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An inexpensive device for freeze drying and plastic embedding tissues at low temperatures.

The preparation of biological tissues for electron microscopy by rapid freezing retains the original localization of ions and molecules. A reproducible freezing regime was established by quenching tissues in liquid propane according to the method of Elder et al. (1981). Tissue was thereafter freeze dried in a custom built freeze drying device with a liquid nitrogen cooled stage to prevent ice recrystallization during drying. The device was also designed to allow the vacuum embedding of tissue in low temperature resin such as Lowicryl and polymerization in situ. This paper describes the design of the device and an example of its use in the freeze drying of cartilage. The results show that minimal ice damage occurs to the chondrocytes and that intracellular organelles are clearly visible. The regime described may prove a useful and pragmatic alternative to cutting tissue in the frozen state. Translocation of elements is unlikely except perhaps in the case of very labile elements such as Na and K, but this remains to be fully elucidated.

Animals↗

Demonstration of pseudorabies virus DNA in the mouse inner ear by an in situ nucleic acid hybridization technique in plastic embedded bony material.

This investigation is concerned with the possibility of identifying viral DNA using the in situ DNA hybridization method in methylmethacrylate-embedded material. As an experimental model we chose viral labyrinthitis produced by intranasal infection of the mouse with pseudorabies virus. Fixation and embedding methods specially adapted to this procedure and bony histology preparation technique (specimens by grinding or micromilling) made it possible to identify viral DNA directly morphologically and virologically in the inner ear. Quantitative microphotometric analyses of trans-sagittal sections of the entire skull after in situ DNA hybridization are presented and discussed here as an explicit method of investigating the path of distribution of viral DNA in the brain and the inner ear.

Animals↗

Localization of thymulin (FTS-Zn) in mouse thymus. Comparative data using monoclonal antibodies following different plastic embedding procedures.

The distribution of thymulin (FTS-Zn) was studied in thymuses from normal mice (OF1) or autoimmune mice (NZB). Thymulin localization was investigated using immunocytochemical techniques on sections of GMA and epon-embedded mouse thymuses. Two monoclonal antibodies were used: anti-synthetic thymulin and anti-intracellular thymulin. In the immunofluorescence assay, GMA sections allowed a more subtle localization of thymulin in the cytoplasm of epithelial cells (with a vacuolar pattern) compared to the epon sections (with a homogeneous fluorescence in the cytoplasm). In both cases, the number of labeled cells was greater in the medullary region than in the cortex of the thymus. At the electron microscopic level, immunolabeling of epon ultrathin sections showed ferritin distributed in some of the epithelial cell vacuoles. The two monoclonal antibodies revealed similar distributions of thymulin in the thymus. The results obtained in this study confirm that the amount of thymulin is greater in the epithelial cells of normal compared to autoimmune thymuses.

Animals↗

Immunocytochemical detection of peptides in osmicated and plastic-embedded tissue. An electron microscopic study.

In an attempt to improve the ultrastructural preservation of tissue immunostained with the postembedding staining technique, we verified the effect of postfixation with OsO4 on the antigenicity of several pituitary hormones and neuropeptides. For this purpose, the rat pituitary and central nervous system (CNS) were perfused with 2.5% glutaraldehyde and postfixed in two different ways: a) postfixation by immersion of small fragments in a mixture of 1% OsO4 and 1% potassium ferrocyanide, and b) postfixation with perfusion of 500 ml of 0.5% OsO4. The results obtained were similar with the two types of postfixation. In the pituitary gland, all the hormones could be very easily detected, although the staining was less intense for the glycoprotidic hormones. In the CNS the following neuropeptides: somatostatin, luteinizing hormone-releasing hormone (LHRH), Leu-enkephalin and substance P could be immunostained. These results indicate that a variety of polypeptidic antigens, including small neuropeptides, can survive postfixation with OsO4. In both the pituitary and CNS, the ultrastructural preservation was very good with a high contrast of membranes, thus permitting a clear identification of positive organelles. Moreover, it appears that, since the synaptic junctions are well-preserved after postfixation with OsO4, postembedding staining can now be utilized to identify and classify the different categories of endings containing neuropeptides.

