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Biomedical subjects

R Brehler

Publications and source records attributed to R Brehler.

41 records · Page 3Linked to original sources

Localization of endogenous lectins in normal human breast, benign breast lesions and mammary carcinomas.

Specific antisera against three mammalian beta-galactoside-specific lectins of apparent molecular weights 14.5 kDa, 18 kDa and 29 kDa have been used to localize these lectins in normal breast, and in benign and malignant mammary lesions. In normal breast tissue discrete localization of two lectins (Mrs 14.5 kDa and 18 kDa) was demonstrated in fibroblasts, smooth muscle cells, myoepithelial cells and capillary endothelium. Extracellular localization of one lectin (Mr 14.5 kDa) in collagen was apparent. The third lectin (Mr 29 kDa) labelled preferentially luminal cells and their secretory product. Two benign tumours (an analyzed fibroadenoma and a papilloma) revealed strong staining with two lectins (Mrs 18 kDa and 29 kDa). Of the 24 mammary carcinomas examined, the lectin (Mr 14.5 kDa) was expressed by only occasional tumour cells, the lectin (Mr 18 kDa) occurred in many tumour cells and the lectin (Mr 29 kDa) labelled tumour cells in nearly all cases. The expression of these beta-galactoside-specific endogenous lectins therefore appears to be regulated differently in normal breast compared with mammary tumours.

Breast↗

[The structure of the t. muscularis propria of the human small intestine as base for a biomechanical model for motility (author's transl)].

The structure of the t. muscularis propria of the small intestine was examined in cleared specimen of human cadavers and the scissor like railings arrangement of the muscle-bundles is described. The constant and varying form of the small intestine is directly correlated with the structure of its t. muscularis propria. There exist spheric angles between circular and longitudinal muscle-bundles measuring during dilatation more, during concentration less than 53 degrees. According to this gives a simple biomechanical model for motility an angle of 55 degrees for maximal dilatation.

Biomechanical Phenomena↗