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Biomedical subjects

E Carlemalm

Publications and source records attributed to E Carlemalm.

31 records · Page 2Linked to original sources

Periplasmic gel: new concept resulting from the reinvestigation of bacterial cell envelope ultrastructure by new methods.

Bacterial cell envelope ultrastructure was investigated both by the progressive lowering of temperature embedding technique and freeze-substitution, using conventional and scanning transmission electron microscopy. Comparison with standard embedding procedures revealed a new aspect of cell envelope structure in specimens at low temperatures. The envelope was delimited by an electron-dark layer, beneath which was a uniform matter-containing layer lying between the outer and inner membranes. There was no empty periplasmic space. Buoyant densities of isolated peptidoglycan obtained in Percoll (1.02 to 1.07 g ml-1) and CsCl2 (1.44 g ml-1) led to a calculated hydration of the peptidoglycan which was more than was previously assumed. Peptidoglycan therefore possibly fills the entire space between the inner and outer membranes in the form of a periplasmic gel. The new model of cell envelope organization is discussed with respect to the current knowledge on bacterial cell wall structure and function.

Bacteriological Techniques↗

The reproducible observation of unstained embedded cellular material in thin sections: visualisation of an integral membrane protein by a new mode of imaging for STEM.

The contrast on micrographs obtained by conventional imaging in the conventional transmission electron microscope and in the scanning transmission electron microscope (STEM) (brightfield and darkfield) reflects mainly the variations of the mass-density and of the thickness of the specimen. The density differences in resin-embedded, unstained materials are too small to give enough contrast when compared to that produced by the surface perturbations introduced by sectioning. By darkfield imaging, therefore, this variable surface relief does not lead reproducibly to interpretable micrographs of high quality. Imaging by the ratio of elastically over inelastically scattered electrons in the STEM (Z-contrast) depends primarily on the atomic composition of the material. We present here the first experimental tests of theoretical predictions with thin sections; Z-contrast micrographs of septate junctions reveal the transmembrane proteins which are not visible in uranyl acetate stained sections viewed by conventional brightfield imaging.

Animals↗

Perspectives for achieving improved information by the observation of thin sections in the electron microscope.

Obtaining biologically significant fine detailed information from sections is limited firstly by the unknown distribution of heavy metal stain and secondly by conformational changes induced by dehydration. Only afterwards we have to be concerned with beam induced alterations. By Z-imaging in a STEM, completely unstained material can now become imaged sharply with high contrast. By this the first limitation is eliminated and the second can become explored. For this purpose new resins designed for low temperature embedding might become important. First biological results are presented which illustrate the potential of these techniques: The transmembrane protein of the separate junction has been revealed as such and shown that only the hydrophilic part of the protein is stained by uranyl acetate. This type of staining therefore does not allow the detection of any transmembrane proteins in sections.

Animals↗

Enhancement of structural preservation and immunocytochemical staining in low temperature embedded pancreatic tissue.

The recently developed low temperature embedding procedure with the resin Lowicryl K4M (Carlemalm E, Garavito M, Villiger W: Proc 7th Eur Cong Electron Microsc, 1980, p 656; Garavito M, Carlemalm E, Villiger W: Proc 7th Eur Cong Electron Microsc, 1980, p 658) was tested for its suitability for embedding of glutaraldehyde-fixed rat pancreatic tissue and for postembedding staining of thin sections with the protein A-gold (pAg) technique (Roth J, Bendayan M, Orci L: J Histochem Cytochem 26:1074, 1978) for amylase. Compared to conventional Epon embedding of glutaraldehyde fixed tissue, the low temperature embedding method with Lowicryl K4M resulted in a superior preservation of the general cellular fine structure, particularly in the Golgi apparatus. For low temperature embedded tissue, the quantitative evaluation of the immunocytochemical labeling for amylase showed a more specific staining of the rough endoplasmic reticulum, the Golgi apparatus, and the zymogen granules. This was due to a significant lowering of the background staining over all cellular organelles. The use of Lowicryl K4M at low temperature, due to the superior preservation, yields improved resolution and specificity in immunocytochemical postembedding staining.

Animals↗

In vitro studies of the fixation of DNA, nucleoprotamine, nucleohistone and proteins.

In view of improving fixation and embedding for thin sections of nuclear material we investigated the crosslinking of selected proteins, nucleic acid and nucleoproteins by observing the eventual gelation of solutions of these substances, which might be produced by current cytological fixatives. For those combinations where gelation occurs, we give thresholds of minimum concentrations required. We discuss the consequences of these findings for the preservation of thin sectioned nuclear structures within cells.

Chromatin↗