The impact of skin color and tone on histamine iontophoresis and Doppler flowmetry measurements as a pharmacodynamic biomarker

IF 3.1 3区 医学 Q2 MEDICINE, RESEARCH & EXPERIMENTAL Cts-Clinical and Translational Science Pub Date : 2024-03-21 DOI:10.1111/cts.13777
Aarya Ramprasad, Adara Ezekwe, Brian R. Lee, Shiva Balasubramanian, Bridgette L. Jones
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Abstract

The phenotypical manifestations of asthma among children are diverse and exhibit varying responses to therapeutic interventions. There is a need to develop objective biomarkers to improve the characterization of allergic and inflammatory responses relevant to asthma to predict therapeutic treatment responses. We have previously investigated histamine iontophoresis with laser Doppler flowmetry (HILD) as a potential surrogate biomarker that characterizes histamine response and may be utilized to guide the treatment of allergic and inflammatory disease. We have identified intra-individual variability of HILD response type among children and adults with asthma and that HILD response type varied in association with racial classification. As laser Doppler flowimetry may be impacted by skin color, we aimed to further validate the HILD method by determining if skin color or tone is associated with observed HILD response type differences. We conducted an observational study utilizing quantification of skin color and tone obtained from photographs of the skin among participants during HILD assessments via the RGB color model. We compared RGB values across racial, ethnic, and HILD response type via the Kruskal-Wallis test and calculated Kendall rank correlation coefficient to evaluate the relationship between RGB composite scores and HILD pharmacodynamic measures. We observed that RGB scores differed among racial groups and histamine response phenotypes (p < 0.05). However, there was a lack of correlation between the RGB composite score and HILD pharmacodynamic measures (r values 0.1, p > 0.05). These findings suggest that skin color may not impact HILD response variations, necessitating further research to understand previously observed differences across identified racial groups.

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肤色和肤色对组胺离子透入法和多普勒血流测量法作为药效生物标记的影响
儿童哮喘的表型表现多种多样,对治疗干预的反应也各不相同。有必要开发客观的生物标记物,以改善与哮喘相关的过敏和炎症反应的特征,从而预测治疗反应。我们之前研究了组胺离子导入激光多普勒血流测量仪(HILD),将其作为一种潜在的替代生物标记物,用于描述组胺反应的特征,并可用于指导过敏性和炎症性疾病的治疗。我们发现哮喘儿童和成人的 HILD 反应类型在个体内部存在差异,而且 HILD 反应类型与种族分类有关。由于激光多普勒血流测量法可能会受到肤色的影响,我们旨在通过确定肤色或肤色是否与观察到的 HILD 反应类型差异有关来进一步验证 HILD 方法。我们进行了一项观察性研究,利用 RGB 颜色模型对 HILD 评估期间参与者的皮肤照片中获得的肤色和色调进行量化。我们通过 Kruskal-Wallis 检验比较了不同种族、民族和 HILD 反应类型的 RGB 值,并计算了 Kendall 秩相关系数,以评估 RGB 综合评分与 HILD 药效学测量之间的关系。我们观察到,RGB 分数在不同种族群体和组胺反应表型之间存在差异(P 0.05)。这些研究结果表明,肤色可能不会影响 HILD 反应的变化,因此有必要开展进一步研究,以了解之前观察到的不同种族群体之间的差异。
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来源期刊
Cts-Clinical and Translational Science
Cts-Clinical and Translational Science 医学-医学:研究与实验
CiteScore
6.70
自引率
2.60%
发文量
234
审稿时长
6-12 weeks
期刊介绍: Clinical and Translational Science (CTS), an official journal of the American Society for Clinical Pharmacology and Therapeutics, highlights original translational medicine research that helps bridge laboratory discoveries with the diagnosis and treatment of human disease. Translational medicine is a multi-faceted discipline with a focus on translational therapeutics. In a broad sense, translational medicine bridges across the discovery, development, regulation, and utilization spectrum. Research may appear as Full Articles, Brief Reports, Commentaries, Phase Forwards (clinical trials), Reviews, or Tutorials. CTS also includes invited didactic content that covers the connections between clinical pharmacology and translational medicine. Best-in-class methodologies and best practices are also welcomed as Tutorials. These additional features provide context for research articles and facilitate understanding for a wide array of individuals interested in clinical and translational science. CTS welcomes high quality, scientifically sound, original manuscripts focused on clinical pharmacology and translational science, including animal, in vitro, in silico, and clinical studies supporting the breadth of drug discovery, development, regulation and clinical use of both traditional drugs and innovative modalities.
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