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Localization of cytomegalovirus DNA in plastic-embedded sections by in situ hybridization. A methodologic study.

The use of in situ hybridization for the identification of specific nucleic acid sequences in tissue sections has the potential for broad application in pathology. Although this technique has been successfully applied to routine paraffin sections, there have been few studies of the application of in situ hybridization to plastic-embedded tissue sections. The authors adapted techniques developed for paraffin sections to take advantage of the potential for improved morphology and more precise localization inherent in the plastic sections. A commercially available biotinylated DNA probe specific for the cytomegalovirus to develop a practical method for detection of nucleic acid sequences in plastic-embedded tissues was used. Using plastic sections, cytomegalovirus DNA sequences could readily be identified with precise localization of the virus and superb histology.

Biotin↗

Proposal for a classification of acute myeloid leukaemia based on plastic-embedded bone marrow biopsy sections.

Traditional approaches to haematological diagnosis of acute myeloid leukaemia (AML) include microscopic examination of peripheral blood (PB) and bone marrow (BM) cells studied in Romanowsky-stained, dry film smears. The routine evaluation of BM aspirates, however, may be disappointing in accurately assessing marrow activity because of the sampling error inherent in the BM aspiration technique, and occasionally may fail to provide a precise diagnosis because BM aspirates cannot be obtained due to packed or fibrotic marrows. Because of the advantages it offers over the conventional method of diagnosis, we have studied Romanowsky-stained, thin sections of plastic-embedded BM biopsies from 87 newly diagnosed AML patients. Based on our study, the patients were broadly grouped into four categories: (1) those with hypocellular marrow (haemopoietic cellularity less than 50%), hypoplastic AML; (2) those with some degree of marrow fibrosis, AML with marrow fibrosis; (3) those with homogeneous infiltration of marrow with blast cells; and (4) those with inhomogenous infiltration of marrow with blast cells. Our results show that the proposed classification of AML based on the evaluation of plastic-embedded BM biopsy sections may offer benefits over those afforded by conventional morphologic smear techniques. This may provide significant prognostic information and may have a major impact on patient management. It may also provide a meaningful stratification of the patient population when comparing treatment protocols for newly diagnosed AML patients.

Biopsy, Needle↗

An improved procedure for immunoelectron microscopy: ultrathin plastic embedding of immunolabeled ultrathin frozen sections.

Ultrathin frozen sections are ideal substrates with which to carry out immunolabeling experiments in electron microscopy. However, the ultrastructural delineation in positively stained frozen sections has not been as detailed as in conventionally osmium-stained and plastic-embedded sections. We now describe a simple technique in which immunolabeled ultrathin frozen sections are subsequently treated with osmium tetroxide, dehydrated, and then embedded in plastic by impregnation with a monomer to the thickness of the section, followed by polymerization of the monomer. By this technique ultrastructural definition as good as that of conventional plastic sections is achieved, while the high density and specificity of immunolabeling characteristic of ultrathin frozen sections are retained.

Animals↗

Visualization of vascular platelet aggregation by plastic embedding and light microscopy.

Previous studies have indicated that platelets play a role in inflammation and microvascular damage but routine histologic preparations do not permit clear visualization of the platelets in tissues. Plastic embedding was used in this study to demonstrate platelet aggregates in the pulmonary vasculature of mice exposed to complement activation. The degree of platelet aggregation in the excised lungs was graded semiquantitatively in a total of 75 mice. Control Balb/c mice had a mean aggregation score of 0.16 while mice which received 0.3 ml zymosan-activated plasma (ZAP) intravenously (iv) had a score of 2.2. Injection of 0.3 or 0.4 ml of ZAP to which epsilon-aminocaproic acid was added prior to incubation with zymosan resulted in a score of 2.6 or 4.7 respectively. Balb/c (C5 sufficient) and AKR/J (C5 deficient) mice injected iv with 1 mg zymosan had scores of 2.9 and 3.2, respectively. Cobra venom factor (CVF) injected iv to Balb/c mice induced a dose-dependent aggregation. Taken together, these results confirm that complement activation products can mediate intrapulmonary platelet aggregation and they also demonstrate the suitability of plastic embedding for visualization of intravascular platelet aggregates under light microscopy.

