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A simplified method for the culturing of primary adult rat and human hepatocytes as multicellular spheroids.

A simple and highly reproducible method was established for the culturing of adult rat and human hepatocytes as multicellular aggregates (spheroids). Purified rat and human liver parenchymal cells were cultured on nontissue culture (bacteriological) polystyrene petri dishes on a rotating platform. After an overnight incubation, the cells were found to form multicellular aggregates. The aggregates became spheroidal in shape after several days in culture. Histological sections of the spheroids showed an organized structure consisting of squamated cells on the outermost layer and cuboidal cells in the interior. Cellular structures characteristic of hepatocytes in the liver in vivo including bile canaliculi, peroxisomes, Golgi bodies, abundant mitochondria, and rough and smooth endoplasmic reticulum were observed with electron microscopy. The spheroids were found to be viable up to the longest time studied of approx. 1 month in culture as demonstrated by their adherence and growth on collagen-coated substratum. The morphological resemblance between hepatocytes cultured as spheroids and the liver in vivo suggests that the spheroids may be a useful in vitro experimental model of the liver. Our simple method should allow hepatocytes to be cultured as spheroids easily in any laboratory equipped for cell culture. Our study here also is the first to report the culturing of human hepatocytes as spheroids.

Animals↗

Modified procedure of monolayer culture of human pituitary adenoma cells on microporous membrane coated with extracellular matrix.

This study was designed to establish an in vitro model system in human hormone-producing pituitary adenoma which is analogous to the in vivo cellular environment. Mechanically dispersed cells composed of single cells and aggregated cells from 9 pituitary adenomas (5 GH-producing adenomas and 4 prolactinomas) were cultured on microporous membrane coated with basement membrane extract. Not only single cells but also large aggregated cells which usually float in the medium when seeded on ordinary plastic flasks were morphologically flattened and firmly attached to coated microporous membrane within a few days under the control of seeding medium volume. In both types of adenoma, surviving aggregated adenoma cells revealed well-preserved hormonal activity with regard to both cell morphology and hormone release after 6 m in culture and no undifferentiation of cell characteristics was observed. It is concluded that this culture method may further aid the investigation of in vitro cellular structure and function in human pituitary adenoma under conditions which closely mimic the in vivo cellular environment.

Adenoma↗

Modulation of the intestinal response to ionizing radiation by anticoagulant and non-anticoagulant heparins.

Endothelial dysfunction is involved in radiation responses in many normal tissues, including intestine. Endothelium-directed interventions ameliorate intestinal radiation injury (radiation enteropathy) in animal models, and anecdotal reports also suggest a beneficial effect of heparin. This study assessed low molecular weight heparin as an intestinal radiation response modifier. Rats underwent localized small bowel irradiation. Groups of rats were treated with saline, nadroparin (3 mg/kg/d), or a non-anticoagulant heparin (SR80258, 3 mg/kg/d), from 3 days before to 2 weeks after irradiation. The intestinal radiation response was assessed 2 weeks and 6 weeks after irradiation using quantitative histology; morphometry, and cellular and molecular end-points. Compared to vehicle-treated controls, nadroparin significantly exacerbated structural radiation injury, neutrophil infiltration, and TGFbeta and collagen I immunoreactivity levels 2 weeks after irradiation. SR80258 was associated with increased TGFbeta levels, but the other parameters did not reach statistical significance. At 6 weeks, structural, cellular, and molecular injury was similar in the three experimental groups. Heparin, in contrast to antiplatelet agents and direct thrombin inhibitors, does not ameliorate, but exacerbates acute intestinal radiation toxicity. These data underscore the importance of heparin as an inhibitor of physiological anti-inflammatory mechanisms during tissue injury, as well as the non-anticoagulant effects of heparin. Moreover, these data may have implications for the use of heparin during radiation therapy.

Animals↗

[Ultrastructure of the human lung in shock (author's transl)].

