Histological and cytochemical effects of two substitute thiourea compounds on the fat bodies of the cotton bug Dysdercus koenigii (Fabr.).
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Cytochemically peroxidase activity has been examined on the light optical and ultrastructural levels in blood granulocytes of the rabbits after a single (5 mg/kg) and multiple (1 and 5 mg/kg every 24 hrs during 4 weeks) administrations of hydrocortisone. Under electron microscope peroxidase activity was detected in the blood of intact rabbits into typical primary granules (TPG) and small polymorphic granules (SPG) of neutrophils as well as into specific granules of basophils sometimes in perinuclear space and GER channels. 6 h after hydrocortisone injection peroxidase activity in neutrophils increased, the reaction product in both kinds of cytoplasmic granules was electron denser than in the controls. After multiple hydrocortisone (1 mg/kg) administrations peroxidase general activity in granulocytes has not considerably changed, but the number of TPGs and SPGs was decreased in neutrophils. Multiple administrations of a higher dose of hydrocortisone (5 mg/kg) have induced peroxidase activity decreasing in neutrophils and a decrease in the number and electron density of TPGs and SPGs in them. In basophils there was a significant accumulation of the reaction product of high electron density in perinuclear space, in specific granules and GER channels. The conclusions has been drawn that a short-term raising of hydrocortisone level stimulates and prolonged hypercorticism inhibits peroxidase activity in neutrophils and, consequently, their function.
The effects of different preparative and cytochemical procedures on adenylate cyclase (AC) activity in heart muscle homogenates were studied by quantitative analysis. We were mainly concerned with perfusion prefixation, using glutaraldehyde (GA) with and without DMSO, and with the influence of cytochemical incubation with lead ions as the capture reagent. Furthermore, we measured the direct effect on the AC activity of lead, cobalt, and strontium ions in prefixed heart homogenates. We also studied the influence of phosphatidylinositol and 2',5'-dideoxyadenosine. The following results were obtained: 1. Perfusion fixation using 2% GA buffered with cacodylate reduced the AC activity by about 20%. After the entire cytochemical procedure was finished, 20% of the original AC activity was still present. Stimulation by epinephrine, histamine and fluoride, which increased the activity of AC two or three times in our experiments, was only slightly reduced by the cytochemical treatments. 2. Lead ions (2 mM), added to the biochemical assay without chelating compounds, reduced the AC activity about 90%. 5 muM phosphatidylinositol stabilized the fluoride- and hormone-sensitive AC activity. 3. Co2+ also reduced the AC activity, though less than Pb2+. Sr2+ had no effect on the basic activity of the AC but had a slightly inhibitory effect on the hormone and fluoride stimulation. 4. 5% DMSO added to the fixative had no influence on the basic activity of the AC. However, this solvent definitely reduced the level of stimulation by fluoride and guanine nucleotide plus hormones. 5. A potential inhibitor of enzyme activity and of the hormone- and fluoride-sensitive AC was the adenosine derivative, 2',5'-dideoxyadenosine. This compound, at a concentration of 10(-3) M, inhibited all AC activity in the heart homogenates.
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The cytochemical effects of laxatives on rat colonic epithelial cells were studied. A total of 32 rats was divided into four groups. Three groups were treated with bisacodyl, picosulfate and sennosides for 12 weeks, and a fourth group served as control. The rectum, midcolon and cecum were studied for acidic mucins, lectin soybean agglutinin (SBA) and cytokeratin AE1. Most striking and consistent changes were found in the rectum including total acidic mucin content which significantly increased, with sulfomucin decreased and sialomucin increased in the three treatment groups. Cytokeratin AE1 expression increased on picosulfate and sennosides. SBA total binding increased on bisacodyl and picosulfate. The present findings were thought to be of functional origin and do not represent early precancerous lesions.
The histochemical and enzyme cytochemical effects of Toxaphene were investigated using isolated hepatocytes in suspension culture from laboratory-bred juvenile, female yellowtail flounder (Pleuronectes ferrugineus). Hepatocytes were kept in suspension culture for 4 days and exposed for 3 days to a control medium, to a medium with hexane (the solvent of Toxaphene), or to a medium with Toxaphene in two different concentrations (1 and 10 mocrog/ml). Subsequently, the cultivated cells were examined histochemically (Sudan black B, oil red O, Schmorl's reaction) and enzyme cytochemically (acid phosphatase, NADPH-ferrohemoprotein reductase). Toxaphene decreased the viability of the isolated cells significantly, as compared to the control suspensions. Toxaphene also increased the storage of total and neutral lipids (as demonstrated by Sudan black B and oil red O, respectively) in a dose-dependent manner. In addition, Toxaphene increased the enzymatic activity of acid phosphatase, and increased the storage of lipofuscin pigment (as demonstrated by the Schmorl's reaction) within the hepatocytes, suggesting an increase in the number and/or size of the lysosomes. Hexane did not have a significant toxic effect on the isolated hepatocytes. It is concluded that Toxaphene is potentially toxic to fish in a marine environment and that this in vitro system may provide a model for assessing the direct effect of various toxicants on fish hepatocytes.
