4.6 Article

One-Step Method to Prepare PLLA Porous Microspheres in a High-Voltage Electrostatic Anti-Solvent Process

Journal

MATERIALS
Volume 9, Issue 5, Pages -

Publisher

MDPI
DOI: 10.3390/ma9050368

Keywords

poly-L-lactide; porous microspheres; aerodynamic properties; pulmonary drug delivery; biosafety

Funding

  1. National Natural Science Foundation of China [31570974, 31470927]
  2. Natural Science Foundation of Fujian Province of China [2014J01128]
  3. Public Science and Technology Research Funds Projects of Ocean [201505029]
  4. Promotion Program for Young and Middle-Aged Teachers in Science and Technology Research of Huaqiao University [ZQN-PY107]

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A one-step method using a high-voltage electrostatic anti-solvent process was employed to fabricate poly-L-lactide (PLLA) porous microspheres (PMs). To address the simplification and control of the preparation process, a 2(4) full factorial experiment was performed to optimize the operating process and analyze the effect of the factors on the morphology and aerodynamic properties of the PLLA PMs, and various characterization tests were also performed. The resulting PLLA PMs exhibited an even and porous morphology with a density less than 0.4 g/cm(3), a geometric mean diameter (Dg) of 10-30 mu m, an aerodynamic diameter (Da) of 1-5 mu m, a fine particle fraction (FPF) of 56.3%, and a porosity of 76.2%, meeting the requirements for pulmonary drug delivery. The physicochemical characterizations reveal that no significant chemical change occurred in the PLLA during the process. An investigation of its in vitro cytotoxicity and pulmonary toxicity shows no obvious toxic response, indicating good biosafety. This study indicates that the one-step method using a high-voltage electrostatic anti-solvent process has great potential in developing an inhalable drug carrier for pulmonary drug delivery.

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