scholarly journals Evolution and Comparison Effects of Fludrocortisone and Betamethasone on Glucose and Lipid Profile in Rats

2020 ◽  
Author(s):  
Hamid Reza Jamshidi ◽  
Mohammad Naeem Malmir

Hyperglycemia may associate with improper use of glucocorticoids, impaired insulin function, or both, and is associated with many complications such as hyperlipidemia and Hyperglycemia. Researches suggest that proper use of glucocorticoids can delay the onset and progression of complications of hyperglycemia and hyperlipidemia. In the present study, we compare two of these compounds on glucose and lipid profile level. We use 40 male Wistar rats from the Yazd Animal infertility center. Initially, the rats were randomly divided into 2 groups, and then each group was divided into 4 groups. Subsequently, fludrocortisone doses of 12, 24 and 36 mg/kg were administered to rats, and dosages of 6, 12 and 18 mg/kg for betamethasone administered to rats on a daily basis at 1 o'clock for 21 days by intraperitoneal injection. Betamethasone and Fludrocortisone increased blood glucose and AST, ALT, TG, LDL, VLDL, and decreased HDL, causing red pigmentation in the skin, and obesity and puffiness of the rats. In all of the measured factors, fludrocortisone changes were more than betamethasone. Fludrocortisone and betamethasone also had significant effects on weight, which was more pronounced with fludrocortisone. As the dose increased, the levels of AST, ALT, and cholesterol, TG, VLDL and LDL in the blood increased significantly and HDL levels decreased more in the blood, but fludrocortisone showed a stronger effect than betamethasone. Therefore, it can be expected that the use of Betamethasone would be logical due to fewer side effects than fludrocortisone. © 2019 Tehran University of Medical Sciences. All rights reserved. Acta Med Iran 2019;57(8):478-483.

2020 ◽  
Vol 3 (3) ◽  
pp. 87-92
Author(s):  
Stefani Marietta ◽  
AAG Budhiarta ◽  
I Wayan Weta

Background: Flavonoids, saponins, tannins, phenols, and vitamin-C contained in the Red Dragon fruit’s skin have a positive impact on glycemic control and lipid oxidation. This study aimed to determine the effect of Red Dragon fruit’s skin extract on reducing the fasting blood glucose (FBG) and improving the lipid profile of Wistar rats with diabetes and dyslipidemia. Methods: A randomized pre-test post-test control group experimental study was done on 22 male Wistar rats, aged 2-3 months that suffered from diabetes and dyslipidemia. Subjects were divided into the control group (given 2cc distilled water + 9 mg metformin) and the treatment group (given 160 mg red dragon fruit’s skin extract + 9 mg metformin) for 14 days. FBG and lipid profile measurements were done before and after the treatment. Data were analyzed using the compare mean test. Results: There was no significant mean difference of GDP between groups before (p=0.414) and after treatment (p=0.125), total cholesterol between groups before (p = 0.572) and after treatment (p=0.361), triglycerides between groups before (p=0.073) and after treatment (p=0.111). There was a significant mean difference of HDL between groups before (p=0.003) and after treatment (p=0.047), LDL between groups before (p=0.006) and after treatment (p=0.043). Although there were significant mean differences in HDL and LDL between groups before and after treatment, the pre-post treatment of HDL and LDL mean differences showed no significant mean difference (p=0.328 and p=0.704 consecutively). Conclusion: Red Dragon fruit’s skin extract treatment did not significantly reduce the mean FBG and lipid profile levels.


2021 ◽  
Author(s):  
Michael A. Olamoyegun ◽  
Folasade O. Ajao ◽  
Marcus O. Iyedupe

