The effects of concurrent treatment of silymarin and lactulose on memory changes in cirrhotic male rats

(2020) The effects of concurrent treatment of silymarin and lactulose on memory changes in cirrhotic male rats. Bioimpacts. pp. 177-186. ISSN 2228-5652

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Abstract

Introduction: Chronic liver disease frequently accompanied by hepatic encephalopathy (HE). Changes in the permeability of the blood-brain barrier in HE, make an easier entrance of ammonia among other substances to the brain, which leads to neurotransmitter disturbances. Lactulose (LAC), causes better defecation and makes ammonia outreach of blood. Silymarin (SM) is a known standard drug for liver illnesses. The purpose of this research was to determine the results of LAC and SM combined treatment, on the changes in memory of cirrhotic male rats. Methods: The cirrhotic model established by treatment with thioacetamide (TAA) for 18 weeks. Cirrhotic rats randomized to four groups (n = 7): TAA group (received drinking water), LAC group (2 g/kg/d LAC in drinking water), SM group (50 mg/kg/d SM by food), SM+ LAC group (similar combined doses of both compounds) for 8 weeks. The control group received drinking water. The behavior examined by wire hanging (WH), passive avoidance (PA), and open field (OF) tests. Results: Our findings showed that treatment with SM+LAC effectively increased PA latency, compared with the control group. The results showed that the administration of LAC and SM+LAC affected the number of lines crossed, the total distance moved and velocity in the OF tests. Conclusion: SM and LAC have anti-inflammatory effects that are memory changing. It may be due to their useful effects. These results indicated that SM+LAC restored memory disturbance and irritated mood in the cirrhotic rats. Comparable neuroprotection was never previously informed. Such outcomes are extremely promising and indicate the further study of SM+LAC.

Item Type: Article
Keywords: Behavior Lactulose Liver cirrhosis Memory Silymarin Wistar rat OXIDE SYNTHASE ACTIVITY HEPATIC-ENCEPHALOPATHY OXIDATIVE STRESS EXPERIMENTAL-MODELS HISTAMINE-RELEASE THIOACETAMIDE INFLAMMATION ANTIOXIDANT METABOLISM IMPAIRMENT
Subjects: QT Physiology
WL Nervous System
Divisions: Faculty of Medicine > Department of Basic Science > Department of Physiology
Page Range: pp. 177-186
Journal or Publication Title: Bioimpacts
Journal Index: ISI
Volume: 10
Number: 3
Identification Number: https://doi.org/10.34172/bi.2020.22
ISSN: 2228-5652
Depositing User: Zahra Otroj
URI: http://eprints.mui.ac.ir/id/eprint/13421

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