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Simultaneous Quantification of Dexpanthenol and Resorcinol from Hair Care Formulation Using Liquid Chromatography: Method Development and Validation

The current study presents the simultaneous quantification of dexpanthenol and resorcinol from marketed hair care formulation. Dexpanthenol is often present as an active ingredient in personal care products for its beautifying and invigorating properties and restorative and smoothing properties. On...

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Detalles Bibliográficos
Autores principales: De, Amit Kumar, Chowdhury, Partha Pratim, Chattapadhyay, Shyamaprasad
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4794562/
https://www.ncbi.nlm.nih.gov/pubmed/27042377
http://dx.doi.org/10.1155/2016/1537952
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author De, Amit Kumar
Chowdhury, Partha Pratim
Chattapadhyay, Shyamaprasad
author_facet De, Amit Kumar
Chowdhury, Partha Pratim
Chattapadhyay, Shyamaprasad
author_sort De, Amit Kumar
collection PubMed
description The current study presents the simultaneous quantification of dexpanthenol and resorcinol from marketed hair care formulation. Dexpanthenol is often present as an active ingredient in personal care products for its beautifying and invigorating properties and restorative and smoothing properties. On the other hand resorcinol is mainly prescribed for the treatment of seborrheic dermatitis of scalp. The toxic side effects of resorcinol limit its use in dermatological preparations. Therefore an accurate quantification technique for the simultaneous estimation of these two components can be helpful for the formulation industries for the accurate analysis of their product quality. In the current study a high performance liquid chromatographic technique has been developed using a C18 column and a mobile phase consisting of phosphate buffer of pH = 2.8 following a gradient elution. The mobile phase flow rate was 0.6 mL per minute and the detection wavelength was 210 nm for dexpanthenol and 280 nm for resorcinol. The linearity study was carried out using five solutions having concentrations ranging between 10.34 μg·mL(−1) and 82.69 μg·mL(−1) (r (2) = 0.999) for resorcinol and 10.44 μg·mL(−1) and 83.50 μg·mL(−1) (r (2) = 0.998) for dexpanthenol. The method has been validated as per ICH Q2(R1) guidelines. The ease of single step sample preparation, accuracy, and precision (intraday and interday) study presents the method suitable for the simultaneous quantification of dexpanthenol and resorcinol from any personal care product and dermatological preparations containing these two ingredients.
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spelling pubmed-47945622016-04-03 Simultaneous Quantification of Dexpanthenol and Resorcinol from Hair Care Formulation Using Liquid Chromatography: Method Development and Validation De, Amit Kumar Chowdhury, Partha Pratim Chattapadhyay, Shyamaprasad Scientifica (Cairo) Research Article The current study presents the simultaneous quantification of dexpanthenol and resorcinol from marketed hair care formulation. Dexpanthenol is often present as an active ingredient in personal care products for its beautifying and invigorating properties and restorative and smoothing properties. On the other hand resorcinol is mainly prescribed for the treatment of seborrheic dermatitis of scalp. The toxic side effects of resorcinol limit its use in dermatological preparations. Therefore an accurate quantification technique for the simultaneous estimation of these two components can be helpful for the formulation industries for the accurate analysis of their product quality. In the current study a high performance liquid chromatographic technique has been developed using a C18 column and a mobile phase consisting of phosphate buffer of pH = 2.8 following a gradient elution. The mobile phase flow rate was 0.6 mL per minute and the detection wavelength was 210 nm for dexpanthenol and 280 nm for resorcinol. The linearity study was carried out using five solutions having concentrations ranging between 10.34 μg·mL(−1) and 82.69 μg·mL(−1) (r (2) = 0.999) for resorcinol and 10.44 μg·mL(−1) and 83.50 μg·mL(−1) (r (2) = 0.998) for dexpanthenol. The method has been validated as per ICH Q2(R1) guidelines. The ease of single step sample preparation, accuracy, and precision (intraday and interday) study presents the method suitable for the simultaneous quantification of dexpanthenol and resorcinol from any personal care product and dermatological preparations containing these two ingredients. Hindawi Publishing Corporation 2016 2016-03-03 /pmc/articles/PMC4794562/ /pubmed/27042377 http://dx.doi.org/10.1155/2016/1537952 Text en Copyright © 2016 Amit Kumar De et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
De, Amit Kumar
Chowdhury, Partha Pratim
Chattapadhyay, Shyamaprasad
Simultaneous Quantification of Dexpanthenol and Resorcinol from Hair Care Formulation Using Liquid Chromatography: Method Development and Validation
title Simultaneous Quantification of Dexpanthenol and Resorcinol from Hair Care Formulation Using Liquid Chromatography: Method Development and Validation
title_full Simultaneous Quantification of Dexpanthenol and Resorcinol from Hair Care Formulation Using Liquid Chromatography: Method Development and Validation
title_fullStr Simultaneous Quantification of Dexpanthenol and Resorcinol from Hair Care Formulation Using Liquid Chromatography: Method Development and Validation
title_full_unstemmed Simultaneous Quantification of Dexpanthenol and Resorcinol from Hair Care Formulation Using Liquid Chromatography: Method Development and Validation
title_short Simultaneous Quantification of Dexpanthenol and Resorcinol from Hair Care Formulation Using Liquid Chromatography: Method Development and Validation
title_sort simultaneous quantification of dexpanthenol and resorcinol from hair care formulation using liquid chromatography: method development and validation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4794562/
https://www.ncbi.nlm.nih.gov/pubmed/27042377
http://dx.doi.org/10.1155/2016/1537952
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AT chattapadhyayshyamaprasad simultaneousquantificationofdexpanthenolandresorcinolfromhaircareformulationusingliquidchromatographymethoddevelopmentandvalidation