Abstract Background: Obesity greatly increases the risk of metabolic diseases and preventive approaches for obesity are often inadequate to effectively prevent and manage the diseases. Altering feeding time strategy intervention decreases caloric intake without calorie counting and may be an effective therapy. Therefore, this study investigates the effect of 4-h time restricted feeding on body weight, leptin concentration and lipid profile in healthy non-obese male Wistar rats. Methods: Rats placed on time-restricted feeding (TRF) regimen had freely access to food for 4 hour per day at designated periods. Twenty four rats divided into four groups (n=6) were used. Group I animals were placed on a 4 hour per day TRF between 8am-12noon. Group II rats were also placed on a 4 hour per day TRF between 12noon-4pm. Group III rats also placed on a 4 hour per day TRF between 8pm-12 midnight while Group IV rats had access food and water ad libitum. This diet strategy resembles taking only breakfast, lunch or dinner once a day. The study lasted for a period of 4 weeks with daily food intake and weekly body weight determined throughout the period. At the end of the experimental period, blood glucose, lipid profile and leptin concentration were assessed. SPSS 21.0 package was used for data analysis, one-way analysis of variance (ANOVA) was used to compare the mean values of variables among the groups and bonferroni’s posthoc test was used for significance of pair wise comparisons of mean values among the groups. Significance was set at p < 0.05.Results: In this study, the body weights and leptin concentrations of 8pm – 12am and ad libitum groups significantly increased compared with the 8am - 12noon and 12noon -4pm groups. Dyslipidemia was observed in the ad libitum group when compared with the 8am - 12noon and 12noon - 4pm groups. Conclusion: From this study, 4-hr time restricted feeding has beneficial effects on body weight, blood glucose, lipid profile and leptin concentration. This feeding restriction patterns may be helpful in obesity management and in preventing metabolic diseases development in non obese.


2020 ◽  
Vol 66 (1) ◽  
pp. 18-36
Author(s):  
Toyin D. Alabi ◽  
Nicole L. Brooks ◽  
Oluwafemi O. Oguntibeju

SummaryIntroduction: The liver is involved in the metabolism of xenobiotics and their metabolites and it is vulnerable to oxidative damage. Hyperglycaemia is highly implicated in the progression of diabetes mellitus, and adversely affects the liver. Though, conventional hypoglycaemic drugs may be effective in reducing blood glucose, they do not appear to be effective in attenuating the progression of diabetes and its complications.Objective: This study evaluated the ameliorative effects of Anchomanes difformis on hyperglycaemia and hepatic injuries in type 2 diabetes.Methods: Type 2 diabetes was induced in male Wistar rats with a single intraperitoneal injection of streptozotocin (40 mg/kg BW) after two weeks of fructose (10%) administration. Aqueous extract of A. difformis (200 and 400 mg/kg BW) and glibenclamide (5 mg/kg BW) were administered orally for six weeks. Blood glucose concentrations were measured. Serum levels of liver dysfunction markers (ALT, AST, and ALP), total cholesterol, triglycerides, HDL- and LDL-cholesterol were investigated. Total protein, albumin, and globulin were also assessed. Antioxidant parameters: ORAC, GSH, GSSG, SOD, CAT and FRAP were evaluated in the liver while ORAC, FRAP and lipid peroxidation were determined in the serum. Histological examination of the liver tissue was carried out.Results: Treatment with aqueous extract of A. difformis significantly (p<0.05) reduced blood glucose and reversed steatosis in the diabetic-treated rats. The antioxidant status of diabetic-treated rats was significantly (p<0.05) improved. Serum levels of liver dysfunction markers were significantly (p<0.05) reduced in diabetic-treated rats.Conclusion: The findings in this study revealed that 400 mg/kgBW Anchomanes difformis was more effective than 200 mg/kg BW in ameliorating diabetes-induced hepatopathy, however, both doses of Anchomanes difformis demonstrated more antidiabetic ability than glibenclamide. Anchomanes difformis may be a novel and potential therapeutic agent in the management of diabetes and resulted hepatic injuries.


2020 ◽  
Vol 1 (1) ◽  
pp. 25-30
Author(s):  
Melita Hidajat ◽  
I Gusti Made Aman ◽  
Hendro Sukoco ◽  
Ferbian Milas Siswanto

The purpose of this study was to prove that the administration of Jati (Guazuma ulmifolia Lamk) leaves extract improves the lipid profile of dyslipidemic male Wistar rats. Subjects were 20 rats (Rattus norvegicus), male, Wistar strain, dyslipidemia (total cholesterol ≥ 200 mg dl-1), aged 2 months old, weighing 180-200 grams. The control group (10 rats) were given a placebo of 3 ml aquadest (P0) and the treatment group was given extracts of the Jati (Guazuma ulmifolia Lamk) leaves extract of 25 mg kg-1 BW (P1). Before and after treatment for 14 days, total cholesterol, triglyceride, LDL, and HDL levels were examined. The results showed that in the P0 group there were no changes in total cholesterol, triglyceride, LDL, and HDL levels (p>0.05), whereas the P1 group experienced a decrease in total cholesterol, triglyceride and LDL levels (p<0.05) and an increase in HDL levels (p<0.05). The results of this study indicated that the Jati leaves extract was effective to improve the lipid profile of dyslipidemic rats. It was necessary to compare the effectiveness of Jati leaves extract with synthetic dyslipidemia drugs used in the community such as statin.


