Mechanistic evaluation of alginate-HEC gelisphere compacts for controlled intrastriatal nicotine release in Parkinson's disease

J Pharm Sci. 2009 Jun;98(6):2059-72. doi: 10.1002/jps.21590.

Abstract

This study focused on elucidating a mechanistic understanding in support of the multiple mechanisms which govern the formation of crosslinked alginate-hydroxyethylcellulose (Alg-HEC) gelispheres intended for the controlled intrastriatal release of nicotine as a neuroprotectant in Parkinson's Disease. HEC was incorporated as a reinforcing "protective" colloidal polymer to induce interactions between the free carboxyl groups of alginate with hydroxylated HEC monomers. Gelispheres were compressed within an external poly(lactic-co-glycolic acid) (PLGA) matrix to further prolong the release of nicotine. Sol-gel interconversion mechanisms, matrix deformability moduli, matrix fracture energies and chemometric models of the associated energy paradigms were analyzed for their influence on the mechanism and extent of nicotine release. Textural profiling demonstrated higher fracture energies (7.94-26.69 x 10(-4) J) and lower deformability moduli (12.24-58.36 N/mm) when gelispheres were cured in 2 M HCl as a postcuring step. Ba(2+) crosslinked gelispheres resulted in superiorly compact matrices with an increase in volume of 201-329% as compared to the Ca(2+) and Zn(2+) crosslinked matrices. The order of matrix compactness was as follows: Zn(2+) < Ca(2+) < Ba(2+). Molecular mechanisms of formation, interaction, conversion, and stability of sol-gel transitions depended on the type of crosslinker, crosslinking time, energy transactions, and interactions with molecules of the hydration medium. Ba(2+) crosslinked gelispheres released nicotine slower than Ca(2+) and Zn(2+) crosslinked gelispheres due to the higher energy requirement for interconversion to sol while the energy requirements for Ca(2+) and Zn(2+) was at a lower demand. Ba(2+) crosslinked gelispheres within PLGA matrices therefore retarded nicotine release in a pseudo-zero-order manner over 21 days.

MeSH terms

  • Alginates / chemical synthesis
  • Alginates / chemistry*
  • Cellulose / analogs & derivatives*
  • Cellulose / chemical synthesis
  • Cellulose / chemistry
  • Cross-Linking Reagents / chemical synthesis
  • Cross-Linking Reagents / chemistry*
  • Drug Delivery Systems / methods*
  • Elasticity
  • Gels / chemical synthesis
  • Gels / chemistry
  • Glucuronic Acid / chemical synthesis
  • Glucuronic Acid / chemistry
  • Hexuronic Acids / chemical synthesis
  • Hexuronic Acids / chemistry
  • Humans
  • Neuroprotective Agents / administration & dosage*
  • Neuroprotective Agents / metabolism
  • Nicotine / administration & dosage*
  • Nicotine / metabolism
  • Parkinson Disease / drug therapy*
  • Phase Transition
  • Surface Properties
  • Time Factors
  • Water / chemistry

Substances

  • Alginates
  • Cross-Linking Reagents
  • Gels
  • Hexuronic Acids
  • Neuroprotective Agents
  • Water
  • Nicotine
  • Glucuronic Acid
  • Cellulose
  • hydroxyethylcellulose