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Biomedical subjects

G Reichmann

Publications and source records attributed to G Reichmann.

48 records · Page 3Linked to original sources

[Leukocyte lipids in mature cell leukemia].

The total lipid content and the lipid pattern of normal and leukemic leukocytes showed no significant difference except the fact, that lymphocytes of chronic lymphatic leukemia have a lower content of triglycerides and sphingomyeline. Lecithin of leukemic lymphocytes contained more palmitinic acid and oleic acid and a lower level of stearic acid than the same fraction in normal lymphocytes. The lipid pattern of normal and leukemic granulocytes was identical.

Cholesterol↗

[Determination of lipids in serum and erythrocytes during surgery with extracorporeal circulation].

The changes of the lipids in serum and erythrocytes inclusively the fatty acid pattern of the phosphatids were registered at 16 patients of whose congenital heart defects were corrected with extracorporeal circulation. The differently evident changes of the lipid fractions are to relate to heparinization, hemodilution and injury of erythrocytes which is increasing in the duration of perfusion. They are discussed in their importance for clinical essential phenomenous as disturbances of the coagulation or hemolysis. From these preliminary studies is to conclude that the substitution of phosphatids is necessary at the end of or after the extracorporeal circulation.

Adolescent↗

Fatty acid pattern of lipids in normal and dystrophic human muscle.

The fatty acid distribution of the main lipid fractions: triglycerides (TG), phosphatidylcholine (PCh), phosphatidylethanolamine (PE), and sphingomyelin (Sph) of muscle from 6 patients with progressive muscular dystrophy (p.m.d.), Duchenne, 8 to 12 years old was estimated and compared with normal controls of different age. In view of the results of several authors about varied fatty acid distribution in immature muscle a third group comprising samples of neonatal muscle was studied. 1. The fatty acid pattern of the lipid fractions TG, Sph, and PE from muscle of patients with p.m.d. shows no important variation in comparison to normal controls. In contrast to this the fatty acid distribution in PCh is extremely varied: the percentage of 18:2 is decreased and corrrespondingly the content of 18:1 is increased. In view of the high percentage (nearly 10%) in which linoleic acid is substituted by oleic acid in PCh, effects on the plasma membrane are to be expected. 2. The fatty acid pattern in neonatal muscle shows in narly all positions of the fractions TG, Sph, PE, and PCh a different distribution from normal or dystrophic muscle. In view of the most important variation in dystrophic muscle it must be stated that generally 18:2 is decreased. This deficit was replaced by an increase of all other fatty acids (not only at a substitution by 18:1 as given in p.m.d.). Therefore the diminished content of linoleic acid in PCh of neonatal and dystrophic muscle cannot be interpreted as expression of a corresponding or similar lipid metabolism in both tissues. The results were seen as signs of significant qualitative alterations especially of PCh in p.m.d. They were discussed as proof of our thesis that the basic defect in p.m.d. concerns the specific acylation of PCh with linoleic acid.

Adult↗

[The relation between sperm motility and the content of unsaturated fatty acids as well as the osmotic behavior of human spermatozoa].

The relations between sperm motility and the content of lipids and fatty acids in sperm cells were investigated. In addition the osmotic volume changes of sperm cells were studied, by determination of progressive sperm motility, measurement of relative concentration of lipid-peroxy radicals in seminal plasma using chemoluminescence technique, gas-chromatographic determination of fatty acid pattern in sperm cells and in seminal plasma and by electronic measurement of the sperm cell volume. The impulse installment of chemoluminescence increased during the time of storage of the ejaculate. In contrast, this phenomenon was not observed in pure seminal plasma prepared by centrifugation immediately after liquefaction. The pattern of phospholipids and free fatty acids changed during storage of the ejaculate both in sperm cells and in seminal plasma. Sperm cells showed a significant increase of volume under hypotonic stress. The increase of volume is more distinct in spermatozoa with high progressive motility as in spermatozoa with low progressive motility. The determination of initial and late progressive motility enables the differentiation of two groups of sperm populations: one group with a medium initial motility and a normal decrease of motility during the following time and another group with excellent initial motility and an extreme decrease of motility following. The second group is characterized by an especially distinct increase of volume under hypotonic conditions.

Fatty Acids, Unsaturated↗