Hypercholesterolemia is a predominant risk factor for atherosclerosis and cardiovascular disease (CVD). The World Health Organization (WHO), ) recommended reducing the intake of cholesterol and saturated fats. On the other hand, limited evidence is available on the benefits of vegetables in the diet to reduce these risk factors, so this research was conducted to compare the hypolipidemic effect between the extracts of two different types of Iraqi peppers, the fruit of the genus Capsicum traditionally known as red pepper extract (RPE), and Piper nigrum as black pepper extract (BPE), respectively, in different parameters and histology of the liver of the experimental animals. The red pepper was extracted by ethyl acetate, while the black pepper was extracted by 90% ethanol, then each extract was concentrated for further analysis. Reversed-phase high-performance liquid chromatography (RP-HPLC) results confirm the presence of a high percentage of alkaloids responsible for hypolipidemic activity studied against hypercholesterolemic rats divided into five rats into six groups for ten weeks. We measured different parameters such as the lipid profile, the oxidized low-density lipoprotein (LDL), and the serum level of the most important parameters of the kidney and liver function tests. We also compared body weight after ten weeks. This study showed a slight or nonsignificant decrease in cholesterol, TG, very low-density lipoprotein VLDL, low-density lipoprotein LDL, and oxidized LDL with a considerable increase in high-density lipoprotein HDL in group V (high-fat diet + black pepper extract). Study results were improved by histological changes induced in liver tissue. In conclusion, the results focused on consuming these vegetables and reducing cholesterol levels, as it is considered a risk factor for cardiovascular disease (CVD).
Environmental stress affects the yield of sorghum. This impact can be reduced by seed stimulation technique and determining the appropriate planting date. An experiment was conducted in the spring and fall seasons of 2022. Randomized complete block design with split-plot arrangement in four replications was used. Planting dates (spring season: February 15th, March 1st, 15th, April 1st, 15th; fall season: June 15th, July 1st, 15th, August 1st, 15th) were assigned to the main plots. Seed stimulation treatments (banana peel extract 35% + citric acid 100 mg L-1 and soaking in distilled water only) were applied to the subplots. The interaction treatment of soaking with banana peel extract + citric acid and the planting date of April 15th showed
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