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H Faillard

Publications and source records attributed to H Faillard.

At least 19 recordsLinked to original sources

2-alpha-(N-dansyl-4-aminophenylthio)-N-acetyl-9-O-acetylneuraminic acid. A new specific and highly sensitive substrate in sialate-O-acetylesterase assay.

2-alpha-(N-Dansyl-4-aminophenylthio)-N-acetyl-9-O-acetylneuraminic acid (10) was prepared as a new specific and highly sensitively detectable sialate-9-O-acetyl-esterase substrate. It is built up from a sialidase-stable aminophenyl-alpha-thioketoside of N-acetylneuraminic acid. By labeling this thioketoside with dansyl chloride a fluorescent neuraminic acid derivative was prepared which allows determinations down to the picomol range. Regioselective acetylation with trimethylorthoacetate results in the corresponding 9-O-acetyl derivative. After incubation with esterase from bovine brain the hydrolysis products were separated on a HPLC column and fluorimetrically detected at 334 nm excitation and 564 nm emission. The Km value of 2.5 mM was in the range between the values of the completely unspecific methylumbelliferyl acetate and the less sensitively detectable N-acetyl-9-O-acetylneuraminic acid which have been used up to now as standard substrates.

Acetylesterase

Synthesis of N-acetyl-9-O-acetylneuraminic acid alpha-p-amino-phenylthioketoside and its application as ligand in the affinity chromatography of a lectin with preferential affinity to O-acetylated sialic acids.

The N-acetyl-9-O-acetylneuraminic acid-alpha-p-aminophenylthioketoside 7 was synthesized as a sialidase-stable ligand for the affinity chromatography of a lectin with preferential affinity to O-acetylated sialic acids. The thioketoside was prepared by phase-transfer-catalysed glycosidation followed by Zemplen deacetylation. Regioselective acetylation of the completely de-O-acetylated derivative was practised by two different methods. The acetylation with trimethylorthoacetate did not show the desired selectivity for hydroxyl groups; in addition to the acetylation in position 9 extensive formation of an acetimidate ester derivative with the amino-group in the aminophenyl-moiety was observed. However the esterification with N,N-dimethylacetamide dimethyl acetal resulted in an exclusive acetylation of the hydroxyl-group in position 9. After catalytic hydrogenation this ligand was immobilized both directly and by a six-carbon long spacer group to the agarose matrix. The adsorbents were applied in the affinity chromatography of the lectin and their binding capacity and selectivity compared to those of the formerly used mucin matrix. In both respects the thioketoside coupled by the spacer turned out to be a better ligand for the isolation of the lectin than the mucin.

Acetylation

[Change in acylneuraminic acid content of T-lymphocytes and in plasma in breast cancer].

Increased sialic acid levels reflecting tumor burden are found on the surface of T-lymphocytes and in the plasma of patients with carcinoma of the mammary gland. The data of the determinations of sialic acid content and distribution on T-cells, using microanalytical methods such as HPLC and a colorimetric test, show that the total sialic acid content is increased by about 60% and that nearly 80-90% of the sialic acids consist of N-acetyl-9-O-acetyl-neuraminic acid, in comparison to the healthy controls (not containing O-acetylated neuraminic acid). Investigations on lymphocytes of malignant melanoma patients show similar changes of sialic acid content and distribution on the cell surface. Increased sialic acid levels are also found in the plasma of patients with cancer but no O-acetylated derivative can be found. Furthermore the examinations show that the separation of the T-lymphocytes from the total lymphocyte fraction is not required. Determination of sialic acids in the total lymphocyte fraction can be a simplification in carrying out further diagnostic investigations. A high level of sialic acids as "antirecognition factor" seems to be not only a marker of tumor cells but also an attribute of T-lymphocytes, involved in the defence against the malignoma (malignant melanoma, breast cancer). Considering the possible contribution of sialic acid to the immunoregulatory protective mechanism during the first stage of pregnancy, sialic acid content and distribution on T-cells of pregnant women are investigated. Both an increase and a change in the distribution of sialic acids can be excluded.

