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通过近红外二区/近红外一区荧光成象实现对小鼠和猪骨骼肌坏死的实时可视化。

Real-time visualization of skeletal muscle necrosis in mice and swine through NIR-II/I fluorescence imaging.

机构信息

Department of Orthopedics, Renmin Hospital, Wuhan University, Wuhan, China.

Department of Orthopedics Trauma and Microsurgery, Zhongnan Hospital, Wuhan University, Wuhan, China.

出版信息

J Biophotonics. 2024 Jan;17(1):e202300225. doi: 10.1002/jbio.202300225. Epub 2023 Sep 21.

Abstract

Avulsion often occurs in the limb due to heavy shearing forces which not only damage skeletal muscle but also main vessels, resulting in life-threatening muscle ischemia and necrosis. Defining muscle activity is vital for surgical repair. Currently, the color, capacity of blood, contractibility, and consistency (4C) are the primary principles for evaluating the activities of torn muscles. Based on clinical experiences, this standard turns out to be delayed diagnosis, which is not defined by specific parameters. Recently, near-infrared (NIR) fluorescence probes emitting within the second near-infrared window (NIR-II, 1000-1700 nm) have been widely used for non-invasive optical imaging because the tissue absorption and autofluorescence in the NIR-II region are negligible, thus allowing deeper penetration depths with micrometer-scale spatial resolution in vivo. As pathogenesis and development of muscle necrosis, necrosis-related protein may participate in this procedure. There is promising future for NIR-II to be used in evaluating muscle activity in avulsion. A new approach is developed based on experiments with mice and large animals (swine). Myoblasts were incubated with indocyanine green (ICG) to identify the necrosis muscles. The model of extremity damaged muscle was established for the real-time visualization and detection of developed necrosis muscle field under new equipment, both in balb/c mice (female) and long-haired swines. A visible NIR-II/I imaging system was first used in a large animal injured skeletal muscle-related model. Our NIR-II/I imaging system is suitable for evaluating the normal and injured skeletal muscle ICG cycle and pointing to the necrotic skeletal muscle tissue. NIR-II imaging is superior to NIR-I imaging in estimating skeletal muscle, best with 1100 nm filter. NIR-II fluorescence with 1100 nm filter is suitable for analyzing the progress of necrosis muscle tissue, leading to a new approach for intraoperative evaluation.

摘要

撕脱伤常发生于肢体,因强大的剪切力不仅损伤骨骼肌,还损伤主要的血管,导致危及生命的肌肉缺血和坏死。定义肌肉活动对手术修复至关重要。目前,颜色、血容量、收缩性和一致性(4C)是评估撕裂肌肉活动的主要原则。根据临床经验,该标准被证明是延迟诊断,没有具体参数定义。最近,近红外(NIR)荧光探针在第二个近红外窗口(NIR-II,1000-1700nm)内发射,已被广泛用于非侵入性光学成像,因为 NIR-II 区域的组织吸收和自发荧光可以忽略不计,从而允许更深的穿透深度和体内微米级空间分辨率。由于肌肉坏死的发病机制和发展,坏死相关蛋白可能参与这一过程。NIR-II 有望用于评估撕脱伤中的肌肉活动。基于对小鼠和大动物(猪)的实验,开发了一种新方法。肌母细胞用吲哚菁绿(ICG)孵育以识别坏死肌肉。为了在新设备下实时可视化和检测新建立的损伤肌肉区域,建立了肢体损伤肌肉模型,分别在雌性 balb/c 小鼠和长毛发猪中进行。首先在大型动物损伤相关骨骼肌肉模型中使用了可见 NIR-II/I 成像系统。我们的 NIR-II/I 成像系统适用于评估正常和损伤的骨骼肌肉 ICG 循环,并指向坏死的骨骼肌肉组织。与 NIR-I 成像相比,NIR-II 成像在估计骨骼肌肉方面更具优势,1100nm 滤光片效果最佳。NIR-II 荧光 1100nm 滤光片适用于分析坏死肌肉组织的进展,为术中评估提供了一种新方法。

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