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[Ultrastructural characteristics of the tubular histion in the system of nephron protein reabsorption in massive proteinuria].

18 puncture renal biopsies obtained from children aged 6-12 years with primary nephrotic syndrome were studied using electron microscopic to examine the components of tubular histion in the system of nephron protein reabsorption in massive proteinuria. The results indicate changes in the interstitial connective tissue associated with collagen formation. The endothelium of peritubular capillaries demonstrated both adaptive and destructive. One of the manifestations of adaptive reactions was an additional pinocytotic vesicular mechanism of protein transport through the endothelium, described in this paper. Fenestrations are regarded as specialized cellular structures which may be formed in different cytoplasmic areas. Evidence is presented to substantiate the cascade pattern in the development of changes in the proximal tubule epithelium-interstitial connective tissue-capillary endothelium system.

Capillaries↗

[Lymphatic system and water homeostasis].

Using the methods of light and electron microscopy as well as histochemistry, the complex study of structural-cellular state of the wall of small intestine and its grouped lymphoid nodules, mesenterial and iliac lymph nodes and thymus was performed in rats subjected to the changes of a type of drinking water. Tap, distilled and radon waters were used. The organism was found to respond to the changes in the type of drinking water by both non-specific (increase in sectional area of lymphatic vessels and the number of eosinophilic granulocytes in the wall of small intestine, in lymphoid nodule number containing germinal centers in lymph nodes, in proportion of thymus connective tissue component, increased lymphocyte dehydrogenase activity) and specific reactions, which were characteristic only to a given type of water. The latter, for example, included the activation of the function of protein synthesis in endothelial cells of lymphatic capillaries of the small intestine and increased numbers of plasma cells and dividing cells in lymphoid organs in rats consuming distilled water; increased proportion of blood capillaries in the wall of the small intestine, accompanied by the ultrastructural signs of reduction of plastic processes in them in animals drinking radon water. The response of the wall of the small intestine and lymphoid organs of an animal to the effect of drinking waters, different in their mineral content and radon concentrations, was subjected to general biological regularities and took place in two phases of an adaptation process, functional stress and resistivity.

Animals↗

[Results of x-ray studies on the development of giant cell tumors in the tubular bones].

Giant cell tumor definition is still a debatable problem in medicine. The disease is referred to as giant cell tumor, osteoblastoclastoma, local fibrous osteodystrophy. X-ray follow-up of more than twenty patients gave the author arguments in favour of the disease belonging to fibrous osteodystrophy. Roentgenologically, it is characterized by two phases: destructive with typical structureless defects and restorative with typical cellular structures of the affected bone site. For the most part, the disease is benign, rare cases of malignant transformation are attributed to adverse factors.

Adult↗

Effect of water softening on the colour intensity of routine haematoxylin and eosin stain.

Haematoxylin and eosin (H&E) is the most popular routine stain used in pathology laboratories for highlighting cellular structures. To study the effect of tap water'softening' (i.e. calcium extraction) on H&E stains, 5 sets of slides from 30 different paraffin-embedded human pathologic tissue blocks were prepared in the same way except for washing with 5 different types of water. Slides washed in untreated tap water showed the best results concerning differentiation and colour intensity, while slides washed with softened or other treated water showed poorer degrees of differentiation and colour intensity. The worst results were obtained from slides washed with water containing sodium bicarbonate. Low calcium and magnesium ions and high sodium ions in soft water adversely affect the results of routine H&E stain.

Calcium↗

[The morphochemical characteristics of the brain in Wistar rats that differ by open-field motor activity].

By cytochemical and biochemical methods it is established that in rats with low motor activity the increased content of proteins of cytoplasma and nuclei of neurones of the sensorimotor cortex, caudate nucleus and n. accumbens, the increased activity of a number enzymes of oxidizing and protein metabolism in them are combined with a low activity of enzymes of mediator exchange. In the studied formations in rats with high motor activity an increased activity of synaptic and membrane forms of acetylcholinesterase appears at the same level of activity of cholineacetyltransferase in these subcortical formations and at high monoamineoxidase activity in cellular structures of the cortex and in subcortical formations. It is shown that in animals of the same line but differing by the behaviour in the open field, brain formations such as the sensorimotor cortex, caudate nucleus and n. accumbens have their own biochemical properties of the studied characteristics.

Animals↗

[Behavioral-cognitive disorders due to chronic exposure to industrial and environmental toxic substances].

