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COLLAGEN FIBER ALIGNMENT AND BIAXIAL MECHANICAL BEHAVIOR OF PORCINE URINARY BLADDER DERIVED EXTRACELLULAR MATRIX

机译:猪尿囊衍生的细胞外基质的胶原蛋白纤维排列和双轴力学行为

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摘要

The collagen fiber alignment and biomechanical behavior of naturally occurring extracellular matrix (ECM) scaffolds are important considerations for the design of medical devices from these materials. Both should be considered in order to produce a device to meet tissue specific mechanical requirements (e.g., tendon vs. urinary bladder), and could ultimately affect the remodeling response in vivo. The present study evaluated the collagen fiber alignment and biaxial mechanical behavior of ECM scaffold material harvested from porcine urinary bladder tunica mucosa and basement membrane (together referred to as urinary bladder matrix (UBM)) and ECM harvested from urinary bladder submucosa (UBS). Since the preparation of UBM allows for control of the direction of delamination, the effect of the delamination method on the mechanical behavior of UBM was determined by delaminating the submucosa and other abluminal layers by scraping along the longitudinal axis of the bladder (apex to neck) (UBML) or along the circumferential direction (UBMC). The processing of UBS does not allow for similar directional control. UBML and UBS had similar collagen fiber distributions, with a preferred collagen fiber alignment along the longitudinal direction. UBMC showed a more homogenous collagen fiber orientation. All samples showed a stiffer mechanical behavior in the longitudinal direction. Despite similar collagen fiber distributions, UBML and UBS showed quite different mechanical behavior for the applied loading patterns with UBS showing a much more pronounced toe region. The mechanical behavior for UBMC in both directions was similar to the mechanical behavior of UBML. There are distinct differences in the mechanical behavior of different layers of ECM from the porcine urinary bladder, and the processing methods can substantially alter the mechanical behavior observed.
机译:天然存在的细胞外基质(ECM)支架的胶原纤维排列和生物力学行为是由这些材料设计医疗设备的重要考虑因素。为了生产出满足组织特定的机械要求(例如,肌腱对膀胱)的装置,应当考虑两者,并且最终可能影响体内的重塑反应。本研究评估了从猪膀胱膜粘膜和基底膜(统称为膀胱基质(UBM))收集的ECM支架材料和从膀胱粘膜下层(UBS)收集的ECM的胶原纤维排列和双轴力学行为。由于UBM的制备可以控制分层的方向,因此分层方法对UBM力学性能的影响是通过沿膀胱纵轴(顶点至颈部)刮擦来剥离粘膜下层和其他无基底膜层而确定的。 (UBML)或沿圆周方向(UBMC)。 UBS的处理不允许类似的方向控制。 UBML和UBS具有相似的胶原纤维分布,其中优选的胶原纤维沿纵向排列。 UBMC显示出更均匀的胶原纤维取向。所有样品在纵向上均显示出较硬的机械性能。尽管胶原纤维分布相似,但UBML和UBS在所施加的载荷模式下表现出截然不同的机械性能,而UBS显示出更明显的脚趾区域。 UBMC在两个方向上的机械行为都类似于UBML的机械行为。来自猪膀胱的ECM的不同层的机械行为存在明显差异,加工方法可以显着改变所观察到的机械行为。

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