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April 12, 2026Polymers0 citationsOpen Access

Sustained Delivery of Paliperidone Palmitate via Encapsulation in Bio-Based NIPU Nanoparticles

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MNMaria Angeliki NtrivalaEBEvangelia BallaECErmis P. Christodoulou

Key Points

  • This research aims to develop a bio-based nanoparticle system for the sustained delivery of paliperidone palmitate in schizophrenia treatment.
  • Encapsulated paliperidone palmitate in non-isocyanate polyurethane (NIPU) nanoparticles.
  • Synthesized NIPU via an isocyanate-free polyaddition method.
  • Characterized formulations using FTIR, DSC, XRD, DLS, and SEM analyses.
  • Conducted in vitro dissolution studies to assess drug release profiles.
  • Formulations exhibited controlled particle size and increased drug-loading capacities.
  • NIPU nanoparticles demonstrated structural stability and biodegradability.
  • In vitro tests indicated a burst release followed by sustained drug release over time.

Abstract

In this study, Paliperidone Palmitate (PP), a second-generation antipsychotic, commonly used for the treatment of schizophrenia, was encapsulated in bio-based non-isocyanate polyurethane (NIPU) nanoemulsions. NIPU was synthesized via an isocyanate-free polyaddition route, addressing safety and environmental concerns associated with conventional polyurethanes. The drug-loaded nanoparticles were produced utilizing oil-in-water (O/W) emulsions followed by solvent evaporation and lyophilization. NIPU concentrations of 0.3% and 0.5% w/v, as well as 0.5% w/v PVA were employed, while PP was incorporated at 0.2%, 0.5% and 1% w/v. The formulations were characterized by FTIR, DSC and XRD analyses, and the mechanical strength of neat sponges was evaluated. The nanoparticle formation and size were assessed by DLS and SEM analyses. The water contact angle, porosity measurements and aquatic and enzymatic hydrolysis were additionally performed. The resulting nanocarriers exhibited controlled particle size, increased drug-loading values, structural stability and biodegradability. Lastly, the in vitro dissolution studies revealed a system-specific burst release behavior, and a controlled and sustained overall drug-release profile for majority of the formulations, thereby indicating the potential of NIPU nanocarriers for drug delivery applications, particularly where sustained therapeutic effects are required.

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Cite This Study

Ntrivala et al. (2026) studied this question.

synapsesocial.com/papers/69db37044fe01fead37c4fd6https://doi.org/10.3390/polym18080920
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