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Biomedical subjects

E Kolodziejczyk

Publications and source records attributed to E Kolodziejczyk.

9 recordsLinked to original sources

An intestinal galactose-specific lectin mediates the binding of murine IgE to mouse intestinal epithelial cells.

A number of lactose-binding lectins have recently been identified in the rat and mouse intestine, one of which corresponds to the C-terminal domain of IgE-binding proteins, originally identified in rat basophilic leukemia (RBL) cells and mouse 3T3 fibroblasts. In the present report, we describe the affinity purification of a rat intestinal lactose-specific lectin which binds murine IgE antibodies. This binding most likely occurs via the immunoglobulin carbohydrate chains, as it is inhibited by lactose. This intestinal lectin molecule is also immunologically related to the previously described IgE-binding protein (epsilon BP) isolated from RBL cells, since it is recognized by antibodies raised against recombinant epsilon BP. This intestinal form of epsilon BP has a molecular mass of 17.5 kDa, which is much lower than that of its RBL cell analogue (31 kDa). The attachment of IgE to the mouse intestinal epithelium was demonstrated by immunohistochemistry, along with the presence of a corresponding mouse intestinal epsilon BP. The carbohydrate-dependent nature of this attachment was established by demonstrating that IgE binding to mouse epithelium was specifically abolished by lactose (4 mM) and by a blood-group-A-active tetrasaccharide (0.2 mM), but not by mannose (10 mM). Finally, the association of IgE with the mouse intestinal epithelium was prevented by competition with the purified IgE-binding lectin isolated from rat intestine. Although the physiological function of this intestinal protein is still unknown, the finding that IgE binds to a lectin in the intestinal epithelium pinpoints a possible novel mechanism for the regulation of IgE-mediated disorders, such as food allergy.

3T3 Cells

A simple rapid method to slice biological specimens: an application for non-embedded and embedded Golgi-stained tissue.

A rotary wire saw is faster and simplifies markedly the slicing of soft and hard tissues without apparent loss of quality. Two applications for the Golgi-Cox method (using the rotary wire saw) are described: one eliminates specimen freezing and embedding while the other uses LR-White instead of celloidin, reducing preparation time. Sections of 20 microns to several mm thick can be obtained.

Animals

Adhesion of colonization factor antigen II-positive enterotoxigenic Escherichia coli strains to human enterocytelike differentiated HT-29 cells: a basis for host-pathogen interactions in the gut.

Enterotoxigenic Escherichia coli are the most common cause of travelers' and infant diarrhea in less-developed countries. In the present work, among several metabolically labeled human diarrheagenic E. coli strains, enterotoxigenic strains expressing colonization factor antigen II were shown to bind to HT-29 intestinal cell monolayers when these cells were grown in conditions promoting their enterocytic differentiation. Indirect immunofluorescence with fimbrial antisera revealed that pathogen attachment was associated with the production of a specific bacterial adhesin, the E. coli surface antigen CS3. Scanning and transmission electron micrographs showed an apical pattern of colonization, characteristic of enterotoxigenic E. coli infections. The above data were consistent with all observations previously made with human enterocytes obtained from intestinal biopsies. The lectin-carbohydrate nature of this cell-cell recognition mechanism was also established. Bacterial binding to differentiated HT-29 cells was inhibited by a mixture of newborn meconium glycopeptides. By coating the cell layers with the plant agglutinin from Evonymus europaea, pathogen attachment was also prevented. Binding of 125I-labeled CS3 adhesin and E. europaea agglutinin to brush border membrane proteins separated by sodium dodecyl sulfate-polyacrylamide gel electrophoresis and transferred to nitrocellulose revealed three bands of about 30, 20, and 13 kilodaltons, which acted as receptors for both bacterial and plant lectins. These data suggest that the sugar units to which the bacterial colonization factor CS3 binds are synthesized as carbohydrate chains of three brush border membrane glycoproteins in HT-29 cells by a differentiation-specific pathway.

Antigens, Bacterial

Transmission acoustic microscopy of tissue sections (1 GHz). Histoacoustics and acoustic staining.

The acoustic microstructure of mouse small intestine has been studied with a transmission acoustic microscope working at 1 GHz and the influence of the histologic processing on the microacoustic pattern has been tested. Unstained thin sections provide pictures rich in details and highly contrasted. Gelatin has been used as hydrosoluble embedding medium and has been compared to paraffin. The former embedding procedure retained the viscoelastic properties of the specimen far more and provided the most detailed pictures. Osmiun tetroxide has been used to demonstrate acoustic staining.

Animals

Multiple immunolabeling in histology: a new method using thermo-inactivation of immunoglobulins.

We describe a new method for successive immunofluorescence detection of multiple peptides in single paraffin tissue sections. Immunoglobulins were inactivated at 130 degrees C after each labeling step while tissues were protected with a mixture of phosphate-buffered saline and glycerin. The feasibility of the method is demonstrated by double-staining of rat pituitary corticotrophs with anti-ACTH[1-24] and anti-ACTH[17-39] antiserum. The method is applicable to brain tissue, since single neurons of ovine paraventricular hypothalamus could be triple stained with anti-vasopressin, anti-neurophysins I and II, and anti-CRF antiserum. The usual absorption controls and crossreactivity tests, as well as peptide staining, can be performed on the same tissue section. This new labeling procedure should prove useful in endocrinology, clinical pathology, and the neurosciences.

Adrenocorticotropic Hormone