Biomaterials Group, Faculty of Biomedical Engineering (Center of Excellence), Amirkabir University of Technology, Tehran, Iran.
Department of Life Science Engineering, Faculty of New Sciences and Technologies, University of Tehran, Tehran, Iran.
Int J Biol Macromol. 2021 Aug 1;184:29-41. doi: 10.1016/j.ijbiomac.2021.05.148. Epub 2021 May 25.
The controlled delivery of the bone morphogenetic protein-2 (BMP-2) with tracking ability would overcome most of the side effects linked to the burst release and uncontrolled delivery of this growth factor for bone regeneration. Herein, BMP-2-conjugated carbon dots (CDs) was used as noninvasive detection platforms to deliver BMP-2 for therapeutic applications where osteogenesis and bioimaging are both required. With this in mind, the present work aimed to develop a controlled BMP-2-CDs release system using composite scaffolds containing BMP-2-CDs loaded pectin microparticles, which had been optimized for bone regeneration. By using microfluidic approach, we encapsulated BMP-2-CDs in pectin microparticles with narrow size distribution and then incorporated into composite scaffolds composed of gelatin, elastin, and hyaluronic acid. The BMP-2-CDs was released from the composite scaffolds in a sustained fashion for up to 21 days exhibited a high controlled delivery capacity. When tested in vitro with MG-63 cells, these extraction mediums showed the intercellular uptake of BMP-2-CDs and enhanced biological properties and pro-osteogenic effect. By utilizing the pectin microparticles carrying BMP-2-CDs as promising bioimaging agents for growth factor delivery and by tuning the composition of the scaffolds, this platform has immense potential in the field of bone tissue regeneration.
骨形态发生蛋白-2(BMP-2)的控制递送具有跟踪能力,将克服与这种生长因子的爆发释放和不受控制的递送相关的大多数副作用,以促进骨再生。在此,将 BMP-2 偶联碳点(CDs)用作非侵入性检测平台,用于需要成骨和生物成像的治疗应用中,以递送 BMP-2。有鉴于此,本工作旨在开发一种使用包含负载 BMP-2 的果胶微粒的复合支架的受控 BMP-2-CDs 释放系统,该系统已针对骨再生进行了优化。通过使用微流控方法,我们将 BMP-2-CDs 包封在具有窄粒径分布的果胶微粒中,然后将其掺入由明胶、弹性蛋白和透明质酸组成的复合支架中。BMP-2-CDs 从复合支架中以可持续的方式释放长达 21 天,显示出高的控制释放能力。当在体外与 MG-63 细胞一起测试时,这些提取培养基显示出 BMP-2-CDs 的细胞内摄取,并增强了生物性能和促成骨作用。通过利用携带 BMP-2-CDs 的果胶微粒作为有前途的生长因子递送的生物成像剂,并通过调整支架的组成,该平台在骨组织再生领域具有巨大的潜力。