Aug 2026· International journal of pharmaceutics· pp.
127291
· 0 citations· 48 references
Medicine
TL;DR
The combination of DOTAP-mediated hydrophobic ion pairing and microfluidic-assisted SLN production represents a potentially promising strategy for improving semaglutide encapsulation, gastrointestinal stability, and epithelial transport, while maintaining a favorable balance between mucus interaction and mucodiffusion.
Abstract
Semaglutide is a glucagon-like peptide-1 receptor agonist widely used for the treatment of type 2 diabetes and obesity. Despite its clinical efficacy, oral administration remains challenging because of its limited gastrointestinal stability, poor epithelial permeability, and low affinity for lipid-based delivery systems. In the present study, a combined hydrophobic ion pairing (HIP) and solid lipid nanoparticle (SLN) approach was explored to improve semaglutide incorporation and delivery-related properties. Semaglutide was complexed with the cationic lipid DOTAP at different molar ratios (1:0-1:18) and subsequently incorporated into cetyl palmitate-based SLNs produced by microfluidic mixing using a herringbone device. The resulting formulations were characterized in terms of particle size, ζ-potential, encapsulation efficiency, morphology, solid-state organization, colloidal stability, release behavior, mucus interaction, cytocompatibility, and epithelial permeability. Among the various formulations prepared, the one prepared with a molar ratio semaglutide: DOTAP of 1:18 and a peptide concentration of 10% (w/w) (F10) showed the best results, combining particle sizes of less than 300 nm with almost complete encapsulation efficiency and a highly positive ζ-potential. FTIR, DSC, TGA and SAXS analyses confirmed the correct formation of the complex and its incorporation into the lipid matrix. The F10 formulation demonstrated good stability under simulated gastrointestinal conditions and a sustained-release profile. The formulation also exhibited strong interactions with mucus, whilst retaining the ability to diffuse through the mucin network. Cytocompatibility studies demonstrated acceptable cell viability at relevant concentrations, whilst permeability experiments through Caco-2 monolayers revealed an approximately 6-fold increase in apparent permeability compared to free semaglutide. Therefore, these findings indicate that the combination of DOTAP-mediated hydrophobic ion pairing and microfluidic-assisted SLN production represents a potentially promising strategy for improving semaglutide encapsulation, gastrointestinal stability, and epithelial transport, while maintaining a favorable balance between mucus interaction and mucodiffusion.
The microfluidic approach enabled the production of nanoparticles with controlled sizes below 200 nm, narrow size distributions, and good reproducibility that support further investigation of microfluidic-produced lipid and hybrid nanoparticles as candidate platforms for pulmonary drug delivery.
P. Palermo, D. D. De Angelis, Elisa Sgarbi et al.· Pharmaceutics· 0 citations
Lipoplexes, formed by electrostatic interactions between nucleic acids and cationic lipids, must protect their cargo, enable cellular uptake and promote intracellular release for non-viral gene delivery. Although traditionally produced by bulk complexation, scalable microfluidic methods are now available. However, how...
M. Rochedy, Laurie Dechamboux, A. Dupont et al.· Journal of materials chemist...· 0 citations
Development of structured lipid-based delivery systems is driven by the fact that the distribution of lipophilic bioactives is often limited by low gastrointestinal bioaccessibility, chemical instability and poor water solubility. Nanostructured lipid carriers (NLCs) are a versatile nanoscale platform and their incorpo...
Behnaz Hashemi, E. Assadpour, Chen Tan et al.· Advances in Colloid and Inte...· 0 citations
Lapatinib (LPT), a brick-dust kinase inhibitor, shows slow oral bioavailability and dose-limiting gastrointestinal side effects that frequently lead to therapeutic discontinuation. Increasing oral bioavailability does not mitigate these adverse effects, and developing complex LPT delivery systems is challenging due to...
Nidhi Singh, Satyajit Halder, Alok Kumar et al.· Colloids and Surfaces B: Bio...· 0 citations
Background/Objectives: Targeted pulmonary delivery of antibiotics offers a favorable approach for the treatment of lower respiratory tract infections (LRTIs) by enhancing local drug concentrations while minimizing systemic exposure. This study aimed to develop and characterize fatty acid-based nanostructured lipid carr...
Katarzyna Reczyńska-Kolman, Jan Grabiński, Konrad Kwiecień et al.· Pharmaceutics· 0 citations
GMS-based NLCs exhibit substantial potential to enhance the bioavailability, stability, and controlled-release properties of lipophilic compounds for pharmaceutical and cosmeceutical applications.
Ahmad Ainurofiq, Fita Sari Nur Azizah, Nadia Herawardhani et al.· Asia-Pacific Journal of Scie...· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.