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Adv Healthc Mater ; 13(18): e2304194, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38508211

ABSTRACT

Efforts are made to enhance the inherent potential of extracellular vesicles (EVs) by utilizing 3D culture platforms and engineered strategies for functional cargo-loading. Three distinct types of adipose mesenchymal stem cells-derived EVs (ADSCs-EVs) are successfully isolated utilizing 3D culture platforms consisting of porous gelatin methacryloyl (PG), PG combined with sericin methacryloyl (PG/SerMA), or PG combined with chondroitin sulfate methacryloyl (PG/ChSMA). These correspond to PG-EVs, PG/SerMA-EVs, and PG/ChSMA-EVs, respectively. Unique microRNA (miRNA) profiles are observed in each type of ADSCs-EVs. Notably, PG-EVs encapsulate higher levels of hsa-miR-455-3p and deliver more hsa-miR-455-3p to chondrocytes, which results in the activation of the hsa-miR-455-3p/PAK2/Smad2/3 axis and the subsequent hyaline cartilage regeneration. Furthermore, the functionality of PG-EVs is optimized through engineered strategies, including agomir/lentivirus transfection, electroporation, and Exo-Fect transfection. These strategies, referred to as Agomir-EVs, Lentivirus-EVs, Electroporation-EVs, and Exo-Fect-EVs, respectively, are ranked based on their efficacy in encapsulating hsa-miR-455-3p, delivering hsa-miR-455-3p to chondrocytes, and promoting cartilage formation via the hsa-miR-455-3p/PAK2/Smad2/3 axis. Notably, Exo-Fect-EVs exhibit the highest efficiency. Collectively, the 3D culture conditions and engineered strategies have an impact on the miRNA profiles and cartilage regeneration capabilities of ADSCs-EVs. The findings provide valuable insights into the mechanisms underlying the promotion of cartilage regeneration by ADSCs-EVs.


Subject(s)
Extracellular Vesicles , Hyaline Cartilage , Mesenchymal Stem Cells , MicroRNAs , Tissue Engineering , Mesenchymal Stem Cells/cytology , Mesenchymal Stem Cells/metabolism , MicroRNAs/genetics , MicroRNAs/metabolism , Extracellular Vesicles/metabolism , Extracellular Vesicles/chemistry , Humans , Tissue Engineering/methods , Hyaline Cartilage/metabolism , Regeneration , Adipose Tissue/cytology , Animals , Cell Culture Techniques, Three Dimensional/methods , Chondrocytes/cytology , Chondrocytes/metabolism , Smad2 Protein/metabolism , Cells, Cultured , Gelatin/chemistry , Smad3 Protein/metabolism , Mice , Chondrogenesis
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