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M E Breimer

Publications and source records attributed to M E Breimer.

86 records · Page 5Linked to original sources

Glycolipids of rat small intestine. Characterization of a novel blood group H-active triglycosylceramide.

A novel blood group H-active triglycosylceramide has been isolated from rat small intestine. It was present exclusively in the epithelial cells. The structure was established by mass spectrometry, NMR spectroscopy and degradative methods to the Fucp alpha 1 leads to 2Galp beta 1 leads to 4Glcp beta 1 leads to 1Cer. The lipophilic part was made up of mainly trihydroxy base (phytosphingosine) and 16 : 0--24 : 0 fatty acids.

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Adaptation of mass spectrometry for the analysis of tumor antigens as applied to blood group glycolipids of a human gastric carcinoma.

Total neutral (nonacidic) glycolipid fractions have been isolated from a gastric adenocarcinoma and the surrounding normal gastric tissue removed at laparotomy of a Blood Group B human individual. Each glycolipid mixture was fractionated by silicic acid column chromatography into ten different partly purified glycolipid fractions. These fractions were analyzed by thin-layer chromatography and tested for Blood Group A and B activity. Blood group B activity was found in several fractions from both tumor and normal tissue. Two of the tumor glycolipid fractions reacted with some batches of commercial anti-A antisera, but other antisera tested did not react. No such Blood Group A reactivity was found in the fractions from the normal gastric tissue. The two Blood Group A-active tumor glycolipid fractions were methylated and methylated-reduced, and these two derivatives were analyzed by mass spectrometry. It was shown that these two fractions were mixtures of glycosphingolipids with five to nine sugars. The dominating glycosphingolipids were blood group Leb and B-like hexaglycosylceramides, a B-similar heptaglycosylceramide with an additional fucose, an H-like heptaglycosylceramide, and a Leb-like octaglycosylceramide. Evidence for small amounts of a Blood Group A-similar heptaglycosylceramide with an additional fucose was also found. The finding of a Blood Group A-similar glycolipid in a fraction which reacts with some anti-A antisera is the first chemical evidence for a heterolog blood group antigen in human cancer which has previously been found by histoimmunological techniques. The clinical significance of this finding is discussed in relation to diagnostic procedures and immunotherapy.

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Selected ion monitoring of glycospingolipid mixtures. Identification of several blood group type glycolipids in the small intestine of an individual rabbit.

A novel application of selected ion monitoring was used for a mixture of non-acid glycosphingolipids of one rabbit small intestine. Earlier studies of permethylated and permethylated-reduced (LiAIH4) derivatives of model compounds have revealed a specificity and abundance of saccharide ions (terminal monosaccharide(s), disaccharide, trisaccharide, etc., and all sugars plus fatty acid) and of ceramide fragments that permit a conclusive detection of separate glycolipid species in a mixture. The sample (50-200 micrograms) was evaporated slowly (1-5 degrees C min-1 from 150-350 degrees C) from the direct inlet probe of an MS 902 mass spectrometer (electron ionization). Mass spectra with fragments up to about m/z 200 were collected on-line by a computer system. A successive partial separation was obtained for glycolipids with from one up to seven sugars. The structures of eight different compounds were identified. They all had 16:0, 22:0 and 24:0 2-hydroxy fatty acids and 18:0 trihydroxy base (phytosphingosine) as major ceramide components. The dominating complex glycolipid was a hexaglycosylceramide with a blood group B type of sequence. A blood group A type sequence was found in a second hexaglycosylceramide. In support of this, the native mixture showed blood group A and B activity. An intense peak, m/z 182, collected from methylated derivatives were evidence for a dominating type 2 carbohydrate chain of the core tetrasaccharide.

Animals↗

Identification of a novel hepraglycosylceramide with two fucose residues and a terminal hexosamine.

A polar fucose-containing glycosphingolipid fraction isolated from dog small intestine has been characterized by mass spectrometry of intact methylated, and methylated and reduced (LiAlH4) glycolipid. The native fraction, which was homogenous on thin-layer chromatography, was shown after methylation to be a mixture of two compounds. One was identified as a hexaglycoslyceramide with the following composition and sequence: fucose-hexose(fucose)-hexosamine-hexose-hexose-ceramide, with a terminal saccharide structure similar to blood group Leb determinants. The second compound was a novel heptaglycosyceramide with the sequence: hexosamine(fucose)-hexose-tfucose)-hexosamine-hexose-hexose-ceramide. This glycolipid was also detected in human small intestine and pancreas. The dog intestinal fraction had phytosphingosine as its major base and contained almost exclusively 2-hydroxy fatty acids (16 : 0--24 : 0). The fraction of human pancreas differed in having spingosine as its major base and normal fatty acids (16 : 0--24 :0) as major acids.

Animals↗

Distribution of molecular species of sphingomyelins in different parts of bovine digestive tract.

Sphingomyelins were isolated from mucosal layers of bovine rennet stomach, duodenum, jejunoileum, and colon ascendens. The ceramides obtained after phospholipase degradation were characterized by thin-layer chromatography, mass spectrometry, and gas-liquid chromatography. The main ceramide group from all regions consisted of dihydroxy long-chain bases and normal fatty acids. Sphingosine was the predominant base in all these fractions, and only in rennet stomach were smaller amounts of the C17 and C20 homologs present. Normal saturated C16, C18, C22, and C24 fatty acids were most abundant. In rennet stomach there was in addition a ceramide group having dihydroxy long-chain bases in combination with hydroxy fatty acids. Sphingosine was the predominant long-chain base and the fatty acids were 2-hydroxy C16, C22, C23, and C24. From jejunoileum three minor ceramide fractions were isolated; these consisted of phytosphingosine and normal fatty acids C22-C24), sphingosine and 2-hydroxy fatty acids (C16-C24), and phytosphingosine and 2-hydroxy fatty acids (C22-C24), respectively. No branched paraffin chains were found in significant amounts. Sphingomyelins with trihydroxy long-chain bases and 2-hydroxy fatty acids found in jejunoileum were also detected in bovine kidney and have not been demonstrated before. These sphingomyelins from both kidney and jejunoileum showed a preferential combination of trihydroxy bases and fatty acids with very long chains (C22-C24).

Animals↗

Physiologic incompatibilities in discordant xenotransplantation.

At present, several incompatibilities between pig and human, not only from the immunologic point of view but also regarding physiological and molecular systems, have been identified. It is anticipated that this is only the tip of the iceberg regarding this topic. However, there are also many systems that are compatible. Strategies have been outlined, and many tools, such as gene modification, are available to solve the problems. Therefore, the statement by Keith Reemtsma in the foreward to the latest issue of the monography Xenotransplantation "The important question is not whether xenotransplantation will succeed, but rather how and under what circumstances xenografts will provide predictable enough results to warrent clinical application" will hopefully be a reality in the future.

Animals↗

Antibody response in an ABO-incompatible blood transfusion. Antigen specificity and immunoglobulin class.

The anti-A response in a group B patient accidentally given 1 unit transfusion of A1 blood is described. The antibody response is characterized both with conventional agglutination techniques and with radioimmunoassay using pure group A antigens with different core saccharide structures (type 1, 2, and 4 chains) and class-specific second antibodies. The anti-A titer rose to a maximum Days 11 to 14 after the incompatible transfusion. The antibodies involved were mainly of the IgG and IgA types, while the IgM response was moderate. The IgA antibodies seemed to be nonselective with respect to group A antigen type, while the IgG antibodies showed a specificity against type 2 chain group A antigens.

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