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从应变硬化到软化——通过电子辐照交联的角蛋白8和角蛋白18网络的流变学表征

From Strain Stiffening to Softening-Rheological Characterization of Keratins 8 and 18 Networks Crosslinked via Electron Irradiation.

作者信息

Elbalasy Iman, Wilharm Nils, Herchenhahn Erik, Konieczny Robert, Mayr Stefan G, Schnauß Jörg

机构信息

Peter-Debye Institute for Soft Matter Physics, Leipzig University, Linnéstraße 5, 04103 Leipzig, Germany.

Faculty of Science, Cairo University, Giza 12613, Egypt.

出版信息

Polymers (Basel). 2022 Feb 4;14(3):614. doi: 10.3390/polym14030614.

Abstract

Networks of crosslinked keratin filaments are abundant in epithelial cells and tissues, providing resilience against mechanical forces and ensuring cellular integrity. Although studies of in vitro models of reconstituted keratin networks have revealed important mechanical aspects, the mechanical properties of crosslinked keratin structures remain poorly understood. Here, we exploited the power of electron beam irradiation (EBI) to crosslink in vitro networks of soft epithelial keratins 8 and 18 (k8-k18) filaments with different irradiation doses (30 kGy, 50 kGy, 80 kGy, 100 kGy, and 150 kGy). We combined bulk shear rheology with confocal microscopy to investigate the impact of crosslinking on the mechanical and structural properties of the resultant keratin gels. We found that irradiated keratin gels display higher linear elastic modulus than the unirradiated, entangled networks at all doses tested. However, at the high doses (80 kGy, 100 kGy, and 150 kGy), we observed a remarkable drop in the elastic modulus compared to 50 kGy. Intriguingly, the irradiation drastically changed the behavior for large, nonlinear deformations. While untreated keratin networks displayed a strong strain stiffening, increasing irradiation doses shifted the system to a strain softening behavior. In agreement with the rheological behavior in the linear regime, the confocal microscopy images revealed fully isotropic networks with high percolation in 30 kGy and 50 kGy-treated keratin samples, while irradiation with 100 kGy induced the formation of thick bundles and clusters. Our results demonstrate the impact of permanent crosslinking on k8-k18 mechanics and provide new insights into the potential contribution of intracellular covalent crosslinking to the loss of mechanical resilience in some human keratin diseases. These insights will also provide inspiration for the synthesis of new keratin-based biomaterials.

摘要

交联角蛋白丝网络在上皮细胞和组织中大量存在,为抵抗机械力提供弹性并确保细胞完整性。尽管对重组角蛋白网络体外模型的研究揭示了重要的力学方面,但交联角蛋白结构的力学性能仍知之甚少。在此,我们利用电子束辐照(EBI)的力量,用不同辐照剂量(30 kGy、50 kGy、80 kGy、100 kGy和150 kGy)交联软上皮角蛋白8和18(k8 - k18)丝的体外网络。我们将体剪切流变学与共聚焦显微镜相结合,以研究交联对所得角蛋白凝胶的力学和结构性能的影响。我们发现,在所有测试剂量下,辐照后的角蛋白凝胶比未辐照的缠结网络显示出更高的线性弹性模量。然而,在高剂量(80 kGy、100 kGy和150 kGy)下,与50 kGy相比,我们观察到弹性模量显著下降。有趣的是,辐照极大地改变了大的非线性变形行为。未处理的角蛋白网络表现出强烈的应变硬化,而增加辐照剂量使系统转变为应变软化行为。与线性区域的流变行为一致,共聚焦显微镜图像显示,在30 kGy和50 kGy处理的角蛋白样品中,网络完全各向同性且具有高渗滤性,而100 kGy辐照诱导形成粗束和簇。我们的结果证明了永久交联对k8 - k18力学的影响,并为细胞内共价交联对某些人类角蛋白疾病中机械弹性丧失的潜在贡献提供了新见解。这些见解也将为新型角蛋白基生物材料的合成提供灵感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2656/8838340/9877dd72ff67/polymers-14-00614-g001.jpg

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