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Updated: Aug 6, 2026

Fabricating Highly Open Porous Microspheres (HOPMs) via Microfluidic Technology
Published on: May 16, 2022
Bio-functional porous PLA microspheres: anin-vitrostudy of a platform for plasma-rich in growth factors (PRGF)
MohammadHossein Shah-Mohammadi-Loshani1, Rana Imani1, Mahdi Khalili1
1Department of Biomedical Engineering, Amirkabir University of Technology (Tehran Polytechnic), Tehran, Iran.
Abstract:
Effective management of acute and chronic wounds remains a major clinical challenge, driving the need for innovative therapeutic approaches. Plasma-rich in growth factors (PRGF), an autologous and bioactive fraction of platelet-rich plasma, has emerged as a promising agent for stimulating tissue repair and angiogenesis. In this study, poly (lactic acid) (PLA) microparticles loaded with PRGF were developed via a double emulsion (water-in-oil-in-water, W/O/W) solvent evaporation technique. Processing parameters, including synthesis and drying conditions, were optimized to yield a porous microparticle architecture conducive to controlled release. Morphological analysis using scanning electron microscopy confirmed the formation of uniformly spherical microparticles (PLMs) with an average diameter of 26.51 ± 7.86 µm and a mean pore size of 2.79 ± 0.55 µm.In-vitrorelease profiles demonstrated sustained PRGF release over a period of more than 17 d. Additionally, cell-based assays revealed that the PRGF-loaded PLMs effectively supported the proliferation, adhesion, and migration of human dermal fibroblasts. These results highlight the potential of PRGF-loaded PLA microparticles as a biocompatible and long-acting platform for advanced wound healing and regenerative medicine applications.