Animals↗

Plastic-embedded endoscopic biopsies. Diagnostic advantages.

As the use of endoscopic biopsy has increased in recent years, the pathologists whose job it is to interpret these small specimens have been asked to give more specific diagnoses. Plastic embedding has proved to be a useful diagnostic tool because it provides better morphology than routine paraffin embedding and because enzyme histochemical and immunohistochemical markers can be used. We applied these techniques to endoscopic biopsies hoping to increase the diagnostic yield. Biopsies from 75 patients were fixed in paraformaldehyde, embedded in methacrylate, and sectioned at 2 mu. These sections were then compared with routine sections from the same patient. Additional special stains were used and enzyme histochemistry, or immunohistochemistry was performed on the plastic- or paraffin-embedded tissue as needed. We found that in 26.7% of the cases, plastic sections resulted in more specific diagnoses than was possible with paraffin sections. When distinguishing lymphomas from poorly differentiated carcinomas, this method provided much better morphologic differentiation and better demonstration of leukocyte common antigen than keratin staining. Identification of B- or T-cell antigens was possible on plastics but not on paraffin. Furthermore, lesions such as histiocytosis X and cryptosporidiosis were more accurately identified. Thus, we found that the plastic-embedded tissue provided all the information yielded by routine paraffin embedding and also improved the diagnostic yield on certain types of neoplastic or infectious processes.

Biopsy↗

Applications of plastic embedding to electron microscopic immunocytochemistry and in situ hybridization in observations of production and secretion of peptide hormones.

Plastic embedding has been used to localize various antigens in conjunction with immunohistochemistry. Peptide hormones have been among the antigens that have been studied extensively. Recent application of water-soluble plastics such as LR White and Lowicryl has extended the ranges of detectable antigens and enabled the observation of antigen-antigen or mRNA-antigen combinations. This review article deals with technical aspects, procedures, and applications in endocrine cells.

Acrylic Resins↗

[Technics, main advantages and best indications of quick plastic embedding (author's transl)].

Three recent progresses allow to perform plastic embedding of moderate or large samples of tissue in limits of time close to those of the paraffin embedding and to obtain slices between 1 and 2,5 mu on which all current histochemical or even histo-immunological reactions are possible. These technics prevent the retraction of the tissues, give a good preservation of the structure of the cells and permit a good analysis of the tiny lesions of all kinds of tissues. From our experience about 1362 varied biopsies, the best indications seems to be in order : kidney, hepatic, lung, medullary and nodes biopsies. It seems now justified to introduce these technics as a routine one, inside laboratories which have to detect tiny lesions on particular tissues or on experimental samples.

Animals↗

Freeze-dried, plastic-embedded tissue preparation: a review.

The freeze-dried, plastic-embedded specimen is a versatile type of animal soft tissue preparation, with attributes that commend it for some types of analytical and morphological studies. The preparation involves rapid freezing, freeze-drying, osmic acid vapor fixation, and embedding in an epoxy resin. This preparation, though difficult and tedious, offers some advantages for quantification and localization of water-soluble constituents in intracellular spaces. When prepared according to established protocol, there is evidence to suggest that the embedded sample faithfully retains intracellular levels of water-soluble constituents that are present at time of cryofixation. The sample can be stored easily and indefinitely and the tissue can be examined in a variety of ways. Thin sections will accept many stains for light and electron microscopy; the sample can be used for some histochemical procedures; and quantification of intracellular electrolytes is possible with electron probe microanalysis using one of several techniques. A major disadvantage of the method is the lack of satisfactory preservation of normal solute distributions in extracellular spaces. Important considerations for instruments equipped with Si(Li) energy detector systems are the decrease in mass fraction of the elements of interest due to embedding material, and complications in analysis for some elements because of the presence of osmium. This latter problem is of little consequence for analysis by wavelength spectrometers; and the increase in sample density, because of the embedding material, can be used to advantage for thick sample analysis.

