Influence of Rhizophora apiculata barks extract on Cholesterol, Triglyceride, LDL, and HDL Levels of Rattus norvegicus (Sprague Dawley) fed high-cholesterol diet

Q3 Pharmacology, Toxicology and Pharmaceutics
Syazili Mustofa, Andi Nafisah Tendri Adjeng, E. Kurniawaty, Lovina Ramadhita, Tania Tamara
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引用次数: 0

Abstract

Background:Hypercholesterolemia is a lipid metabolic condition associated with cardiovascular disease (CVD), the leading cause of death worldwide. Rhizophora apiculata is a plant that grows along the Indonesian coast and may provide significant support for using traditional medicine. Bioactive molecules extracted from Rhizophora apiculta can be used in supplementary medicines and considered to be an alternative way to address the ever-increasing requirements of novel drugs. More research is needed to substantiate the usage of Rhizophora apiculate astraditional medicine.This study aims to investigate the effects of Rhizophora apiculata barks (RAB) ethanolic extract on lipid metabolism, namely Total Cholesterol (TC), Triglyceride (TG), LDL, and HDL levels in mice fed a high-cholesterol diet (HCD). Methods: The study comprised 30 white male rats (Rattus norvegicus) of the Sprague Dawley strain, aged 2-3 months and weighing 200-250 grams. Six groups of mice (n = 5) were formed. Group 1 was fed a conventional diet; Group 2 was given the High-Cholesterol Diet (HCD); Group 3 was given HCD and simvastatin 40 mg/kgbwt (p.o. ); and Groups 4, 5, and 6 were treated with HCD and RAB extract 56.55 mg/kgbwt (p.o.), RAB 28.28 mg/kgbwt (p.o.), and RAB 14.14 mg/kgbwt. All of the treatments began on the same day and lasted 30 days. Results: RAB-treated animal groups (56.55; 28.28; and 14.14 mg/kgbwt) had markedly lessened TC levels by 41.18%, 35.57%, and 9.24%, respectively; TG levels declined by 45.85%; 43.77%; and 27.74%, respectively; LDL levels reduced by 26.08%; 16.55%; and 11.21%, respectively; and HDL levels increased by 19.37%; 15.12%; and 13.21%, respectively. Conclusion: RAB-treated animal groups (56.55; 28.28; and 14.14 mg/kg) had markedly lessened total cholesterol, triglyceride, LDL and increased HDL levels (p < 0.01) related to the HCD alone batch. These findings imply that the ethanolic extract of Rhizophora apiculata barks influences lipid metabolism and has potency as traditional medicine.
根皮栲胶对饲喂高胆固醇饮食的大白鼠(Sprague Dawley)胆固醇、甘油三酯、低密度脂蛋白和高密度脂蛋白水平的影响
背景:高胆固醇血症是一种脂质代谢疾病,与心血管疾病(CVD)有关,而心血管疾病是导致全球死亡的主要原因。Rhizophora apiculata 是一种生长在印度尼西亚沿海的植物,可为传统医学的应用提供重要支持。从根茎叶中提取的生物活性分子可用于辅助药物,并被认为是满足对新型药物日益增长的需求的另一种途径。本研究旨在调查 Rhizophora apiculata barks(RAB)乙醇提取物对高胆固醇饮食(HCD)小鼠脂质代谢,即总胆固醇(TC)、甘油三酯(TG)、低密度脂蛋白(LDL)和高密度脂蛋白(HDL)水平的影响。研究方法研究对象为 30 只 Sprague Dawley 品系的白色雄性大鼠(Rattus norvegicus),年龄为 2-3 个月,体重为 200-250 克。小鼠共分为六组(n = 5)。第 1 组喂食常规饮食;第 2 组喂食高胆固醇饮食(HCD);第 3 组喂食 HCD 和辛伐他汀 40 毫克/千克体重(p.o.);第 4、5 和 6 组喂食 HCD 和 RAB 提取物 56.55 毫克/千克体重(p.o.)、RAB 28.28 毫克/千克体重(p.o.)和 RAB 14.14 毫克/千克体重。所有治疗均在同一天开始,持续 30 天。结果经 RAB 处理的动物组(56.55、28.28 和 14.14 毫克/千克体重)的 TC 水平分别显著降低了 41.18%、35.57% 和 9.24%;TG 水平分别降低了 45.85%、43.77% 和 27.74%;LDL 水平分别降低了 26.08%、16.55% 和 11.21%;HDL 水平分别升高了 19.37%、15.12% 和 13.21%。结论经 RAB 处理的动物组(56.55、28.28 和 14.14 mg/kg)的总胆固醇、甘油三酯和低密度脂蛋白水平明显降低,而高密度脂蛋白水平则有所提高(p < 0.01),与单用 HCD 处理的动物组相比有明显差异。这些研究结果表明,树皮乙醇提取物可影响脂质代谢,具有传统医药的功效。
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来源期刊
Research Journal of Pharmacy and Technology
Research Journal of Pharmacy and Technology Pharmacology, Toxicology and Pharmaceutics-Pharmacology, Toxicology and Pharmaceutics (miscellaneous)
CiteScore
1.40
自引率
0.00%
发文量
0
期刊介绍: Research Journal of Pharmacy and Technology (RJPT) is an international, peer-reviewed, multidisciplinary journal, devoted to pharmaceutical sciences. The aim of RJPT is to increase the impact of pharmaceutical research both in academia and industry, with strong emphasis on quality and originality. RJPT publishes Original Research Articles, Short Communications, Review Articles in all areas of pharmaceutical sciences from the discovery of a drug up to clinical evaluation. Topics covered are: Pharmaceutics and Pharmacokinetics; Pharmaceutical chemistry including medicinal and analytical chemistry; Pharmacognosy including herbal products standardization and Phytochemistry; Pharmacology: Allied sciences including drug regulatory affairs, Pharmaceutical Marketing, Pharmaceutical Microbiology, Pharmaceutical biochemistry, Pharmaceutical Education and Hospital Pharmacy.
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