Original ArtcileJournal of Young PharmacistsVol. 17 | Issue 4 | 2025 | pp. 864–876Open access
Quality-by-Design Optimization of Biotin-Coated Tetronic® 1107 Polymersomes for Carboplatin Delivery in Non-Small Cell Lung Cancer
- 1,
- 1*,
- 2
- 1 Department of Pharmaceutics, PSG College of Pharmacy (Affiliated to The Tamil Nadu Dr. MGR Medical University, Chennai), Coimbatore, Tamil Nadu, INDIA.
- 2 Department of Pharmaceutical Analysis, PSG College of Pharmacy (Affiliated to The Tamil Nadu Dr. MGR Medical University, Chennai), Coimbatore, Tamil Nadu, INDIA.
Published in Journal of Young Pharmacists
Correspondence: Sankar Veintramuthu
Department of Pharmaceutics, PSG College of Pharmacy (Affiliated to The Tamil Nadu Dr. MGR Medical University, Chennai), Coimbatore, Tamil Nadu, INDIA.
Email: sansunv@yahoo.co.in
Copyright: © 2025 Manuscript Technomedia. This is an open access article.
- Published:
- Nov 8, 2025
- Received:
- May 9, 2025
- Accepted:
- Sep 15, 2025
- DOI:
- 10.5530/jyp.20250096
How to cite
Muniswamy, N., Veintramuthu, S., & Sellappan, M. (2025). Quality-by-Design Optimization of Biotin-Coated Tetronic® 1107 Polymersomes for Carboplatin Delivery in Non-Small Cell Lung Cancer. Journal of Young Pharmacists, 17(4), 864–876. https://doi.org/10.5530/jyp.20250096
Abstract
Background: For driver-negative Non-Small Cell Lung Cancer (NSCLC), platinum-based chemotherapy remains standard; however, carboplatin efficacy is limited by poor tumour delivery and dose-limiting toxicity. In this study, we developed biotin-functionalised polymersomes encapsulating carboplatin to enhance carrier stability and enable selective tumour delivery via sodium-dependent multivitamin transporter uptake. Materials and Methods: A Box-Behnken design optimised Tetronic® 1107 polymersomes by modelling polymer concentration, temperature, and stirring time against particle size, zeta potential, and entrapment efficiency. The optimised formulation was characterised by dynamic light scattering (particle size distribution); atomic force and scanning electron microscopy (morphology); Fourier-transform infrared spectroscopy (interactions); differential scanning calorimetry (thermal behaviour); and powder X-ray diffraction (crystallinity). It was further evaluated for pH-dependent release and cytotoxicity in biotin-overexpressing A549 cells. Results: Box-Behnken optimisation yielded SMVT-targeted, biotin-functionalised Tetronic® 1107 polymersomes (PS = 246 nm; ZP = –26 mV; EE = 85%). FTIR, DSC, and XRD showed a preserved PEO/PPO matrix with amorphous carboplatin. AFM and SEM revealed a corrugated, biotin-rich corona. Release was sustained and pH-responsive, fitting the Weibull model (R²=0.93-0.97). In A549 cells, biotin-coated vesicles reduced the IC₅₀ 1.73-fold relative to free carboplatin (p < 0.05). Conclusion: Biotin-functionalised polymersomes improved carboplatin loading, stability, and tumour-targeted cytotoxicity, supporting their evaluation in vivo for NSCLC therapy.
Keywords
Subject
Article metadata
| Title | Quality-by-Design Optimization of Biotin-Coated Tetronic® 1107 Polymersomes for Carboplatin Delivery in Non-Small Cell Lung Cancer |
|---|---|
| Authors | Nithyananth Muniswamy; Sankar Veintramuthu; Malathi Sellappan |
| Affiliations | Department of Pharmaceutics, PSG College of Pharmacy (Affiliated to The Tamil Nadu Dr. MGR Medical University, Chennai), Coimbatore, Tamil Nadu, INDIA.; Department of Pharmaceutical Analysis, PSG College of Pharmacy (Affiliated to The Tamil Nadu Dr. MGR Medical University, Chennai), Coimbatore, Tamil Nadu, INDIA. |
| Corresponding author | sansunv@yahoo.co.in |
| Journal | Journal of Young Pharmacists |
| Volume / Issue | Vol. 17, Issue 4 (2025) |
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