The material investigated was obtained by lung puncture with the aid of the Hausser needle. The puncture technique as well as the preparation of the biopsy material for electronmicroscopic diagnostics are described. The most outstanding criterion in all biopsies examined is the large number of polymorphonuclear, mainly neutrophile granulocytes in the capillary and precapillary arterioles. In contrast, hardly any platelets were found in pulmonary vessels. Also, our investigation of the material revealed no intravascular fibrin deposits while vessels are partly and sometimes completely occluded by fat droplets of different size. The vascular walls are markedly swollen. Fluid escape from smaller vessels results in an edematous swelling of varying degree in the perivascular space combined with fibrin uptake and partly or totally destroyed cell structures. The type I epithelial cells of the lung tissue are swollen and show poor cellular structures. There is in increase of the type II epithelial cells in the shock lung with their lamellary corpuscles partly transferred into the alveolar lumen. The pathomechanisms leading to these changes are discussed. We would like to point out that fibrin was never found intravascularly but was always seen in regions. These findings could indicate increased fibrinolytic activity in shock. Platelet aggregations in smaller vessels are of secondary significance in the material we examined while fat globules, however, play an important part due to their large surface extension. Our electronmicroscopic investigations prove that the lung biopsy method is of great importance for further information on the pathologenesis of early damages in the shock lung not easily discovered by light microscopy.

Biopsy, Needle↗

[In vitro models for the evaluation of the neurotoxicity of methylmercury. Current state of knowledge].

BACKGROUND: In adults, MeHg poisoning is characterized by damage to discrete anatomical areas of the brain (visual cortex, loss of neurons from the granule layer of the cerebellum). However, the immature central nervous system (CNS), which is extremely sensitive to MeHg neurotoxicity, shows a diffuse and widespread damage disorganization of cerebral cortex cytoarchitecture, disappearance of granule cells with narrowing of the molecular layer. While adverse effects have been unequivocally demonstrated in poisoning incidents in humans (visual abnormalities, sensory impairment of the extremities, cerebellar ataxia, hearing loss, muscle weakness, tremor and mental deterioration), the implications of lower level exposures, such as those occurring in fish-eating populations, are still controversial. The high affinity of MeHg for thiol groups makes proteins and peptides bearing cysteines the predominant targets for structural and functional modification by MeHg in all subcellular compartments. METHODS: The identification of MeHg cellular and sub-cellular targets in the CNS is complicated by the fact that it is difficult to observe the outcomes directly in vivo. In neurobiology, in vitro cell culture techniques have been successfully developed and employed to address specific questions of cell biology and nervous system functioning and provide a means to systematically study the complexity of cellular functions of the CNS elements. Moreover, they provide a convenient experimental tool for testing possible functions or postulates in vivo that otherwise might not be conducted. RESULTS: Several mechanisms have been proposed as being implicated in the neurotoxic effects of MeHg. Examples of MeHg molecular effects which may be relevant to risk assessment are presented, including cell death mode, effects on microtubules, calcium signalling, oxidative stress, effects on neurotransmitter systems. CONCLUSIONS: Molecular and cellular approaches permit exploration of early biological responses to chemical or physical agents and definition of the role of these early effects in altered cellular structure and function.

Adult↗

[Inventions for preservation of hormonal function in long-term culture of human functioning pituitary adenoma].

This study was designed to establish in vitro model systems in human hormone-producing pituitary adenomas that are analogous to the in vivo cellular environment. Mechanically dispersed cells composed of single cells and aggregates from 6 pituitary adenomas (3 GH producing adenomas and 3 prolactinomas) were cultured on microporous membrane cell culture inserts (Millicell-CM) coated with Basement Membrane Matrigel for up to 6 months. Growth hormone or prolactin in the medium was measured during the culture, and morphological feature in vitro was also compared with that of the original tumor at intervals. Not only single cells but also large aggregated cells which usually float in the medium when seeded on conventional plastic, were flattened and firmly attached to coated microporous membrane under the control of medium volume in culture. In both type adenomas, especially prolactinomas, surviving aggregated adenoma cells revealed preserved hormone activity and no dedifferentiation of cell characteristics after 6 months in culture. Particularly during the first 2 months in culture, close similarity existed between in vivo and in vitro conditions with regard to cell morphology and hormone release. These results indicate that this new culture method may further aid the investigation of in vitro cellular structure and function in human pituitary adenomas under conditions which closely mimic the in vivo cellular environment.

Adenoma↗

Structure--function relationships in gap junctions.

