A Comprehensive Study on Peppermint Oil and Cinnamon Oil as Nanoemulsion: Preparation, Stability, Cytotoxicity, Antimicrobial, Antifungal, and Antioxidant Activity.

IF 2.8 4区 医学 Q2 PHARMACOLOGY & PHARMACY Current drug delivery Pub Date : 2024-01-01 DOI:10.2174/1567201820666230612123011
Emrah Özakar, Levent Alparslan, M Cemal Adıgüzel, Gülşah Torkay, Alper Baran, Ayça Bal-Öztürk, Rukiye Sevinç-Özakar
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Abstract

Background: Recent studies have shown that nanoemulsions prepared with essential oils have significant antimicrobial potential against multidrug-resistant pathogens due to increased chemical stability. Nanoemulsion also promotes controlled and sustained release, which increases their bioavailability and efficacy against multidrug-resistant bacteria.

Objective: This study aimed to investigate the antimicrobial, antifungal, antioxidant, and cytotoxicity properties of cinnamon essential oil and peppermint essential oil as nanoemulsions compared to pure forms. For this purpose, analyses of the selected stable nanoemulsions were carried out.

Method: The droplet sizes and zeta potentials of peppermint essential oil nanoemulsions and cinnamon essential oil nanoemulsions were found to be 154.6±1.42 nm and -17.1±0.68 mV and 200.3±4.71 nm and -20.0±0.81 mV, respectively. Although the amount of essential oil used in nanoemulsions was 25% w/w, antioxidant and antimicrobial activities were found to be more effective compared to pure essential oils.

Results: In cytotoxicity studies on the 3T3 cell line, both essential oil nanoemulsions showed higher cell viability than pure essential oils. At the same time, cinnamon essential oil nanoemulsions exhibited a higher antioxidant property than peppermint essential oil nanoemulsions and showed superiority in the antimicrobial susceptibility test conducted against four bacteria and two fungi. Cell viability tests determined that cinnamon essential oil nanoemulsions showed considerably higher cell viability compared to pure cinnamon essential oil.

Conclusion: These findings indicated that the prepared nanoemulsions in the current study might positively influence the dosing regimen and clinical outcomes of antibiotic therapy.

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薄荷油和肉桂油纳米乳的制备、稳定性、细胞毒性、抗菌、抗真菌和抗氧化活性的综合研究。
背景:最近的研究表明,由精油制备的纳米乳由于化学稳定性的提高,对多重耐药病原体具有显著的抗菌潜力。纳米乳还能促进控释和缓释,从而提高其生物利用度和抗多药耐药菌的有效性。目的:研究肉桂精油和薄荷精油纳米乳的抗菌、抗真菌、抗氧化和细胞毒性。为此,对所选的稳定纳米乳进行了分析。方法:薄荷精油纳米乳和肉桂精油纳米乳的微滴大小和ζ电位分别为154.6±1.42 nm和-17.1±0.68 mV和200.3±4.71 nm和-20.0±0.81 mV。虽然纳米乳液中精油的用量为25% w/w,但研究发现,与纯精油相比,纳米乳液的抗氧化和抗菌活性更有效。结果:在对3T3细胞株的细胞毒性研究中,两种精油纳米乳均表现出比纯精油更高的细胞活力。同时,肉桂精油纳米乳的抗氧化性能优于薄荷精油纳米乳,且在对4种细菌和2种真菌的药敏试验中表现出优势。细胞活力测试表明,与纯肉桂精油相比,肉桂精油纳米乳液显示出更高的细胞活力。结论:本研究制备的纳米乳剂可能对抗生素给药方案和临床疗效产生积极影响。
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来源期刊
Current drug delivery
Current drug delivery PHARMACOLOGY & PHARMACY-
CiteScore
5.10
自引率
4.20%
发文量
170
期刊介绍: Current Drug Delivery aims to publish peer-reviewed articles, research articles, short and in-depth reviews, and drug clinical trials studies in the rapidly developing field of drug delivery. Modern drug research aims to build delivery properties of a drug at the design phase, however in many cases this idea cannot be met and the development of delivery systems becomes as important as the development of the drugs themselves. The journal aims to cover the latest outstanding developments in drug and vaccine delivery employing physical, physico-chemical and chemical methods. The drugs include a wide range of bioactive compounds from simple pharmaceuticals to peptides, proteins, nucleotides, nucleosides and sugars. The journal will also report progress in the fields of transport routes and mechanisms including efflux proteins and multi-drug resistance. The journal is essential for all pharmaceutical scientists involved in drug design, development and delivery.
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