Enlargement and membrane destabilisation in digestive cell lysosomes of mussels are biomarkers of pollution effect. Cytochemical methods are currently applied to determine lysosomal membrane stability (LMS) and lysosomal structural changes (LSC). LMS, determined after grading N-acetyl-beta-hexosaminidase activity on cryotome sections of digestive gland, is measured as labilisation period (LP). LSC, determined after image analysis of cryotome sections where beta-glucuronidase activity is revealed, are measured as lysosomal volume (Vv), surface (Sv), numerical (Nv) densities and surface-to-volume ratio (S/V). Both methods have now been compared in a field study. Mussels were collected from Biscay Bay (Plentzia, reference; Muskiz, moderately polluted) and North Aegean Sea (Olympiada, reference; Limani, heavily polluted). Higher Vv and Sv and lower S/V and LP were recorded in polluted sites than in reference sites. Significant correlations with LP were found for Vv and S/V. The cost/effectiveness and environmental significance of both methods are discussed.
The ultrastructural cytopathologic and cytochemical effects of trimethyltin (TMT) neurotoxicity were delineated in hippocampal and pyriform neurons of acutely intoxicated adult rats. TMT produced neuronal necrosis that preferentially involved hippocampal formation pyriform cortex. The first subcellular alterations were multifocal collection of dense-cored vesicles and tubules and membrane-delimited vacuoles in the cytoplasm of the perikaryon and proximal dendrite. Ultrastructural cytochemical examination revealed that the vesicles and tubules had acid phosphatase activity analagous to Golgi-associated endoplasmic reticulum (GERL). Shortly after the appearance of the GERL-like vesicles and tubules, autophagic vacuoles and polymorphic dense bodies accumulated in the neuronal cytoplasm. Some dense bodies appeared to arise from the dense-cored tubules. Neuronal necrosis was characterized by increased electron density of the cytoplasm and large, electron-dense intranuclear masses. Alterations of mitochondria and other organelles were not observed in the early stages of cell injury. No light- or electron-microscopic alterations were found in liver or kidney. Comparable subcellular alterations were observed in adult and neonatal rats chronically intoxicated with TMT. A series of other trialkyl and tricyclic tins and dimethyltin did not produce similar pathologic findings. The GERL-like accumulations are unique in neuronal cytopathology. These findings suggests that GERL and autophagy play an important role in the pathogenesis of TMT-induced neuronal injury.
Distribution of the filipin-cholesterol complexes has been studied by freeze-fractures techniques. While filipin-cholesterol complexes are formed in fixed as well as unfixed cells, the distribution of the complexes varies with fixation. Furthermore, filipin induces dramatic rearrangement of intramembrane particles in unfixed, but not in fixed, cells. Examination of thin sections of filipin-treated cells shows that filipin alone induces substantial cellular damage, while filipin treatment simultaneous to fixation or following fixation does not cause noticeable damage. For filipin to be an effective cytochemical probe of membrane structure, cellular damage must be minimized; this is best achieved by treating cells with filipin following glutaraldehyde fixation.
Mono(2-ethylhexyl) phthalate (MEHP) induced chromosome aberrations in cells of two culture lines, one derived from Chinese hamster ovary cells (CHO) and the other from rat liver cells (RL4). In CHO cells, the clastogenicity of MEHP was unaffected by the presence of an exogenous metabolic activation system (S-9 mix). 2-Ethylhexanol, o-phthalic acid, and phthalic anhydride were without effect. Cytochemical methods and assays for carnitine acetyltransferase and KCN-insensitive palmitoyl CoA oxidation were employed to determine whether chromosome damage was associated with peroxisome proliferation. No evidence of an increase in peroxisome numbers or of induction of marker enzymes was found in CHO cells treated with MEHP for up to 72 hr. Clofibric acid and BR931 were also ineffective. Observations on changes in CHO cell structure and permeability, and on the haemolytic effects of phthalate monoesters, suggest that the cytotoxicity of MEHP may be due primarily to its action on cell membranes. Since chromosome damage was observed only at cytotoxic concentrations, it is suggested that damage to lysosomal membranes and the release of endonucleases may be responsible for the observed clastogenicity of MEHP in vitro.
