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121.
Summary The palate epithelium of the frog was examined by scanning electron microscopy, light microscopy and high speed cine micrography. The cilia remain stationary for much of the time in the end-of-effective stroke position. Each beat cycle begins with a forwardly-directed recovery stroke lasting about 60 ms, followed by an effective stroke towards the oesophagus lasting about 12 ms. Activity can often be correlated with the presence of mucus, which is carried as strands on the tips of the ciliary effective strokes whilst the recovery strokes move beneath the mucus. Coordination of ciliary activity was very variable; local antiplectic metachrony of the recovery strokes could almost always be seen, and on very active epithelia effective strokes were associated with approximately diaplectic waves (either to left or right), but any particular pattern of coordinated activity was transient and quickly transformed to another pattern. Beating and coordination of these short cilia were compared with those of cilia propelling water. 相似文献
122.
Joanne T. Emerman Dorothy R. Pitelka 《In vitro cellular & developmental biology. Plant》1977,13(5):316-328
Summary Dissociated normal mammary epithelial cells from prelactating mice were plated on different substrates in various medium-serum-hormone
combinations to find conditions that would permit maintenance of morphological differentiation. Cells cultured on floating
collagen membranes in medium containing insulin, hydrocortisone and prolactin maintain differentiation through 1 month in
culture. The surface cells form a continuous epithelial pavement. Some epithelial cells below the surface layer rearrange
themselves to form alveolus-like structures. Cells at both sites display surface polarization; microvilli and tight junctions
are present at their medium-facing or luminal surface and a basal lamina separates the epithelial components from the gel
and stromal cells. Occasinal myoepithelial cells, characterized by myofilaments and plasmalemmal vesicles, are identified
at the basal surface of the secretory epithelium. In contrast, cells cultured on plastic, glass or collagen gels attached
to Petri dishes form a confluent epithelial sheet showing surface polarization, but lose secretory and myoepithelial specializations.
If these dedifferentiated cells are subsequently maintained on floating collagen membranes, they redifferentiate. There is
little DNA synthesis in cells on collagen gels, in contrast to Petri-dish controls. Protein synthesis in cells on floating
collagen membranes increases over T0 values and remains constant through 7 days in culture whereas it decreases on attached gels; however, if the gels are freed
to float, protein synthesis increases sharply and parallels that seen on floating membranes.
The work was supported by USPHS Grants CA-05388 and CA-05045 from the National Cancer Institute, DHEW. 相似文献
123.
Donna M. Charponiere-Rickenberg Mukta M. Webber 《In vitro cellular & developmental biology. Plant》1983,19(5):373-375
Summary Adult human prostatic epithelium was cultured in a defined medium consisting of RPMI 1640 supplemented with transferrin, insulin,
epidermal growth factor, dexamethasone, and vitamin A. In the presence of insulin, stabilized with zinc, maximum epithelial
multiplication was obtained at an insulin concentration of 0.03 to 0.1 U/ml, corresponding to a zinc concentration of 1.4×10−7
M. At higher insulin concentrations, growth stimulation declined. Zinc-free insulin, on the other hand, stimulated cell multiplication
with an optimum concentration of 0.3 to 1.0 U/ml. At this concentration the maximum growth was twice that obtained with zinc-stabilized
insulin. Results demonstrate that growth inhibition caused by zinc limits the concentration of zinc-stabilized insulin, which
can be used in serum-free, defined culture media.
This work was supported by the Division of Cancer Cause and Prevention, National Cancer Institute, DHHS Grant No. CA-28279
to Webber. 相似文献
124.