Freeze Drying↗

Flat plastic embedding and precise longitudinal sectioning of isolated testicular seminiferous tubules.

A method is presented for the flat plastic embedding and precise longitudinal semithin sectioning of dissected individual seminiferous tubules. Following standard aldehyde- and OsO4-fixation, individual resin-immersed tubules are polymerized in an exactly flat position between the plan surfaces of a glass slide and an inverted pre-polymerized resin block. Each embedded tubule thus lies directly at the even surface of the resulting block and can subsequently be sectioned along its longitudinal course. The morphology of continuous, up to approximately 20 mm-long tubule segments may thus be immediately surveyed by high resolution light-microscopy and, if required, be studied at the ultrastructural level as well.

Animals↗

Enzyme histochemistry in plastic-embedded sections of normal and diseased kidneys.

Interest in the role of mononuclear phagocytes in glomerulonephritis (GN) and in defining markers of renal neoplasms led the authors to study alpha-naphthyl acetate/butyrate esterase (ANAE/ANBE), alkaline phosphatase (AlkP), acid phosphatase (AcP), 5'-nucleotidase (5'N), and ATPase (ATP) activity in paraformaldehyde-fixed, plastic-embedded renal tissue from patients with a variety of pathologic conditions. These conditions included GN, renal tumors, and transplant rejection. Enzymatic staining for ANAE, ANBE, AcP, AlkP, and ATP was generally confined to tubules and collecting ducts in normal kidney. Nine of 10 cases of renal carcinoma had weakly to strongly positive reactions with AlkP, AcP, and ANAE; 9 of 10 cases of Wilms' tumor showed weakly positive reactions with AcP and ANAE, particularly in tubular structures. Severely damaged kidney allografts showed surprising retention of normal histochemical features. In all cases 5'N stained both glomerular capillaries and interstitial vasculature; ATPase and AlkP stained interstitial vessels only. Plastic embedding provides superb preservation of both microscopic anatomy and enzymatic activity, which may allow utilization of enzyme histochemistry for diagnostic and research purposes.

5'-Nucleotidase↗

The cytoplasmic filament system in critical point-dried whole mounts and plastic-embedded sections.

High voltage electron microscopy of intact cells prepared by the critical point drying (CPD) procedure has become an important tool in the study of three-dimensional relationships between cytoplasmic organelles. It has been claimed that critical point-dried specimens reveal a structure that is not visible in sections of plastic-embedded material; it has also been claimed that this structure, in association with known cytoplasmic filaments, forms a meshwork of tapering threads ("microtrabecular lattice"). Alternatively, this structure might be a surface tension artifact produced during CPD. To test possible sources of artifacts during CPD, model fiber systems of known structure were used. It was found that traces of water or ethanol in the CO2 caused distortions and fusion of fibers in pure muscle actin, fibrin, collagen, chromatin, and microtubules that produce a structure very similar to the proposed "microtrabecular lattice." These structures were, however, well preserved if water and ethanol were totally excluded from the CO2. The same results were obtained with whole mounts of cultured cells. A "microtrabecular lattice" was obtained if some water or ethanol was present in the pressure chamber. On the other hand, when water or ethanol were totally excluded from the CO2 during CPD, cytoplasmic filaments were uniform in thickness similar to their appearance in sections of plastic-embedded cells. It is concluded that the "microtrabecular lattice" is a distorted image of the cytoplasmic filament network produced during CPD by traces of water or ethanol in the CO2.

Actins↗

Plastic embedded core biopsy: a complementary approach to bone marrow aspiration for diagnosing acute myeloid leukaemia.