UNLABELLED: A review of neurotoxics is made, given the low tendency to investigate for chronic exposure to environmental and industrial potential central nervous system toxic substances (heavy metals, insecticides, organic solvents and carbon monoxide) in the history of a patient consulting for behavioral - cognitive complains, and considering the potential overturn of the disease if a correct diagnosis and early treatment is made. OBJECTIVE: to determine the onset of the cognitive - behavioral features, presentation pattern, diagnosis and treatment of such neurotoxics (NT). METHODOLOGY: systematized search in Cochrane and Medline reviews, Embase and Lilacs. RESULTS: chronic exposure to neurotoxics can produce personality changes (sleeping problems, excitation, depression, delusions and hallucinations) as well as cognitive problems (memory, learning, language and cognitive reaction problems). NT may cause changes in the neuron morphology and its sub cellular structures, affecting its normal biochemistry and physiology (proteins and neurotransmitters synthesis). The clinical history, diagnosis and treatment of each neurotoxic are discussed. CONCLUSION: The NT must be taken in consideration among the possible different etiologies when a patient with a bizarre behavioral cognitive syndrome is examined.

Cognition Disorders↗

Individual differences and attentional varieties.

With its own functional anatomy, circuitry and cellular structure, attention can be viewed as an organ system. This conceptualization reframes many problems in cognitive science and permits important insights into neurological and psychiatric disorders of both children and adults. Specifically, construing attention as an organ system helps to describe the evolutionary and developmental aspects of volitional control, thus paving the road towards a better appreciation of how such factors as genetics and culture influence control systems. The efficiency of the attention networks differs between people. However, these individual differences may elucidate variation in intelligence as well as the ability to regulate affect.

Attention↗

Hypoxic pulmonary vasoconstriction--triggered by an increase in reactive oxygen species?

Hypoxic pulmonary vasoconstriction (HPV) is an essential mechanism of the lung that matches perfusion to ventilation in order to optimize pulmonary gas exchange. Despite intensive research, the underlying mechanism has not yet been fully elucidated. Reactive oxygen species (ROS) have been proposed as key mediators of HPV. However, there is ongoing discussion as to whether ROS really contribute to HPV regulation and if so, whether an increase or a decrease in ROS occurs during alveolar hypoxia. In this overview, we summarize our data that have led us to conclude that alveolar hypoxia induces an increase in superoxide and subsequently H2O2, and thus elicits HPV. This conclusion is drawn from investigations employing various inhibitors that interfere with ROS in isolated buffer-perfused rabbit lungs challenged with 10-minute periods of alveolar hypoxia. Targeting possible sources of a hypoxia-induced increase in ROS, our data are only partially in accordance with the hypothesis that mitochondria are the hypoxia-dependent ROS generators, and suggest NADPH oxidases as an alternative source. From measurements of intracellular and exhaled H2O2, we hypothesize that total lung ROS release is reduced in alveolar hypoxia, but that in specialized cells or sub-cellular structures an increased ROS release may occur, triggering HPV.

Animals↗

Down-regulation of c-Ki-ras2 gene expression associated with morphologic differentiation in human embryonal carcinoma cells treated with berberine.

A pluripotent human embryonal carcinoma (EC) clone, NT2/D1, which was derived from the Tera-2 cell line, was induced to differentiate into cells with neuronal-like cell morphology by treatment with berberine, an alkaloid derived from a Chinese herbal medicine (Huang Lien). As early as one day after 24-hour treatment of cells with berberine at a nontoxic dose of 0.1 mg/ml in culture medium, the cells started to show morphologic changes, developing into terminally differentiated neuronal-like cells with long, inter-connecting network cellular structures. This process was much faster as compared with that induced by treatment with retinoic acid (RA), which took at least several days to develop. Unlike RA, berberine could not induce murine EC cell line, F9, to differentiate into endodermal cells. It was also found that although the NT2/D1 cell clone exhibited amplification and enhanced mRNA expression of c-Ki-ras2 gene as did the parent cell line, a marked down-regulation of c-Ki-ras2 mRNA expression was observed. However, there was no change in actin mRNA expression even after differentiation had occurred. Thus, morphologic differentiation of EC cells into neuronal-like cells was found to be associated with down-regulation of a protooncogene which plays some definite role in oncogenesis. The mechanism by which berberine induces differentiation in these cells needs further investigation.

Actins↗

[Investigation of discrepant proteins between two breast cancer cell lines with different metastatic abilities].

