Hu Weijian, Xie Xin, Xu Jiabin
Medical College, Northwest University, Xi'an 710000, China.
College of Life Sciences, Northwest University, Xi'an 710000, China.
Cells. 2025 Aug 7;14(15):1214. doi: 10.3390/cells14151214.
Healing large bone defects remains challenging. Gelatin scaffolds are biocompatible and biodegradable, but lack osteoinductive activity. Plant-derived exosomes carry miRNAs, growth factors, and proteins that modulate osteogenesis, but free exosomes suffer from poor stability, limited targeting, and low bioavailability in vivo. We developed a 3D GelMA hydrogel loaded with Epimedium-derived exosomes ("GelMA@Exo") to improve exosome retention, stability, and sustained release. Its effects on MC3T3-E1 preosteoblasts-including proliferation, osteogenic differentiation, migration, and senescence-were evaluated via in vitro assays. Angiogenic potential was assessed using HUVECs. Underlying mechanisms were examined at transcriptomic and protein levels to elucidate GelMA@Exo's therapeutic osteogenesis actions. GelMA@Exo exhibited sustained exosome release, enhancing exosome retention and cellular uptake. In vitro, GelMA@Exo markedly boosted MC3T3-E1 proliferation, migration, and mineralized nodule formation, while reducing senescence markers and promoting angiogenesis in HUVECs. Mechanistically, GelMA@Exo upregulated key osteogenic markers (RUNX2, TGF-β1, Osterix, COL1A1, ALPL) and activated the PI3K/Akt pathway. Transcriptomic data confirmed global upregulation of osteogenesis-related genes and bone-regeneration pathways. This study presents a GelMA hydrogel functionalized with plant-derived exosomes, which synergistically provides osteoinductive stimuli and structural support. The GelMA@Exo platform offers a versatile strategy for localized delivery of natural bioactive molecules and a promising approach for bone tissue engineering. Our findings provide strong experimental evidence for the translational potential of plant-derived exosomes in regenerative medicine.
修复大的骨缺损仍然具有挑战性。明胶支架具有生物相容性和可生物降解性,但缺乏骨诱导活性。植物来源的外泌体携带可调节骨生成的微小RNA、生长因子和蛋白质,但游离外泌体稳定性差、靶向性有限且体内生物利用度低。我们开发了一种负载淫羊藿来源外泌体的3D GelMA水凝胶(“GelMA@Exo”),以提高外泌体的保留率、稳定性和缓释性能。通过体外试验评估了其对MC3T3-E1前成骨细胞的影响,包括增殖、成骨分化、迁移和衰老。使用人脐静脉内皮细胞(HUVECs)评估血管生成潜力。在转录组和蛋白质水平上研究潜在机制,以阐明GelMA@Exo的治疗性骨生成作用。GelMA@Exo表现出外泌体的持续释放,增强了外泌体的保留和细胞摄取。在体外,GelMA@Exo显著促进MC3T3-E1的增殖、迁移和矿化结节形成,同时减少衰老标志物并促进HUVECs的血管生成。从机制上讲,GelMA@Exo上调关键的成骨标志物(RUNX2、TGF-β1、Osterix、COL1A1、ALPL)并激活PI3K/Akt通路。转录组数据证实了成骨相关基因和骨再生途径的整体上调。本研究提出了一种用植物来源外泌体功能化的GelMA水凝胶,其协同提供骨诱导刺激和结构支持。GelMA@Exo平台为天然生物活性分子的局部递送提供了一种通用策略,也是骨组织工程的一种有前景的方法。我们的研究结果为植物来源外泌体在再生医学中的转化潜力提供了有力的实验证据。