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临床试验/NCT03146390
NCT03146390Unknown4 期

Essential Oils With and Without Alcohol: in Vivo Antibacterial Effect

University of Santiago de Compostela1 个研究点 分布在 1 个国家目标入组 20 人开始时间: 2017年5月2日最近更新:
适应症
干预措施
相关药物

试验速览

阶段
4 期
入组人数
20
试验地点
1
主要终点
Biofilm Thickness (Microns) (Antiplaque effect)

研究概览

简要总结

The Essential oils (EO) are composed by a wide diversity of products. Therefore, their antimicrobial activity will be related to their composition, configuration, amount and their possible interaction. The traditional formulation containing EO (T-EO) is a complex mixture of phenolic compounds combined with determinate EO: 0.092% of eucalyptol, 0.064% of thymol, 0.06% of methyl-salicylate and y 0.042% of menthol. All of this solved in a hydroalcoholic vehicle containing from a 21.6% to a 26.9% of alcohol. Thus, T-EO contain ethanol, which is a chemical compound used in order to dissolve and stabilize the numerous substances present in the rinse. The concentration of ethanol present in the T-EO rinses, as previously said, is more than 20%. This concentration of ethanol, higher than 20%, is been found sufficient to dissolve the EO but insufficient to have a direct antibacterial effect. In fact, the manufacturer presents the alcohol contain (21.6%), among others, as an inactive ingredient in its formula. Over the years, the adequacy of the use of ethanol in mouthwashes, as well as their effects on the surfaces of composite restorations and their possible role in development of oropharyngeal cancer have been discussed. Although a direct cause-and-effect correlation between the development of oropharyngeal carcinoma and the use of alcohol-based rinses has not been demonstrated and probably it will never be (at least by epidemiological studies), it is considered desirable to eliminate ethanol from daily mouthwashes, especially for those patients at higher risk. Furthermore, the fact that the alcohol is present in its formula, have produced that some clinical practitioners do not prescribe the traditional formula due to the controversy of the issue. All this have lead to the development of new, alcohol free formulations of EO (Af-EO).

The composition of the Af-EO is exactly the same in their active ingredients (Eucalyptol, Thymol, Methyl-salycilate and Menthol), but sodium fluoride has been added. Some differences are found in their inactive ingredients. These are based on the alcohol containing of the T-EO, without presence in the Af-EO and the presence of Propylene Glycol, sodium lauryl sulfate and sucralose in the Af-EO, without presence in the T-EO.

In order to measure the efficacy of a mouthwash against the dental plaque two different concepts should be defined: the substantivity and antiplaque effect. The substantivity of an oral antiseptic is defined as the prolonged adherence to the oral surfaces and its slow release at effective doses which guarantee the persistence of the antimicrobial activity. The more substantivity an oral antiseptic has the better. For its study in vivo, the most popular models are those which analyze the effect that a single mouthwash has in a mature biofilm.

The second aspect that should be studied from an oral antiseptic, the antiplaque effect, is defined as the capacity that an agent has to avoid the formation of bacterial aggregates (plaque) on the oral surfaces. For its study in vivo, models start from a baseline sample with levels of plaque near to 0 in order to assess the power of the antiseptic to reduce the formation of bacterial plaque (normally dental plaque) against the control. A clinical study of 6 months using a determinate antiplaque agent is necessary in order to tag an antiseptic as effective. However, in the literature, there is an established model of 4 days of plaque regrowing which can assess the inhibitory activity that the mouthwashes have per se; furthermore, it determines the relative efficacy of the different formulations being considered as predictable of the antiplaque effect of an antiseptic.

In addition, another important factor in the study in vivo of an oral antiseptic is the necessity to conserve intact the oral biofilm at all stages: formation, recollection and analysis of the oral samples. This is in order not to interfere the delicate three dimensional structure of the oral biofilm which has been proven to be essential in the resistance to the effects of an external antiseptic agent. For these reasons, the study of the oral biofilm with the help of intraoral disks hold in specially designed apparatus combined with the application of the Confocal Laser Scanning Microscopy have proved to be very valuable at the study of the oral biofilm in its intact hydrated natural state.

Since an alcohol free formulation of the EO have come up to the market, it seems convenient to compare its effects to the traditional one. Although some studies comparing the effects of T-EO and Af-EO have been found, none of them assessed and compared their substantivity and antiplaque effect in an in vivo model of structured oral biofilm. For this reason, the aim of the present study was to compare the in vivo antibacterial effect (immediate effect, substantivity and antiplaque effect) of the EO with and without alcohol in structured oral biofilm.

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Crossover
主要目的
Prevention
盲法
Triple (Participant, Investigator, Outcomes Assessor)

入排标准

年龄范围
20 Years 至 45 Years(Adult)
性别
All
接受健康志愿者

入选标准

  • Systemically healthy adults.
  • Minimum of 24 permanent teeth.
  • No gingivitis (Community Periodontal Index score = 0).
  • No periodontitis (Community Periodontal Index score = 0).
  • Absence of untreated caries.

排除标准

  • Smoker or former smoker.
  • Presence of dental prostheses.
  • Presence of orthodontic devices.
  • Antibiotic treatment or routine use of oral antiseptics in the previous 3 months.
  • Presence of any systemic disease that could alter the production or composition of saliva.

研究组 & 干预措施

Essential oils (Listerine Mentol)

Active Comparator
  1. a single mouthwash with 20 ml of essential oils for 30 seconds
  2. 20 ml rinses for 30 seconds with essential oils/2 times daily (1/0/1).

干预措施: Essential oils (Drug)

Water

Placebo Comparator
  1. a single mouthwash with 20 ml of sterile water for 30 seconds
  2. 20 ml rinses for 30 seconds with sterile water/2 times daily (1/0/1).

干预措施: Water (Other)

Alcohol free essential oils

Experimental
  1. a single mouthwash with 20 ml of alcohol free essential oils for 30 seconds
  2. 20 ml rinses for 30 seconds with alcohol free essential oils/2 times daily (1/0/1).

干预措施: Alcohol free essential oils (Drug)

结局指标

主要结局

Biofilm Thickness (Microns) (Antiplaque effect)

时间窗: 10 hours after the last mouthwash

thickness of the biofilm from the base of the substrate to the top surface of the biofilm

Covering Grade (%) (antiplaque effect)

时间窗: 10 hours after the last mouthwash

area of the substrate that is covered by the biofilm after the 4 days of treatment

Change in the Bacterial viability (%) (substantivity)

时间窗: Baseline, 30 seconds, 1 hour, 3 hours, 5 hours and 7 hours after the single application

ratio of alive/dead bacteria

Bacterial viability (%) (antiplaque effect)

时间窗: 10 hours after the last mouthwash

ratio of alive/dead bacteria

Change in the Biofilm Thickness (Microns) (substantivity)

时间窗: baseline, 30 seconds, 1 hour, 3 hours, 5 hours and 7 hours after the single application

thickness of the biofilm from the base of the substrate to the top surface of the biofilm

次要结局

未报告次要终点

研究者

申办方类型
Other
责任方
Principal Investigator
主要研究者

Inmaculada Tomas

Senior Lecturer

University of Santiago de Compostela

研究点 (1)

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