Li Donghong, Xu Tingting, Wang Xiaoli, Xiao Qiong, Zhang Wenjie, Li Fen, Zhang Hao, Feng Bei, Zhang Yanzhong
College of Biological Science and Medical Engineering, Donghua University, Shanghai 201620, China.
Department of Plastic and Reconstructive Surgery, Shanghai Key Laboratory of Tissue Engineering, Shanghai Ninth People's Hospital affiliated with Shanghai Jiao Tong University School of Medicine, Shanghai 200011, China.
J Mater Chem B. 2025 Jan 15;13(3):1100-1117. doi: 10.1039/d4tb01394h.
Regeneration of functional bone tissue relies heavily on achieving adequate vascularization in engineered bone constructs following implantation. This process requires the close integration of osteogenesis and angiogenesis. Cell-free fat extract (CEFFE or FE), a recently emerging acellular fat extract containing abundant growth factors, holds significant potential for regulating osteo-angiogenic coupling and promoting regeneration of vascularized bone tissue. However, its specific role in modulating the coupling between angiogenesis and osteogenesis remains unclear. Our previous research demonstrated that FE-decorated electrospun fibers of polycaprolactone/gelatin (named FE-PDA@PCL/GT) exhibited pro-vasculogenic capabilities both and (D. Li, Q. Li, T. Xu, X. Guo, H. Tang, W. Wang, W. Zhang and Y. Zhang, Pro-vasculogenic fibers by PDA-mediated surface functionalization using cell-free fat extract (CEFFE), 2024, , 1550-1562). Herein, we firstly demonstrated that the FE-PDA@PCL/GT fibers also significantly stimulated osteogenesis in a mouse calvaria osteoblast-like cell line MC3T3-E1 cells, as evidenced by the increased production of alkaline phosphatase (ALP), mineral deposits, and collagen I, as well as the upregulated expression of osteogenic marker genes in the osteoblasts. Using a transwell co-culture system, we further demonstrated that the release of FE from the FE-PDA@PCL/GT fibers not only promoted osteogenesis and angiogenesis but also markedly enhanced the paracrine functions and reciprocal communications between endothelial cells and osteoblasts. This dynamic interaction played a key role in the observed enhancement of osteo-angiogenic coupling. With the confirmed pro-osteogenic and pro-angiogenic properties of FE-PDA@PCL/GT, it is envisaged that these newly engineered bioactive fibers can be used to develop highly biomimicking bone constructs. These constructs are designed to promote native-like cell-scaffold and cell-cell interactions, which are essential for the effective regeneration of defected bone tissue with adequate vasculature.
功能性骨组织的再生在很大程度上依赖于植入后在工程化骨构建物中实现充分的血管化。这个过程需要成骨作用和血管生成的紧密整合。无细胞脂肪提取物(CEFFE或FE)是一种最近出现的含有丰富生长因子的无细胞脂肪提取物,在调节骨血管生成耦合和促进血管化骨组织再生方面具有巨大潜力。然而,其在调节血管生成和成骨作用之间耦合的具体作用仍不清楚。我们之前的研究表明,用FE修饰的聚己内酯/明胶电纺纤维(命名为FE-PDA@PCL/GT)在体内和体外均表现出促血管生成能力(D. Li, Q. Li, T. Xu, X. Guo, H. Tang, W. Wang, W. Zhang和Y. Zhang,通过使用无细胞脂肪提取物(CEFFE)的PDA介导表面功能化制备促血管生成纤维,2024,,1550 - 1562)。在此,我们首先证明FE-PDA@PCL/GT纤维也能显著刺激小鼠颅骨成骨样细胞系MC3T3-E1细胞的成骨作用,碱性磷酸酶(ALP)产量增加、矿化沉积和I型胶原蛋白生成增加以及成骨细胞中骨生成标记基因表达上调证明了这一点。使用Transwell共培养系统,我们进一步证明FE从FE-PDA@PCL/GT纤维中的释放不仅促进了成骨作用和血管生成,还显著增强了内皮细胞和成骨细胞之间的旁分泌功能和相互通讯。这种动态相互作用在观察到的骨血管生成耦合增强中起关键作用。鉴于FE-PDA@PCL/GT已证实的促成骨和促血管生成特性,可以设想这些新工程化的生物活性纤维可用于开发高度仿生的骨构建物。这些构建物旨在促进类似天然的细胞-支架和细胞-细胞相互作用,这对于具有足够血管系统的缺损骨组织的有效再生至关重要。