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On-cells

Density and polymer composition have a large effect on compressive strength and modulus (Fig. 3). The dependence of compressive properties on cell size has been discussed (22). The cell shape or geometry has also been shown important in determining the compressive properties (22,59,60,153,154). In fact, the foam cell stmcture is controlled in some cases to optimize certain physical properties of rigid cellular polymers. [Pg.412]

Mitsubishi Heavy Industries, Ltd., Tonen Corp., and Sanyo Electric Co. are participating in the program. This effort is in its early stages and is concentrating on cell components and small cell development. [Pg.585]

The influences of herbicides on cell division fall into two classes, ie, dismption of the mitotic sequence and inhibition of mitotic entry from interphase (G, S, G2). If ceU-cycle analyses indicate increases in abnormal mitotic figures, combined with decreases in one or more of the normal mitotic stages, the effect is upon mitosis. Mitotic effects usually involve the microtubules of the spindle apparatus in the form of spindle depolymerization, blocked tubulin synthesis, or inhibited microtubule polymerization (163). Alkaloids such as colchicine [64-86-8J,viahla.stiae [865-21-4] and vincristine [57-22-7] dismpt microtubule function (164). Colchicine prevents microtubule formation and promotes disassembly of those already present. Vinblastine and vincristine also bind to free tubulin molecules, precipitating crystalline tubulin in the cytoplasm. The capacities of these dmgs to interfere with mitotic spindles, blocking cell division, makes them useful in cancer treatment. [Pg.46]

A. I. Archakov and K. J. Gundermann, eds.. Phosphatidylcholine on Cell Membranes and Fransport of Cholesterol, wbn-Vedag-Biagen, Rheia, Germany, 1988. [Pg.105]

D. R. Laves, in H. H. Hiatt, J. D. Watson, and J. A. Winsten, eds.. Origins of Human Cancer, Vol. 4, Cold Spring Haiboi Conferences on Cell Proliferation, Cold Spring Harbor Laboratory, Maine, 1977, p. 357. [Pg.389]

A. J. Clark, The Mode of Action of Drugs on Cells, Arnold, London, 1937. [Pg.283]

The outcome of rapid radiation chemical processes in mammalian cells is to cause a variety of longer-Hved physical alterations in the DNA. Of these, double-strand breaks (DSBs) appear to be most frequently involved in cell killing if not correctly repaired. In general, thiols protect against DSB induction in proportion to their effect on cell killing (7), although there are exceptions (8). [Pg.487]

There are numerous reports of the effects of antioxidant vitamins on transformation. Vitamin C suppresses x-ray-induced transformation when CSHlOTy cells are treated daily for one week following irradiation (97), suppresses transformation by y-rays or neutrons, and prevents the promotion of radiation-induced transformation by 12-0-tetradecanoylphorbol 13-acetate (TPA), but has no effect on cell survival (98). In these studies, the continuous presence of vitamin C for a critical period appears to be necessary for suppression of transformation. Vitamin C may act on the promotion stage of... [Pg.491]

The rate of side-chain cleavage of sterols is limited by the low solubiUty of substrates and products and thek low transport rates to and from cells. Cyclodextrins have been used to increase the solubiUties of these compounds and to assist in thek cellular transport. Cyclodextrins increase the rate and selectivity of side-chain cleavage of both cholesterol and P-sitosterol with no effect on cell growth. Optimal conditions have resulted in enhancement of molar yields of androsta-l,4-diene-3,17-dione (92) from 35—40% to >80% in the presence of cyclodextrins (120,145,146,155). [Pg.430]

The activity coefficients of sulfuric acid have been deterrnined independentiy by measuring three types of physical phenomena cell potentials, vapor pressure, and freeting point. A consistent set of activity coefficients has been reported from 0.1 to 8 at 25°C (14), from 0.1 to 4 and 5 to 55°C (18), and from 0.001 to 0.02 m at 25°C (19). These values are all based on cell potential measurements. The activity coefficients based on vapor pressure measurements (20) agree with those from potential measurements when they are corrected to the same reference activity coefficient. [Pg.573]

Electrode materials and shapes may have a profound effect on cell designs. Anode materials encountered ia electrochemical processes are... [Pg.74]

Charge Transport. Side reactions can occur if the current distribution (electrode potential) along an electrode is not uniform. The side reactions can take the form of unwanted by-product formation or localized corrosion of the electrode. The problem of current distribution is addressed by the analysis of charge transport ia cell design. The path of current flow ia a cell is dependent on cell geometry, activation overpotential, concentration overpotential, and conductivity of the electrolyte and electrodes. Three types of current distribution can be described (48) when these factors are analyzed, a nontrivial exercise even for simple geometries (11). [Pg.88]

