Your browser doesn't support javascript.
loading
: 20 | 50 | 100
1 - 1 de 1
1.
Int J Mol Sci ; 23(2)2022 Jan 15.
Article En | MEDLINE | ID: mdl-35055113

Methionine (Met) is considered the most toxic amino acid in mammals. Here, we investigated biochemical and behavioral impacts of ad libitum one-week feeding of high-Met diets on mice. Adult male mice were fed the standard rodent diet that contained 0.44% Met (1×) or a diet containing 16 graded Met doses (1.2×-13×). High-Met diets for one-week induced a dose-dependent decrease in body weight and an increase in serum Met levels with a 2.55 mM peak (versus basal 53 µM) on the 12×Met diet. Total homocysteine (Hcy) levels were also upregulated while concentrations of other amino acids were almost maintained in serum. Similarly, levels of Met and Hcy (but not the other amino acids) were highly elevated in the cerebrospinal fluids of mice on the 10×Met diet; the Met levels were much higher than Hcy and the others. In a series of behavioral tests, mice on the 10×Met diet displayed increased anxiety and decreased traveled distances in an open-field test, increased activity to escape from water soaking and tail hanging, and normal learning/memory activity in a Y-maze test, which were reflections of negative/positive symptoms and normal cognitive function, respectively. These results indicate that high-Met ad libitum feeding even for a week can induce bipolar disorder-like disease models in mice.


Bipolar Disorder/psychology , Homocysteine/blood , Methionine/adverse effects , Amino Acids/blood , Amino Acids/cerebrospinal fluid , Animals , Bipolar Disorder/blood , Bipolar Disorder/cerebrospinal fluid , Bipolar Disorder/chemically induced , Disease Models, Animal , Drug Administration Schedule , Homocysteine/cerebrospinal fluid , Male , Methionine/blood , Methionine/cerebrospinal fluid , Mice , Open Field Test/drug effects , Up-Regulation
...