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Employment of Quality by Design Approach via Response Surface Methodology to Optimize and Develop Modified-release Formulation of Hydrochlorothiazide.

作者信息

Singhai Vikas D, Maheshwari Rahul, Sharma Swapnil, Paliwal Sarvesh

机构信息

Department of Pharmacy, Banasthali Vidyapith, Banasthali-304022, Rajasthan, India.

School of Pharmacy and Technology Management, SVKM's NMIMS, Hyderabad, Telangana-509301, India.

出版信息

Curr Comput Aided Drug Des. 2021;17(2):266-280. doi: 10.2174/1573409916666200226114517.

DOI:10.2174/1573409916666200226114517
PMID:32101133
Abstract

BACKGROUND

Heart attack predominantly occurs during the last phase of sleep and early morning hours, causing millions of death worldwide. Hydrochlorothiazide (HCTZ) is a recommended drug for the prevention of heart disease, but its long action (>4 h) dosage form is lacking in the commercial market and development of modified-release formulation may have industrial significance. Regulatory agencies emphasize Quality by Design based approach for product development to entrust quality in the product.

OBJECTIVE

The current research aimed to develop a quality product profile of HCTZ modifiedrelease tablets (MRT; ~14 h) by applying Response Surface Methodology using the computational QbD approach.

METHODS

Three independent factors were identified by qualitative and quantitative risk assessment. Statistical terms like p-value, lack of fit, the sum of square, R-squared value, model F value, and linear equations were determined. Graphical tools like normal plot of residual, residual vs predicted plot and box cox plot were used to verify the model selection. The graphical relationship among the critical, independent variables was represented using the Contour plot and 3-D surface plot. Design space was identified by designing an overlay plot using response surface design.

RESULTS

Excellent correlation was observed between actual and predicted values. Similarity Factor (F2) of reproducible trials was 78 and 79, and content uniformity was 100.9% and 100.4%. Average weight, hardness, thickness, diameter, and friability were within acceptable limits.

CONCLUSION

QbD approach, along with a quality risk management tool, provided an efficient and effective paradigm to build quality MRT of HCTZ.

摘要

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