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人乳内动脉去细胞化:生物力学特性与组织病理学评估

Decellularization of Human Internal Mammary Artery: Biomechanical Properties and Histopathological Evaluation.

作者信息

Kajbafzadeh Abdol-Mohammad, Khorramirouz Reza, Kameli Seyede Maryam, Hashemi Javad, Bagheri Amin

机构信息

Section of Tissue Engineering and Stem Cell Therapy, Pediatric Urology and Regenerative Medicine Research Center, Children's Hospital Medical Center, Pediatric Center of Excellence, Tehran University of Medical Sciences, Tehran, Iran.

出版信息

Biores Open Access. 2017 Jun 1;6(1):74-84. doi: 10.1089/biores.2016.0040. eCollection 2017.

Abstract

This study undertook to create small-diameter vascular grafts and assess their structure and mechanical properties to withstand arterial implantation. Twenty samples of intact human internal mammary arteries (IMAs) were collected and decellularized using detergent-based methods. To evaluate residual cellular and extracellular matrix (ECM) components, histological analysis was performed. Moreover, collagen typing and ECM structure were analyzed by Picrosirius red and Movat's pentachrome staining. Scanning electron microscopy was also applied to assess microarchitecture of both endothelial and adventitial surfaces of native and decellularized arterial samples. Furthermore, mechanical tests were performed to evaluate the rigidity and suture strength of the arteries. Human IMAs were completely decellularized in all three segments (proximal, middle, and distal). ECM proteins such as collagen and elastic fibers were efficiently preserved and no structural distortion in intima, media, and adventitial surfaces was observed. The parameters of the mechanical tests revealed no significant differences in the mechanical properties of decellularized arteries in comparison to native arteries with considerable strength, suture retention, and stress relaxation (Young's modulus [MPa] = 0.22 ± 0.023 [native] and 0.22 ± 0.015 [acellular]; and suture strength 0.56 ± 0.19 [native] vs. 0.56 ± 0.12 [acellular], respectively). Decellularized IMA represents a potential arterial scaffold as an alternative to autologous grafts for future arterial bypass surgeries. By this technique, microarchitecture and mechanical integrity of decellularized arteries were considerably similar to native arteries. The goal of this study was to introduce an efficient method for complete decellularization of human IMA and evaluate the ECM and biomechanical properties.

摘要

本研究致力于制造小直径血管移植物,并评估其结构和力学性能以承受动脉植入。收集了20个完整的人乳内动脉(IMA)样本,并使用基于去污剂的方法进行脱细胞处理。为了评估残留的细胞和细胞外基质(ECM)成分,进行了组织学分析。此外,通过天狼星红染色和莫瓦特五色染色分析胶原类型和ECM结构。还应用扫描电子显微镜评估天然和脱细胞动脉样本的内皮和外膜表面的微观结构。此外,进行力学测试以评估动脉的刚性和缝合强度。人IMA的所有三个节段(近端、中段和远端)均完全脱细胞。胶原和弹性纤维等ECM蛋白得到有效保留,内膜、中膜和外膜表面未观察到结构变形。力学测试参数显示,与具有相当强度、缝合保留力和应力松弛的天然动脉相比,脱细胞动脉的力学性能无显著差异(杨氏模量[MPa]:天然动脉为0.22±0.023,脱细胞动脉为0.22±0.015;缝合强度:天然动脉为0.56±0.19,脱细胞动脉为0.56±0.12)。脱细胞IMA作为未来动脉搭桥手术中自体移植物的替代物,是一种潜在的动脉支架。通过该技术,脱细胞动脉的微观结构和力学完整性与天然动脉相当相似。本研究的目的是介绍一种有效的人IMA完全脱细胞方法,并评估ECM和生物力学性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6bd0/5515095/b39c976e7aa7/fig-1.jpg

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