Comparison of the Cholesterol-lowering Effects between Loquat Leaf and Fruit Extract in Rats Fed a High-cholesterol Diet

2018 ◽  
Vol 29 (4) ◽  
pp. 495-505
Author(s):  
Sea Jung Kim ◽  
Sihoon Park ◽  
Jae-Joon Lee
Author(s):  
Gururaja G. M. ◽  
Deepak Mundkinajeddu ◽  
Senthil Kumar A. ◽  
Joshua Allan J. ◽  
Shekhar M. Dethe ◽  
...  

Objective: Moringa oleifera Lam. (Moringaceae), a small rapid growing, evergreen, deciduous tree is an important medicinal plant. Leaves and fruits of this plant are used for various ailments, as a nutritional supplement and also as vegetables. The current study involves in the determination of best combination of the cholesterol-lowering potential of a blend of methanol extracts of M. oleifera leaf and fruits, developed based on in vitro FIC index studies and evaluate the combination of this extracts in hypercholesterolemic animal models.Methods: Leaf and fruit methanol extracts and their combinations were tested in in vitro lipase inhibition assay to determine the best combination using fractional inhibitory concentration (FIC) index. Hypercholesterolemia was induced with Triton WR-1339 (a non-ionic detergent) and with high cholesterol diet for acute and chronic model respectively and the cholesterol-lowering effect of 1:1 blend of M. oleifera leaf and fruits methanol extracts was evaluated.Results: The FIC index values indicated that M. oleifera leaf and fruit extracts blended in 1:1 proportion was the best combination in in vitro lipase inhibition assay. This blend, when evaluated in vivo, showed a significant decrease in serum total cholesterol level from 24 h through 48 h in triton model. In high cholesterol diet model, the extract blend showed a significant reduction in serum triglycerides levels at 3 and 6 w of treatment.Conclusion: The results indicate that the blend of M. oleifera at the tested dose could be lowering cholesterol and triglyceride levels by inhibiting the absorption of cholesterol and can be developed as a standardized blend for dietary supplement market.


2017 ◽  
Vol 74 (5) ◽  
pp. 623-631 ◽  
Author(s):  
Yufang Liu ◽  
Fengchun Zhao ◽  
Jiye Liu ◽  
Huimin Wang ◽  
Xiao Han ◽  
...  

2019 ◽  
Vol 10 (3) ◽  
pp. 1684-1695 ◽  
Author(s):  
Guangqiang Wang ◽  
Wenli Huang ◽  
Yongjun Xia ◽  
Zhiqiang Xiong ◽  
Lianzhong Ai

Lactobacillus strain overexpression of bile salt hydrolase can exert a cholesterol-reducing effect in vivo.


Author(s):  
Muhammad Yulis Hamidy ◽  
Huriatul Masdar ◽  
Winarto

Background: Atherosclerosis is a major finding in cardiovascular disease. One of the pro-fibrotic cytokines that play an important role in the atherosclerosis process is Tumor Growth Factor (TGF)-β1, where the presence of high TGF-β1 secretion due to hypercholesterolemia will trigger excessive collagen matrix formation. Objective: To analyze Rhizophora sp fruit extract effect on TGF-β1 expression in high cholesterol diet-fed rats. Material and Methods: Eighteen 10-week-old rats weighing 150-200 g were used in this study. These animals were grouped into 3 groups, each consisting of 6 rats. Group A (normal control) is a group of rats that received a normal diet. Group B (atherogenic control) received a diet that induces atherosclerosis (atherogenic diet). This diet contains 2% cholesterol, 5% goat fat, 0.2% cholic acid and standard diet up to 100%. Atherogenic diet was given for 3 days, and on the first day this group also received vitamin D3 700,000 IU/kg. Group C (treated), apart from receiving an atherogenic diet, was also given Rhizophora sp fruit extract 500 mg/kg body weight. The Rhizophora sp fruit extract effect on TGF-β1 expression was evaluated by immunohistochemical procedure. The area of ​​the expression is calculated using the ImageJ. Results: The results of this study indicate that the expression of TGF-β1 is higher in the group receiving the atherogenic diet than the normal control group (17.3 vs. 8.9; P=0.000). Rhizophora sp fruit extract reduced this expression remarkably (17.3 vs. 11.4; P=0.001). Conclusion: Rhizophora sp fruit extract inhibits the the expression of TGF-β1 in high cholesterol diet-fed rats.


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