Gap junctions are metabolic and electrotonic pathways between cells and provide direct cooperation within and between cellular nets. They are among the cellular structures most frequently investigated. This chapter primarily addresses aspects of the assembly of the gap junction channel, considering the insertion of the protein into the membrane, the importance of phosphorylation of the gap junction proteins for coupling modulation, and the formation of whole channels from two hemichannels. Interactions of gap junctions with the subplasmalemmal cytoplasm on the one side and with tight junctions on the other side are closely considered. Furthermore, reviewing the significance and alterations of gap junctions during development and oncogenesis, respectively, including the role of adhesion molecules, takes up a major part of the chapter. Finally, the literature on gap junctions in the central nervous system, especially between astrocytes in the brain cortex and horizontal cells in the retina, is summarized and new aspects on their structure-function relationship included.

Animals↗

Structural study on the effect of 24,25-dihydroxyvitamin D3 on epiphyseal growth plate in suckling mice.

The in vivo effects of 24,25(OH)2D3 on cellular structure and organization, matrix metachromasia and mineralization were studied in epiphyseal growth plate of normal neonatal mice. A relatively low dose of the metabolite, 40 ng/kg body weight, significantly increased the overall size of humeral growth plate and the zone of cellular proliferation. By and large, the tissue's response to the metabolite did not change with the increase in dose administered except for a decrease in the number of chondroblasts. 24,25(OH)2D3 led to significant increases in the metachromatic reaction of the cartilaginous matrix, but appeared to depress the mineralization process. Qualitative structural changes were noted in chondroblasts and hypertrophic chondrocytes. 24,25(OH)2D3 affected the osteoblastic and osteocytic populations of cells in the metaphysis and diaphysis of the humerus. High doses of 24,25(OH)2D3 brought about distinct atrophic changes in the above cells. These findings indicate that excessive doses of 24,25(OH)2D3 in an intact animal may lead to retardative effects upon bone growth.

Animals↗

An induced fit hypothesis for antigen recognition by T lymphocytes: a role for specific antigen retention structures on antigen-presenting cells.

The nature of T lymphocyte recognition of foreign antigens is not known, despite recent advances in elucidating the cellular structures that may be involved in the specific interactions. The central difficulty in this process is that T cells respond to foreign antigen only in the context of major histocompatibility complex (MHC) antigens expressed by another antigen-presenting cell. In addition, T cells that interact with class II MHC antigens do not bind foreign protein antigens in their native form, but seem to recognize only proteolytic peptide fragments as the relevant antigen. The simplest explanation for these observations is that the class II MHC antigens themselves bind antigenic peptides to form the appropriate determinant that interacts with the antigen-specific T cell receptor. However, to date no such antigenic complex has been found with MHC antigens despite rigorous attempts at their demonstration. One alternative explanation described here is that there is no preexisting foreign antigen-MHC antigen complex prior to interaction with T cells, and it is the T cells that cause the two moieties to become associated for recognition by a single antigen-specific T cell receptor. Central to this mechanism is that foreign antigenic peptides must be associated with specific antigen retention structures (SARS) expressed by antigen-presenting cells which retain and protect the peptide on the cell surface. These SARS, upon interaction with T cell membrane moieties, would subsequently associate with MHC antigens. A hypothesis to describe this mechanism is developed to account for published observations of antigen processing by antigen-presenting cells and T cell antigen recognition, and makes several predictions that are experimentally testable. This mechanism is also generally applicable to other cellular interactions in which soluble peptide mediators may become associated with surface components of one cell type, and this newly formed complex is in turn recognized by a receptor on a second cell type to deliver functional signals.

Animals↗

Functional and structural differences between cultured outer and inner layer cells of bovine adrenal cortex.

Outer and inner layer cells of bovine adrenal cortex were cultured separately to compare cellular structural characteristics and functional differences. Outer layer cells were polygonal in shape with radially distributed lipid droplets in the cytoplasm, and produced mainly aldosterone and cortisol. The aldosterone production increased upon stimulation with angiotensin II or dibutyryl-cAMP. In contrast, inner layer cells were spindle-shaped and had fine diffused lipid droplets. They produced four times as much cortisol as outer layer cells but no aldosterone. Cortisol production increased with ACTH or dibutyryl-cAMP stimulation. When stimulated by ACTH or by dibutyryl-cAMP, both types of adrenocortical cells showed "cellular retraction" whereby the number of cytoplasmic lipid droplets decreased and microvilli on the cellular surface increased. At the same time, the transverse distribution of actin fibers disappeared and the microtubules changed their distribution pattern from circular to radial. Stimulation by angiotensin II, on the other hand, brought no marked structural changes. These results indicate that, in functional terms, the outer layer cells and the inner layer cells in this culture system reflect zona glomerulosa and zona fasciculata-reticularis, respectively.

