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1.
Drug Dev Ind Pharm ; 45(8): 1332-1341, 2019 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-31116617

RESUMEN

The present study is aimed at the development of a sunscreen cream for use in high altitude areas which have been found to possess superior sun protection factor (SPF) along with remarkable antioxidant activity. The topical formulation is a standard oil-in-water emulsion of a combination of United States Food and Drug Administration (US FDA) approved ultraviolet filters; along with melatonin and pumpkin seed oil. The in-silico optimized formulation was characterized using established methods and the stability study was carried out as per International Conference on Harmonization guidelines. The formulation was prepared after requisite pre-formulation analysis by Fourier-transform infrared spectroscopy, differential scanning calorimetric and thermogravimetric analyses; followed by characterization based on color, odor, phase separation, spreadability, specific gravity, homogeneicity, centrifugation and sensitivity. For the stability study, a total of three samples from three batches of the finished product were subjected to the stability study. The samples were analyzed for content uniformity, pH, in vitro SPF, rheology, zeta potential, droplet diameter and microbial analysis of the 0th day and also the the end of the storage period. Results obtained from the stability study indicated that the formulation possesses 50+ in vitro SPF value and remained stable for 6 months and 12 months under storage at 40 ± 2 °C and 75 ± 5% relative humidity; and -20 °C ± 5 °C respectively.


Asunto(s)
Protectores Solares/química , Altitud , Química Farmacéutica/métodos , Piel/efectos de los fármacos , Factor de Protección Solar/métodos , Rayos Ultravioleta/efectos adversos
2.
Pharmacogn Mag ; 13(Suppl 3): S412-S416, 2017 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-29142392

RESUMEN

CONTEXT: Benzyl isothiocyanate is the active antimicrobial agent in Salvadora persica (siwak) widely used in Islamic countries for oral hygiene. AIMS: Quantification of benzyl isothiocyanate in the ethanol extract of S. persica and some dental care herbal formulations labeled to contain siwak. SETTINGS AND DESIGN: Simple and sensitive high-performance liquid chromatography method was designed. SUBJECTS AND METHODS: Separation was achieved on reverse phase C18 (250 mm × 4.6 mm, 5 µ) column with a mobile phase comprising acetonitrile and water (1:1). The detection was carried out at 190 nm using ultra violet-visible detector. The flow rate was kept at 1 mL/min. RESULTS: A sharp and well-defined peak was obtained at the retention time of 9.322 ± 0.3 min. Linear regression analysis data for the calibration plot showed a good linear relationship between response and concentration in the range of 0.5-500 µg/mL with a regression coefficient (r2) of 0.9977. The method was validated for accuracy, precision, robustness, and sensitivity. All the parameters examined met the current recommendations for the International Conference on Harmonization guidelines for method validation. CONCLUSIONS: The method was applied for the quantification of benzyl isothiocyanate in siwak extract, dental care powder, mouth wash, and toothpaste claimed to contain siwak. The developed method was found specific, simple, selective, and reliable for routine use in quality control analysis of different commercially available herbal care products. SUMMARY: A simple, accurate and precise method was developed for the analysis of the antimicrobial agent benzyl isothiocyanate in Salvadora persica (Siwak) extract and selected dental care herbal formulations using RP18 HPLCAmount of benzyl isothiocyanate will indicate the efficacy of Siwak productsThe method subject to ICH validation guidelines. Abbreviations used: RP18: Reversed phase C18, HPLC: High performance liquid chromatography, UV: Ultra violet, r2: regression coefficient, ICH: international conference on harmonization, TLC: Thin layer chromatography, CHCl3: Chloroform, v/v: volume/volume, RSD: Relative standard deviation, LOD: Limit of detection, LOQ: Limit of quantification.

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