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首页> 外文期刊>Acta biomaterialia >A mechanical evaluation of three decellularization methods in the design of a xenogeneic scaffold for tissue engineering the temporomandibular joint disc.
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A mechanical evaluation of three decellularization methods in the design of a xenogeneic scaffold for tissue engineering the temporomandibular joint disc.

机译:在设计用于颞下颌关节盘组织的异种支架的设计中,三种脱细胞方法的机械评估。

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摘要

Tissue-engineered temporomandibular joint (TMJ) discs offer a viable treatment option for patients with severe joint internal derangement. To date, only a handful of TMJ tissue engineering studies have been carried out and all have incorporated the use of synthetic scaffold materials. These current scaffolds have shown limited success in recapitulating morphological and functional aspects of the native disc tissue. The present study is the first to investigate the potential of a xenogeneic scaffold for use in tissue engineering the TMJ disc. The effects of decellularization agents on the disc's mechanical properties were assessed using three common decellularization protocols: Triton X-100, sodium dodecyl sulfate (SDS) and an acetone/ethanol solution. Decellularized scaffolds were subsequently characterized through cyclic mechanical testing at physiologically relevant frequencies to determine which chemical agent most accurately preserved the native tissue properties. Results have shown that porcine discs treated with SDS most closely matched the energy dissipation capabilities and resistance to deformation of the native tissue. Treatments using Triton X-100 caused the resultant tissue to become relatively softer with inferior energy dissipation capabilities, while treatment using acetone/ethanol led to a significantly stiffer and dehydrated material. These findings support the potential of a porcine-derived scaffold decellularized by SDS as a xenograft for TMJ disc reconstruction.
机译:组织工程化的颞下颌关节(TMJ)椎间盘为严重关节内部错乱的患者提供了可行的治疗选择。迄今为止,仅进行了少量的TMJ组织工程研究,并且所有研究都纳入了合成支架材料的使用。这些现有的支架在概括天然椎间盘组织的形态和功能方面已显示出有限的成功。本研究是第一个研究异源支架在组织工程TMJ盘中使用的潜力。使用三种常见的脱细胞方案评估了脱细胞剂对椎间盘机械性能的影响:Triton X-100,十二烷基硫酸钠(SDS)和丙酮/乙醇溶液。随后通过在生理相关频率下的循环机械测试对脱细胞的支架进行表征,以确定哪种化学试剂最准确地保留了天然组织的特性。结果表明,用SDS处理过的猪圆盘与能量耗散能力和天然组织抗变形能力最接近。使用Triton X-100进行的处理使所得组织变得相对较软,能量耗散能力较差,而使用丙酮/乙醇进行的处理会使材料明显变硬和脱水。这些发现支持了由SDS脱细胞的猪源支架作为TMJ椎间盘重建的异种移植物的潜力。

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