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1.

Starting from 1,2‐isopropylidene‐d‐xylose (1), 3‐methoxyoxetane δ‐amino acids with dlyxo, dribo, and darabino configurations were synthesized. The early introduction of an azide function at C‐5 of 1 shortened the synthetic pathway. Ring contraction of the intermediate d‐xylono‐1,4‐lactone 6 via triflation and treatment with base led to the corresponding 3‐methoxyoxetane δ‐amino ester with dlyxo configuration 7. The analogous procedure for d‐ribono‐1,4‐lactone 16 furnished a mixture of dribo and darabino esters 17 and 18. Hydrolysis of the methyl esters 7, 17, and 18 to their corresponding δ‐amino acids was successful with LiOH in THF, in contrast to that of their 3‐hydroxy analog 11.   相似文献   

2.
《合成通讯》2013,43(9):1565-1575
Abstract

trans‐Resveratrol‐3‐O‐β‐D‐glucupyranoside (trans‐piceid, 2) and trans‐resveratrol‐4′‐O‐β‐D‐glucupyranoside (trans‐resveratroloside 3) are the naturally occurring O‐glucoside conjugates of the polyphenolic stilbenoid trans‐resveratrol 1. Recently, attention has been drawn towards the interesting biological properties of the glucoside conjugates 2 and 3 as well as those of the aglycone 1. The fact that only limited quantities can be obtained by extraction from natural sources has prompted the development of novel syntheses of 2 and 3, based on a convergent Heck‐coupling strategy, which now conveniently allows for the preparation of multi‐milligram to gram quantities of each.  相似文献   

3.
Four configurational types of two protected O‐linked (5a‐carba‐D‐hexopyranosyl)‐D‐glucal and carba‐D‐glucal derivatives were prepared in order to provide versatile synthetic intermediates readily convertible into carba‐oligosaccharides of biological interest. These compounds may also find application as donors for elongation of carba‐oligosaccharide chains having O‐linked carbahexopyranose residues at nonreducing ends.  相似文献   

4.

The synthesis of 2‐acetamido‐2‐deoxy‐6‐O‐octanoyl‐D‐glucono‐1,5‐lactone 9 and 2‐acetamido‐2‐deoxy‐6‐O‐octanoyl‐α‐D‐glucopyranose 7 from 2‐acetamido‐2‐deoxy‐α‐D‐glucopyranose is reported. For both targets, the key intermediate was allyl 2‐acetamido‐3,4‐di‐O‐benzyl‐2‐deoxy‐6‐O‐octanoyl‐α‐D‐glucopyranoside 5. Surface tension measurements (critical micellar concentration of 22.3 mM and 5 mM for 9 and 7, respectively) showed up the surface activity of both compounds, while enzyme inhibition assays indicated that 9 could inhibit bovine β‐N‐acetylglucosaminidase (Ki=6.5 µM) but not Serratia marcescens chitobiase nor hen egg‐white lysozyme. Moreover, 7 was shown to induce chitinase production of S. marcescens and to be readily metabolized by these bacteria.   相似文献   

5.
The reaction of N 1‐tosylamidrazones 1 with oxalyl dichloride, phosphorus trichloride, and phosphoryl chloride leads to 1,2,4‐triazinediones 3 , 1,2,4,3‐triazaphospholines 4 , and 1,2,4,3‐triazaphospholine‐3‐oxides 5 , respectively. The structures of the new products have been established by IR; 1H, 13C, and 31P NMR studies; and elemental analysis.  相似文献   

6.
The interaction of 9,10‐phenanthrenquinone with primary amines has been studied. Use of sterically hindered anilines gave the phenanthren‐o‐iminoquinones in good yields. These compounds are structural analogues of o‐benzoquinones. Using single‐electron reduction, o‐iminoquinones may synthesize metal's free‐radical complexes.  相似文献   

7.
Abstract

A series of novel C‐thionucleosides: 1,5‐ and 1,3‐dialkyl derivatives of (2,3,4,5‐tetra‐O‐acetyl‐1,5‐dithio‐1‐methylthio‐α‐D,Larabinopentulopyranos‐1‐yl)‐1H‐1,2,4‐triazole nucleosides 10a–d and 17a–c were synthesized, after spontaneous rearrangements, from concerted 1,3‐cycloaddition of the sugar nitrile 5 with the reactive 1‐(chloroalkyl)‐1‐aza‐2‐azoniaallenes 6 and 13 in the presence of a Lewis acid. Deblocking of the acylated nucleosides afforded the free nucleosides 11a–d and 18a–c. The structures of the synthesized compounds were confirmed by 1H NMR and mass spectra.  相似文献   

