Newton Joseph B, Nuss Courtney A, Weiss Stephanie N, Betts Rebecca L, Sehgal Chandra M, Soslowsky Louis J
McKay Orthopaedic Research Laboratory, Department of Orthopaedic Surgery, University of Pennsylvania, Philadelphia, PA 19104, USA.
Department of Radiology, University of Pennsylvania, Philadelphia, PA 19104, USA.
Diagnostics (Basel). 2024 Jul 12;14(14):1498. doi: 10.3390/diagnostics14141498.
Tendon injury and healing involve significant changes to tissue biology and composition. Current techniques often require animal sacrifice or tissue destruction, limiting assessment of dynamic changes in tendons, including treatment response, disease development, rupture risk, and healing progression. Changes in tendon composition, such as altered collagen content, can significantly impact tendon mechanics and function. Analyses of compositional changes typically require ex vivo techniques with animal sacrifice or destruction of the tissue. In vivo evaluation of tendons is critical for longitudinal assessment. We hypothesize that photoacoustic ultrasound detects differences in collagen concentration throughout healing. We utilized photoacoustic ultrasound, a hybrid imaging modality that combines ultrasound and laser-induced photoacoustic signals to create detailed and high-resolution images of tendons, to identify its endogenous collagen composition. We correlated the photoacoustic signal to picrosirius red staining. The results show that the photoacoustic ultrasound-estimated collagen content in tendons correlates well with picrosirius red staining. This study demonstrates that photoacoustic ultrasound can assess injury-induced compositional changes within tendons and is the first study to image these targets in rat Achilles tendon in vivo.
肌腱损伤与愈合涉及组织生物学和成分的显著变化。当前技术通常需要牺牲动物或破坏组织,这限制了对肌腱动态变化的评估,包括治疗反应、疾病发展、破裂风险和愈合进程。肌腱成分的变化,如胶原含量改变,会显著影响肌腱的力学性能和功能。对成分变化的分析通常需要采用牺牲动物或破坏组织的离体技术。肌腱的体内评估对于纵向评估至关重要。我们假设光声超声能够检测出愈合过程中胶原浓度的差异。我们利用光声超声这一结合了超声和激光诱导光声信号以生成肌腱详细高分辨率图像的混合成像模式,来识别其内源性胶原成分。我们将光声信号与天狼星红染色进行了关联。结果表明,光声超声估计的肌腱胶原含量与天狼星红染色相关性良好。本研究表明光声超声能够评估肌腱内损伤诱导的成分变化,并且是首个在大鼠跟腱体内对这些目标进行成像的研究。