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In presence of crude oil foam half time of an individual surfactant was 10 min and two surfactant blend formulations were recorded as 6 and 20 min, respectively.
The infrared spectra of all formulations were recorded with Fourier transform infrared spectroscopy FTIR-83000, Shimadzu, Japan).
FTIR spectra of pure NTG, blank and F4 formulations were recorded in KBr discs using a Jasco FTIR spectrophotometer (Model FTIR-4100, Jasco, USA) to examine interactions between drug and excipients.
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Data from a database, in which many different test and commercial formulations are recorded, were used in order to build models that correlate the properties with the compositions.
The size of the other two formulations was recorded to be higher.
The scintigraphy images following intravenous and oral administration of radiolabeled PAC containing formulation were recorded.
Since the CHX regimes later used in the study contained different CHX formulations, standard calibration curves were recorded for both CHX-diacetate and CHX-digluconate.
The formulations were radiolabelled and followed by gamma scintigraphy; the disintegration times and positions were recorded.
Finally, wet and dry weights of the gels were recorded to calculate the mass swelling ratio for each formulation.
Attenuated total reflectance Fourier transformed infrared spectroscopy (ATR-FTIR) of blank wafer, LOR, and drug-loaded wafer formulations (FNA) was recorded on a Bruker-ALPHA FTIR spectrophotometer with Opus 6 software.
The instrument electrode was immersed in 10 ml of each formulation and reading was recorded at 25 ± 1 °C.
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