Masini A Ceccarelli-Stanzani D Muscatello U 《Journal of bioenergetics and biomembranes》1983,15(4):217-234
A possible relationship between mitochondrial Mg2+ levels, structural configurations, and functional steady states has been studied in rat liver mitochondria. The results show that the concentration of mitochondrial Mg2+ in respiratory state 4 is definitely higher than in respiratory state 3. The metabolic transition from state 3 to state 4 and vice-versa is associated with reversible influx-efflux of about 10 nmol of Mg2+ per mg protein. The net uptake of this aliquot of Mg2+ is a necessary condition in order for the metabolic transition to state 4, both structurally and functionally, to occur. This process requires a threshold concentration of external Mg2+ greater than 5 mM. The phosphorylative mechanism does not appear to depend on the presence or absence of external Mg2+. The role of Mg2+ on the attainment and maintenance of the structural and functional steady state 4 seems to be correlated with its regulatory effect on the concentration of the mitochondrial Pi. 相似文献
125.
Niels C. Krejci Lynne Smith Rebecca Rudd Robert Langdon Joseph McGuire 《In vitro cellular & developmental biology. Animal》1991,27(12):933-938
Summary To investigate the regulation of epithelial differentiation, normal human epidermal keratinocytes were cultured floating on
the surface of culture medium without attachment to a solid substrate. Keratinocytes spread out on the surface of the medium,
proliferated and differentiated either into several flat lacy sheets 1 to 3 cells thick (on medium containing 0.15 mM calcium) or formed one single aggregate of cells from 5 to 15 cells in thickness on medium containing 1.15 mM calcium. The cell aggregates demonstrated a pattern of ordered epithelial differentiation. Levels of progressive differentiation
resembling the structure of normal human epidermis were identified by light microscopy, immunohistochemistry, and electron
microscopy. Differentiation proceeded from cells at the air side toward cells at the medium side with basal appearing cells
on the air side and keratinocytes expressing filaggrin and involucrin on the side toward the medium. These results demonstrate
that organized epithelial differentiation can occur in the absence of extracellular matrix. In contrast with other air-liquid
interface cultures, epithelial differentiation in the absence of extracellular matrix progresses from air towards medium. 相似文献
126.
Luminol chemiluminescence was used to detect activation of the respiratory burst oxidase in bovine eosinophils and neutrophils. Extracellular and intracellular chemiluminescence were measured by supplementing the medium with horseradish peroxidase and catalase, respectively. Pure bovine eosinophils (> 90%), maximally stimulated with 1 nmol/l phorbol 12-myristate-13-acetate (PMA) showed ten times more extracellular luminol-dependent chemiluminescence (CL) than maximally stimulated pure bovine neutrophils (> 96%). Extracellular CL from eosinophils was preferably induced over intracellular CL by both PMA (27-fold difference) and platelet-activating factor (PAF) at 2 μmol/l (9-fold difference), but not by calcium ionophore A23187 (15 μmol/l). Time course information was used in the following experiments to distinguish between the mode of action of various stimulants. A progressively longer lag period was observed in eosinophil suspensions treated with decreasing doses of PMA, whereas platelet-activating factor induced a dose-dependent increase in the maximum response with no change in time to peak CL. The time course of extracellular CL was almost identical to intracellular CL for all stimulants tested, providing no evidence to suggest that extracellular CL stems from a different enzyme system than intracellular CL. Eosinophils generated most extracellular CL when stimulated with PMA, whereas neutrophils were most efficiently stimulated with A23187, which induced intracellular CL in eosinophils as well as in neutrophils. This accords with the greater tendency of neutrophils to ingest and kill microorganisms, whereas eosinophils are armed to destroy large extracellular targets. 相似文献
127.
Yeasts degrade glucose through different metabolic pathways, where the choice of the pathway is dependent on the nature of the limitation in the various substrates. When oxygen is limiting in addition to glucose, yeasts often grow according to a mixture of oxidative and reductive metabolism. Oxygen may be limiting either by supply or by inherent biological restrictions such as the respiratory bottleneck in Saccharomyces cerevisiae or by both. A unified model incorporating both supply and biological limitations is proposed for the quantitative prediction of growth rates, consumption and production rates, as well as key metabolite concentrations during mixed oxidoreductive metabolism occuring as a result of such oxygen limitations. This simple unstructured model can be applied to different yeast strains while at the same time requiring a minimum number of measured parameters. "Estimators" are utilized in order to predict the presence of supply-side or biological limitations. The values of these estimators also characterize the relative importance of oxidative to total metabolism. Results from the aerobic and oxygen-limited chemostat cultures were used to corroborate the model predictions. During these experiments, the heat released by the yeast cultures was also monitored on-line. The model correctly predicted the overall stoichiometry, steady-state concentrations, and rates including heat dissipation rates measured in the various situations of oxygen limitations. Direct continuous measurements such as heat can be used in conjunction with the unified model for on-line proces control. (c) 1992 John Wiley & Sons, Inc. 相似文献
128.