BACKGROUND & OBJECTIVE: Metastasis associated proteins play important roles in metastasis. This study was to investigate proteins which may be involved in breast cancer cell metastasis and further explore the potential mechanisms. METHODS: LM-MCF-7 and MCF-7, two breast cancer cell lines with different metastatic potentials, derived from the same parent cell line, were used in our study. Proteomics and Western blot were applied to identify differentially expressed proteins. Wound healing assay was performed to observe the effect of survivin gene on breast cancer cell migration by transfecting pcDNA3-Sur plasmid into MCF-7 cells. RESULTS: Eight differently expressed proteins, which were correlated with cell structures, cellular metabolism, apoptosis, protein enfold or interaction, were identified. Protein expression of nm23 and p27 was relatively higher in MCF-7 cells; while the expression of survivin, Bcl-2 and myosin light chain kinase was relatively higher in LM-MCF-7 cells. Increased migration ability was observed in MCF-7 cells which were transfected with pcDNA3-Sur. CONCLUSION: Metastasis associated proteins exist in breast cancer cell lines with different metastatic abilities. Survivin is closely related to the metastasis in breast cancer cells.

Blotting, Western↗

Effects of hyperbaric oxygen on skin blood flow and tissue morphology following sciatic nerve constriction.

BACKGROUND: Constriction of the sciatic nerve by loose ligation produces an inflammatory neuropathic injury. This represents an animal model for peripheral mononeuropathy. Oxygen-derived free radicals are suspected to play an important role in the pathogenesis of ischemia/reperfusion injury, leading to neurogenic inflammation. Hyperbaric oxygen (HBO) has been used anecdotally to treat clinically similar conditions in humans, but specific effects on the animal model have not been well studied. OBJECTIVE: This study in a rat model examined the effects of hyperbaric oxygen on skin blood flow and tissue morphology by light and electron microscopy following sciatic nerve constriction. DESIGN: A scientific investigation in a rat model. METHODS: In this study, the neuropathic injury was established by loose ligation of the rat sciatic nerve. The animals were divided into three groups, sham (S, n=8), ligation but no treatment (LN, n=8) and ligation and treatment with hyperbaric oxygen (LT, n=8). The treatment group (n=8) received hyperbaric oxygen treatment immediately following the injury and daily for four additional days at the same time interval. One hundred percent O2 at 3 atmospheres absolute pressure (66 feet sea water) was administered for two hours. The hindpaws of the rats were observed by light microscopy, electron microscopy, laser Doppler flowmetry (LDF), and clinically for the presence of edema. RESULTS: Untreated animals demonstrated marked tissue edema following sciatic constriction, whereas animals that received hyperbaric oxygen had minimal to no edema. The sham group demonstrated normal histology. The group not treated with hyperbaric oxygen demonstrated swollen mitochondria (2-3 times), with loss of cellular integrity, multiple vacuole formation in both nerve and muscle tissue, widened sarcomeres in muscle, and degenerative changes in the nerve myelin sheaths. The group treated with hyperbaric oxygen demonstrated preservation of cellular structure including mitochondrial integrity, no vacuole formation, and maintenance of normal, easily identifiable nerve structure. The sham group had no change of skin blood flow. Skin blood flow of LT group was decreased immediately after ligation (p<0.05) and recovered to baseline level before ligation on Day 5 after four hyperbaric oxygen treatments. Skin blood flow of LN group was decreased immediately after ligation (p <0.01) and did not recover (p <0.01). CONCLUSION: This study evaluated tissue changes after nerve injury caused by loose ligation of the sciatic nerve in rats. Hyperbaric oxygen treatment following sciatic nerve injury reduced tissue edema, improved skin blood flow, and preserved muscle and neuronal ultrastructural integrity.

Journal Article↗

Perspectives in the coordinate regulation of cell cycle events in Synechococcus.

