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The oxidation and reduction potentials of HAuCl4 and buffers were evaluated in 0.2 M sodium sulfate electrolyte (Fig. 2).
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The potential applications of the designed immunosensor were evaluated in buffer and serum solutions.
Finally, tamoxifen and paclitaxel release profiles were evaluated in phosphate buffer solution at pH 7.4 and 5.
The release profiles of five of these commercial formulations were evaluated in bicarbonate buffer using a novel dissolution model that mimics the dynamic conditions of the gastrointestinal tract.
The glucose sensor properties were evaluated in phosphate buffer solution and in vivo monitoring by the implantation of the sensors in rabbit, while conventional needle type sensors as a reference were used.
The hydrolytic behaviors of the self-assembled graft-poly(carbonate-amide)s were evaluated in PBS buffer at 37 °C and pH = 7.4 to mimic biological environments.
Furthermore, mechanical properties of hydrogels were investigated using rheometer and swelling properties were evaluated in water and buffer solutions of pH 7.4 and pH 1.2.
The compounds were monitored for stability in buffers, before the stability of the leading candidates (21 23, Fig. 5) were evaluated in rat serum.
Planned buffer strips have been evaluated in terms of net economic effectiveness and benefit-cost ratio.
Therefore, PEP (30 mM) molecular hydrogenation with phosphate buffer (30 mM) was evaluated in the upper-middle pH range (10.0, 11.0, 11.0, and 11.5), away from neutral pH.
The stability of synthesized prodrugs was evaluated in buffers at different pH, SGF, SIF, rat plasma and in esterase enzyme.
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