Absorption Enhancing Effect of Sodium Dodecyl Sulfate on Metformin Hydrochloride in Rat Colon

2013 ◽  
Vol 544 ◽  
pp. 426-430
Author(s):  
Dong Dong Jing ◽  
Yu Liu ◽  
Ruo Yu Liu ◽  
Hua Fan ◽  
Guo Feng Li ◽  
...  

The aim of this study was to observe the absorption enhancing effect of sodium dodecyl sulfate on metformin hydrochloride in colon of rat. Using in vivo intestinal loop model in rat while the ileum was took as blank group and colon as the experiment groups with different concentration of sodium dodecyl sulfate (1%, 2%, 4%). The colon/ileum ratio of the absorption rate constant of metformin hydrochloride was evaluated through calculating the residual dose of circulating solution in presupposition time points. Intergroup absorption rate constant and the rising percent of the absorption rate constant were different significantly (P<0.05). The absorption rate constant of colon were -0.22±0.03, -0.37±0.06, -0.89±0.09, -0.86±0.05μg•h-1•cm-1 (n=6) and the rising percent of the constant absorption value were 68.66 ± 8.28%, 304.88 ± 28.76%, 293.75 ± 33.19% (n=6), respectively. The result showed that the absorption of metformin hydrochloride was increased with the concentration of sodium dodecyl sulfate. However, the absorption rate constant reached maxium when the concentration of sodium dodecyl sulfate was 2%, this may be because the circulating metformin hydrochloride solution could be more viscous which affect the absorption of metformin hydrochloride when sodium dodecyl sulfate was raised. In conclusion, the absorption of metformin hydrochloride can be promoted by sodium dodecyl sulfate in the colon of rat and this can provide biophamaceutics data for novel pharmaceutical preparation.

1984 ◽  
Vol 247 (3) ◽  
pp. C282-C287 ◽  
Author(s):  
C. S. Lo ◽  
L. E. Klein ◽  
T. N. Lo

The effect of L-3,5,3'-triiodothyronine (T3) (50 micrograms/100 body wt) on the incorporation of labeled glucosamine and fucose into the subunits of Na+-K+-ATPase was examined by gel electrophoresis in sodium dodecyl sulfate. T3 augmented the incorporation of glucosamine into the alpha- and beta-subunits by 51 and 58%, respectively, in the 22-h chase experiments. Similarly T3 augmented the incorporation of fucose into the alpha- and beta-subunits by 58 and 43%, respectively. Reverse T3 did not alter the incorporation of labeled fucose in either subunit. The effect of T3 on the rate constant of degradation of renal cortical Na+-K+-ATPase was assessed. The rate constant of degradation (Kd) of the [3H]fucose labeled alpha- and beta-subunits for the hypothyroid rats were both 0.20, and for T3-treated rats, the Kd of the alpha- and beta-subunits were 0.23 and 0.18, respectively, suggesting that T3 enhanced fucose incorporation into the subunits of Na+-K+-ATPase rather than retarding the degradation of this enzyme.


2019 ◽  
Vol 10 (3) ◽  
pp. 205-212
Author(s):  
Abdolah Mohammadpour ◽  
Masoumeh Mirzaei ◽  
Alireza Azimi ◽  
Seyed Mostafa Tabatabaei Ghomsheh

1997 ◽  
Vol 35 (7) ◽  
pp. 123-130 ◽  
Author(s):  
J. C. Liu ◽  
P. S. Chang

The solubility of chlorophenols as affected by surfactant was investigated. Three kinds of surfactant, sodium dodecyl sulfate, Triton X-100, and Brij 35, were utilized. The solubilization of chlorophenols by surfactant follows the order of 2,4,6-trichlorophenol &gt; 2,4-dichlorophenol &gt; 2,6-dichlorophenol &gt; 2-chlorophenol; and the critical micelle concentration is an important index. The adsorption reactions of 2,4-dichlorophenol and 2,4,6- trichlorophenol onto hydrous montmorillonite in the presence of surfactant were examined. The presence of surfactant decreased the adsorption of chlorophenols significantly. The roles of hydrophobicity of chlorophenols in solubilization and adsorption behaviors are discussed.


2020 ◽  
Vol 22 (19) ◽  
pp. 11075-11085
Author(s):  
Mengjian Wu ◽  
Zhaoxia Wu ◽  
Shangwu Ding ◽  
Zhong Chen ◽  
Xiaohong Cui

Different submicellar solubilization mechanisms of two systems, Triton X-100/tetradecane and sodium dodecyl sulfate (SDS)/butyl methacrylate, are revealed on the molecular scale by 1H NMR spectroscopy and 2D diffusion ordered spectroscopy (DOSY).


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