The retinoids share with certain steroid hormones the dis-I inetion of belonging to the few classes of substances capable 111 powerful positive influence on cell growth and differentia-... [Pg.13]

Pyrimidinopyrazines related to folic acid have been investigated in some detail for their antimeta-bolic and antineoplastic activities. A related compound, which lacks one nitrogen atom, has been described as an antiproliferative agent, indicating it too has an effect on cell replication. Aldol condensation of the benzaldehyde 99 with ethyl acetoacetate gives the cinnamate 100. This is then reduced catalytically to the acetoacetate 101. Reaction of that keto ester with 2,4,6- triami-nopyrimidine gives the product 102 which is subsequently chlorinated (103) and subjected to hydrogenolysls. There is thus formed piritrexim (104) [17]. [Pg.169]

Loft space between flat celling and pitched roof of aluminium cladding, or low-emisslvlty upper surface on celling... [Pg.114]

Jourjine [jour85] generalizes Euclidean lattice field theory on a d-dimensional lattice to a cell complex. He uses homology theory to replace points by cells of various dimensions and fields by functions on cells, the cochains, in hopes of developing a formalism that treats space-time as a dynamical variable and describes the change in the dimension of space-time as a phase transition (see figure 12.19). [Pg.691]

Click Coached Problems for a self-study module on cell potential and the equilibriun constant... [Pg.491]

It is amazing to note that complex processes such as drug binding to protein, activation of cells, and observation of syncytial cellular response should apparently so closely follow a model based on these simple concepts. This was not lost on A. J. Clark in his treatise on drug receptor theory The Mode of Action of Drugs on Cells [4] ... [Pg.12]

Clark, A. J. (1933). The mode of action of drags on cells. Edward Arnold, London. [Pg.20]

The general aim of this author in this monograph has been to determine the extent to which the effects produced by drugs on cells can be interpreted as processes following known laws of physical chemistry. [Pg.41]

If you were unable to work out the answer to this it probably means you need to refresh knowledge of cell metabolism. BIOTOL texts on cell metabolism or other good introductory biochemistry text should prove adequate. [Pg.80]


See other pages where On-cells is mentioned: [Pg.278]    [Pg.642]    [Pg.148]    [Pg.201]    [Pg.342]    [Pg.272]    [Pg.272]    [Pg.488]    [Pg.337]    [Pg.403]    [Pg.403]    [Pg.546]    [Pg.229]    [Pg.82]    [Pg.325]    [Pg.2139]    [Pg.391]    [Pg.344]    [Pg.656]    [Pg.518]    [Pg.184]    [Pg.1003]    [Pg.2]    [Pg.3]    [Pg.41]    [Pg.42]    [Pg.161]    [Pg.181]   
See also in sourсe #XX -- [ Pg.310 , Pg.468 ]




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A Note on In-Cell Iteration

A The Effect of Current on Cell Potential

Antigen on the cell surface

Antigens expressed on live cells

Atomic Perspective on Galvanic Cells

Background on Fuel Cell Membranes

Biofuel Cells Based on Wired Enzyme Assemblies

Biopanning on cells

Biosensors on Enzymes, Tissues, and Cells

Brief Information on the Lining of Reduction Cells

Carbohydrates on Cell Surfaces

Cell Culture on Chip

Cell Culture on a Chip

Cell Patterning on Chip

Cell Potential on Concentration

Cell potential dependence on concentration

Cell retention based on size: different types of filtration techniques

Cell-derived Oxidants and Their Effects on HA

Cells on patterns

Chondroitin sulfate effect on adipose cells diamete

Classifications of Fuel Cells Based on Electrolytes

Comments on the Potential of FZ Silicon for Solar Cells

Crocin effects on TNF-a-induced cell

Current challenges to understanding the effect of polyurethane scaffold properties on cell fate

