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三果汤成分及纳米制剂的抗菌活性评估

Evaluation of Antimicrobial Activity of Triphala Constituents and Nanoformulation.

作者信息

Omran Ziad, Bader Ammar, Porta Amalia, Vandamme Thierry, Anton Nicolas, Alehaideb Zeyad, El-Said Hamdi, Faidah Hani, Essa Abulrahman, Vassallo Antonio, Halwani Majed

机构信息

College of Pharmacy, Umm Al-Qura University, Makkah, Saudi Arabia.

King Abdullah International Medical Research Center, King Saud Bin Abdulaziz University for Health Sciences, Riyadh, Saudi Arabia.

出版信息

Evid Based Complement Alternat Med. 2020 Aug 2;2020:6976973. doi: 10.1155/2020/6976973. eCollection 2020.

Abstract

The prevalence of nosocomial infections due to multidrug resistant (MDR) bacterial strains is associated with high morbidity and mortality. Folk medicine and ethnopharmacological data can provide a broad range of plants with promising antimicrobial activity. Triphala, an Ayurvedic formula composed of three different plants: Retz., (Gaertn.) Roxb. (Combretaceae), and L. (Phyllanthaceae), is used widely for various microbial infections. Various extraction techniques were applied in the extraction of the biologically active constituents of Triphala in order to compare their efficiency. Microwave-assisted extraction (MAE) was shown to be the most efficient method based on yield, extraction time, and selectivity. The Triphala hydroalcoholic extract (TAE) has been chemically characterized with spectroscopic and chromatographic techniques. Triphala hydroalcoholic extract was evaluated alone or with carvacrol. Different drug formulations including cream and nanoemulsion hydrogel were prepared to assess the antimicrobial activity against selected microorganism strains including Gram-positive and Gram-negative bacteria and fungi. We used a lipophilic oil of carvacrol (5 mg/mL) and a hydrophilic TAE (5 mg/mL) ingredient in a dosage form. Two solutions were created: hydrogel containing nanoemulsion as a lipophilic vector dispersed in the gel as a hydrophilic vehicle and a cream formulation, an oil-in-water emulsion. In both cases, the concentration was 250 mg of active ingredient in 50 mL of final formulation. The formulas developed were stable from a physical and chemical perspective. In the nanoemulsion hydrogel, the oil droplet size ranged from 124 to 129 nm, with low polydispersity index (PdI) 0.132 ± 0.013 and negative zeta potential -46.4 ± 4.3 mV. For the cream, the consistency factor (cetyl alcohol and white wax) induced immobilization of the matrix structure and the stability. Triphala hydroalcoholic extract in drug nanoformulation illustrated might be an adjuvant antimicrobial agent for treating various microbial infections.

摘要

多重耐药(MDR)细菌菌株引起的医院感染患病率与高发病率和死亡率相关。民间医学和民族药理学数据可以提供多种具有潜在抗菌活性的植物。三果木,一种由三种不同植物组成的阿育吠陀配方:诃子(使君子科)、毛诃子(使君子科)和余甘子(叶下珠科),广泛用于各种微生物感染。为了比较各种提取技术的效率,人们采用了多种提取技术来提取三果木的生物活性成分。基于产量、提取时间和选择性,微波辅助提取(MAE)被证明是最有效的方法。三果木水醇提取物(TAE)已通过光谱和色谱技术进行了化学表征。单独或与香芹酚一起对三果木水醇提取物进行了评估。制备了包括乳膏和纳米乳液水凝胶在内的不同药物制剂,以评估其对包括革兰氏阳性菌、革兰氏阴性菌和真菌在内的选定微生物菌株的抗菌活性。我们在一种剂型中使用了亲脂性的香芹酚油(5mg/mL)和亲水性的TAE(5mg/mL)成分。创建了两种溶液:一种是含有纳米乳液的水凝胶,纳米乳液作为亲脂性载体分散在作为亲水载体的凝胶中;另一种是乳膏制剂,即水包油乳液。在这两种情况下,最终制剂50mL中活性成分的浓度均为250mg。从物理和化学角度来看,所开发的配方都是稳定的。在纳米乳液水凝胶中,油滴尺寸范围为124至129nm,多分散指数(PdI)较低,为0.132±0.013,zeta电位为负,为-46.4±4.3mV。对于乳膏,稠度系数(十六醇和白蜡)使基质结构固定并保持稳定。所展示的药物纳米制剂中的三果木水醇提取物可能是一种用于治疗各种微生物感染的辅助抗菌剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/876d/7422007/f3d41529adf4/ECAM2020-6976973.001.jpg

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