Animals↗

Catecholaminergic and GABAergic anatomical relationship in the rat substantia nigra, locus coeruleus, and hypothalamic median eminence: immunocytochemical visualization of biosynthetic enzymes on serial semithin plastic-embedded sections.

The visualization of protein antigens has been performed on semithin sections embedded in Araldite. After partial removal of the resin and a light proteolytic treatment of the tissue we were able to localize several biosynthetic enzymes: tyrosine hydroxylase (TH), phenylethanolamine N-methyltransferase (PNMT), and glutamic acid decarboxylase (GAD), which are, respectively, markers of catecholaminergic, adrenergic, gamma-aminobutyric acid (GABA)ergic systems. This technique afforded a high resolution of light microscopy details and immunostaining of TH, GAD, and PNMT on serial sections enabled us to compare with great precision GABAergic and adrenergic innervations in the rat locus coeruleus. In addition, it allows us to study the possible relationship between these terminals and the noradrenergic neurons. We also compared the general pattern of distribution of TH- and GAD-positive endings in the hypothalamic median eminence. The preliminary results obtained with this technique revealed some interesting facts previously unseen when preparations with lower histological resolution were used.

Animals↗

Immunohistochemical antigen demonstration in plastic-embedded lymphoid tissue.

We describe a method for post-embedding immunohistochemical demonstration of a wide range of antigens in glycol methacrylate-embedded tissue. Rat spleen and thymus tissues were fixed by immersion in fixatives containing different concentrations of paraformaldehyde, washed in sucrose phosphate buffer, dehydrated in acetone, infiltrated in a glycol methacrylate mixture in which the commonly used softener 2-butoxyethanol was replaced by butaandiol monoacrylate, and embedded. Trypsin was used to re-expose the masked antigenicity. Excellent results were obtained with a panel of monoclonal antibodies (MoAbs) directed against T-cells, B-cells, Ia-positive cells, macrophages, follicular dendritic cells, and leucocyte common antigen-bearing cells. The method described combines exact localization of antigens with optimal tissue morphology.

Acrylates↗

Characterization of rat spermatocytes after plastic embedding.

Rat testicular tissue, perfused with glutaraldehyde, post-fixed with osmium and stained with toluidine blue, was studied to obtain information which could be used to characterize spermatocytes (also type B gonia and Step 1 spermatids) with the light microscope. Measurements of relative cell, nuclear sizes and absolute nuclear size are presented in graphic form, demonstrating the progressive growth found for spermatocytes. Early prophase spermatocytes (preleptotene, leptotene, zygotene) gradually increased in size. Pachytene cells showed no growth until Stage IV, at which point a dramatic size increase began and continued until the diplotene phase. Guidelines to identify a particular phase of meiosis were established for spermatocytes using primarily nuclear traits. Examination of longitudinal sections through Stages XIII, XIV and I were useful for comparing cells from Meiotic divisions (meta-, ana-, and telophases) I and II and also for differentiating secondary spermatocytes from Step 1 spermatids.

Animals↗

Differential staining of calcified tissues in plastic embedded microtome sections by a modification of Movat's pentachrome stain.

Movat's pentachrome I stain has been adapted and modified as a stain for undecalcified bone sections. After embedding in methyl methacrylate, this procedure yields consistently good results, with an excellent and colorful contrast between mineralized and unmineralized compartments of both cartilage and bone. In addition, osteoblasts, osteoclasts, and other cells and tissue components can easily be differentiated. The staining properties of the lacunar wall surrounding the osteocytes are considered to reflect various states of osteocytic activity. The method is especially useful for the study of bone growth and bone repair, and as a stain for conventional histomorphometry and computer-assisted image analysis in bone biopsies.

Animals↗