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QbD- a novel approach for design, optimization and evaluation of Linagliptin mucoadhesive microspheres

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  • QbD- a Novel Approach For Design, Optimization and Evaluation of Linagliptin Mucoadhesive Microspheres
  • QbD- a novel approach for design, optimization and evaluation of Linagliptin mucoadhesive microspheres

G. Ragini, Bhumika.C and Y. Anand Kumar *

Department of Pharmaceutics, V. L. College of Pharmacy, Raichur, Karnataka, India.
 
Research Article
GSC Advanced Research and Reviews, 2025, 25(01), 051-066.
Article DOI: 10.30574/gscarr.2025.25.1.0300
DOI url: https://doi.org/10.30574/gscarr.2025.25.1.0300
Received on 25 August 2025; revised on 05 October 2025; accepted on 07 October 2025
 
The quality by design (QbD) approach was applied for optimizing the formulation of model antidiabetic drug Linagliptin (LIN) mucoadhesive microspheres (MS) through design of experiment (DoE). To Optimize LIN-MS a quality target product profile (QTPP) was established in which critical quality attributes (CQAs) such as MVD, % encapsulation efficiency (% EE) and t50 drug release were quantified. As critical material attributes (CMA) viz., Keltone (KE), Carbopol (CA) and Pectin (PC) were chosen and evaluated their effect on CQAs. Response surface design (RSM) viz., Central Composite Design (CCD) was studied to evaluate effects of CMA on stated CQAs within the design space. The main effect was observed with varied levels of KE, CA and PC on CQAs. Numerical optimization by point prediction method was applied to generate optimized formula with predicted response, later the experimental responses were validated and ratified within the design space. The results suggest QbD through DoE appears to be a useful approach for the rational design, optimization and characterization of LIN-MS.
Linagliptin; QbD; QTPP; CQAs; CMA; DoE
https://gscarr.gsconlinepress.com/sites/default/files/fulltext_pdf/GSCARR-2025-…

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G. Ragini, Bhumika.C and Y. Anand Kumar. QbD- a novel approach for design, optimization and evaluation of Linagliptin mucoadhesive microspheres. GSC Advanced Research and Reviews, 2025, 25(1), 051-066. Article DOI: https://doi.org/10.30574/gscarr.2025.25.1.0300

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