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Batch fermentations were performed in CGM culture medium under pH control (≥5.0).
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Secondary structure analysis by circular dichroism spectra indicated that the Eda-peptide exhibited predominantly sheet and random structures with little content of helical structure in aqueous medium under physiological pH condition (pH 7.4).
For the purpose of investigating optical sensing behaviour of 'RhAsP' toward various metal ions including alkali, alkaline earth and transition metal ions (Na+, K+, Ag+, Ca2+, Mg2+, Cr3+, Fe3+, Hg2+, Cu2+, Pb2+, Zn2+, Fe2+, Co2+, Ni2+, Cd2+, Al3+ and Mn2+) in aqueous medium under physiological pH conditions, fluorescence and absorption spectroscopic techniques were carefully conducted.
Both citrate LDH and the resulting body cream formulations demonstrated prolonged slow release characteristics up to 8 h in aqueous medium under different pH values (3, 4, and 5) compared to quick and fast release of pure citric acid.
Considering the acidic conditions of the periarbuscular space [ 38], yeast growth was analyzed on a yeast nitrogen base (YNB) medium under different pH conditions.
In order to test for the pH dependent occurrence of oxidative stress in C. glutamicum cells, we performed again batch fermentations in bioreactors in minimal medium under continuous pH control.
It was shown that this yeast produced more TIG during cultivation in glucose minimal medium under conditions of spontaneous pH acidification from pH 5.0 to 2.5 as compared to that at mode during pH 5.2 maintenance using an active pH control.
The releases of DOX and ERL from the nanoliposomes were monitored against a test medium, PBS (pH 7.4), under continuous stirring.
Population dynamics studies were performed in MRS medium at pH 6 under aerobic and anaerobic conditions.
Ethanol concentration was measured from experiments performed in MRS medium at pH 6 under aerobic and anaerobic conditions.
The population dynamics study was conducted in MRS medium at pH 6 under different conditions of aeration, agitation, and bacterial inoculation load.
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