Bone marrow aspirates and biopsy specimens were taken at diagnosis from 51 patients with acute myeloid leukaemia (AML). The diagnosis was based on morphological and cytochemical analyses, and the leukaemias were classified by FAB criteria. A considerable difference was observed between the results of bone marrow aspirates and the findings of plastic-embedded bone marrow biopsy specimens, particularly in marrow cellularity, extent of blast cell infiltration, and cell type involved in the leukaemic process. The myelomonocytic cell type seemed to predominate in the sections. In four cases there was considerable marrow infiltration with maturing, but dysplastic, granulocytic cells in the sections, but not in the aspirate smears. Features of potential prognostic importance, such as bone marrow infiltration with inflammatory cells, were easily recognised and quantified in the sections. These results indicate that plastic embedded bone marrow biopsy sections complement the findings of bone marrow aspiration in the diagnosis of AML and may also provide information of independent prognostic importance that cannot be obtained by other means.

Biopsy, Needle↗

Application of microwave technology to the processing and immunolabeling of plastic-embedded and cryosections.

We have adapted existing microwave irradiation (MWI) protocols and applied them to the processing and immunoelectron microscopy of both plastic-embedded and frozen sections. Rat livers were fixed by rapid MW irradiation in a mild fixation solution. Fixed liver tissue was either cryosectioned or dehydrated and embedded in Spurr's, Unicryl, or LR White resin. Frozen sections and sections of acrylic-embedded tissue were immunolabeled in the MW oven with an anti-catalase antibody, followed by gold labeling. Controls were processed conventionally at room temperature (RT). The use of MWI greatly shortened the fixation, processing, and immunolabeling times without compromising the quality of ultrastructural preservation and the specificity of labeling. The higher immunogold labeling intensity was achieved after a 15-min incubation of primary antibody and gold markers under discontinued MWI at 37C. Quantification of the immunolabeling for catalase indicated a density increase of up to fourfold in the sections immunolabeled in the MW oven over that of samples immunolabeled at RT. These studies define the general conditions of fixation and immunolabeling for both acrylic resin-embedded material and frozen sections.

Acrylic Resins↗

A grinding method for producing sections of large areas of plastic embedded tissues.

We have developed a method utilizing relatively thick ground sections of plastic embedded tissue which affords the resolution obtained with 0.5 micrometers cut sections. The sections, which are permanently affixed to plastic microscope slides, are much larger in area than ultramicrotome sections. Additional advantages are: sections can be destained and restained and selected areas can be examined with various forms of electron microscopy. Autoradiographic studies are also possible. Although the method has a broader application, it is particularly useful in examining the interface between hard and soft tissues.

Animals↗

A simplified plastic embedding and immunohistologic technique for immunophenotypic analysis of human hematopoietic and lymphoid tissues.

Routine fixation and paraffin embedding destroys many hematopoietic and lymphoid differentiation antigens detected by flow cytometry or frozen section immunohistochemistry. On the other hand, morphologic evaluation is difficult in flow cytometric or frozen section studies. A simplified three-step plastic embedding system using acetone-fixed tissues embedded in glycol-methacrylate (GMA) resin has been found to provide both excellent morphologic and antigenic preservation. With our system, a wide variety of antigens are detected in plastic sections without trypsinization or prolonged embedding procedures; pan-B (CD19, CD22), pan-T (CD7, CD5, CD3, CD2), T-subset (CD4, CD8, CD1, CD25) markers as well as surface immunoglobulin and markers for myeloid and mononuclear-phagocyte cells are preserved. In summary, modifications of plastic embedding techniques used in this study simplify the procedure, apparently achieve excellent antigenic preservation, and facilitate evaluation of morphologic details in relation to immunocytochemical markers.

Antigens, Surface↗

Immunohistochemical study of T lymphocyte subsets on frozen substituted plastic embedding section of the bone marrow from patients with myelodysplastic syndrome and its clinical implication.

