Formulation and Evaluation of Anti-Acne Activity of Gel Pineapple Peel (Ananas comosus L.) Extract on the Growth of Propionibacterium acnes

Saparuddin Latu, Imran Firman, Andi Muh. Yaqkin-P, Musliani Musliani
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Abstract

Pineapple peel contains many compounds, namely flavonoids, tannins, saponins, phenolics, steroids, alkaloids and bromelin enzymes. Acne is a chronic inflammatory disease of the pilosebaceous glands. One of the bacteria that causes acne is Propionibacterium acne. Preparations that can be made for anti-acne are gel preparations. This study aims to determine whether the ethanol extract of pineapple peel (Ananas comosus L.) can be made into an anti-acne gel preparation and to find out at what concentration the ethanol extract of pineapple peel (Ananas comosus L.) in an anti-acne gel preparation can provide inhibitory activity on the development of Propionibacterium acne bacteria. This research method is true experimental by making anti-acne gel preparations of pineapple peel extract (Ananas Comosus L.) with various concentrations of 2%, 3%, 5% and testing the activity of the preparation against Propionibacterium acne using the agar well method. The results of the gel preparation formula showed that there were significant differences before and after the cycling test in both organoleptic, homogeneity, pH, viscosity, spreadability and adhesion tests. The activity test results obtained were that the largest inhibition zone was the 5% concentration, namely 12.7 mm, which was in the strong category, while the 3% concentration, which was 11.03 mm, and the 2% concentration, which was 8.8 mm, was included in the moderate category.
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凝胶菠萝皮(Ananas comosus L.)提取物对痤疮丙酸杆菌生长的抗痘活性的配制和评估
菠萝皮含有多种化合物,即黄酮类、单宁酸、皂甙、酚类、类固醇、生物碱和溴化酶。痤疮是一种慢性皮脂腺炎症性疾病。引起痤疮的细菌之一是痤疮丙酸杆菌。可用于抗痤疮的制剂是凝胶制剂。本研究旨在确定菠萝果皮(Ananas comosus L.)的乙醇提取物是否可以制成抗痤疮凝胶制剂,以及抗痤疮凝胶制剂中菠萝果皮(Ananas comosus L.)的乙醇提取物在多大浓度下可以对痤疮丙酸杆菌的发展产生抑制作用。本研究方法是通过将菠萝皮提取物(Ananas Comosus L.)制成 2%、3%、5% 等不同浓度的抗痤疮凝胶制剂,并采用琼脂井法检测制剂对痤疮丙酸杆菌的活性。凝胶制剂配方的结果表明,在感官、均匀性、pH 值、粘度、铺展性和粘附性测试中,循环测试前后均存在显著差异。活性测试结果表明,5%浓度的抑制区最大,为 12.7 毫米,属于强抑制区,3%浓度的抑制区为 11.03 毫米,2%浓度的抑制区为 8.8 毫米,属于中等抑制区。
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