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The use of near-infrared spectroscopy in skin care applications.

机译:在皮肤护理应用中使用近红外光谱。

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摘要

Near-infrared (NIR) spectroscopy was used to document the skin water content as a function of product usage and changes in the % relative humidity (%RH) in vitro and in vivo. The objective of the investigation was to determine if the NIR could provide comparable skin water content information as that obtained using gravimetric, conductivity, or visual assessment methods without having to invoke complex chemometric calculations. NIR data were obtained using an NIR5000 spectrophotometer with a fiber optic probe (Smartprobetrade mark) attachment to complete the clinical studies and a Direct Contacttrade mark Analyzer module to carry out the in vitro experiments. Conductivity measurements were completed using the Skicon((R)) 200, which measures conductance at a fixed frequency of 3.5 MHz. Three moisturization-based clinical studies were carried out assessing the NIR's ability to detect skin hydration changes. In Clinical Study A, NIR and Skicon data were collected for panelists who had only washed their outer calf with water over a 4-week period. During this time, the daily average %RH was recorded. In Clinical Study B, 10% solutions of glycerin, choline chloride, and the sodium salt of pyrrolidone carboxylic acid were applied to the panelist's outer calf and biophysical measurements were completed to assess the hydration and desorption properties of these humectants. In Clinical Study C, a 10% solution of choline chloride was applied to panelist's outer calf and the cumulative effect of using this product was evaluated over a 3-week period. For all in vitro studies, porcine skin was used as the substrate. Comparable NIR, Skicon, and visual dryness results were obtained for most of the product usage-based clinical experiments completed. However, the NIR was particularly more effective at detecting skin water content differences as a function of %RH changes. In the absence of abrupt (>50%) relative humidity variations, there was a direct correlation between the NIR readings and the %RH (R(2)=0.83) unlike whatwas observed for the Skicon measurements (R(2)=0.22). NIR spectroscopy demonstrated the changes in the skin water content as a function of product usage; the results were consistent with those obtained using the Skicon conductivity meter and visual dryness assessment scores. More importantly, the differences detected were obtained without having to use chemometric manipulations in the data analysis as is the common practice. Of all the methods used, the NIR gave the best linear regression for %RH-induced skin water content changes.
机译:近红外(NIR)光谱用于记录皮肤水含量与产品使用量以及体内和体外百分相对湿度(%RH)的关系。研究的目的是确定NIR是否可以提供与使用重量法,电导率法或目视评估方法所获得的可比较的皮肤含水量信息,而无需调用复杂的化学计量计算。使用带有光纤探针(Smartprobetrade mark)附件的NIR5000分光光度计获得NIR数据以完成临床研究,并使用Direct Contacttrade mark分析仪模块进行体外实验。使用Skicon200完成电导率测量,该设备在3.5MHz的固定频率下测量电导。进行了三项基于保湿的临床研究,以评估NIR检测皮肤水分变化的能力。在临床研究A中,收集了仅在4周内用水洗小腿的小组成员的NIR和Skicon数据。在此期间,记录每日平均%RH。在临床研究B中,将10%的甘油,氯化胆碱和吡咯烷酮羧酸的钠盐溶液应用于专门小组成员的小腿,并完成生物物理测量以评估这些保湿剂的水合和解吸特性。在临床研究C中,将10%的氯化胆碱溶液施用于专门小组成员的小腿外侧,并在3周的时间内评估使用该产品的累积效果。对于所有体外研究,均使用猪皮肤作为底物。在大多数基于产品使用情况的临床实验中,获得了可比的NIR,Skicon和视觉干燥度结果。但是,NIR在检测作为%RH变化的函数的皮肤含水量差异方面特别有效。在没有相对湿度突然变化(> 50%)的情况下,NIR读数与%RH(R(2)= 0.83)之间存在直接相关性,这与在Skicon测量中观察到的结果(R(2)= 0.22)不同。近红外光谱表明,皮肤含水量随产品用量而变化。结果与使用Skicon电导率仪和视觉干燥度评分所获得的结果一致。更重要的是,无需像常规做法那样在数据分析中使用化学计量学操作即可获得检测到的差异。在所有使用的方法中,NIR对于%RH引起的皮肤含水量变化给出了最佳的线性回归。

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