2007 ◽  
Vol 111 (1) ◽  
pp. 29-32 ◽  
Author(s):  
Carlos Graça ◽  
Cristina Setim Freitas ◽  
Cristiane Hatsuko Baggio ◽  
Paulo Roberto Dalsenter ◽  
Maria Consuelo Andrade Marques

2012 ◽  
Vol 64 (11) ◽  
pp. 1638-1645 ◽  
Author(s):  
Rahul Vats ◽  
Kanthikiran V.S. Varanasi ◽  
Rambabu Arla ◽  
Sridhar Veeraraghavan ◽  
Shraddha Rajak ◽  
...  

2020 ◽  
Vol 12 (1) ◽  
pp. 13-18
Author(s):  
Adeola. Folashade Ehigie ◽  
Gbadebo Emmanuel Adeleke ◽  
Fiyinfoluwa. D. Ojeniyi ◽  
Leonard Ona Ehigie

Chromolaena odorata is an invasive plant which is acclaimed to have cyanide remediation potential from contaminated sites. This examination means to decide the impact of ethanol concentrates of C. odorata (ECO), sodium thiosulphate and a mix of both on hematological parameters and blood lipid profile of rodents presented to potassium cyanide. (KCN). A sum of thirty five male Wistar rats partitioned into seven groups of five units were used. KCN Group rats were administered with KCN alone. Rats in 100ECO, 150ECO, 200ECO groups were administered with 100, 150 and 200 mg/kg body weight of ECO respectively. Rats under Na2sS2O3 and Na2S2O3+ECO groups were administered 200 mg/kg sodium thiosulphate and sodium thiosulphate with ECO at 200 mg/kg respectively. The trial was done in about a month. Toward the finish of the investigation, the packed cell volume (PCV), hemoglobin level (Hb), Red blood cells (RBC) and white blood cells (WBC) were resolved utilizing known biochemical methodology. The outcomes demonstrated a noteworthy increment (p ? 0.05) in PCV, Hb, RBC and WBC level of remedial groups when contrasted with the cyanide group. Total cholesterol (TC), and triglyceride (TG) were altogether lower while HDL-cholesterol was fundamentally expanded in all the treated groups when contrasted and the untreated group given cyanide alone. However, no significant difference in LDL-cholesterol was indicated in all therapeutic groups compared with the cyanide group. The study revealed that C. odorata at the tested doses was able to improve the hematological parameters and lipid profile in cyanide exposed rats.


2020 ◽  
Vol 7 (2) ◽  
pp. 1-5
Author(s):  
Sukmawati Syarif ◽  
Nurnaningsih Nurnaningsih ◽  
Mamat Pratama

Kersen leaves (Muntingia calabura L) contain metabolites such as alkaloids, anthrax, polyphenols, tannins, saponins and are rich in flavonoid components such as flavones, flavonones, flavan and biflavan which have antidiabetic activity. According to a study conducted by Apriyanti (2016), the ethanol extract of kersen (Muntingia calabura L) at a dose of 250 mg / kg BB significantly reduced blood glucose levels in male wistar rats. In this study aimed at determining IC50 ethanol extract of Muntingia calabura L as an inhibitor of α-glucosidase enzymes using ELISA reader. The method was divided into 3 category is 1 (sample extract), 2 (blank) and 3 (akarbose). Each group added 25 µL α-glucosidase solution (0.25 units / mL then measured using ELISA reader 405 nm. The results showed that the ethanol extract of kersen (Muntingia calabura L) had activity as an inhibitor of α-glucosidase enzyme with IC50 34,197 µg / mL and can be categorized as active.


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