4.7 Article

Effect of Crystallinity on the Properties of Polycaprolactone Nanoparticles Containing the Dual FLAP/mPEGS-1 Inhibitor BRP-187

期刊

POLYMERS
卷 13, 期 15, 页码 -

出版社

MDPI
DOI: 10.3390/polym13152557

关键词

polycaprolactone (PCL); polyesters; hydrophobic-hydrophilic balance (HHB); nanoparticle formulation; nanoparticle crystallinity; FLAP antagonist; BRP-187

资金

  1. Deutsche Forschungsgemeinschaft (DFG), Collaborative Research Center [SFB 1278, 316213987]
  2. DFG [INST 275/307-1 FUGG]

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This study utilized PCL nanoparticles with varying degrees of crystallinity to encapsulate a hydrophobic anti-inflammatory drug, demonstrating the relationship between crystallinity and enzymatic degradation of the particles, as well as evaluating their anti-inflammatory performance in vitro.
Seven polycaprolactones (PCL) with constant hydrophobicity but a varying degree of crystallinity prepared from the constitutional isomers epsilon-caprolactone (epsilon CL) and delta-caprolactone (delta CL) were utilized to formulate nanoparticles (NPs). The aim was to investigate the effect of the crystallinity of the bulk polymers on the enzymatic degradation of the particles. Furthermore, their efficiency to encapsulate the hydrophobic anti-inflammatory drug BRP-187 and the final in vitro performance of the resulting NPs were evaluated. Initially, high-throughput nanoprecipitation was employed for the epsilon CL and delta CL homopolymers to screen and establish important formulation parameters (organic solvent, polymer and surfactant concentration). Next, BRP-187-loaded PCL nanoparticles were prepared by batch nanoprecipitation and characterized using dynamic light scattering, scanning electron microscopy and UV-Vis spectroscopy to determine and to compare particle size, polydispersity, zeta potential, drug loading as well as the apparent enzymatic degradation as a function of the copolymer composition. Ultimately, NPs were examined for their potency in vitro in human polymorphonuclear leukocytes to inhibit the BRP-187 target 5-lipoxygenase-activating protein (FLAP). It was evident by Tukey's multi-comparison test that the degree of crystallinity of copolymers directly influenced their apparent enzymatic degradation and consequently their efficiency to inhibit the drug target.

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