ANTIOXIDANT ACTIVITY OF THE ACTIVE FRACTION OF MANGOSTEEN RIND EXTRACT (GARCINIA MANGOSTANA)

Q2 Pharmacology, Toxicology and Pharmaceutics
Ari Widayanti, Mahdi Jufri, Silvia Surini, Berna Ellya
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Abstract

Objective: Determination of the IC50 value of the active Fraction was carried out to see the antioxidant activity of the ethanol extract of mangosteen peel (Garcinia mangosteen) Mangosteen peel is known to have very strong antioxidant activity. The research began with maceration of mangosteen peel with ethanol solvent. Then, the mangosteen peel extract was fractionated with three solvents, namely those with different polarities, namely water, dichloromethane, and n-hexane. Methods: The ethanol extract of mangosteen rind was further fractionated using n-hexane, dichloromethane, and water, then the solvent was removed by evaporation. The three resulting fractions were measured for antioxidant activity using the DPPH method with Quercetin as a comparison. The active Fraction with the highest IC50 value is then compared with the extract, and the comparison is seen with TLC. Next, the Fraction was tested with GC to see the remaining solvent. And then continued with determining alpha mangostin levels in all fractions using UHPLC. Results: IC50 value for each n-hexane fraction was 50.65µg/ml, the dichloromethane fraction was 34.66µg/ml, and the water fraction was 45.72µg/ml. The results of the solvent test showed that there was no residual solvent in the dichlormethane fraction, as seen from the chromatogram results. The results of the assay showed the following results: n-Hexan fraction 25.18%, DCM fraction 31.23%. Conclusion: The dichloromethane fraction showed the highest antioxidant activity with the best IC 50 value and had higher levels of alpha mangostin than the water and n-hexane fractions.
山竹果皮提取物活性成分的抗氧化活性
目的:测定活性馏分的 IC50 值,以了解山竹果皮(Garcinia mangosteen)乙醇萃取物的抗氧化活性 众所周知,山竹果皮具有很强的抗氧化活性。研究首先用乙醇溶剂浸泡山竹果皮。然后,山竹果皮提取物用三种溶剂进行分馏,即极性不同的溶剂,即水、二氯甲烷和正己烷。方法:山竹果皮乙醇提取物用正己烷、二氯甲烷和水进一步分馏,然后通过蒸发去除溶剂。用 DPPH 法测量所得的三种馏分的抗氧化活性,并以槲皮素作为对比。然后将 IC50 值最高的活性馏分与提取物进行比较,比较结果可通过 TLC 观察到。接着,用气相色谱法检测馏分中的剩余溶剂。然后继续使用超高效液相色谱法测定所有馏分中的α-芒果苷含量。结果:正己烷馏分的 IC50 值为 50.65µg/ml,二氯甲烷馏分的 IC50 值为 34.66µg/ml,水馏分的 IC50 值为 45.72µg/ml。溶剂测试结果表明,从色谱图结果来看,二氯甲烷馏分中没有残留溶剂。化验结果显示:正己烷馏分为 25.18%,二氯甲烷馏分为 31.23%。结论与水和正己烷馏分相比,二氯甲烷馏分的抗氧化活性最高,IC 50 值最佳,α-芒果苷的含量也较高。
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来源期刊
International Journal of Applied Pharmaceutics
International Journal of Applied Pharmaceutics Pharmacology, Toxicology and Pharmaceutics-Pharmacology, Toxicology and Pharmaceutics (miscellaneous)
CiteScore
1.40
自引率
0.00%
发文量
219
期刊介绍: International Journal of Applied Pharmaceutics (Int J App Pharm) is a peer-reviewed, bimonthly (onward March 2017) open access journal devoted to the excellence and research in the pure pharmaceutics. This Journal publishes original research work that contributes significantly to further the scientific knowledge in conventional dosage forms, formulation development and characterization, controlled and novel drug delivery, biopharmaceutics, pharmacokinetics, molecular drug design, polymer-based drug delivery, nanotechnology, nanocarrier based drug delivery, novel routes and modes of delivery; responsive delivery systems, prodrug design, development and characterization of the targeted drug delivery systems, ligand carrier interactions etc. However, the other areas which are related to the pharmaceutics are also entertained includes physical pharmacy and API (active pharmaceutical ingredients) analysis. The Journal publishes original research work either as a Original Article or as a Short Communication. Review Articles on a current topic in the said fields are also considered for publication in the Journal.
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