to provide compounds in the aminomethyl sulfonamide series (346). [Pg.38]

Following their recent synthesis of ( )-vincadifformine (Scheme 75) (343,344), Szantay and his collaborators have contributed another s3mthesis of pseudovincadifformine and its epimers (392). Condensation of the trypt-amine derivative 587 with the aldehydoester 698 gave, via an unstable secodine derivative, the epimeric tetracyclic esters 715, which, without separation, were subjected to debenzylation, with partial epimerization and cyclization. The product, a mixture of the two cis C/D-fused pentacyclic... [Pg.175]

The synthesis of 86 commenced with oxazole carboxylic acid 87. Base-catalyzed lithiation and coupling with isatin 88 followed by methyl ester formation and Boc deprotection provided tertiary alcohol 89. A second coupling of the amine 89 with carboxylic acid 90 followed by chlorination afforded chloride 91. Treatment of 91 with TBAF gave a 1 1 mixture of O-aryl ether 92 (CIO) in excellent yield. Refluxing 92 in chloroform resulted in the formation of 93 (70%, with 30% of the isomer), which was subjected to a three-step reaction sequence to furnish intermediate 86 (Scheme 16). [Pg.446]

Glyoxylyl chloride jo-toluenesulfonylhydrazone (1) continues to be a powerful reagent for the synthesis of diazoacetyl esters and amides. In most cases, the diazoacetyl esters and amides, which can be obtained from the reaction of (1) with corresponding alcohols or amines, are subjected to the catalysis with transition metal complex. A series of synthetically useful transformations, typically cyclopropanatlon, C-H insertion and ylide formation, can occur In these catalytic reactions. There are several excellent reviews In this area that have been published during the past decade. ... [Pg.300]

Many other industrial applications at large scale are known. This subject has been comprehensively reviewed by Busacca et al. [37], and we will highlight one example here, the case of torcertrapib - which is a powerful cholesteryl ester transfer protein (CETP) inhibitor invented by Pfizer [38]. The key step in this synthesis - which can be scaled-up to multi-kilograms - is a Buchwald-Hartwig reaction involving very cheap l-chloro-4-trifluoromethylbenzene and a chiral amine in the presence of PdfOAcj and DavePhos (Scheme 2.8). Interestingly, PhB(OH)2 was added in order to activate the catalyst. [Pg.105]


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See also in sourсe #XX -- [ Pg.575 ]




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Aminal esters

Aminal esters synthesis

Amines esters

Amines synthesis

Ester Amination

Subject ester

Synthesis Subject

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