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Sensitized cell

Fig. 4. Comparison of the three types of tetracycline resistance where T represents the tetracycline molecule O, a tetracycline transporter and aaa/, the ribosome A shows the effect of tetracycline exposure on a sensitive cell B, the efflux of resistance where a cytoplasmic membrane protein ( D) pumps tetracycline out of the cell as fast as the tetracycline transporter takes it up C, the ribosomal protection type of resistance where the ribosome is modified by ( ) to block productive binding and D, the tetracycline modification type of resistance where t is an inactive form of tetracycline. Reproduced with... Fig. 4. Comparison of the three types of tetracycline resistance where T represents the tetracycline molecule O, a tetracycline transporter and aaa/, the ribosome A shows the effect of tetracycline exposure on a sensitive cell B, the efflux of resistance where a cytoplasmic membrane protein ( D) pumps tetracycline out of the cell as fast as the tetracycline transporter takes it up C, the ribosomal protection type of resistance where the ribosome is modified by ( ) to block productive binding and D, the tetracycline modification type of resistance where t is an inactive form of tetracycline. Reproduced with...
Mounting electrodes in a bioreactor is costly, and there is an additional contamination risk for sensitive cell cultures. Some other sensors of prac ticai importance are those for dissolved oxygen and for dissolved carbon dioxide. The analysis of gas exiting from a bioreactor with an infrared unit that detects carbon dioxide or a paramagnetic unit that detects oxygen (after carbon dioxide removal) has been replaced by mass spec trophotometry. Gas chromatographic procedures coupled with a mass spectrophotometer will detect 1 the volatile components. [Pg.2148]

Aeromonas hydrophila is a bacterium that causes diarrheal diseases and deep wound infections. These complications arise due to pore formation in sensitive cells by the protein toxin aerolysin. Proteolytic processing of the 52-kD precursor proaerolysin (Figure 10.34) produces the toxic form of the protein, aerolysin. Like a-hemolysin, aerolysin monomers associate to form a heptameric transmembrane pore. Michael Parker and coworkers have proposed... [Pg.317]

Phototube detectors are normally sensitive either to radiation of wavelength 200 nm to 600-650 nm, or of wavelength 600-1000 nm. To scan a complete spectral range an instrument must therefore contain two photocells a red sensitive cell (600-800 nm) and a blue cell (200-600 nm). [Pg.659]

Cadherins are a superfamily of Ca2+-sensitive cell-cell adhesion molecules, which cause homophilic cell interactions. Cadherins can be divided into different subfamilies, namely, classical cadherins, desmosomal cadherins, protocadherins, and nonconventional cadherins (7TM cadherins, T-cadherin, FAT). Classical cadherins are often denoted by a prefix reflecting their principal expression domains e.g., E is epithelial, N is neuronal, and P is placental. However, this classification is not stringent, as for instance E-cadherin can also be found in certain neuronal tissues, and N-cadherin is also found in epithelial cells. Among the desmosomal cadherins, two subfamilies can be distinguished the desmocollins 1-3 and the desmogleins 1-4. [Pg.306]

The insulin receptor is a transmembrane receptor tyrosine kinase located in the plasma membrane of insulin-sensitive cells (e.g., adipocytes, myocytes, hepatocytes). It mediates the effect of insulin on specific cellular responses (e.g., glucose transport, glycogen synthesis, lipid synthesis, protein synthesis). [Pg.632]

VII. OXIDES AND SENSITIZATION CELLS 1. Potential Dependence of Interfacial Rate Constants... [Pg.510]

Preliminary measurements with space-resolved PMC techniques have shown that PMC images can be obtained from nanostructured dye sensitization cells. They showed a chaotic distribution of PMC intensities that indicate that local inhomogeneities in the preparation of the nanostructured layer affect photoinduced electron injection. A comparison of photocurrent maps taken at different electrode potentials with corresponding PMC maps promises new insight into the function of this unconventional solar cell type. [Pg.514]

Dix, P.J. Pearce, R.S. (1981). Proline accumulation in NaCI-resistant and sensitive cell lines of Nicotiana sylvestris. Zeitschrift fur Pflanzenphysiologie, 102, 243-8. [Pg.193]

Soto AM, Chung KL, Soimenschein C. 1994. The pesticides endosulfan, toxaphene, and dieldrin have estrogenic effects on human estrogen-sensitive cells. Environ Health Perspect 102(4) 380-383. [Pg.314]

BIOREACTOR DESIGN FOR SHEAR SENSITIVE CELL CULTURES... [Pg.89]

Some flavonoids, such as procyanidins, have antidiabetic properties because they improve altered glucose and oxidative metabolisms of diabetic states (Pinent and others 2004). Extract of grape seed procyanidins (PE) administered orally to streptozotocin-induced diabetic rats resulted in an antihyperglycemic effect, which was significantly increased if PE administration was accompanied by a low insulin dose (Pinent and others 2004). The antihyperglycemic effect of PE may be partially due to the insuli-nomimetic activity of procyanidins on insulin-sensitive cell lines. [Pg.16]

Pinent M, Blay M, Blade MC, Salvado MJ, Arola L and Ardevol A. 2004. Grape seed-derived procyanidins have an antihyperglycemic effect in streptozotocin-induced diabetic rats and insuhnomimetic activity in insulin-sensitive cell lines Endocrinology 145(11) 4985 1990. [Pg.46]

Bioassays of related substances can be quite similar in design. Specific growth factors, for example, stimulate the accelerated growth of specific animal cell lines. Relevant bioassays can be undertaken by incubation of the growth-factor-containing sample with a culture of the relevant sensitive cells and radiolabelled nucleotide precursors. After an appropriate time period, the level of radioactivity incorporated into the DNA of the cells is measured. This is a measure of the bioactivity of the growth factor. [Pg.176]


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See also in sourсe #XX -- [ Pg.386 ]




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Case Study Dye-Sensitized Solar Cells

Cell culture models, evaluating sensitizing

Cell culture models, evaluating sensitizing potential

Cell damage shear-sensitive cells

Cell viability shear sensitivity

Dye-Sensitized Solar Cells (DSSC)

Dye-sensitive solar cells

Dye-sensitized cells

Dye-sensitized nanostructured solar cell

Dye-sensitized photovoltaic cell

Dye-sensitized solar cells

Dye-sensitized solar cells performance

Endothelial cells, sensitivity

Estrogen sensitive breast cancer cells

High sensitivity detection cell

Lowest unoccupied molecular orbital applications, dye-sensitized solar cells

Mast cell allergic sensitization

Mast cells sensitivity

Mast cells sensitization

Molecular glasses, optoelectronic applications dye-sensitized solar cells

Nanocrystalline dye sensitized solar cells

Nanowire dye-sensitized solar cell

Optoelectronics, molecular glasses dye-sensitized solar cells

Photoelectrochemical cells sensitizer systems

Photovoltaic cell sensitizers

Polymer electrolytes for dye-sensitized solar cells

Polymer-sensitized solar cells

Polymers as Light-Harvesting Dyes in Dye-Sensitized Solar Cells

Quantum dot-sensitized solar cells

Sensitive cell lines

Sensitized Solar Cells

Shear-sensitive cells

Solar cells panchromatic sensitizers

Solid-state dye-sensitized photovoltaic cell

Stability of polymer electrolyte-based dye-sensitized solar cells

Sugar sensitive cells

T cells sensitization

Todays dye-sensitized solar cells. Definition and potential

Up-scaling towards commercialization of polymer electrolyte-based dye-sensitized solar cells

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