4.8 Article

3D bioactive cell-free-scaffolds for in-vitro/in-vivo capture and directed osteoinduction of stem cells for bone tissue regeneration

期刊

BIOACTIVE MATERIALS
卷 6, 期 11, 页码 4083-4095

出版社

KEAI PUBLISHING LTD
DOI: 10.1016/j.bioactmat.2021.01.013

关键词

Soybean lecithin; Bioactive material; Cell-free scaffold; BMP2; Cell-capture; Ossification

资金

  1. National Natural Science Foundation of China [31900950, 31670991, 52072210]
  2. National Key Research and Development Project of China [2018YFA0900100]

向作者/读者索取更多资源

The study developed a novel bone tissue engineering scaffold material, BOPSC, which entrapped and continuously released BMP2 in polymer with the adjuvant biosurfactant soybean-lecithin, allowing for in vivo stem cell capture and osteogenic induction without the need for exogenous cells. BOPSC demonstrated sustained BMP2 release, supporting cell proliferation and osteogenic differentiation, and showed promising osteogenesis in mouse experiments.
Hydrophilic bone morphogenetic protein 2 (BMP2) is easily degraded and difficult to load onto hydrophobic carrier materials, which limits the application of polyester materials in bone tissue engineering. Based on soybean-lecithin as an adjuvant biosurfactant, we designed a novel cell-free-scaffold of polymer of poly(epsilon-caprolactone) and poly(lactide-co-glycolide)-co-polyetherimide with abundant entrapped and continuously released BMP2 for in vivo stem cell-capture and in situ osteogenic induction, avoiding the use of exogenous cells. The optimized bioactive osteo-polyester scaffold (BOPSC), i.e. SBMP-10SC, had a high BMP2 entrapment efficiency of 95.35%. Due to its higher porosity of 83.42%, higher water uptake ratio of 850%, and sustained BMP2 release with polymer degradation, BOPSCs were demonstrated to support excellent in vitro capture, proliferation, migration and osteogenic differentiation of mouse adipose derived mesenchymal stem cells (mADSCs), and performed much better than traditional BMP-10SCs with unmodified BMP2 and single polyester scaffolds (10SCs). Furthermore, in vivo capture and migration of stem cells and differentiation into osteoblasts was observed in mice implanted with BOPSCs without exogenous cells, which enabled allogeneic bone formation with a high bone mineral density and ratios of new bone volume to existing tissue volume after 6 months. The BOPSC is an advanced 3D cell-free platform with sustained BMP2 supply for in situ stem cell capture and osteoinduction in bone tissue engineering with potential for clinical translation.

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