8.
2‐Arylbenzoxazoles and 2‐arylbenzimidazoles were synthesized by the reaction of aldehydes with 2‐aminophenol and O‐phenylenediamines in the presence of iodine. 1,3,5‐Trisubstituted pyrazoles were synthesized from chalcones and hydrazines in the presence of iodine.  相似文献   

9.
Abstract

2‐Formylglycals 1a,b reacted with dialkyl 3‐oxoglutarates in the presence of base to furnish the 5‐[(1R,2R(S),3R)‐1,2,4‐tris(benzyloxy)‐3‐hydroxy‐butyl]‐2‐hydroxy‐isophthalic acid dialkyl esters 2ad. Treatment of 1a,b with hydrazine derivatives afforded the substituted 1,2,4‐tri‐O‐benzyl‐1C‐(1H‐pyrazol‐4‐yl)‐D‐tetritols 5a–d. Deprotection of 5a,b was achieved with Pd/H2 to yield the 1C‐(1‐methyl‐1H‐pyrazol‐4‐yl)‐D‐tetritols 6a,b.  相似文献   

10.
Reactions of N‐(5,5‐dimethyl‐3‐oxocyclohexenyl)‐S,S‐diphenylsulfilimine, a kind of enaminone, with isopentyl nitrite, isocyanates, isothocyanates, benzenediazonium chloride, and 1,1,1‐trifluoro‐4‐ethoxy‐3‐buten‐2‐one gave 1,2,5‐oxadiazole, isoxazole, isothiazole, 1,2,3‐triazole, and pyrrole derivatives condensed with cyclohexane, respectively, in one pot.  相似文献   

11.
Foamability and foam stability, emulsifying power, surface tension, and interfacial tension were investigated for Tween‐20 (polyoxyethylene sorbitan monolaurate), Tween‐60 (polyoxyethylene sorbitan monostearate), Tween‐80 (polyoxyethylene sorbitan monooleate), Arlacel‐60 (Sorbitan stearate), and Arlacel‐80 (Sorbitan oleate). Among all the surfactants tested for their foaming power and foamabilty, Arlacel‐60 and Arlacel‐80 showed the best results; the foaming power and foamability was found to be 100%. The surfactants having foam stability more than 50% can be considered as metastable and those less than 50% are considered as low‐stability foams. In case of surface tension and interfacial tension property measurements, Arlacel‐80 showed the best results. At 1% surfactant concentration, the surface tension and interfacial tension of Arlacel‐80 was found to be 29.9 dynes/cm and 1.1 dynes/cm at 30°C ambient temperature. Also, Arlacel‐60 was found to exhibit the best emulsifying power among all the surfactants tested. At 30°C, the emulsifying property of Arlacel‐60 was 6 hours.  相似文献   

12.
《合成通讯》2013,43(9):1653-1662
Abstract

Synthesis, structure, and reactivity of chiral N‐chlorosulfonyloxazolidin‐2‐ones are described. Their synthesis were easily carried out starting from the corresponding chiral oxazolidin‐2‐ones and sulfuryl chloride to afford the title compounds 1 in high yields.  相似文献   

13.
Triphenylfurans are stereoselctively oxidized to cis‐but‐2‐ene‐1,4‐diones, suitable precursors of 3(2H)‐furanones, in very good yields using ammonium nitrate or potassium nitrate in 80% aqueous acetic acid.  相似文献   

14.
Quasi‐1‐D (one‐dimensional) tungsten disulfide (WS2) nanocrystal was synthesized through a two‐step hydrothermal process. Energy dispersive spectroscopy (EDS) identified that the chemical composition of the final product was WS2. The produced nanocrystal was further characterized with X‐ray diffraction (XRD), transmission electron microscopy (TEM), and scanning electron microscopy (SEM). The results have shown that most of the products are quasi‐1‐D nanocrystals with the width around 140 nanometers and thickness about 30 nanometers. However, the length of the majority of nanocrystals could reach 1 micron. The selected area electron diffraction (SAED) pattern indicates that the nanocrystal is of a single crystal. N2 adsorption measurement revealed that the BET specific surface area of this sample is 97 m2g?1, which indicates that the as‐prepared product has better catalyzing and friction performance.  相似文献   

15.
Atul Gupta  Suprabhat Ray 《合成通讯》2013,43(18):3119-3126
An efficient and simple synthesis of substituted 3‐phenyl‐7‐methoxybenzopyrans as pseudo‐vitamin‐D3 analogs in good yields under mild reaction conditions is described.  相似文献   

