1. Protective effects of Balanites aegyptiaca extract, Melatonin and Ursodeoxycholic acid against hepatotoxicity induced by Methotrexate in male rats
Ayat O.S. MONTASSER ; Omar A. AHMED-FARID ; Aida SAAD ; Hanan SALEH ; Mohamed-Assem S. MARIE
Asian Pacific Journal of Tropical Medicine 2017;10(6):557-565
Objective To compare the degree of ameliorative effects of Melatonin (MEL), Ursodeoxycholic acid (UDCA) and Balanites aegyptiaca (BA) against hepatotoxicity induced by MTX for one month. Methods Eighty adult male rats (Sprague Dawely) weighing (190 ± 10 g), were randomly divided into eight equal groups: Control, MTX, MEL, BA, UDCA, MTX + MEL, MTX + BA, MTX + UDCA. Liver function biomarker enzymes, liver tissue oxidative stress parameters, together with total antioxidant capacity and tumor necrosis factor (TNF-α) were determined. Histopathological and immunohistochemistry examinations for TNF-α were also done. Results MTX showed significant increase in alanine transaminase (ALT), aspartate transaminase (AST), alkaline phosphatase (ALP), gamma glutamyl transferase (GGT), total and direct bilirubin, as well as TNF-α levels, oxidized glutathione (GSSG), malodialdehyde (MDA) and nitric oxide (NO). Whereas total protein, albumin, total antioxidant capacity, reduced glutathione (GSH), glutathione peroxidase (GPx), glutathione reductase (GR), glutathione S-transferase (GST), superoxide dismutase (SOD) and catalase (CAT) levels were significantly decreased in MTX treated group. These alterations were improved by MEL and BA treatment, whereas no improvement was noticed in UDCA treatment. Conclusions BA may be as promising as MEL in the hepatoprotection against MTX toxicity through their antioxidant and radical scavenging activities. In addition, it is not recommended to co-administer UDCA with MTX as it enhanced inflammation and damage to the liver.
2.The objective assessment of the effects on cognition functioning among military personnel exposed to hypobaric-hypoxia: A pilot fMRI study
Nisha Syed Nasser ; Fathinul Fikri Ahmad Saad ; Aida Abdul Rashid ; Salasiah Mustafa ; Hamed Sharifat ; Rohit Tyagi ; Amei Farina Abd Rashid ; Loh Jia Ling ; Mazlyfarina Mohamad ; Subapriya Suppiah
The Medical Journal of Malaysia 2020;75(1):62-67
Objective: To identify regions of the brain affected during
cognitive working memory during tasks to assess attention,
planning and decision making among military aviation
personnel who have chronic intermittent exposure to high
altitude environment.
Method: A case-control study was conducted in the
Universiti Putra Malaysia among eight military personnel,
four of whom had chronic intermittent exposure to high
altitude training. They were divided into two groups, chronic
intermittent exposure group (CE) (n=4) and a control group
(n=4). They underwent a task-based functional magnetic
resonance imaging (fMRI) that utilised spatial working
memory task to objectively evaluate the neural activation in
response to the Tower of London paradigm. Each correct
answer was given a score of one and the maximum
achievable score was 100%.
Results: A consecutive dichotomised group of CE (4/8) and
control (4/8) of age-matched military aviation personnel with
a mean age of 37.23±5.52 years; showed significant
activation in the right middle frontal gyrus (MFG). This in
turn was positively correlated with response accuracy. A
significant difference in the response accuracy was noted
among both the groups at p<0.05.
Conclusion: At the minimum results of power analysis of
this preliminary fMRI study, our group of aviation personnel
who had chronic intermittent exposure to hypobaric hypoxic
environment, did not have any significant decrease in
cognitive function namely attention, decision-making and
problem solving compared to controls during a working
memory task