We assessed the histochemical, ultrastructural and cytochemical effects of reperfusion on ischemic myocardial cells during the early and late reperfusion phases in two groups of dogs. Group A were 8 dogs undergoing 1 hour occlusion of LAD, and Group B were 14 dogs undergoing 1 hour occlusion of LAD followed by 2 hour reperfusion period. The results of the histochemical study (PAS stain) demonstrated that in Group A, a patchy distribution of glycogen occurred primarily in the subepicardial region. Three-dimensional analysis of this distribution revealed peninsulas of glycogen running parallel with a vessel. The cells in Group B, mainly subepicardium, showed a moderate glycogen content which was more extensive than those in Group A. The ultrastructural changes were assessed after a 60-minute ischemia and subsequent recovery (after 5 minutes and 120 minutes of reflow) using transmural biopsy specimens. Each myocardial cell was graded from 0-4 according to the degree of ischemic injury and recovery. The degree of ischemic damage varied in intensity from slight to severe, in both the subepicardium and the subendocardium. Ca++-ATPase activity was examined cytochemically in myocardial cells of Group B. After 60-minute occlusion, the moderately ischemic cells (especially in the subepicardium) that were without amorphous dense bodies or marked sarcolemmal lifting-off made significantly greater ultrastructural recovery (p less than 0.05) with restoration of Ca++-ATPase activity on sarcoplasmic reticulum and mitochondria after 120 minutes of reflow. This occurred even though after 5 minutes of reflow the cell showed temporary deterioration such as contraction bands, vacuoles and severe destruction of some mitochondria.
Gossypol acetic acid, a male anti-fertility drug, was evaluated for its effects on cell multiplication, chromosomes, scheduled and unscheduled DNA synthesis, and the surface ultrastructure in cultured murine erythroleukemia cells (clone 6A11A). Gossypol treatments inhibited cell multiplication at 10 and 20 micrograms/ml concentrations and this inhibitory effect increased with elevated dosage and prolonged treatment. Gossypol significantly depressed the mitotic index but did not alter chromosome numbers or increase the frequency of chromosomal structural abnormalities. Cell fraction techniques revealed that gossypol induced a negative effect on cellular DNA synthesis at concentrations as low as 3.3 micrograms/ml after 24 hr of treatment. The number of cells undergoing DNA synthesis decreased with increasing dosages and durations of drug exposure. An unscheduled DNA synthesis assay (UDS) found gossypol to be an active UDS-inducing agent at certain dose levels and treatment times, as measured by increase in net nuclear gain and percentage of UDS cells (ANOVA, Bonferroni test, P less than 0.05). A scanning electron microscope study revealed that 10 micrograms/ml treatment with gossypol caused changes in mouse erythroleukemia cell surface ultrastructure characterized by general balding and the appearance of holes, often after 48 hr of treatment.
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Ion-transporting Na,K-ATPase plays an essential role in nerve conduction. To clarify the cytochemical effects of reserpine on transport Na,K-ATPase activity, the localization of ouabain-sensitive, K(+)-dependent p-nitrophenylphosphatase (K-NPPase) activity was investigated in the facial nerves of normal and reserpinized guinea pigs using a cerium-based method. In the normal facial nerve, the reaction product of K-NPPase activity was observed on the internodal axolemma and Schmidt-Lanterman incisures. In the Ranvier nodes, enzyme activity was localized to the paranodal and nodal axolemma. In the reserpinized nerves, reaction product was detectable on the nodal axolemma but was undetectable on the other parts of the axolemma. Nodal K-NPPase was not affected by reserpine treatment. Therefore, the transport Na,K-ATPase on the nodal axolemma might differ from that on the other parts of the axolemma. Allowing reserpinized animals to survive. Two different ouabain-sensitive K-NPPase reactivities, "reserpine-sensitive" and "reserpine-resistant," might be present in the facial nerve of guinea pigs.
Using acridine orange fluorochrome staining of fixed smears of peripheral blood the authors have investigated the lymphocyte functional activity in epileptic patients receiving the conventional anticonvulsive therapy including lithium carbonate. It has been established that the dynamics of the functional activity of lymphocytes in epileptic patients show no direct relationship with the therapeutic effect. Cytochemical parameters of the lymphocyte functional activity change in parallel with the clinical picture of the disease under the impact of treatment, i.e., they are directly correlated with the clinical pattern.
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