Adrenal Cortex↗

Modelling the growth of filamentous fungi.

Despite the considerable industrial importance of filamentous fungi there have been very few attempts to model the complex growth process of these microorganisms. With a new generation of high performance, computerized bioreactors and new analytical techniques it is possible to obtain the necessary experimental data for setting up reliable structured models describing the growth process of filamentous fungi. It is therefore interesting to review the mathematical models described previously in the literature and the experimental data on which these models are built. Only structured models are considered due to the complex metabolism of filamentous fungi and to the natural cellular structuring of the biomass, i.e. the biomass can be divided into different cell types. In order to set up good structured models it is strictly necessary to have a detailed knowledge of the mechanisms underlying the growth process. This involves both biochemical insight and understanding of the interactions between different macromolecules and cytological organelles.

Biotechnology↗

Effect of an externally applied electric field on excitation propagation in the cardiac muscle.

Classical theory of potential distribution in cardiac muscle (cable theory) postulates that all effects of electric field (internally or externally applied) should decay exponentially with a space constant of the order of the tissue space constant ( approximately 1 mm). Classical theory does not take into account the cellular structure of the heart. Here, we formulate a mathematical model of excitation propagation taking into account cellular gap junctions. Investigation of the model has shown that the classical description is correct on the macroscopic scale only. At microscopic scale, electric field is modulated with a spatial period equal to the cell size (Plonsey and Barr), with the zero average. A very important new feature found here is that this effect of electric field does not decay at arbitrary big distances from the electrode. It opens the new way to control the excitation propagation in the cardiac muscle. In particular, we show that electric field can modify the velocity of propagation of an impulse in cardiac tissue at arbitrary big distances from electrode. In 2-dimensions, it can make rotating waves drift. To test these predictions, experiments with cardiac preparations are proposed.

Journal Article↗

Ultraviolet wavelength dependence of photomorphological and photosynthetic responses in Brassica napus and Arabidopsis thaliana.

Among the photomorphological responses in plants induced by ultraviolet-B radiation (UVB; 290 nm-320 nm) are leaf asymmetry, leaf thickening and cotyledon curling. We constructed an action spectrum of cotyledon curling in light-grown Brassica napus to characterize the UVB photoreceptor that initiates this response. Cotyledon curling was also characterized in Arabidopsis thaliana. Peak efficiency for this response occurred between 285 and 290 nm. Additionally, UVB-induced changes in epidermal cells from A. thaliana cotyledons were assessed because they are the likely site of UVB photoreception that leads to curling. Investigation of cellular structure, chlorophyll a fluorescence and chlorophyll concentration indicated that cotyledon curling is not concomitant with gross cellular damage or inhibition of photosynthesis, which only occurred in response to wavelengths <280 nm. Many UVB effects are apparently an indirect consequence of UVB radiation, dependent on UVB-mediated increases in reactive oxygen species (ROS) that either act as a signal in the UVB transduction pathway or cause oxidative damage. The cotyledon curling response was impeded by ascorbate and cystine, ROS scavengers and was promoted by H(2)O(2), a ROS. We suggest that following absorption by a UVB chromophore, ROS are generated via photosensitization, ultimately leading to cotyledon curling.

Antioxidants↗

Biology of stem cells in human umbilical cord stroma: in situ and in vitro surveys.