16.
Abstract

Methyl 3‐azido‐2,3‐dideoxy‐α/β‐Darabino‐ and ‐α/β‐Dribo‐hexopyranosides were transformed into 6‐iodo analogues via p‐tolylsulfonyl compounds. Elimination of hydrogen iodide from 6‐iodo glycosides provided methyl 4‐O‐acetyl‐3‐azido‐2,3,6‐trideoxy‐α‐ and ‐β‐Dthreo‐hex‐5‐eno‐pyranosides or 3‐azido‐4‐Op‐tolylsulfonyl‐2,3,6‐trideoxy‐α‐D‐threo‐ and ‐β‐Derythro‐hex‐5‐eno‐pyranosides. Ferrier's carbocyclization of 4‐O‐acetyl‐3‐azido‐2,3,6‐trideoxy‐α‐ and ‐β‐Dthreo‐hex‐5‐eno‐pyranosides gave (2S,3R,5R)‐2‐acetoxy‐3‐azido‐5‐hydroxycyclohexanone, which was converted into oxime. The 2‐OAc group in oxime was substituted by azide ion to yield (2R,3R,5R)‐2,3‐diazido‐5‐hydroxycyclohexanone oxime. The configuration and conformation of all products are widely discussed on the basis of the 1H and 13C NMR.  相似文献   

17.
The formation of four differently protected 4‐deoxy‐D‐lyxo‐hexose derivatives 7, 8, 12, and 14 is described. In the first procedure, a nucleophilic displacement of the allylic mesylate 4 by hydride was combined with a highly stereoselective osmylation of olefin 6 to afford diol 7. In the second radical procedure, tributyl tin hydride was substituted by the cheap and environmentally friendly hypophosphorous acid as a hydrogen donor in the reduction of xanthate 13 to 4‐deoxy lyxo‐hexose 14.  相似文献   

18.
Abstract

Glucosyl‐1,5‐benzodiazepin‐2,4‐diones were synthesized in order to study the influence of the glucidic moiety on the amphiphilic behaviour. The glucosyl groups include 6‐deoxy‐D‐glucopyranos‐6‐yl and 6‐deoxy‐3‐O‐R‐D‐glucopyranos‐6‐yl (R = n ? C n H 2n+1; n = 1, 8, 10 and 12). Variation in the length of the hydrocarbon chain allowed comparison of such amphiphilic data as water solubility (Sw) and surface tension (γ) values. At 25°C, the glucopyranosyl benzodiazepines with R = H and CH3 show a higher water solubility than the starting 1,5‐benzodiazepin‐2,4‐diones. Some other glucidic benzodiazepine derivatives with an appropriate alkyl chain at C‐3 carbon of the D‐glucopyranose present a variable hydrosolubility and surface tension γ values close to 43 to 46 mN · m?1 at the corresponding saturation. Moreover, according to preliminary tests, these compounds seem to show a better affinity for the blood brain barrier.  相似文献   

19.

The chemistry of saccharides has emerged as a new subarea of pharmaceuticals. Condensation reactions of D‐gluconic acid with [M(en)2]Cl2/[M(ea)2]Cl2 where M=Cu, Ni, en=ethylenediamine, and ea=ethanolamine were carried out and a new series of chiral complexes have been isolated and characterized. Molar conductance measurements show that the complexes are ionic, and the spectral data are indicative of octahedral geometry of the complexes [Cu(D‐GlcCO2H en*)2 (H2O)2] · Cl2 (1b), [Cu(D‐GlcCO2H ea*) (H2O)2] · Cl2 (3b) and [Ni(D‐GlcCO2H ea*) (H2O)2] · Cl2 (4), and the square planar geometry of complex [Ni(D‐GlcCO2H en*)2] · Cl2 (2b). Polarimetric data along with CD spectra establish the chiral nature of complexes. Solution stabilities of these complexes were evaluated by cyclic voltammetric techniques as a function of pH. Electrochemical behavior of the complexes was studied in aqueous solution and showed an irreversible CuII/CuI couple. Kinetic studies of complex 1b and 3b with calf thymus DNA have been investigated spectrophotometrically under pseudo‐first order conditions, and k obs values have been evaluated. Circular dichroism, cyclic voltammetry determinations, and viscosity measurements have also been carried out to authenticate the binding of DNA with metal complexes. Complexes 1b and 3b bind to DNA by covalent bond formation.  相似文献   

20.

The copolymerization of 2‐(3‐(6‐tetralino)‐3‐methyl‐1‐cyclobutyl)‐2‐hydroxyethyl methacrylate (TCHEMA), monomer with acrylonitrile and 4‐vinylpyridine were carried out in 1,4‐dioxane solution at 65°C using AIBN as an initiator. The copolymers were characterized by FTIR, 1H‐NMR, and 13C‐NMR spectroscopic techniques. Thermal properties of the polymers were also studied by thermogravimetric analysis and differential scanning calorimetry. The copolymer compositions were determined by elemental analysis. The monomer reactivity ratios were calculated by the Fineman‐Ross and Kelen‐Tüdös method. Also, the apparent thermal decomposition activation energies were calculated by the Ozawa method with a Shimadzu TGA 50 thermogravimetric analysis thermobalance.  相似文献   

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