首页> 外文期刊>Molecular & cellular biomechanics: MCB >Alteration of viscoelastic properties is associated with a change in cytoskeleton components of ageing chondrocytes from rabbit knee articular cartilage.
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Alteration of viscoelastic properties is associated with a change in cytoskeleton components of ageing chondrocytes from rabbit knee articular cartilage.

机译:粘弹性的改变与兔膝关节软骨中老化软骨细胞的细胞骨架成分的变化有关。

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The cytoskeleton network is believed to play an important role in the biomechanical properties of the chondrocyte. Ours and other laboratories have demonstrated that chondrocytes exhibit a viscoelastic solid creep behavior in vitro and that viscoelastic properties decrease in osteoarthritic chondrocytes. In this study, we aimed to understand whether the alteration of viscoelastic properties is associated with changes in cytoskeleton components of ageing chondrocytes from rabbit knee articular cartilage. Three age groups were used for this study: young (2-months-old, N=23), adult (8-months-old, N=23), and old (31-months-old, N=23) rabbit groups. Cartilage structure and proteoglycan and type II collagen content were determined by H&E and Toluidine Blue staining, and type II collagen antibody. The detailed structure of the chondrocytes in all groups was visualized using transmission electron microscopy (TEM). Chondrocytes were isolated from full-thickness knee cartilage of rabbits from all groups and their viscoelastic properties were quantified within 2 hours of isolation using a micropipette aspiration technique combined with a standard linear viscoelastic solid model. The components and network of the cytoskeleton within the cells were analyzed by laser scanning confocal microscopy (LSCM) with immunofluorescence staining as well as real time PCR and western blotting. With ageing, articular cartilage contained less chondrocytes and less proteoglycans and type II collagen. TEM observations showed that the cell membranes were not clearly defined, organelles were fewer and the nuclei were deformed or shrunk in the old cells compared with the young and adult cells. In suspension, chondrocytes from all three age groups showed significant viscoelastic creep behavior, but the deformation rate and amplitude of old chondrocytes were increased under the same negative pressure when compared to young and adult chondrocytes. Viscoelastic properties of the old cells, including equilibrium modulus (E infinity), instantaneous modulus (E0) and apparent viscosity (mu) were significantly lower than that those of the young and adult ones (P < 0.001). No significant differences were detected between young and adult chondrocytes (P > 0.05). Moreover, we found that the cytoskeletal networks of old cells were sparser, and that the contents of the various components of the intracellular networks were reduced in old cells, compared with adult and young cells. Aged chondrocytes had a different response to mechanical stimulation when compared to young and adult chondrocytes due to alteration of their viscoelastic properties, which was in turn associated with changes in cell structure and cytoskeleton composition.
机译:据信细胞骨架网络在软骨细胞的生物力学特性中起重要作用。我们的实验室和其他实验室已经证明,软骨细胞在体外表现出粘弹性的固体蠕变行为,而骨关节炎软骨细胞的粘弹性下降。在这项研究中,我们旨在了解粘弹性的变化是否与兔膝关节软骨衰老的软骨细胞的细胞骨架成分的变化有关。这项研究使用了三个年龄组:年轻(2个月大,N = 23),成年(8个月大,N = 23)和年龄大(31个月大,N = 23)的兔子组。通过H&E和甲苯胺蓝染色以及II型胶原抗体确定软骨结构和蛋白聚糖以及II型胶原含量。使用透射电子显微镜(TEM)观察所有组中软骨细胞的详细结构。从各组兔的全膝关节软骨中分离软骨细胞,并使用微量移液器抽吸技术结合标准线性粘弹性固体模型在分离的2小时内定量其粘弹性。通过激光扫描共聚焦显微镜(LSCM)进行免疫荧光染色,实时PCR和蛋白质印迹分析细胞内细胞骨架的组成和网络。随着年龄的增长,关节软骨包含的软骨细胞更少,蛋白聚糖和II型胶原蛋白更少。 TEM观察表明,与年轻和成年细胞相比,老细胞的细胞膜未明确定义,细胞器更少,细胞核变形或收缩。在悬浮状态下,所有三个年龄组的软骨细胞均表现出显着的粘弹性蠕变行为,但与年轻和成人软骨细胞相比,在相同的负压下,老软骨细胞的变形率和振幅均增加。老细胞的粘弹性质,包括平衡模量(E无限大),瞬时模量(E0)和表观粘度(μ),均显着低于年轻和成年细胞(P <0.001)。在年轻和成年软骨细胞之间未检测到显着差异(P> 0.05)。此外,我们发现旧细胞的细胞骨架网络较稀疏,并且与成年和年轻细胞相比,旧细胞中细胞内网络各种成分的含量降低了。与年轻和成年软骨细胞相比,老化的软骨细胞对机械刺激的反应不同,这是由于它们的粘弹性特性发生了变化,这又与细胞结构和细胞骨架组成的变化有关。

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