An immunohistochemical study of T lymphocyte subsets on frozen substituted plastic embedding bone marrow sections obtained from 10 patients with myelodysplastic syndrome (MDS) was presented. The results of qualitative and quantitative immunohistochemical analysis are as follows: (1) Labile antigens of T lymphocytes were well preserved, thus allowing analysis of distribution of T lymphocyte subsets in situ: (2) the average number of T3, T4 and T8 lymphocyte of the diffuse infiltrate was about 2%, 0.4%, 0.5%, respectively, of all nucleated cells in bone marrow, and T4/T8 of T cells were below 1.0 in patients with MDS; (3) there were cases of RAS showing T lymphocyte aggregation in bone marrow, but no patient exhibited progressive refractory anemia with excess of blasts (RAEB) and RAEB in transformation (RAEBT). These findings indicated that the immunological abnormalities are of importance in the evaluation of pathogenesis and prognosis of MDS.

Aged↗

Ia antigens in plastic-embedded tissues: a post-embedding immunohistochemical study.

The aim of the present study was to establish a plastic embedding technique that makes possible the immunohistochemical demonstration of class II major histocompatibility complex (MHC) antigens (Ia antigens) in undecalcified joint tissues. Therefore a series of fixatives and dehydrating agents was tested for saving Ia immunoreactivity by post-embedding immunostaining of thin sections (2 microns) of rat tissues that had been embedded in glycol methacrylate (GMA), and by comparing with cryostat sections. An indirect immunoperoxidase and the avidin-biotin complex (ABC) technique were used. Combined with fixation by 4% formaldehyde, dehydration with GMA was found to give the best preservation of Ia antigenicity, followed by dehydration with ethylene glycol. The thinness of tissue sections facilitated the association of Ia antigens with different subcellular compartments in distinct cell populations. These various patterns are described.

Animals↗

Endothelial cells and hematopoiesis: a light microscopic study of fetal, normal, and pathologic human bone marrow in plastic-embedded sections.

The origin and morphological identity of hematopoietic progenitor cells, as well as their precursor, the pleuripotential hematopoietic stem cell (HSC), has not been established. Our studies of 2 microns sectioned undecalcified plastic-embedded bone marrow (BM) from healthy human fetuses; normal adults; patients with acute myeloblastic leukemia (AML), acute lymphoblastic leukemia (ALL), and chronic granulocytic leukemia (CGL) in various stages (chronic, accelerated, acute blastic phase, and after autografting); and patients recovering from therapy-induced marrow hypoplasia suggest that proliferative hematopoietic zones exist near the endosteum (endosteal marrow) and the vascular endothelium (capillary and sinus-lining endothelium) and a maturational zone distal to these regions. In some of these areas, morphologically recognizable hematopoietic cells were seen and interpreted as emerging and maturing in a sequential progression, suggesting an origin from the endosteal or endothelial progenitors. In other loci, early hematopoietic cells were seen in close contact with the endosteal or vascular endothelial (VE) cells. This latter relationship suggested that these areas of cellular contact were important and represented sites of cell to cell interaction that may be associated with the liberation of growth factors by endosteal and endothelial cells and their action on hematopoietic progenitor cells. Following treatment-induced hypoplasia, the endosteal and VE cells were seen to modulate, transform, and migrate into the surrounding empty and edematous marrow space as fibroblasts. Later, as hemopoietic regeneration began, clusters of regenerating hematopoietic cells were seen adjacent to bone trabecule (BT) and near the vascular endothelium. We postulate that endosteal and VE cells are the equivalent of embryonal-stage, undifferentiated mesenchyme and, under the appropriate regulatory influence, are capable of modulation and transformation (differentiation) into stromal (fibroblast-like) cells and precursors of hematopoietic cells in normal (physiologic) and stressed (pathologic) conditions. Recently, human endothelial cells have been shown to express a large number of cell surface antigens in common with hematopoietic (myeloid and lymphoid) cells. It is also possible that, in some situations, the VE cells act to establish a microenvironment and liberate growth factor(s), enabling pleuripotential and progenitor cell differentiation into mature hematopoietic cells adjacent to the vascular endothelium. Indeed, vascular endothelium has been shown to elaborate growth factors that participate in normal hematopoiesis.

Adult↗