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Biomedical subjects

H Fischer

Publications and source records attributed to H Fischer.

841 records · Page 47Linked to original sources

Klinefelter's syndrome and Breast cancer.

Breast cancer in a patient with Klinefelter's syndrome is reported. Possible correlation between testosterone and estradiol serum levels after testosterone-enanthate substitution, estrogen receptors in tumor tissue and clinical symptomatology are discussed. The various theories of etiology concerning breast cancer in this syndrome are reviewed. The increased conversion of testosterone to estradiol at the therapy with androgens might be responsible for the development of breast cancer in Klinefelter's syndrome. The current way of treatment is described.

Adult↗

A new pulse sequence for determining T1 and T2 simultaneously.

Determination of the relaxation times T1 and T2 which are important for tissue characterization generally requires the use of different pulse sequences in magnetic resonance imaging. In this study, a new pulse sequence which facilitates simultaneous determination of the T1 and T2 times is presented. Determination takes place in this case pixel by pixel from the measured images. The measuring time corresponds in this case approximately to that of a normal spin-echo sequence with long repetition time and two data acquisitions. The functional dependence of the accuracy of the T1 and T2 determination upon external errors, e.g., angle of rotation errors, is discussed. The tissue contrast behavior of the individual echoes is shown and its dependence on pulse parameters is explained.

Biophysical Phenomena↗

Dysregulation of lipid metabolism in Tangier monocyte-derived macrophages.

The cellular defect in Tangier mononuclear phagocytes (MNP) was shown to be associated with significant abnormalities in cellular phospholipid, triglyceride, and cholesteryl ester metabolism by using various radiolabeled precursors (32Pi, 3H-serine, 3H-choline, 14C-acetate, and 14C-oleic acid). Tangier MNP expressed increased rates of synthesis for phospholipids (twofold), triglycerides (fivefold), and cholesteryl esters (threefold) as compared to normal MNP when incubated in McCoy's medium containing 0.2% human serum albumin. The turnover rate of cellular phospholipids was also enhanced, while the turnover rates for triglycerides and cholesteryl esters were normal, thus leading to the accumulation of a larger pool of labeled triglycerides and cholesteryl esters in Tangier MNP. The individual phospholipid classes, phosphatidylcholine, sphingomyelin, phosphatidylethanolamine, and phosphatidylserine were similarly affected. Cholesterol loading led to approximately 30% down-regulation of phospholipid synthesis in normal cells, but Tangier MNP showed a smaller response. When nonloaded normal MNP were exposed to high density lipoprotein3 (HDL3), they diminished cellular cholesterol esterification mediated by acyl-CoA:cholesterol acyltransferase (ACAT); in Tangier MNP, ACAT activity increased in the presence of HDL3. When cholesterol-loaded normal and Tangier MNP were treated with HDL3, an up-regulation of phospholipid synthesis was observed in both cell types, but Tangier MNP showed a smaller response. We conclude that the defect in Tangier disease, which we recently described as a "disorder of intracellular traffic" (Schmitz et al. Proc Natl Acad Sci USA 1985;82:6305-6309), is associated with a dysregulation of cellular lipid metabolism, leading to an overproduction of triglycerides and esterified cholesterol and to enhanced synthesis and catabolism of phospholipids.

Adult↗

Subcellular fractionation of bone marrow-derived macrophages: localization of phospholipase A1 and A2 and acyl-CoA:1-acylglycero-3-phosphorylcholine-0-acyltransferase.

Analysis of the subcellular distribution of lipid-metabolizing enzymes was carried out in bone marrow-derived macrophages with special respect to a comparison of the subcellular localisation of phospholipase A1 and A2 and to acyl-CoA:1-1-acylglycero-3-phosphorylcholine-0-acetyltransferase. After cell disruption differential centrifugation was followed by additional sucrose gradient purification of three main fractions. Satisfactory enrichment factors were obtained by this method for the following marker enzymes. The plasma-membrane enzyme alkaline phosphodiesterase I was enriched up to 25-fold and the acyl-CoA:1-acylglycero-3-phosphorylcholine-0-acyltransferase was enriched up to 30-fold. The marker enzyme for the endoplasmic reticulum, NADPH-cytochrome c reductase showed a similar enrichment and distribution as the acyltransferase. Therefore it was concluded that the acyl-CoA:1-acylglycero-3-phosphorylcholine-0-acyltransferase of bone marrow-derived macrophages is mainly located in the endoplasmic reticulum. Phospholipase A1 and A2 occurred in a high proportion together with the lysosomal marker enzyme N-acetyl-beta-glucosaminidase in the soluble supernatant and in the gradient fractions. In the endoplasmic reticulum phospholipase A2 occurred only in trace activities whereas phospholipase A1 was maximally enriched in this subcellular fraction. No subcellular fraction could be obtained where phospholipase A2 was enriched exclusively. However, it can be concluded that the two enzymes which are responsible for the balance of fatty acid liberation and re-acylation are located in two different cellular compartments. Furthermore it can be claimed that in the cell there has to exist an exchange of substrates and products between these compartments to achieve a complete metabolic cycle of the de- and re-acylation reaction of phospholipids in bone marrow-derived macrophages.

Acyltransferases↗

Constitutional interstitial deletion of 17(p11.2) (Smith-Magenis syndrome): a clinically recognizable microdeletion syndrome. Report of two cases and review of the literature.

We present two patients, a 12 year old Turkish and a 7 year old Italian girl, with severe mental retardation, multiple congenital malformations and a constitutional interstitial deletion of the short arm of chromosome 17, del(17) (11.2). The main clinical features of this syndrome which is also referred to as the Smith-Magenis syndrome consist of a broad flat midface with brachycephaly, broad nasal bridge, brachydactyly, speech delay, hoarse deep voice and peripheral neuropathy. Behavioural abnormalities include hypermotility, self mutilation and sleep disturbances. The remarkable consistency of the main clinical features of the 59 patients documented so far permits the clinical diagnosis of this syndrome; a fact which is of importance, since many of the reported patients--including ours--were considered normal on earlier cytogenetic studies.

Abnormalities, Multiple↗