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聚丙烯酰胺凝胶弹性对II型胶原纤维组装的影响。

Effect of polyacrylamide gel elasticity on collagen type II fibril assembly.

作者信息

Wilcox Kathryn G, Kramer Stephanie, Chatterjee Surajit, Linscott Adam, Suresh Sneha, Kisley Lydia, Morozova Svetlana

机构信息

Department of Macromolecular Science and Engineering, Case Western Reserve University, Cleveland, OH, USA.

Department of Physics, Case Western Reserve University, Cleveland, OH, USA.

出版信息

Soft Matter. 2024 Dec 18;21(1):137-147. doi: 10.1039/d4sm01104j.

Abstract

Collagen type II fibrils provide structural integrity to the articular cartilage extracellular matrix. However, the conditions that control the fibril radial size scale, distribution, and formation inside of dense networks are not well understood. We have investigated how surrounding elastic networks affect fibril formation by observing the structure and dynamics of collagen type II in model polyacrylamide gels of varying moduli. Cryogenic transmission electron microscopy (cryo-TEM) is used to image the fibril structure and is verified qualitatively with optical microscopy of fluorescently-tagged collagen within the gels. Using fluorescence correlation spectroscopy super-resolution optical fluctuation imaging (fcsSOFI), the diffusion dynamics of the collagen in low pH and neutral pH conditions are determined. Overall, the fibril bundle diameter and concentration were found to decrease as a function of gel modulus. The single fibril diameter remains constant at 30 nm within the gels; however, the diameter was found to be smaller when compared to in solution. Additionally, the mode of diffusion of the collagen triple helices changes within gel environments, decreasing the diffusion coefficient. Understanding the intricate relationship between network topology and collagen type II fibril formation is crucial in gaining deeper insights into the transport phenomena within complex acellular tissues that are necessary for the development of future therapeutic materials.

摘要

II型胶原纤维为关节软骨细胞外基质提供结构完整性。然而,控制致密网络内纤维径向尺寸尺度、分布和形成的条件尚未得到充分理解。我们通过观察不同模量的模型聚丙烯酰胺凝胶中II型胶原的结构和动力学,研究了周围弹性网络如何影响纤维形成。低温透射电子显微镜(cryo-TEM)用于对纤维结构成像,并通过凝胶内荧光标记胶原的光学显微镜进行定性验证。使用荧光相关光谱超分辨率光学涨落成像(fcsSOFI),确定了胶原在低pH和中性pH条件下的扩散动力学。总体而言,发现纤维束直径和浓度随凝胶模量的变化而减小。凝胶内单根纤维直径保持在30nm不变;然而,与在溶液中相比,其直径更小。此外,胶原三螺旋在凝胶环境中的扩散模式发生变化,扩散系数降低。了解网络拓扑结构与II型胶原纤维形成之间的复杂关系,对于更深入了解复杂无细胞组织内的传输现象至关重要,而这对于未来治疗材料的开发是必要的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8935/11618509/92dbd96c184e/d4sm01104j-f1.jpg

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