Tribology test design for friction measurements with application to oral medicines

Q2 Materials Science Biotribology Pub Date : 2023-10-04 DOI:10.1016/j.biotri.2023.100260
Marc Masen, Philippa Cann
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Abstract

In recent years tribology tests have been used to measure friction properties of oral consumables such as semi-solid foods and medicines. The tests aim to simulate thin-film mastication conditions and are intended to correlate with mouth feel or food texture properties. In this paper a new approach is proposed to better simulate shear conditions, fluid supply and friction data capture associated with mastication and swallowing. Two primary changes are suggested: these are the reduction of the inlet influence on lubricant film properties and the ability to measure transient and time-dependent friction. The new test was used to measure friction for a range of oral medicines including a viscous solution (cough syrup) and particulate suspensions (paediatric, calcium carbonate) in combination with an artificial saliva (mucin solution), The tongue-palate was replicated by a PCX glass lens loaded and reciprocating against a textured silicone surface. A short stroke length, comparable to the Hertzian diameter of the contact, was used so the contact operated in a partially replenished lubrication condition. This ensured the film in the contact region has the same composition as the bulk fluid. Friction was measured continuously during reciprocation for up to 5 cycles (comparable to mastication time) and data was sampled at 100 Hz to capture transient friction. Tests were run with and without a mucin layer present. The results showed that tests performed after 20 min adsorption of an artificial saliva solution reduced the friction coefficient from μ = 1 to μ = 0.2–0.3. Tests with the paracetamol suspensions, which contain hard particles, recorded transient friction spikes which were not recorded for the softer calcium carbonate suspensions. Key conclusions for the design of pertinent simulation tests are that the film properties in the oral cavity are not determined by the inlet as for classical lubrication. The (bulk) oral sample is captured in the tongue-palate contact and not continually replenished. When sheared it will exhibit time (transient, longer-term) and speed dependent friction responses which contribute to sensory and texture perception.

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用于口服药物摩擦测量的摩擦学试验设计
近年来,摩擦学测试已被用于测量半固体食品和药物等口腔耗材的摩擦性能。这些测试旨在模拟薄膜咀嚼条件,并旨在与口腔感觉或食物质地特性相关联。本文提出了一种新的方法来更好地模拟与咀嚼和吞咽相关的剪切条件、流体供应和摩擦数据采集。提出了两个主要变化:一是减少了入口对润滑油膜性能的影响,二是能够测量瞬态和随时间变化的摩擦。这项新测试用于测量一系列口服药物的摩擦,包括粘性溶液(咳嗽糖浆)和颗粒悬浮液(儿科,碳酸钙)与人工唾液(粘蛋白溶液)的组合。舌腭通过装载PCX玻璃透镜并在纹理硅胶表面上往复运动来复制。使用了与触点赫兹直径相当的短行程长度,因此触点在部分补充润滑的条件下运行。这确保了接触区域中的膜具有与本体流体相同的组成。在往复运动过程中连续测量摩擦长达5个周期(与咀嚼时间相当),并在100Hz下对数据进行采样以捕捉瞬态摩擦。在存在和不存在粘蛋白层的情况下进行测试。结果表明,在吸附人工唾液溶液20分钟后进行的测试将摩擦系数从μ=1降低到μ=0.2–0.3。含有硬颗粒的对乙酰氨基酚悬浮液的测试记录了瞬态摩擦峰值,而软碳酸钙悬浮液则没有记录。相关模拟试验设计的关键结论是,口腔中的薄膜特性不像经典润滑那样由入口决定。(大量)口腔样本在舌腭接触中被捕获,并且没有持续补充。剪切时,它将表现出时间(瞬态、长期)和速度相关的摩擦反应,这有助于感知和纹理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Biotribology
Biotribology Materials Science-Surfaces, Coatings and Films
CiteScore
4.20
自引率
0.00%
发文量
17
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