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Mechanical properties of native and cross-linked type I collagen fibrils

机译:天然和交联的I型胶原纤维的机械性能

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摘要

Micromechanical bending experiments using atomic force microscopy were performed to study the mechanical properties of native and carbodiimide-cross-linked single collagen fibrils. Fibrils obtained from a suspension of insoluble collagen type I isolated from bovine Achilles tendon were deposited on a glass substrate containing microchannels. Force-displacement curves recorded at multiple positions along the collagen fibril were used to assess the bending modulus. By fitting the slope of the force-displacement curves recorded at ambient conditions to a model describing the bending of a rod, bending moduli ranging from 1.0 GPa to 3.9 GPa were determined. From a model for anisotropic materials, the shear modulus of the fibril is calculated to be 33 ± 2 MPa at ambient conditions. When fibrils are immersed in phosphate-buffered saline, their bending and shear modulus decrease to 0.07–0.17 GPa and 2.9 ± 0.3 MPa, respectively. The two orders of magnitude lower shear modulus compared with the Young's modulus confirms the mechanical anisotropy of the collagen single fibrils. Cross-linking the collagen fibrils with a water-soluble carbodiimide did not significantly affect the bending modulus. The shear modulus of these fibrils, however, changed to 74 ± 7 MPa at ambient conditions and to 3.4 ± 0.2 MPa in phosphate-buffered saline.
机译:进行了使用原子力显微镜的微机械弯曲实验,以研究天然的和碳二亚胺交联的单个胶原纤维的机械性能。从牛跟腱分离的I型不溶性胶原悬浮液中获得的原纤维沉积在含有微通道的玻璃基板上。使用沿胶原纤维的多个位置记录的力-位移曲线来评估弯曲模量。通过将在环境条件下记录的力-位移曲线的斜率拟合到描述杆的弯曲的模型,确定了从1.0 GPa到3.9 GPa的弯曲模量。根据各向异性材料的模型,在环境条件下,原纤维的剪切模量计算为33±2 MPa。当将原纤维浸入磷酸盐缓冲液中时,它们的弯曲模量和剪切模量分别降至0.07-0.17 GPa和2.9±0.3 MPa。与杨氏模量相比,剪切模量降低了两个数量级,证实了胶原单纤维的机械各向异性。胶原纤维与水溶性碳二亚胺的交联不会显着影响弯曲模量。但是,这些原纤维的剪切模量在环境条件下变为74±7 MPa,在磷酸盐缓冲液中变为3.4±0.2 MPa。

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