The concepts of cell theory and the notions of coordinate regulation of the cell cycle have been known for centuries but the conundrum of coordinate regulation of the cell cycle remains to be resolved. The unique characteristics of the cell division cycle of Synechococcus, a photosynthetic bacterium, suggest the existence of a complex network of light/dark responsive gene regulatory factors that coordinate its cell cycle events. Evaluation of the highly ordered cell cycle of Synechococcus led to the construction of workable models that coordinate the cell cycle events. A central issue in bacterial cell growth is the elucidation of the genetic regulatory mechanisms that coordinate the cell cycle events. Synechococcus, a unicellular cyanobacterium, displays a peculiar cell growth cycle. In the light growth conditions, a highly ordered and sequentially coordinated appearances of r-protein synthesis, rRNA synthesis, DNA replication, chromosome segregation, and cell septum formation occur (Figs 1, 2A). Cell membrane syntheses occur predominantly during mid-cell cycle and cell division period. Synthesis of thylakoid (=photosynthetic apparatus) is thought to occur during mid-cell cycle and coincides with a period of peak phospholipid synthesis and oxygen production (Csatorday and Horvath, 1977; Asato, 1979). Cell wall syntheses occur in short discontinuous periods throughout the cell cycle and during cell division (Asato, 1984). Distinct D1 (=G1), C (S) and D2 (=G2) periods as defined by Cooper and Helmstetter (1968) are observed in synchronized cultures of Synechococcus (Asato, 1979). When light grown cultures are placed in the dark, the ongoing cell cycles are aborted in the dark (Fig. 3A) and cell divisions do not occur (Asato, 1983; Marino and Asato, 1986). Upon re-exposure of the cell cultures to the light growth conditions, about 14 h later, new cell cycles are re-initiated. These characteristics of cell growth are considered to be expressions of a unique strategy of obligate phototrophic mode of growth to perpetuate their species (Asato, 2003). Nevertheless, the intermediate metabolism, the synthesis of building block molecules, the genetics and molecular biology in the formation of major macromolecules are similarto heterotrophs such as E. coli. In any case, the genes that are involved in the formation of the cellular structures and the genes that control the orderly appearances of the cell cycle events must be coordinated by novel genetic mechanisms. Currently, there are no known physiological/physical mechanisms, growth rate dependent factors or traditional genetic regulatory mechanisms that could explain the coordinate regulation of the cell cycle events in bacteria (Newton and Ohta, 1992; Vinella and D'Ari, 1995; Donachie, 2001; Margolin and Bernander, 2004). Because the genetic mechanisms of coordinate regulation of cell cycle events in bacteria are largely unexplained, the questions on how Synechococcus coordinates the cell cycle events present a difficult problem to resolve. Nevertheless, the problems with regard to the coordinate regulation of the cell cycle events of Synechococcus must be considered. Possible solutions are developed and described in this article. The proposed schemes do not exclude the formation of other genetic mechanisms on the regulation of cell cycle events in Synechococcus. Although the cell cycle of Synechococcus is not widely known, the issues on the coordinate regulation of the cell cycle events are not trivial since similar regulatory mechanisms most likely occur in other prokaryotes.

Cell Cycle↗

[Effect of tobacco mosaic virus strains on the ultrastructure of parenchymal tobacco leaf cells].

It is shown that considerable amount of virus particles accumulates in the parenchymal cells infected with any of strains of tobacco mosaic virus (TMV) isolated from affected plants of papper (TMV-p), tomato (TMV-t), eggplant (TMV-e). Along with normal, abnormal (swolled and "thin") virions were found that testifies to their destruction. In reply to infection, activation of the lysosomal compartment was observed in the cells that expressed in the formation of cytoplasmic vacuoles, dyctiosomes, smooth endoplasmic reticulum elements, different vesicles, mitochondria with invaginations, multivesicular bodies. It is established that the investigating strains, in dependence on degree of stimulation of lysosomal compartment and development of intracellular lytic processes causing the destruction of virus particles and cellular structures, may be arranged as follows: TMV-p, TMV-e, TMV-t.

Cell Nucleus↗

[Effects of pirarubicin chemotherapy combined with hyperthermia on gastric cancer in vitro].

OBJECTIVE: To evaluate the effect of pirarubicin (THP) in combination with hyperthermia on gastric cancer tissues in vitro and explore the underlying mechanisms. METHODS: In vitro three-dimensional culture models were established with tissue biopsies from 36 patients with pathologically confirmed gastric cancer. The tumor cell viability was measured by MTS-PMS assay, and HE staining was used to study the histomorphological changes of the tissues following chemotherapy and hyperthermia. RESULTS: Synergistic tumor cell-killing effects of cisplatin, THP, and mitomycin with hyperthermia was observed in the tumor tissues (P=0.000), and THP exhibited stronger cytotoxic effects than the other drugs. Histomorphological study suggested strong killing effects of THP on the tumor tissues, which displayed disrupted tissue structure, cellular degradation and necrosis, karyopyknosis and karyolysis, with cytoplasm loss. The anti-tumor effects of THP were associated with clinical staging and pathological grading of the tumors (P=0.000), but not with the patients' gender, age, tumor size and preoperative CEA levels (P>0.05). CONCLUSION: Pirarubicin shows good synergistic effects with hyperthermia, and the cytotoxicity of pirarubicin against gastric cancer tissue is enhanced considerably by mild hyperthermia. THP can be a potential therapeutic drug for intraperitoneal chemohyperthermia.

