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1.
Cyclocondensation of (R)-phenylglycinol with appropriately γ-substituted δ-oxo acid derivatives provides bicyclic lactams from which the enantioselective synthesis of 1-deoxy-d-gulonojirimycin has been reported.  相似文献   
2.
A straightforward synthetic approach for the preparation of non N-functionalized isoxazolidines from BF3-catalyzed 1,3-cycloaddition reactions between methyl glyoxylate oxime and alkenes is described. Subsequently, isoxazolidines were N-functionalized with three chemically active groups (2-chloroethyl, cyanomethyl and 2-acetoxyethyl), thus allowing the preparation of a wide array of N-functionalized isoxazolidines. The compounds were characterized by means of 1H and 13C NMR spectroscopy and mass spectrometry. X-ray analysis was used for stereochemical elucidation.  相似文献   
3.
Stereocontrolled synthesis of 5-epi- and 5,7a-di-epi-hyacinthacine C1 (7 and 8), two potential glycosidase inhibitors are described using α,β-unsaturated ketone 9 as homochiral starting material. The key step in the synthesis is the highly diastereoselective dihydroxylation reaction of 9, that allows the obtention of a single bis-hydroxylated ketone (10). Further derivatization into two epimeric mesylate esters followed by internal cyclization form the pyrrolizidinic compounds 7 and 8. This type of compounds can be useful in glycobiology due to their ability to inhibit carbohydrate-processing enzymes.  相似文献   
4.
d-Ribono-1,4-lactone was treated with ethylamine in DMF to afford N-ethyl-d-ribonamide 9a in quantitative yield. Bromination of amide 9a by the system SOBr2 in DMF or PPh3/CBr4 in pyridine led, after acetylation, to epoxide 7. However, treatment of amide 9a with acetyl bromide in dioxane followed by acetylation gave 2,3,4-tri-O-acetyl-5-bromo-5-deoxyl-N-ethyl-d-ribonamide 10a. Methanolysis of 10a, with sodium methoxide, afforded the N-ethyl-d-ribonolactam 11a in 51% overall yields. Using this method, N-butyl, N-hexyl, N-dodecyl, and N-benzyl-d-ribonolactams 11b-e were obtained in good yields (48-53%).  相似文献   
5.
Vinod D. Chaudhari 《Tetrahedron》2006,62(18):4349-4354
The d-glucose derived α,β-unsaturated ester 5 on 1,2-acetonide deprotection, oxidative diol cleavage followed by treatment with N-benzylamine in the presence of NaBH3CN undergoes reductive amination and a concomitant intramolecular conjugate addition reaction leading to the formation of dihydroxypyrrolidine-ester 6a and monohydroxypyrrolidine-γ-lactone 6b. Intermediates 6a and 6b were efficiently converted to (−)-lentiginosine 3a, its 8a-epimer 3b, and pyrrolizidine azasugar 4 in good overall yield.  相似文献   
6.
Zsuzsánna Csíki 《Tetrahedron》2010,66(39):7821-7837
The synthesis of three azasugar-containing analogs of the disaccharide units of heparan sulfate, which are potential inhibitors of the enzyme heparanase, is reported. Synthetic routes were developed for the preparation of l-ido-nojirimycin type glycosyl acceptors with O-4 free. Glycosylation of these acceptors with an O-6 functionalized 2-azido-2-deoxy-d-glucose thioglycoside donor afforded the α-linked disaccharides in good yields. The advantages of using the 4-nitrobenzenesulfonyl group for the protection of the ring nitrogen of azasugars were demonstrated.  相似文献   
7.
A generalized method for performing ring closing metathesis in the presence of basic amines has been established and successfully used in the formal synthesis of (+)-lentiginosine as well as some valuable intermediates for the synthesis of several other azasugars and aminocyclitols.  相似文献   
8.
Naturally occurring (1S,2R,3R,5R,7aR)-1,2-dihydroxy-3-hydroxymethyl-5-methylpyrrolizidine [(+)-hyacinthacine A6, 2] together with unnatural (1S,2R,3R,7aS)-1,2-dihydroxy-3-hydroxymethylpyrrolizidine [(+)-7a-epi-hyacinthacine A1, 3] and (1S,2R,3R,5S,7aS)-1,2-dihydroxy-3-hydroxymethyl-5-methylpyrrolizidine [(+)-5,7a-diepi-hyacinthacine A6, 4] have been synthesized from a DALDP derivative [5, (2R,3S,4R,5R)-3,4-dibenzyloxy-2′-O-tert-butyldiphenylsilyl-2,5-bis(hydroxymethyl)pyrrolidine], as the homochiral starting material. The synthetic process employed took advantages of Wittig methodology followed by internal lactamization, in the case of (+)-7a-epi-hyacinthacine A1 (3), and reductive amination for (+)-hyacinthacine A6 (2) and (+)-5,7a-diepi-hyacinthacine A6 (4).  相似文献   
9.
Vipin Kumar 《Tetrahedron》2006,62(8):1877-1885
A stereo-defined synthesis of two diastereomers of polyhydroxypyrrolidines from 3,4,6-tri-O-benzyl-d-glucal 4 involving a cleavage-recyclization strategy is reported. Hemiacetal 7 obtained from glucal 4, upon reduction with LiAlH4 afforded diol 8. Selective acetylation of 8 to 11, followed by Mitsunobu cyclization yielded the diversely protected polyhydroxypyrrolidine 12. Oxidation of 11 and subsequent stereoselective reduction led to 20, the C-5 epimer of 11, which upon Mitsunobu cyclization gave polyhydroxypyrrolidine 21. Selective deprotection of the acetyl groups of 12 and 21 were carried out using Na2CO3 in MeOH. Polyhydroxypyrrolidines 12 and 21 upon heating with an excess of Mg in MeOH underwent simultaneous N-detosylation and deacetylation to afford amino alcohols 15 and 24, respectively, in quantitative yield. Catalytic hydrogenation of 15 and 24 provided quantitatively the polyhydroxypyrrolidines 2 and 3, respectively.  相似文献   
10.
A catalytic asymmetric synthesis of (+)-aza-galacto-fagomine (AGF) – the most promising compound for the pharmacological chaperone therapy of Krabbe disease – was accomplished in six steps, in 14% overall yield. The synthesis hinges on the combination of organocatalyzed aldolization and reductive hydrazination.  相似文献   
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