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SCCO、伽马射线辐射和十二烷基硫酸钠处理对肌腱同种异体移植物初始性能的影响。

Effects of SCCO, Gamma Irradiation, and Sodium Dodecyl Sulfate Treatments on the Initial Properties of Tendon Allografts.

机构信息

Surgical and Orthopedic Research Laboratories, Prince of Wales Clinical School, Prince of Wales Hospital, University of New South Wales, Randwick, NSW 2031, Australia.

出版信息

Int J Mol Sci. 2020 Feb 25;21(5):1565. doi: 10.3390/ijms21051565.

Abstract

Sterile and decellularized allograft tendons are viable biomaterials used in reconstructive surgeries for dense connective tissue injuries. Established allograft processing techniques including gamma irradiation and sodium dodecyl sulfate (SDS) can affect tissue integrity. Supercritical carbon dioxide (SCCO) represents a novel alternative that has the potential to decellularize and sterilize tendons with minimized exposure to denaturants, shortened treatment time, lack of toxic residues, and superior tissue penetration, and thus efficacy. This study attempted to develop a single-step hybrid decellularization and sterilization protocol for tendons that involved SCCO treatment with various chemical additives. The processed tendons were evaluated with mechanical testing, histology, scanning electron microscopy (SEM), and Fourier-transform infrared (FTIR) spectroscopy. Uniaxial mechanical testing showed that tendons treated with SCCO and additive NovaKill Gen2 and 0.1% SDS had significantly higher ( < 0.05) ultimate tensile stress (UTS) and Young's modulus compared to gamma-irradiated and standard-SDS-treated tendons. This was corroborated by the ultrastructural intactness of SCCO-treated tendons as examined by SEM and FTIR spectroscopy, which was not preserved in gamma-irradiated and standard SDS-treated tendons. However, complete decellularization was not achieved by the experimented SCCO-SDS protocols used in this study. The present study therefore serves as a concrete starting point for development of an SCCO-based combined sterilization and decellularization protocol for allograft tendons, where additive choice is to be optimized.

摘要

无菌且去细胞同种异体肌腱是用于重建致密结缔组织损伤的有生命力的生物材料。已建立的同种异体处理技术,包括γ辐照和十二烷基硫酸钠(SDS),可能会影响组织完整性。超临界二氧化碳(SCCO)代表一种新的替代方法,具有潜在的能力,可以在最小化暴露于变性剂、缩短处理时间、无毒性残留和具有更好的组织穿透性和功效的情况下,对肌腱进行去细胞和消毒。本研究试图开发一种用于肌腱的一步法混合去细胞和消毒方案,涉及 SCCO 与各种化学添加剂的处理。通过机械测试、组织学、扫描电子显微镜(SEM)和傅里叶变换红外(FTIR)光谱对处理后的肌腱进行评估。单轴机械测试表明,与γ辐照和标准 SDS 处理的肌腱相比,用 SCCO 和添加剂 NovaKill Gen2 和 0.1%SDS 处理的肌腱具有显著更高的(<0.05)极限拉伸应力(UTS)和杨氏模量。这与 SEM 和 FTIR 光谱检查的 SCCO 处理的肌腱的超微结构完整性一致,而在γ辐照和标准 SDS 处理的肌腱中未保留。然而,本研究中使用的实验性 SCCO-SDS 方案并未实现完全去细胞化。因此,本研究为同种异体肌腱的基于 SCCO 的联合消毒和去细胞化方案的开发提供了具体的起点,其中添加剂的选择有待优化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a5c/7084268/279d8c250318/ijms-21-01565-g001.jpg

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