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将分子笼纳米羟基磷灰石整合到交联后聚乙烯醇纳米纤维中用于人工骨膜。

Integrating molecular-caged nano-hydroxyapatite into post-crosslinked PVA nanofibers for artificial periosteum.

机构信息

State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Materials Science and Engineering, Donghua University, Shanghai 201620, China.

State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Materials Science and Engineering, Donghua University, Shanghai 201620, China; Shanghai Engineering Research Center of Nano-Biomaterials and Regenerative Medicine, Donghua University, Shanghai 201620, China.

出版信息

Biomater Adv. 2024 Dec;165:214001. doi: 10.1016/j.bioadv.2024.214001. Epub 2024 Aug 24.

Abstract

Artificial periosteum is deemed a novel strategy for inducing endogenous bone regeneration, but ideal periosteum substitutes achieved by orchestrating a biomimetic microenvironment for bone regeneration remain a significant challenge. Here, we design and fabricate a hybridized nanofiber-based artificial periosteum with boosted osteoinduction properties. Via a "molecular cage" biomineralization strategy, nano-hydroxyapatite (nano-HAp) with a controllable size (∼22 nm) and excellent dispersion serves as unique nano-additives for water-soluble polyvinyl-alcohol (PVA)-based artificial periosteum. The PVA/HAp composite is electrospun into nanofibers to replicate the extracellular-matrix-inspired nanostructure for inducing cell adhesion, proliferation, and fate manipulation. A simple post-crosslinking treatment is subsequently applied to further booster its mechanical strength (6.6 MPa) and swelling stability. The optimized sample of C-PVA/HAp (10 wt% nano-HAp) artificial periosteum features excellent biocompatibility and remarkable in vitro mineralization. Cell experiments demonstrate that its effectively boasted cell modulation for enhanced osteogenesis without the aid of growth factors, showing a possible activation of the ERK/MAPK signaling pathway. This work provides an effective strategy for designing novel HAp nano-additives and expands the possibility of biomimetic fabrication for more advanced nanofiber-based artificial periosteum.

摘要

人工骨膜被认为是一种诱导内源性骨再生的新策略,但通过调控仿生微环境来实现理想的骨膜替代物仍然是一个重大挑战。在这里,我们设计并制造了一种具有增强成骨诱导特性的杂交纳米纤维基人工骨膜。通过“分子笼”生物矿化策略,具有可控尺寸(~22nm)和良好分散性的纳米羟基磷灰石(nano-HAp)作为独特的纳米添加剂用于水溶性聚乙烯醇(PVA)基人工骨膜。将 PVA/HAp 复合材料电纺成纳米纤维,以复制用于诱导细胞黏附、增殖和命运操纵的细胞外基质启发的纳米结构。随后进行简单的后交联处理,进一步提高其力学强度(6.6MPa)和溶胀稳定性。优化后的 C-PVA/HAp(10wt%纳米 HAp)人工骨膜具有优异的生物相容性和显著的体外矿化性能。细胞实验表明,它有效地促进了细胞调节,增强了成骨作用,而无需生长因子的辅助,可能激活了 ERK/MAPK 信号通路。这项工作为设计新型 HAp 纳米添加剂提供了一种有效的策略,并扩展了仿生制造更先进的基于纳米纤维的人工骨膜的可能性。

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