AI Article Synopsis

  • Novel macromolecular therapeutics like peptides and DNA are progressing towards clinical use but face challenges with low oral bioavailability, necessitating invasive delivery methods such as injections.
  • Researchers have developed a method to encapsulate model macromolecules in poly(D,L-lactide-co-glycolide) (PLG) microspheres of varying sizes, enabling better control of drug release rates.
  • The study found that the release profiles from these microspheres showed minimal initial bursts, with release rates increasing with the size of the microspheres, suggesting that these could be an effective system for delivering therapeutic proteins and DNA.

Article Abstract

Novel macromolecular therapeutics such as peptides, proteins, and DNA are advancing rapidly toward the clinic. Because of typically low oral bioavailability, macromolecule delivery requires invasive methods such as frequently repeated injections. Parenteral depots including biodegradable polymer microspheres offer the possibility of reduced dosing frequency but are limited by the inability to adequately control delivery rates. To control release and investigate release mechanisms, we have encapsulated model macromolecules in monodisperse poly(D,L-lactide-co-glycolide) (PLG) microspheres using a double-emulsion method in combination with the precision particle fabrication technique. We encapsulated fluorescein-dextran (F-Dex) and sulforhodamine B-labeled bovine serum albumin (R-BSA) into PLG microspheres of three different sizes: 31, 44, and 80 microm and 34, 47, and 85 microm diameter for F-Dex and R-BSA, respectively. The in vitro release profiles of both compounds showed negligible initial burst. During degradation and release, the microspheres hollowed and swelled at critical time points dependant upon microsphere size. The rate of these events increased with microsphere size resulting in the largest microspheres exhibiting the fastest overall release rate. Monodisperse microspheres may represent a new delivery system for therapeutic proteins and DNA and provide enhanced control of delivery rates using simple injectable depot formulations.

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Source
http://dx.doi.org/10.1002/jps.20948DOI Listing

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