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近红外二区成像揭示了体温降低通过增加脑内淋巴系统的流入来调节脑损伤后的神经炎症。

Near-Infrared-II Imaging Revealed Hypothermia Regulates Neuroinflammation Following Brain Injury by Increasing the Glymphatic Influx.

机构信息

Department of Neurosurgery, Shanxi Provincial People's Hospital, The Fifth Hospital of Shanxi Medical University, Taiyuan 030001, P.R. China.

State Key Laboratory of Supramolecular Structure and Materials, Center for Supramolecular Chemical Biology, College of Chemistry, Jilin University, Changchun 130012, P.R. China.

出版信息

ACS Nano. 2024 May 28;18(21):13836-13848. doi: 10.1021/acsnano.4c02652. Epub 2024 May 16.

Abstract

Advanced in vivo imaging techniques have facilitated the comprehensive visual exploration of animal biological processes, leading to groundbreaking discoveries such as the glymphatic system. However, current limitations of macroscopic imaging techniques impede the precise investigation of physiological parameters regulating this specialized lymphatic transport system. While NIR-II fluorescence imaging has demonstrated advantages in peripheral lymphatic imaging, there are few reports regarding its utilization in the glymphatic system. To address this, a noninvasive transcranial macroscopic NIR-II fluorescence imaging model is developed using a cyanine dye-protein coupled nanoprobe. NIR-II imaging with high temporal and spatial resolution reveals that hypothermia can increase the glymphatic influx by reducing the flow rate of cerebrospinal fluid. In addition, respiratory rate, respiratory amplitude, and heart rate all play a role in regulating the glymphatic influx. Thus, targeting the glymphatic influx may alter the trajectory of immune inflammation following brain injury, providing therapeutic prospects for treating brain injury with mild hypothermia.

摘要

先进的活体成像技术促进了动物生物过程的全面可视化探索,从而取得了突破性发现,如神经胶质淋巴系统。然而,目前宏观成像技术的局限性阻碍了对调节这一专门淋巴转运系统的生理参数的精确研究。虽然近红外二区(NIR-II)荧光成像是外周淋巴成像的优势,但关于其在神经胶质淋巴系统中的应用的报道很少。为了解决这个问题,我们使用花菁染料-蛋白偶联纳米探针开发了一种非侵入性的经颅宏观 NIR-II 荧光成像模型。具有高时间和空间分辨率的 NIR-II 成像表明,低温通过降低脑脊液的流速可以增加神经胶质淋巴的流入。此外,呼吸率、呼吸幅度和心率都在调节神经胶质淋巴的流入中发挥作用。因此,靶向神经胶质淋巴的流入可能会改变脑损伤后免疫炎症的轨迹,为用轻度低温治疗脑损伤提供了治疗前景。

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