Nanometric Systems Containing Ozonated Oil with Potential Activity against Skin Pathogens

IF 2.1 4区 环境科学与生态学 Q3 ENGINEERING, ENVIRONMENTAL Ozone: Science & Engineering Pub Date : 2022-09-21 DOI:10.1080/01919512.2022.2125362
Kiany de Oliveira Firmino, Francielli Lima dos Santos, M. S. Marques, Bárbara Souza da Costa, G. D. S. Collar, J. Caierão, A. Fuentefria, Irene Clemes Külkamp Guerreiro, R. V. Contri
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引用次数: 1

Abstract

ABSTRACT Some antimicrobial substances have unwanted side effects, besides difficulty in crossing the stratum corneum, prompting the need to search for alternative treatments. Ozonated vegetable oils present activity against some fungi and bacteria. This study has aimed to develop and characterize nanoemulsions and polymeric nanocapsules containing 5% ozonated sunflower seed oil for skin application with potential activity against skin pathogens. The formulations were obtained by interfacial deposition of preformed polymer (polymeric nanocapsules) and emulsification followed by Ultra-Turrax® agitation (nanoemulsion). The nanometric systems were evaluated in terms of their organoleptic and physicochemical properties, as well as ozonides presence. The stability of the systems was analyzed by centrifugation (pre-stability) and after 30 days in oven (40 °C) and refrigerator (4 °C) conditions. The antimicrobial activity was determined in vitro using dermatophytes, Candida and Staphylococcus species. Both formulations appeared white and homogeneous, with typical ozonated oil odor. The mean diameters and pH values were, respectively, 139 ± 7.6 nm and 3.2 ± 0.1 for the nanoemulsion and 149 ± 6.1 nm and 3.3 ± 0.2 for the polymeric nanocapsules. Zeta potential was −9 mV (nanoemulsion) and +11 mV (polymeric nanocapsules). The presence of ozonides was confirmed by FT-IR and the nanometric systems were considered stable. Susceptibility tests showed greater potential for the nanometric systems containing ozonated oil against fungi, especially dermatophytes. It was possible to increase the antimicrobial efficacy of the ozonated oil for eighteen of the twenty pathogen isolates tested. Thus, the developed nanometric systems containing ozonated oil may be considered potential treatments for skin infections.
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含有臭氧化油的纳米系统具有对抗皮肤病原体的潜在活性
一些抗菌药物除了难以穿过角质层外,还具有不良的副作用,这促使人们需要寻找替代治疗方法。臭氧化植物油对某些真菌和细菌有一定的抑制作用。本研究旨在开发和表征含有5%臭氧化葵花籽油的纳米乳液和聚合物纳米胶囊,用于皮肤应用,具有潜在的抗皮肤病原体活性。这些配方是通过预先形成的聚合物(聚合物纳米胶囊)的界面沉积和乳化,然后进行Ultra-Turrax®搅拌(纳米乳液)得到的。根据其感官和物理化学性质以及臭氧的存在来评估纳米系统。通过离心(预稳定性)和烘箱(40°C)和冰箱(4°C)条件下30天后分析系统的稳定性。采用皮肤真菌、念珠菌和葡萄球菌进行体外抑菌活性测定。两种配方均呈白色,均匀,具有典型的臭氧化油味。纳米乳液的平均粒径为139±7.6 nm, pH值为3.2±0.1;聚合物纳米胶囊的平均粒径为149±6.1 nm, pH值为3.3±0.2。Zeta电位为- 9 mV(纳米乳液)和+11 mV(聚合物纳米胶囊)。红外光谱证实了臭氧的存在,认为纳米体系是稳定的。药敏试验表明,含有臭氧化油的纳米系统对真菌,特别是皮肤真菌具有更大的潜力。实验结果表明,臭氧化油对20株病原菌中的18株具有较好的抑菌效果。因此,所开发的含有臭氧化油的纳米系统可能被认为是皮肤感染的潜在治疗方法。
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来源期刊
Ozone: Science & Engineering
Ozone: Science & Engineering 环境科学-工程:环境
CiteScore
5.90
自引率
11.10%
发文量
40
审稿时长
2 months
期刊介绍: The only journal in the world that focuses on the technologies of ozone and related oxidation technologies, Ozone: Science and Engineering brings you quality original research, review papers, research notes, and case histories in each issue. Get the most up-to date results of basic, applied, and engineered research including: -Ozone generation and contacting- Treatment of drinking water- Analysis of ozone in gases and liquids- Treatment of wastewater and hazardous waste- Advanced oxidation processes- Treatment of emerging contaminants- Agri-Food applications- Process control of ozone systems- New applications for ozone (e.g. laundry applications, semiconductor applications)- Chemical synthesis. All submitted manuscripts are subject to initial appraisal by the Editor, and, if found suitable for further consideration, to peer review by independent, anonymous expert referees.
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