机械敏感通道
材料科学
成骨细胞
机械转化
再生医学
纳米技术
离子通道
磁性纳米粒子
纳米材料
生物医学工程
纳米颗粒
细胞生物学
化学
干细胞
体外
医学
生物化学
受体
生物
作者
Afeesh Rajan Unnithan,Arathyram Ramachandra Kurup Sasikala,Bishnu Kumar Shrestha,Alex Lincoln,Thomas Thomson,Alicia J. El Haj
标识
DOI:10.1002/adfm.202201311
摘要
Abstract Non‐invasive approaches using remotely controllable nanomaterials have demonstrated their potential ability to enhance treatment efficacy in regenerative medicine and tissue repair. Although magnetic nanoparticles (MNPs) have been used for multiple healthcare applications where their remote control properties can show significant advances, enhanced surface functional groups, and electrical properties would expand their capabilities. To address this, in this study, MNPs incorporated Graphene Oxide (GO) based nanocomposites (GOMNPs) are developed and functionalized with TREK1 and Piezo1 antibodies to specifically target the respective mechanosensitive ion channels. Magnetic ion channel activation (MICA) technology is used to remotely activate MG63 osteoblast‐like cells tagged with these functionalized GOMNPs. Remote activation of mechanotransduction pathways shows significant upregulation in osteogenic gene expression as well as enhanced alkaline phosphate activity and calcium mineralization with enhanced bone formation. The development of a GOMNP composite has extensive applicability for future clinical translation.
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