DA on hormone secreting cells in the pituitary

DNA replication site, mapping in situ cell culture on cover slips

Dependence of Lead-Acid Cell Voltage on Temperature and H2SO4 Concentration

Dependence of the Cell Potential on Concentration

Early Research on Cell-Wall Active Agents

Early Work on Phosphoric Acid Fuel Cells

Effect of Concentration on Cell Potential

Effect of Fatty Acids on Cell Growth and PHA Accumulation

Effect of Operation Conditions on Reversible Fuel Cell Potential

Effect of Temperature on Insect Cell Growth Kinetics

Effect of operating temperature on fuel cell polarization curve

Effect of processing conditions on the foaming cell

Effect on Cell Division

Effect on cell cultures

Effect on cell viability

Effects of Cationic Polymers on Cell Functions

Effects of Cytokines on 3-Cell Function

Effects of Dimethylphenyltin Chloride (DMPTC) on Human NK Cell Function

Effects of Ischemia on Cell Proliferation and Differentiation

Effects of Methyldiphenyltin Chloride (MDPTC) on Human NK Cell Function

Effects of Mitogen-Activated Protein Kinases on T Cells

Effects of Opioids, Cannabinoids, and Cocaine on NK Cells

Effects of Physical Forces on Cell-ECM Interactions

Effects of Shear Stress on Plant Cells in a Bioreactor

Effects of Triphenyltin Chloride (TPTC) on Human NK Cell Function

Effects on Cancer Cells

Effects on Cell Permeability

Effects on Differentiation of Connective Tissue Cells

Effects on Germ Cells

Effects on blood cells

Effects on mammalian cells

Effects on the Protection of Neuronal Cells

Electrode Kinetics and Their Impact on High-Power Fuel Cell Performance

Experiments on Commercial 18650 Cells

FceRI Expression on Basophils and Mast Cells

Fluorescence Correlation Spectroscopy on Molecular Diffusion Inside and Outside a Single Living Cell

Foaming in Cell Culture Systems Effects on Hydrodynamics and Mass Transfer

Fungicides Acting on Mitosis and Cell Division

Growth Medium and Substrate Effects on Spectroscopic Examination of Cells

Growth of CACO-2 Cells on 24-well Plates

High Level Group on hydrogen and fuel cells

Hormone Effects on the Plane of Cell Division

Hormone Effects on the Target Cell

Immune Surveillance System on Metastasis Cell Trafficking

Impacts of fuel cells on the service sector

Influence of Chain Folding on the Unit Cell

Influence of Mechanical Forces on Bone-Forming Cells

Influence of Mechanical Forces on Lung Cells

Influence of Mechanical Forces on Skin Cells

Influence of Mechanical Forces on Vessel Wall Cells

Influence of Soluble Mediators and Mechanical Forces on Articular Cartilage Cells

Influence of Structural and Wetting Properties on Fuel Cell Performance

Influence of environmental conditions on animal cell culture

Lab-on-a-Chip Devices for Particle and Cell

Lab-on-a-Chip Devices for Particle and Cell Separation

Lab-on-chip cell sorting system

Light-Emitting Electrochemical Cells Based on PPPs

Lipidomics on Cell Organelle and Subcellular Membranes

Lithospermic acids effect on HIV-1 infected H9 cell

Mechanistic study on nanomaterial-mediated tissue and cell responses

Methods for Evaluating the Shear Effects on Plant Cells

Natural bridged biaryls effects on cell division

Neural Architecture based on Double Opponent Cells

On the Basis of a Concentration Cell Set-Up

On the Path to Practical Solid Oxide Fuel Cells

On-Chip Cell Lysis

Opioid receptors on immune cells

Panning on cells

Performance Capabilities of Fuel Cells Based on Electrolytes

Phagocyte-Induced Exposure of PAMPS on the Fungal Cell Surface

Phosphatidylserine on the cell surface

Pironetin effect on 3Y1 cell

Protein-Mediated Cell Adhesion on Biomaterial Surfaces

Recent Work on New Fuel Cell Membranes

Receptor on cell surfaces

Receptors Located on the Cells Surface

Regulated on activation normal T-cell expressed and secreted

Regulated on activation normal T-cell expressed and secreted RANTES)

Reovirus Effects on Host Cell DNA Synthesis

Role of Erythrocytes and White Cells on Platelet-Biomaterial Interactions

Solar cells based on silicon

Steam Effect on Cell Performance

Subculture of cells growing on microcarriers

Synthesis of channel effects on whole cell behavior

TYansforming Effects on Cells in Culture

Techniques based on the Lewis cell

Temperature Effect on Detonation Cell Size

Temperature, Wavelength, and Cell Geometry Effects on Scattering

The Effect of Concentration on Cell Emf

The Effect of Concentration on Cell Potential

The Nernst Equation Effect of Concentration on Half-Cell Potential

Transcription Initiation on DNA Templates in Cell-Free Systems

Triterpenoid fractions effects on red cell

Use of cells to determine mean activity coefficients and their dependence on ionic strength

Vero Cells Grown on Microcarriers (Contact Inhibition)

Voltage Clamp Studies on hERG Potassium Channels in Heterologous Cell Systems

Yazami, A. Martinent and Y. Reynier haracterization of Anodes Based on Various Carbonaceous aterials for Application in Lithium-Ion Cells

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