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1.
Journal of Paramedical Sciences. 2016; 7 (2): 23-28
in English | IMEMR | ID: emr-186139

ABSTRACT

One of the most important parameters describing the liposomal formulation of hydroquinone is encapsulation efficacy. For the efficacy evaluation of hydroquinone trapped in liposomal structure, there is a need to first separate liposome from the matrix surrounding it


There are various separation techniques; however, in this study, the three techniques of centrifuges with and without washing and dialysis were used


From among the laboratory techniques, an appropriate method is the one that offers responses with a high repeatability


The statistical calculations revealed that encapsulation efficacy with a direct method resulted from a separation via the techniques of dialysis and centrifuge without washing had the highest dispersion with SDs of 6.1 and 8.7, respectively, while the SD value in the technique of centrifuge with washing was 5.2. Through an indirect method, hydroquinone encapsulation efficacy showed the best repeatability with SD values of 2.8 and 2.1 by using the two techniques of centrifuge and centrifuge filtration, respectively


It seems that the treatments leading to the dilution of hydroquinone formulation would result in hydroquinone leakage and a reduction of encapsulation efficacy


It seems that measurement of hydroquinone encapsulation efficacy with an indirect method is a better choice; therefore, a centrifuge technique was utilized to report the mentioned efficacy at a speed of 45000 rcf and duration of 30 min due to having a reasonable price and ease of access?

2.
IJPR-Iranian Journal of Pharmaceutical Research. 2015; 14 (2): 473-478
in English | IMEMR | ID: emr-167952

ABSTRACT

The method has been developed and validated for the determination of hydroquinone in liposomal formulation. The samples were dissolved in methanol and evaluated in 293 nm. The validation parameters such as linearity, accuracy, precision, specificity, limit of detection [LOD] and limit of quantitation [LOQ] were determined. The calibration curve was linear in 1-50 microg/mL range of hydroquinone analyte with a regression coefficient of 0.9998. This study showed that the liposomal hydroquinone composed of phospholipid [7.8%], cholesterol [1.5%], alpha ketopherol [0.17%] and hydroquinone [0.5%] did not absorb wavelength of 293 nm if it diluted 500 times by methanol. The concentration of hydroquinone reached 10 microg/mL after 500 times of dilution. Furthermore, various validation parameters as per ICH Q2B guideline were tested and found accordingly. The recovery percentages of liposomal hydroquinone were found 102 +/- 0.8, 99 +/- 0.2 and 98 +/- 0.4 for 80%, 100% and 120% respectively. The relative standard deviation values of inter and intra-day precisions were <%2. LOD and LOQ were 0.24 and 0.72 microg/mL respectively


Subject(s)
Liposomes , Spectrophotometry, Ultraviolet , Validation Studies as Topic
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