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Label-Free Spectral Imaging Unveils Biochemical Mechanisms of Low-Level Laser Therapy on Spinal Cord Injury

机译:无标记光谱成像揭示了低水平激光治疗脊髓损伤的生化机制。

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Background/Aims Low-level laser therapy (LLLT) leads to complex photochemical responses during the healing process of spinal cord injury (SCI). Confocal Raman Microspectral Imaging (in combination with multivariate analysis) was adopted to illustrate the underlying biochemical mechanisms of LLLT treatment on a SCI rat model. Methods Using transversal tissue sections, the Raman spectra can identify areas neighboring the injury site, glial scar, cavity, and unharmed white matter, as well as their correlated cellular alterations, such as demyelination and up-regulation of chondroitin sulfate proteoglycans (CSPGs). Multivariate data analysis methods are used to depict the underlying therapeutic effects by highlighting the detailed content and distribution variations of the biochemical constituents. Results It is confirmed that photon-tissue interactions might lead to a decay of the inhibitory response to remyelination by suppressing CSPG expression, as also morphologically demonstrated by reduced glial scar and cavity areas. An inter-group comparison semi-quantitatively confirms changes in lipids, phosphatidic acid, CSPGs, and cholesterol during SCI and its LLLT treatment, paving the way for in vitro and in vivo understanding of the biochemical changes accompanying pathobiological SCI events. Conclusion The achieved results in this work not only have once again proved the well-known cellular mechanisms of SCI, but further illustrate the underlying biochemical variability during LLLT treatment, which provide a sound basis for developing real-time Raman methodologies to monitor the efficacy of the SCI LLLT treatment.
机译:背景/目的低水平激光治疗(LLLT)在脊髓损伤(SCI)的愈合过程中会导致复杂的光化学反应。通过共聚焦拉曼显微光谱成像(与多变量分析相结合)来说明SCI大鼠模型上LLLT治疗的潜在生化机制。方法使用横向组织切片,拉曼光谱可以识别损伤部位,神经胶质疤痕,空腔和未损伤的白质附近的区域,以及与它们相关的细胞变化,例如硫酸软骨素蛋白聚糖(CSPGs)的脱髓鞘作用和上调。多变量数据分析方法通过强调生化成分的详细含量和分布变化来描述潜在的治疗效果。结果证实了光子与组织的相互作用可能通过抑制CSPG的表达而导致对髓鞘再生的抑制反应减弱,这在形态学上也通过减少的神经胶质疤痕和空腔区域得到了证实。组间比较半定量地确认了SCI及其LLLT治疗过程中脂质,磷脂酸,CSPG和胆固醇的变化,为体内和体外理解伴随病理生物学SCI事件的生化变化铺平了道路。结论在这项工作中取得的成果不仅再次证明了SCI的众所周知的细胞机制,而且进一步说明了LLLT治疗期间潜在的生化变异性,这为开发实时拉曼方法来监测SCI的疗效提供了坚实的基础。 SCI LLLT处理。

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