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Exposure of purified latent MMP-9 to exogenous NO demonstrated a concentration-dependent activation and inactivation of the enzyme, which occurred at higher NO flux.
Theoretically, the NO flux should have been released in the physiological range to show the proliferative response as shown in this study.
The NO flux of the tubing dropped from 0.62 ± 0.09 × 10−10 mol min−1 cm−2 to 0.09 ± 0.07 × 10−10 mol min−1 cm−2 from the initial release to day 7, therefore it would not be unreasonable to predict that the bacterial killing was much higher initially, decreasing over time due to gradual decrease in NO flux.
Calibrated microsensors were used to measure NO flux in the self referencing (SR) modality as described in detail by McLamore and Porterfield (2011).
On the opposite, no flux decline during treatment of SE in PMR2 was found.
The atmosphere and ocean exchange quantities such as heat and momentum fluxes every half an hour, with no flux adjustment or correction.
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This technique is applicable to arbitrary isothermal or nonisothermal systems of coupled reaction diffusion equations or no-flux boundary conditions.
The no-flux boundary condition means that the statical environment Ω is isolated.
Since there is a no-flux condition across ω we have equation (2.6).
(1.1) under no-flux boundary conditions, where (Omegasubsetmathbb{R}^{n}) is a bounded domain with smooth boundary.
The system is subject to no-flux boundary conditions, and it means that the ecology system is self-contained.
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