An Ion Pairing Approach to Enhance Oral Bioavailability of Alendronate
Basma N. AbdEl-Hamid, Ghareb M. Soliman, Mohamed A. Attia, Giovanni M. Pauletti
Journal of Scientific Research and Reports · pp. 344–351 · Published 27 Dec 2014
10.9734/JSRR/2015/13975Abstract
Aim: Alendronate (AL) is a nitrogen-containing bisphosphonate drug that exhibits limited oral bioavailability due to predominantly hydrophilic molecular properties. To enhance oral absorption of this important osteoporosis drug, a novel ion-pairing strategy using the cationic polymer polyethylenimine (PEI) was explored as an initial step of an alternate oral drug delivery strategy that attempts to prepare polymer-encapsulated ion pair nanoparticles. Methodology: Electrostatically stabilized AL/PEI association complexes were fabricated by combining AL and PEI solutions prepared in 0.05 M acetate buffer, pH 5.0, at different AL/PEI charge ratios under stirring. The free fraction of AL after complexation with PEI was quantified spectrophotometrically at λ=300 nm using ferric chloride. Particle size distribution and zeta potential of ion pairs formed at different molar AL/PEI ratios were measured by dynamic laser light scattering. Results: The complexation efficiency of PEI was low until an AL/PEI charge ratio of1:1.7. Increasing PEI concentrations effectively decreased the free fraction of AL implying formation of stable ion pairs between the negatively charged AL and the positively charged polymer. The lowest fraction of free AL was 18.7% measured at an AL/PEI charge ratio of 1:33. The mean hydrodynamic diameter of nanoassemblies decreased with increasing AL/PEI charge ratio reaching a limiting value of 71±1.4 nm at AL/PEI=1:33. Corresponding zeta potential measured for these association complexes was +37±2.8 mV. Conclusion: AL/PEI charge ratio greater than 1:1.7 facilitates effective formation of electrostatically stabilized ion pairs that carry a significant positive surface charge indicative of substantial colloidal stability in aqueous solution. The small size of AL/PEI complexes fabricated at 1:33 favors these ion pairs for subsequent encapsulation into biocompatible polymers suitable for oral drug delivery.
Cited by 4
Basma N. Abd El-Hamid, Nitin K. Swarnakar, Ghareb M. Soliman · International Journal of Pharmaceutics · 2018
Heba A. Gad, Rania A.H. Ishak, Rola M. Labib · International Journal of Pharmaceutics · 2023
Marwa Hasanein Asfour, Ahmed Alaa Kassem, Abeer Salama · International Journal of Pharmaceutics · 2020
Abu Hajleh Maha, Al-Dujaili Emad A.S, Faculty of Pharmacy, The University of Jordan, Amman, Jordan, Post code: Jordan – 11942. · INDIAN DRUGS · 2020
Related research
- Biochemical Analysis and Characterization of Silver Nanoparticles Synthesized by the Endophytic Fungus Plectosphaerella oligotrophica S8A26 Associated with Anaphalis contorta — shares topic coverage
- Influence of Compounds Contents and Particle Size on Some Functional Properties of Moringa oleifera Leaves (Lam) Powders — shares topic coverage
- Effect of Distributor Plate Configuration on Pressure Drop in a Bubbling Fluidized Bed Reactor — shares topic coverage
- The Influence of Particle Size and Soaking Time on Surface Hardness of Carburized AISI 1018 Steel — shares topic coverage
- Effects of Sodium Metabisulphite and Blanching Pretreatments on the Quality Characteristics of Yam Bean (Pachyrhizus erosus) Flour — shares topic coverage
Article metrics
Real usage data collected on this platform.
0
Page views
0
PDF downloads
0
Outbound clicks
4
Citations
Views by country
Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".
No views recorded yet.
Traffic sources
Referring site, by host.
No traffic recorded yet.
Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.