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Bovine serum albumin solution

Figure 6 Effect of the increased rotational correlation time on the proton relaxivity of MP2269, a Gd111 chelate capable of noncovalent protein binding (Scheme 2). The lower NMRD curve was measured in water, whereas the upper curve was obtained in a 10%w/v bovine serum albumin solution in which the chelate is completely bound to the protein. The rotational correlation times calculated are rR=105ps in the nonbound state, and rR= 1,000 ps in the protein-bound state (t=35°C). For this chelate, the water exchange... Figure 6 Effect of the increased rotational correlation time on the proton relaxivity of MP2269, a Gd111 chelate capable of noncovalent protein binding (Scheme 2). The lower NMRD curve was measured in water, whereas the upper curve was obtained in a 10%w/v bovine serum albumin solution in which the chelate is completely bound to the protein. The rotational correlation times calculated are rR=105ps in the nonbound state, and rR= 1,000 ps in the protein-bound state (t=35°C). For this chelate, the water exchange...
The osmotic pressure of salt-free (electrodialyzed) bovine serum albumin solutions was measured at pH = 5.37 ( ). At this pH the net charge of the protein molecules is zero. The following data were obtained in different runs ... [Pg.143]

Fig. 1.82.2. Water vapor partial pressure divided by total pressure as a function of time of5% bovine serum albumin solution (Figure 3 from [1.137])... Fig. 1.82.2. Water vapor partial pressure divided by total pressure as a function of time of5% bovine serum albumin solution (Figure 3 from [1.137])...
The recovery of phenylalanine from an industrial process stream was carried out using a conventional ED stack (Grib et al., 2000). A preliminary soaking of such membranes in a bovine serum albumin solution for 2 hour allowed the reduction of phenylalanine loss to less than 5% and achievement of an average current efficiency of 98%. Such a process was also successful in removing 98% of Na2S04 and (NH4)2S04. [Pg.341]

To a cuvette containing 1.5-2 pM bovine serum albumin solution, add equal volumes of TNS solution so that you have 0.3-15 pM TNS in the cuvette. For each TNS concentration... [Pg.210]

Standard bovine serum albumin solution (1 mg/ml) Solutions for Folin-Ciocalteau protein assay ... [Pg.140]

For every 10 mL of complex required, dilute 50 ilL of the streptavidin stock to 5 mL with bovine serum albumin solution. Similarly, dilute 50 iL of the stock solution of the biotinylated enzyme. [Pg.147]

Figure 17. Time-resolved fluorescence of 8-hydroxypyrene-1,3,6-trisulfonate bound to bovine serum albumin. Sample solution 250 iAf hydroxypyrene in 700 iAf bovine serum albumin solution pH 5.96. (A) Emission of neutral form measured through BG-3 2-mm filter (B) emission of anionic form measured through an orange-green 550-nm filter. The time constants of the fast decay of (A) and the rise of (B) are 350 and 290 psec, respectively. Figure 17. Time-resolved fluorescence of 8-hydroxypyrene-1,3,6-trisulfonate bound to bovine serum albumin. Sample solution 250 iAf hydroxypyrene in 700 iAf bovine serum albumin solution pH 5.96. (A) Emission of neutral form measured through BG-3 2-mm filter (B) emission of anionic form measured through an orange-green 550-nm filter. The time constants of the fast decay of (A) and the rise of (B) are 350 and 290 psec, respectively.
Figure 7.12 Flux-pressure relationship for bovine-serum albumin solutions in a stirred batch cell at various stirring rates and protein concentrations.101... Figure 7.12 Flux-pressure relationship for bovine-serum albumin solutions in a stirred batch cell at various stirring rates and protein concentrations.101...
Fair, B., D. Chao, and A. Jamieson, Mutual translational diffusion coefficients in bovine serum albumin solutions measured by quasielastic laser light scattering. Journal of Colloid and Interface Science, 1978, 66, 324-330. [Pg.112]

Velocity Sensors, Fig. 12 Calibration of a LAPS meter. Lag time was calculated for bovine serum albumin solutions pumped at 10-50 pl/min. The lag time was found to he inversely proportional to the flow rate [3]... [Pg.3423]

Gallier, J., Rivet, P., and de Certaines, J.D. 1987. H- and H-NMR study of bovine serum albumin solutions. Biochim. Biophys. Acta 915 1-18. [Pg.964]

Fig. 11. I.D.T. pressure traces nonane displacing 100 ppm Bovine serum albumin solution. Fig. 11. I.D.T. pressure traces nonane displacing 100 ppm Bovine serum albumin solution.
Figure 9.7 Adsorbed amount of protein F ngcm from 1.2 g I bovine serum albumin solution on PLGA films with 0% ( ), 3.8% (A), and 9.1% (w/w) ( ) Pluronic concentration [56]. Figure 9.7 Adsorbed amount of protein F ngcm from 1.2 g I bovine serum albumin solution on PLGA films with 0% ( ), 3.8% (A), and 9.1% (w/w) ( ) Pluronic concentration [56].
Ware, B. R., Flygare, W. H., The Simultaneous Measurement of the Eleetrophoretic Mobility and Diffusion Coefficient in Bovine Serum Albumin Solutions by Light Scattering, Chem. Phys. Lett., 1971, 12, 81-85. [Pg.342]

Patra, S. Santhosh, K. Pabbathi, A. Samanta, A. Diffusion of organic dyes in bovine serum albumin solution studied by fluorescence correlation spectroscopy. RSCAdv. 2012, 2, 6079-6086. [Pg.208]


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