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1.
Ther Drug Monit ; 42(6): 902-908, 2020 12.
Artigo em Inglês | MEDLINE | ID: mdl-33186335

RESUMO

BACKGROUND: As a marker of cumulative cortisol activity, hair cortisol has received attention in clinical and methodological research. Currently, it is a common practice to relate the hair cortisol concentration (HCC) to hair weight. This article explores the hair protein concentration (HPC) as another possible reference value for HCC. METHODS: For n = 18 hair samples cut from the posterior vertex, the HCC, HPC, and hair sample weight were determined, and the cortisol-to-weight and cortisol-to-protein ratios were calculated. Correlations were analyzed between the HCC, HPC, and hair sample weight as well as between the cortisol-to-weight and cortisol-to-protein ratios. Hair sample weight and HPC were included as independent variables in a stepwise linear regression model to predict HCC. RESULTS: The HCC and HPC did not correlate significantly (r = 0.393, P = 0.106); however, the correlation between HCC and hair sample weight was significant (r = 0.520, P = 0.027). The HPC and hair sample weight (r = 0.605, P = 0.008) as well as the cortisol-to-weight and cortisol-to-protein ratios (r = 0.858, P < 0.000) showed a high correlation. The hair sample weight was the better predictor of the HCC (ß = 0.520, P = 0.027) than HPC (ß = 0.125, P = 0.657). CONCLUSIONS: The results indicate that the hair sample weight is the more suitable reference value for the HCC. Thus, the standard cortisol-to-weight ratio should be used as the preferred expression for the cumulative cortisol activity measured in the scalp hair. However, calculating the cortisol-to-protein ratio can be considered as an alternative if the hair sample weight is not available.


Assuntos
Cabelo , Hidrocortisona , Biomarcadores , Cabelo/química , Humanos , Hidrocortisona/análise , Proteínas/análise , Valores de Referência , Estresse Psicológico
2.
Ther Drug Monit ; 2020 Jun 12.
Artigo em Inglês | MEDLINE | ID: mdl-32558675

RESUMO

BACKGROUND: As a marker of cumulative cortisol activity, hair cortisol has received attention in clinical and methodological research. Currently, it is common practice to relate hair cortisol concentration (HCC) to hair weight. The present paper explores hair protein concentration (HPC) as another possible reference value for HCC. METHODS: For n = 18 hair samples cut from the posterior vertex, the HCC, HPC, and hair sample weight were determined, and the cortisol-to-weight and cortisol-to-protein ratios were calculated. Correlations were analyzed between HCC, HPC, and hair sample weight as well as between the cortisol-to-weight and cortisol-to-protein ratios. Hair sample weight and HPC were included as independent variables in a stepwise linear regression model to predict HCC. RESULTS: HCC and HPC did not correlate significantly (r = .393, p = .106); however, the correlation between HCC and hair sample weight was significant (r = .520, p = .027). HPC and hair sample weight (r = .605, p = .008) as well as the cortisol-to-weight and cortisol-to-protein ratios (r = .858, p < .000) showed a high correlation. Hair sample weight was the better predictor of HCC (ß = .520, p = .027) than HPC (ß = .125, p = .657). CONCLUSIONS: The results indicate that hair sample weight is the more suitable reference value for HCC. Thus, the standard cortisol-to-weight ratio should be used as the preferred expression for cumulative cortisol activity measured in scalp hair. However, calculating the cortisol-to-protein ratio can be considered as an alternative if the hair sample weight is not available.

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