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具有协同调控血管生成-骨生成耦合作用以促进血管化骨再生的药物递送纳米平台。

Drug-Delivery Nanoplatform with Synergistic Regulation of Angiogenesis-Osteogenesis Coupling for Promoting Vascularized Bone Regeneration.

作者信息

Li Yahong, Zhu Junjin, Zhang Xin, Li Yuanyuan, Zhang Shu, Yang Linxin, Li Ruyi, Wan Qianbing, Pei Xibo, Chen Junyu, Wang Jian

机构信息

State Key Laboratory of Oral Diseases, National Clinical Research Center for Oral Diseases, Chengdu 610041, China.

Department of Prosthodontics, West China Hospital of Stomatology, Sichuan University, Chengdu 610041, China.

出版信息

ACS Appl Mater Interfaces. 2023 Apr 12;15(14):17543-17561. doi: 10.1021/acsami.2c23107. Epub 2023 Apr 3.

Abstract

It has been confirmed that substantial vascularization is an effective strategy to heal large-scale bone defects in the field of bone tissue engineering. The local application of deferoxamine (DFO) is among the most common and effective methods for promoting the formation of blood vessels, although its short half-life in plasma, rapid clearance, and poor biocompatibility limit its therapeutic suitability. Herein, zeolitic imidazolate framework-8 (ZIF-8) was selected as a vehicle to extend the half-life of DFO. In the present study, a nano DFO-loaded ZIF-8 (DFO@ZIF-8) drug delivery system was established to promote angiogenesis-osteogenesis coupling. The nanoparticles were characterized, and their drug loading efficiency was examined to confirm the successful synthesis of nano DFO@ZIF-8. Additionally, due to the sustained release of DFO and Zn, DFO@ZIF-8 NPs were able to promote angiogenesis in human umbilical vein endothelial cells (HUVECs) culture and osteogenesis in bone marrow stem cells (BMSCs) in vitro. Furthermore, the DFO@ZIF-8 NPs promoted vascularization by enhancing the expression of type H vessels and a vascular network. The DFO@ZIF-8 NPs promoted bone regeneration in vivo by increasing the expression of OCN and BMP-2. RNA sequencing analysis revealed that the PI3K-AKT-MMP-2/9 and HIF-1α pathways were upregulated by DFO@ZIF-8 NPs in HUVECs, ultimately leading to the formation of new blood vessels. In addition, the mechanism by which DFO@ZIF-8 NPs promoted bone regeneration was potentially related to the synergistic effect of angiogenesis-osteogenesis coupling and Zn-mediation of the MAPK pathway. Taken together, DFO@ZIF-8 NPs, which were demonstrated to have low cytotoxicity and excellent coupling of angiogenesis and osteogenesis, represent a promising strategy for the reconstruction of critical-sized bone defects.

摘要

已经证实,大量血管生成是骨组织工程领域中治疗大规模骨缺损的有效策略。去铁胺(DFO)的局部应用是促进血管形成的最常见且有效的方法之一,尽管其在血浆中的半衰期短、清除迅速且生物相容性差,限制了其治疗适用性。在此,选择沸石咪唑酯骨架-8(ZIF-8)作为载体来延长DFO的半衰期。在本研究中,建立了一种负载纳米DFO的ZIF-8(DFO@ZIF-8)药物递送系统,以促进血管生成与骨生成的耦合。对纳米颗粒进行了表征,并检测了其载药效率,以确认纳米DFO@ZIF-8的成功合成。此外,由于DFO和锌的持续释放,DFO@ZIF-8纳米颗粒能够在人脐静脉内皮细胞(HUVECs)培养中促进血管生成,并在体外促进骨髓干细胞(BMSCs)的成骨作用。此外,DFO@ZIF-8纳米颗粒通过增强H型血管和血管网络的表达促进血管化。DFO@ZIF-8纳米颗粒通过增加骨钙素(OCN)和骨形态发生蛋白-2(BMP-2)的表达在体内促进骨再生。RNA测序分析表明,DFO@ZIF-8纳米颗粒在HUVECs中上调了PI3K-AKT-MMP-2/9和HIF-1α通路,最终导致新血管的形成。此外,DFO@ZIF-8纳米颗粒促进骨再生的机制可能与血管生成-骨生成耦合的协同作用以及锌对MAPK通路的介导作用有关。综上所述,DFO@ZIF-8纳米颗粒具有低细胞毒性以及出色的血管生成和骨生成耦合作用,是修复临界尺寸骨缺损的一种有前景的策略。

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