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Chronic immobilization stress induces anxiety-related behaviors and affects brain essential minerals in male rats
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Abstract. Alterations of essential elements in the brain are associated with the pathophysiology of many neuropsychiatric disorders. It is known that chronic/overwhelming stress may cause some anxiety and/or depression. We aimed to investigate the effects of two different chronic immobilization stress protocols on anxiety-related behaviors and brain minerals. Adult male Wistar rats were divided into 3 groups as follows ( n = 10/group): control, immobilization stress-1 (45 minutes daily for 7-day) and immobilization stress-2 (45 minutes twice a day for 7-day). Stress-related behaviors were evaluated by open field test and forced swimming test. In the immobilization stress-1 and immobilization stress-2 groups, percentage of time spent in the central area (6.38 ± 0.41% and 6.28 ± 1.03% respectively, p < 0.05) and rearing frequency (2.75 ± 0.41 and 3.85 ± 0.46, p < 0.01 and p < 0.05, respectively) were lower, latency to center area (49.11 ± 5.87 s and 44.92 ± 8.04 s, p < 0.01 and p < 0.01, respectively), were higher than the control group (8.65 ± 0.49%, 5.37 ± 0.44 and 15.3 ± 3.32 s, respectively). In the immobilization stress-1 group, zinc (12.65 ± 0.1 ppm, p < 0.001), magnesium (170.4 ± 1.7 ppm, p < 0.005) and phosphate (2.76 ± 0.1 ppm, p < 0.05) levels were lower than the control group (13.87 ± 0.16 ppm, 179.31 ± 1.87 ppm and 3.11 ± 0.06 ppm, respectively). In the immobilization stress-2 group, magnesium (171.56 ± 1.87 ppm, p < 0.05), phosphate (2.44 ± 0.07 ppm, p < 0.001) levels were lower, and manganese (373.68 ± 5.76 ppb, p < 0.001) and copper (2.79 ± 0.15 ppm, p < 0.05) levels were higher than the control group (179.31 ± 1.87 ppm, 3.11 ± 0.06 ppm, 327.25 ± 8.35 ppb and 2.45 ± 0.05 ppm, respectively). Our results indicated that 7-day chronic immobilization stress increased anxiety-related behaviors in both stress groups. Zinc, magnesium, phosphate, copper and manganese levels were affected in the brain.
Title: Chronic immobilization stress induces anxiety-related behaviors and affects brain essential minerals in male rats
Description:
Abstract.
Alterations of essential elements in the brain are associated with the pathophysiology of many neuropsychiatric disorders.
It is known that chronic/overwhelming stress may cause some anxiety and/or depression.
We aimed to investigate the effects of two different chronic immobilization stress protocols on anxiety-related behaviors and brain minerals.
Adult male Wistar rats were divided into 3 groups as follows ( n = 10/group): control, immobilization stress-1 (45 minutes daily for 7-day) and immobilization stress-2 (45 minutes twice a day for 7-day).
Stress-related behaviors were evaluated by open field test and forced swimming test.
In the immobilization stress-1 and immobilization stress-2 groups, percentage of time spent in the central area (6.
38 ± 0.
41% and 6.
28 ± 1.
03% respectively, p < 0.
05) and rearing frequency (2.
75 ± 0.
41 and 3.
85 ± 0.
46, p < 0.
01 and p < 0.
05, respectively) were lower, latency to center area (49.
11 ± 5.
87 s and 44.
92 ± 8.
04 s, p < 0.
01 and p < 0.
01, respectively), were higher than the control group (8.
65 ± 0.
49%, 5.
37 ± 0.
44 and 15.
3 ± 3.
32 s, respectively).
In the immobilization stress-1 group, zinc (12.
65 ± 0.
1 ppm, p < 0.
001), magnesium (170.
4 ± 1.
7 ppm, p < 0.
005) and phosphate (2.
76 ± 0.
1 ppm, p < 0.
05) levels were lower than the control group (13.
87 ± 0.
16 ppm, 179.
31 ± 1.
87 ppm and 3.
11 ± 0.
06 ppm, respectively).
In the immobilization stress-2 group, magnesium (171.
56 ± 1.
87 ppm, p < 0.
05), phosphate (2.
44 ± 0.
07 ppm, p < 0.
001) levels were lower, and manganese (373.
68 ± 5.
76 ppb, p < 0.
001) and copper (2.
79 ± 0.
15 ppm, p < 0.
05) levels were higher than the control group (179.
31 ± 1.
87 ppm, 3.
11 ± 0.
06 ppm, 327.
25 ± 8.
35 ppb and 2.
45 ± 0.
05 ppm, respectively).
Our results indicated that 7-day chronic immobilization stress increased anxiety-related behaviors in both stress groups.
Zinc, magnesium, phosphate, copper and manganese levels were affected in the brain.
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