Cells in the umbilical cord stroma have gained attention in recent years; however, differentiation to certain lineages in humans has been demonstrated in few studies. Unlike bone marrow MSCs, human umbilical cord stroma cells (HUCSCs) are far from being well characterized. This study attempts to describe proliferation, structural, and differentiation properties of these cells to account for their exceptional nature in many aspects. Cellular dynamics, cellular structure, and the degree of transformations during expansion and differentiation into mesenchymal and neuronal lineages were examined in vitro over a 10-month period. Comparisons with human bone marrow MSCs regarding differentiation were performed. HUCSCs in culture revealed two distinct cell populations, type 1 and type 2 cells, that possessed differential vimentin and cytokeratin filaments. Corresponding cells were encountered in cord sections displaying region-specific localization. alpha-Smooth muscle actin and desmin filaments, which were evident in cord sections, diminished through passages. No difference was noted regarding type 1 and type 2 cells in differentiation to chondrogenic, adipogenic, and osteogenic lineages, whereas a preferential differentiation was noted in neuronal lineage. Relative success was achieved by production of chondrocytic spheres and osteogenic monolayers, whereas adipocytes were immature compared with bone marrow MSCs. The presence of neuronal markers suggests that they transform into a certain state of maturity under neurogenic induction. Conclusively, HUCSCs retain their original phenotype in culture without spontaneous differentiation, have a limited lifespan, and bear multipotent stem cell characteristics. Given these characteristics, they may be generally considered progenitor cells if manipulated under appropriate conditions and deserve further study to be potentially used in cell-based therapies.

Cell Differentiation↗

A workingperson's guide to deconvolution in light microscopy.

Thefluorescence microscope is routinely used to study cellular structure in many biomedical research laboratories and is increasingly used as a quantitative assay system for cellular dynamics. One of the major causes of image degradation in the fluorescence microscope is blurring. Deconvolution algorithms use a model of the microscope imaging process to either subtract or reassign out-of-focus blur. A variety of algorithms are now commercially available, each with its own characteristic advantages and disadvantages. In this article, we review the imaging process in the fluorescence microscope and then discuss how the various deconvolution methods work. Finally, we provide a summary of practical tips for using deconvolution and discuss imaging artifacts and how to minimize them.

Algorithms↗

Specific binding of HIV-1 envelope protein gp120 to the structural membrane proteins ezrin and moesin.

The observation that HIV in vitro can infect CD4- and Gal-C-negative brain cell lines has stimulated this study to identify alternative gp120-binding proteins on brain cells. HIV-1 gp120 binding proteins of the CD4-negative and Gal-C-negative, non-productively infectable human glioblastoma cell line D54 were purified by affinity chromatography over a gp120-conjugated sepharose column and identified by peptide microsequencing. The binding capacity and specificity of this column was controlled using extracts of CD4-positive cells. Two of seven prominent proteins eluted from the gp120 affinity column specifically bound gp120 in Western blot overlay experiments and were identified by subsequent immunoblotting and microsequencing as ezrin and moesin, members of the ERM (ezrin, radixin, moesin) family of cellular structural membrane proteins. Antibodies to ezrin and moesin specifically recognized the eluted gp120 binding proteins confirming their identification. Ezrin and moesin are structural proteins binding to the cellular membrane and to several cytoskeletal and transmembrane proteins. Our results suggest that ezrin and moesin might play a role as gp160/gp120 binding proteins during the uptake, the assembly or the budding of HIV.

Chromatography, Affinity↗

Fine structural study of the red seaweed Gymnogongrus torulosus (Phyllophoraceae, Rhodophyta).

The present study analyzed several characters of the red seaweed Gymnogongrus torulosus, such as cellular structure of the thallus, cuticle, pit plug and cell wall ultrastructure, and morphology of some organelles like plastids, Golgi bodies and mitochondria. Also, anomalous chloroplasts with thylakoid disorganization were found in medullary cells. The significance of this thylakoid disposition is still unclear. This is one of the first studies focused on the fine structure of a red alga recorded in Argentina.

Cell Wall↗

Expression of carbonic anhydrase isozymes II and III in developing bovine parotid gland.

Two cytosolic carbonic anhydrase isozymes (CA-II and CA-III) were studied by immunohistochemistry in bovine parotid glands during fetal development. In a 3-month-old fetus of crown-rump length (CRL) 17 cm, the expression of CA-II in undifferentiated epithelial cells was observed, whereas immunostaining for CA-III remained negative. At 26 cm CRL (4-5 months old), weak expression of CA-III in large ductal epithelial cells was noted. The accumulation of secreted granules in primary acinar cells was initially observed at this stage. In a newborn calf, anti-CA-II reactivity almost disappeared from most duct segments. The time-dependent expression and distribution of the isozymes in parotid glands may reflect different biological functions of these structurally closely related isozymes. Bovine parotid acinar cells of fetuses would thus appear to possess all the cellular structures and immunohistochemical properties at 4 and 5 months of gestation. CA-II subsequently disappeared from duct segments and nearly all acinar cells in adults were present at or just after birth.

Animals↗