Targeting Macrophages via Ultrasonic Contrast Microspheres for Monitoring and Treatment of Knee Synovitis

材料科学 微球 滑膜炎 超声波传感器 生物医学工程 体内 骨关节炎 超声波 纳米技术 放射科 医学 病理 化学工程 内科学 类风湿性关节炎 生物 工程类 替代医学 生物技术
作者
Han Wang,Mengtong Guan,Xiaoqian Ding,Bo Liao,Jieliang Shen,Xinhe Li,Yi He,Xiaoyu Han,Dingqun Bai,Ying Zhu
出处
期刊:Advanced Functional Materials [Wiley]
被引量:1
标识
DOI:10.1002/adfm.202408099
摘要

Abstract The malignant cycle of synovitis considerably impacts the progression of osteoarthritis (OA). Therefore, the precise localization of synovitis, targeted disruption of the inflammatory cycle, and real‐time monitoring of its dynamics are crucial for the effective diagnosis and management of OA. Here, porous HAMA/GelMA microspheres are synthesized using microfluidic technology. Interleukin‐10 (IL‐10) nanobubbles, prepared via double emulsification, are grafted with folic acid (FA) via an amide reaction and subsequently impregnated and adsorbed onto the microspheres, thereby constructing an ultrasonic contrast microsphere system. This system facilitates not only ultrasonic imaging for accurate localization of synovitis but also the targeted and controlled delivery of IL‐10 under ultrasound conditions. In vitro, under ultrasound intensities of 0, 0.5, and 1.5 W, the system effectively releases IL‐10 at the rates of 19.95%, 30.95%, and 40.67%, respectively. In vivo, the biodegradability of the system facilitates real‐time tracking and monitoring of synovitis for at least 14 days. In summary, ultrasonic contrast microspheres enable precise localization and real‐time monitoring of synovitis. Under ultrasound conditions, these microspheres enable targeted and controlled drug delivery, effectively disrupting vicious inflammatory cycles. This strategy pioneers new pathways for the management and precise treatment of OA.
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