Summary The effects of cyclic GMP (cGMP), carbachol and diltiazem on a potassium-selective, delayed-rectifier current in freshly dissociated rabbit corneal epithelial cells were studied using a modified perforated-patch-clamp technique. The current was stimulated by both 500 m cGMP (2.3–4.5-fold, mean = 2.9) and 250 nm carbachol, a muscarinic agonist (1.12–7.04-fold, mean = 3.8), and the stimulated current was totally blocked by diltiazem (10 m). The effects of cGMP appeared to be, at least in part, different from those of carbachol as they required the presence of external calcium. Single-channel data suggest that cGMP and carbachol activate the potassium current by increasing the open probability of the channel via a second-messenger system and that the action of diltiazem is probably through a direct blocking effect on the open channel.We are grateful to Erika Wohlfiel for secretarial help, Helen Hendrickson for cell preparation, and Joan Rae for software development. The work was supported by NIH grants EY06005 and EY03282 and an unrestricted award from Research to Prevent Blindness. 相似文献
129.
Vertical profiles were measured in soil cores taken from flooded rice fields in the Po valley during July and August 1990.
Methane concentrations generally increased with depth and reached maximum values of 150–500 μM in 5–13 cm depth. However,
the shape of the profiles was very different when studying different soil cores. The CH4 content of gas bubbles showed a similar variability which apparently was due to spatial rather than temporal inhomogeneities.
Similar inhomogeneities were observed in the vertical profiles of acetate, propionate, lactate, and formate which showed maximum
values of 1500, 66, 135, and 153, μM, respectively. However, maxima and minima of the vertical profiles of the different substates
usually coincided in one particular soil core. Large inhomogeneities in the vertical profiles were also observed for the rates
of total CH4 production, however, the percentage contribution of H2/CO2 to CH4 production was relatively homogeneous at 24 ± 7% (SD). Similarly, the H2 content of gas bubbles was relatively constant at 93.3 ± 9.6 ppmv when randomly sampled in the rice field at different times
of the day. A small contribution (6%) of H2/CO2 to acetate production was also observed. Vertical profiles of the respiratory index (RI) for [2-14C] acetate showed that acetate was predominantly degraded by methanogenesis in 5–11 cm depth, but by respiration in the surface
soil (3 cm depth) and in soil layers below 13–16 cm depth which coincided with a transition of the colour (grey to reddish)
and the physical characteristics (porosity, density) of the soil. The observations indicate that the microbial community which
degrades organic matter to CH4 is in itself relatively homogenous, but operates at highly variable rates within the soil structure.
Author for correspondence 相似文献
130.
James H. Resau Kosaku Sakamoto John R. Cottrell Eric A. Hudson Stephen J. Meltzer 《Cytotechnology》1991,7(3):137-149
Organ explant culture models offer several significant advantages for studies of patho-physiologic mechanisms like cell injury, secretion, differentiation and structure development. Organs or small explants/slices can be removed in vivo and maintained in vitro for extended periods of time if careful attention is paid to the media composition, substrate selection, and atmosphere. In the case of human tissues obtained from autopsy or surgery, additional attention must be paid to the postmortem interval, temperature, hydration, and cause of death. Explant organ culture has been effectively utilized to establish outgrowth cell cultures and characterize the histiotypic relationships between the various cell types within an organ or tissue.J. Resau is a visiting scientist at the NCI-LMO-DCE in Frederick, MD 21702, U.S.A.K. Sakamoto is a visiting scientist from the Department of Surgery, Gunma University School of Medicine, Maebashi, Japan 相似文献