Effect of iodixanol and propylene glycol as clearing agents in extensor digitorum longus and soleus muscles: mechanical and morphological characterization using the optical coherence tomography technique

IF 5.8 3区 医学 Q1 MATERIALS SCIENCE, BIOMATERIALS
J. F. Escobar-Huertas, J. J. Vaca-González, D. A. Garzón-Alvarado and Olfa Trabelsi
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引用次数: 0

Abstract

Soft tissue engineering and regenerative medicine aim to address the intricate relationship between tissue architecture and biomechanical performance. The traditional technique used to analyze muscular architectures is histology. However, optical coherence tomography is a novel non-destructive, non-invasive imaging tool that provides real-time, high-resolution visualization of tissue microstructure, making it applicable to soft tissues. High-quality images, minimized light scattering, and different clearing agents, such as propylene glycol and iodixanol, have been employed. A stress–relaxation test was performed to characterize the effects of clearing agents on rat extensor digitorum longus and soleus muscles. Additionally, muscle fiber structure images obtained using optical correlation tomography were compared with histological images to corroborate the high precision of the optical method. The results showed that iodixanol is a promising clearing agent for characterizing muscles as it provides good quality images and a satisfactory reversibility process with no permanent damage to the extracellular matrix or muscle fiber structure of the tissue.

Abstract Image

Abstract Image

碘克沙醇和丙二醇作为伸肌和比目鱼肌清除剂的效果:使用光学相干断层扫描技术进行机械和形态学表征。
软组织工程和再生医学旨在解决组织结构与生物力学性能之间错综复杂的关系。用于分析肌肉结构的传统技术是组织学。然而,光学相干断层扫描是一种新型的非破坏性、非侵入性成像工具,可实时、高分辨率地观察组织的微观结构,因此适用于软组织。该技术采用了高质量图像、最小化光散射以及不同的清除剂(如丙二醇和碘克沙醇)。进行了应力松弛试验,以确定清除剂对大鼠伸拇肌和比目鱼肌的影响。此外,还将光学相关断层扫描获得的肌肉纤维结构图像与组织学图像进行了比较,以证实光学方法的高精度。结果表明,碘克沙醇是一种很有前途的肌肉表征清除剂,因为它能提供高质量的图像和令人满意的可逆过程,不会对组织的细胞外基质或肌纤维结构造成永久性损伤。
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来源期刊
Biomaterials Science
Biomaterials Science MATERIALS SCIENCE, BIOMATERIALS-
CiteScore
11.50
自引率
4.50%
发文量
556
期刊介绍: Biomaterials Science is an international high impact journal exploring the science of biomaterials and their translation towards clinical use. Its scope encompasses new concepts in biomaterials design, studies into the interaction of biomaterials with the body, and the use of materials to answer fundamental biological questions.
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