Adenocarcinoma↗

[Expression of presenilin 1 on the cell surface in motile polarized cells].

Most cases of familial early-onset Alzheimer's disease are caused by mutations in the presenilin 1 (PS1) gene. However, the cellular functions of PS1 are not yet completely understood. We showed that endogenous PS1 and the adhesion protein CD44 are redistributed on the surface of cell projections (lamellipodia) in polarized T- lymphocytes (Jurkat cells) after the adhesion to a collagen matrix. This effect was not observed for another surface protein of T lymphocytes, which is not involved in cell adhesion processes, the T cell receptor. In primary cultures of mouse cortical neurons, PS1 was concentrated at the surface of extended growth cones and at the sites of neurite contacts. The concentration of PS1 at the surface of cellular structures that promote cell motility and cell contacts suggests an important role of PSI in cell adhesion in motile polarized cells.

Animals↗

[Rhythmogenesis in the sinoatrial unit of the heart].

The most significant experimental data about the formation of a uniform rhythm of the sinoatrial unit of the heart for both the intact sinoatrial unit of the heart and cardiomyocytes in cellular structures are presented. The basic mathematical models for studying the processes of synchronization in the sinoatrial unit of the heart are described, including equations of Noble, Bonhoffer, and van der Pol and modified axiomatic models. The basic results obtained using the mathematical models are presented. The major reasons influencing the formation of a uniform rhythm were revealed: the form of a potential pacemaker in the phase of slow diastolic depolarization, its porosity, the force of connection between pacemaker and electric capacity of pacemakers. A study of rhythmogenisis on the basis of the modified axiomatic model was carrud out. The method allows one to calculate the uniform rhythm of the sinoatrial unit of the heart in view of the mutual influence of pacemaker cells, including the force of connection, electric capacity of cells, their possible clusterization. It was shown that generally the uniform rhythm of the sinoatrial unit of the heart is formed on an intermediate level of all pacemaker cells.

Heart Rate↗

Spatial organization of nucleic acid sequences within cells.

High-resolution in situ hybridization has allowed the distribution of specific nucleic acids to be visualized within cells. This has revealed the extent to which nucleic acids exhibit intracellular spatial organization. Hybridization of nonisotopically labeled probes can be detected with high resolution using fluorescence or alkaline phosphatase for light microscopy or colloidal gold for electron microscopy. Results of this approach have shown that messenger RNAs for specific proteins, nuclear transcripts, or the gene for those transcripts all can exhibit non-random intracellular locations. Actin mRNA can be seen localized in the periphery of motile cells, just proximal to the lamellipodia. Highly localized distributions of EBV primary transcripts can be visualized in some cases creating an elongated track of specific RNA. These nuclear transcripts could be seen associated with the nuclear matrix. Further evidence indicates that the genes from which specific RNAs derive may themselves show defined spatial organization. This work sheds light on a level of cellular organization indicating that nucleic acid sequences contain spatial positioning information and therefore can influence the genesis of cellular structure and function.

Animals↗

Functional properties of mitochondria isolated from murine L5178 lymphoblasts grown in cell culture.

Mitochondria were isolated from lymphoblasts grown for 5 days in cell culture. Measurement of mitochondrial respiratory activity revealed poor response to adenosine 5'-diphosphate with reduced nicotinamide adenine dinucleotide-linked substrates but well-coupled active respiration with succinate as substrate. These mitochondria also exhibited rapid initial rates of respiration-supported calcium uptake as measured by dual-beam spectrophotometry. H+/2e- and Ca2+/2e- ratios were in normal limits for the lymphoblast mitochondria during calcium uptake in the presence of phosphate. In the absence of phosphate no calcium uptake, H+ ejection, or stimulation of oxygen consumption was observed. However, the lack of discharge of the accumulated calcium from the lymphoblast mitochondria upon inhibition of respiration suggests possible different mechanisms of cation transport compared to mitochondria from normal, mammalian cell types. Electron microscopy of freshly prepared mitochondrial suspensions revealed preparations with intact outer membranes and abundant cristae and that were relatively free of other cellular structures. These studies demonstrate the feasibility of obtaining intact respiring mitochondria from cultured lymphoid cells and indicate that active ion transport in these mitochondria may be significantly different from "normal" cell mitochondria.

Adenosine Diphosphate↗

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