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Nanomechanics of UV irradiated collagen fibrills

Nanomechanics of UV irradiated collagen fibrills
紫外线照射胶原纤维的纳米力学
批准号:
276304632
负责人:
Professor Dr. Robert Stark
金额:
$0.0万
依托单位国家:
德国
项目类别:
Research Grants
财政年份:
2015
资助国家:
德国
项目状态:
已结题
起止时间:
2014-12-31 至 2019-12-31

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中文摘要
翻译
胶原蛋白以细长的原纤维的形式具有特殊的性质,是人体的主要结构蛋白。由于其复杂和分级结构,胶原蛋白具有非常高的(极限)拉伸强度。因此,胶原蛋白增加了皮肤、肌腱、血管结扎、器官或骨骼的拉伸强度和弹性。在技术上,胶原蛋白是细胞培养中的重要基质,并在组织工程中用作支架。在这些例子中,胶原蛋白的机械性能起着重要作用。胶原的机械性能由内部交联决定。在生物体中,交联发生在原纤维的合成和组装过程中。然而,外部影响,如紫外线(UV)辐射或温度处理也会影响机械性能,因为会产生额外的交联。延长治疗可能会导致蛋白水解导致的衰弱。然而,在单个纤维的尺度上,尚不清楚UV辐射和温度的影响。因此,应借助原子力显微镜研究经处理的胶原的纳米力学。共焦拉曼光谱应有助于空间分辨化学分析。该项目旨在证明I型胶原蛋白的纳米机械性能可以通过紫外线照射和温度处理以可控的方式进行修改。从更长远的角度来看,结果将有助于胶原蛋白基质或支架具有受控的机械性能。
英文摘要
Collagen in the form of elongated fibrils possesses exceptional properties and is the main structural protein of the human body. Owing to its complex and hierarchical structure collagen has a very high (ultimate) tensile strength. Thus, collagen adds tensile strength and resilience to skin, tendon, vascular ligature, organs, or bone. In technology collagen is an important substrate in cell culture and serves as a scaffold in tissue engineering. In these examples, the mechanical properties of collagen play a prominent role. The mechanical properties of collagen are determined by internal cross-linking. In an organism, cross-linking occurs during synthesis and assembly of the fibrils. External influence, however, such as ultraviolet (UV) radiation or temperature treatment also affect the mechanical properties because additional cross-links are created. Extended treatment may lead to a weakening due to proteolysis. However, on the scale of individual fibrils it is not clear which influence UV radiation and temperature have. Thus, the nanomechanics of treated collagen shall be investigated with the aid of an atomic force microscope. Confocal Raman spectroscopy shall contribute to a spatially resolved chemical analysis. The project aims to show that the nanomechanical properties of collagen type I can be modified in a controlled manner with UV irradiation and temperature treatment. On a longer perspective the results shall contribute to collagen matrices or scaffolds with controlled mechanical properties.
期刊论文(1)
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DOI: 10.1016/j.jmbbm.2018.08.039
发表时间: 2018-08
期刊: Journal of the mechanical behavior of biomedical materials
影响因子: 3.9
作者: [M. Schulze;M. Rogge;R. Stark]
通讯作者: M. Schulze;M. Rogge;R. Stark
Understanding the enhanced magnetization intensities of post-20 Ma oceanic basalts through magneto-mineratogical experiments
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