Sentence examples for samples of membrane from inspiring English sources

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Together, these demonstrate the versatility of Nanodisc technology for preparing monodisperse samples of membrane proteins of wide-ranging structure.

The utility of this probe is demonstrated on two electrically lossy samples of membrane proteins in phospholipid bilayers (bicelles) that are particularly difficult for conventional NMR probes.

Samples of membrane fractions were run on 12.5 % polyacrylamide minigels (for AQP5), 10%% polyacrylamide minigels (for α-ENaC, α1-Na,K-ATPase, and TLR4), or 8%% polyacrylamide minigels (for NKCC1).

The inductively coupled plasma – optical emission spectroscopy (ICP-OES) analysis was performed on the samples of membrane electrode assembly (MEA) and byproduct water that was produced during the fuel cell electrochemical reaction.

On the basis of the set of experiments presented here, detergents can be screened for their effective removal leading to optimal samples of membrane protein drug targets for structural characterization by solid state NMR.

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Samples of membranes namely unprocessed and DHAM were shielded in aluminium containers and subjected to heating at the rate of 10 °C per minute in N2 atmosphere.

C-propofol in either crystalloid solution or diluted bovine blood was incubated with samples of membranes at 28°C or 37°C.

In the first conductometric titration proposed, in a Pyrex beaker, 70 mL of distilled water is added with the sample of membrane.

The technique to establish the reaction rate of the neutralization reaction consists of a Pyrex beaker where 70 mL of distilled water is added to the sample of membrane under study.

The equation applied to the experimental conductivity (κexp) obtained in the assay is (5) kappa_{text{r}} = frac{{left( {kappa_{exp } - kappa_{{{ exp }0}} } right) times F}}{{K_{text{cell}} }}, (5 where κexp0 is the conductivity of the system (70 mL of distilled water and the sample of membrane) before the addition of titrant; F is the dilution correction factor.

Then, when the Pyrex beaker is in place the bench conductivity meter is added and when the working conditions are reached, the sample of membrane is immersed in the solution (distilled water plus titrant) and the conductivity is measured every minute during an established period of time.

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