B-Lymphocytes

Phase-transfer-catalyzed synthesis of aryl alpha-ketosides of N-acetylneuraminic acid. A 2-methylfluoran-6-yl glycoside of N-acetylneuraminic acid, 2-methyl-6-(5-acetamido-3,5-dideoxy-alpha-D-glycero-D-galacto- nonulopyranosylonic acid)xanthene-9-spiro-1'-isobenzofuran-3'-one, a new substrate for neuraminidase assay.

Glycosidation of N-acetylneuraminic acid by phase-transfer catalysis in chloroform-aqueous alkali gave several known and some new aryl alpha-ketosides in a short reaction time and in good yields. The 4-methylumbelliferyl alpha-ketoside, the standard substrate for neuraminidase, was prepared in a yield of up to 70%. New Neu5Ac ketosides were prepared with fluorescein and the fluorescein analog, 2-methyl-6-hydroxyfluoran (2-methyl-6-hydroxyxanthene-9-spiro-1'-isobenzofuran-3'-one) as aglycons, the latter being synthesized from 2-(2-hydroxy-5-methyl-benzoyl) benzoic acid and 3-fluorophenol. The alpha configuration was ascertained by 400-MHz 1H-n.m.r. spectroscopy and by cleavage of the ketosides with neuraminidases from Vibrio cholerae and Clostridium perfringens. The enzymic hydrolysis of the 2-methylfluoran-6-yl ketoside gave Km values of 82 microM (V. cholerae) and 96 microM (C. perfringens).

Carbohydrate Conformation

Phase-transfer-catalysed synthesis of N-acetylneuraminic acid alpha-thioketosides and inhibitor studies with Clostridium perfringens sialidase.

The alpha-thioketosides of methyl 5-acetamido-4,7,8,9-tetra-O-acetylneuraminate with thioacetic acid, thiophenol, 4-nitrothiophenol, 4-aminothiophenol, 2-mercaptopyridin and mercaptobenzothiazol as aglycones were synthesized by phase-transfer catalysis in good yields. The methyl 5-acetamido-4,7,8,9-tetra-O-acetyl-2-thioacetylneuraminate is the analogous thio compound to the methyl 5-acetamido-2,4,7,8,9-penta-O-acetylneuraminate and can be used as intermediate for preparing S-ketosides of Neu5Ac. By Zemplen saponification and mild hydrolysis of the methyl-ester group the free Neu5Ac-alpha-thioketosides with thiophenol, 4-nitrothiophenol, 4-aminothiophenol and 2-mercaptopyridin could be prepared. These ketosides were found to be inhibitors of C. perfringens sialidase with Ki-values between 2.3mM and 6.6mM. The free Neu5Ac-alpha-mercaptobenzothiazolyl ketoside could not be prepared by this procedure. It was completely hydrolysed during Zemplen saponification and methyl-ester hydrolysis in alkaline medium.

Clostridium perfringens

Sialic acids in human lymphocytes. Qualitative and quantitative alterations in cancer cases.

Sialic acids, hydrolyzed from human lymphocytes, were determined, in the nanomole range, with a modified form of the periodic acid-thiobarbituric acid assay and liquid chromatography. The l.c. separations were carried out with two different systems, firstly an Aminex HPX-72 S anion-exchange resin and a 0.15M ammonium sulfate mobile phase, and secondly an amine phase (5 microns) and an acetonitrile-phosphate buffer as mobile phase. The lymphocytes of cancer-stricken persons showed an evident rise of the sialic acid content, combined with a shift of the sialic acid distribution to higher O-acetylated derivatives, as compared to the controls.

Breast Neoplasms

Alterations of acyl-neuraminic acids on T-lymphocytes in cases of melanoma.

Content and distribution of the different sialic acids on human lymphocytes, isolated from 7-10 ml of fresh human blood, were determined using microanalytical methods, such as HPLC and a colorimetric test. Comparison of the data of patients with melanoma with those of healthy persons shows an evident increase of the sialic acid content combined with a shift of the sialic acid distribution to higher O-acetylated derivatives.

Chromatography, High Pressure Liquid