Polymer-based in-situ gelling nanoplatforms for buccal drug delivery: a comprehensive review of advances and challenges

The buccal route offers a promising alternative for local and systemic drug delivery by utilizing the oral mucosa’s high permeability to bypass first-pass metabolism and enhance bioavailability. However, rapid saliva clearance and continuous oral movements pose challenges to drug retention, often requiring frequent re-dosing. This review highlights the potential of nanocarrier-based in-situ gelling systems that utilize both natural (e.g., gellan gum, chitosan) and synthetic (e.g., poloxamers, PLGA) polymers to enhance mucoadhesion and gel formation. Nanocarriers like polymeric nanoparticles, liposomes, and micelles enhance drug solubility, stability, and targeting. Promising preclinical and clinical results indicate their effectiveness in treating oral diseases and delivering systemic therapies, though challenges in formulation stability, manufacturing, regulatory approval, and clinical validation remain. Addressing these hurdles is essential to fully realize the potential of these systems, making nanocarrier-mediated in-situ gels a versatile approach to improving bioavailability and patient compliance.

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Publication Details

Journal
International Journal of Polymeric Materials
Published
2026-09-18
DOI
https://doi.org/10.1080/00914037.2026.2730253
Primary Topic
Advanced Drug Delivery Systems
Type
article
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article

Polymer-based in-situ gelling nanoplatforms for buccal drug delivery: a comprehensive review of advances and challenges

Shiv Kumar, Nitasha Chauhan, Shruti Chopra, Amit Bhatia
International Journal of Polymeric Materials
Advanced Drug Delivery Systems
article

Polymer-based in-situ gelling nanoplatforms for buccal drug delivery: a comprehensive review of advances and challenges

Shiv Kumar, Nitasha Chauhan, Shruti Chopra, Amit Bhatia
article en

Abstract

The buccal route offers a promising alternative for local and systemic drug delivery by utilizing the oral mucosa’s high permeability to bypass first-pass metabolism and enhance bioavailability. However, rapid saliva clearance and continuous oral movements pose challenges to drug retention, often requiring frequent re-dosing. This review highlights the potential of nanocarrier-based in-situ gelling systems that utilize both natural (e.g., gellan gum, chitosan) and synthetic (e.g., poloxamers, PLGA) polymers to enhance mucoadhesion and gel formation. Nanocarriers like polymeric nanoparticles, liposomes, and micelles enhance drug solubility, stability, and targeting. Promising preclinical and clinical results indicate their effectiveness in treating oral diseases and delivering systemic therapies, though challenges in formulation stability, manufacturing, regulatory approval, and clinical validation remain. Addressing these hurdles is essential to fully realize the potential of these systems, making nanocarrier-mediated in-situ gels a versatile approach to improving bioavailability and patient compliance.

International Journal of Polymeric Materials
Maharaja Ranjit Singh Punjab Technical University (IN)
Good health and well-being
Openalex Percentile: Top 12%
Advanced Drug Delivery Systems
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Polymer-based in-situ gelling nanoplatforms for buccal drug delivery: a comprehensive review of advances and challenges — Shiv Kumar, Nitasha Chauhan, et al. · International Journal of Polymeric Materials (2026) | TGRS Research Map | TGRS