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β-氨基丙腈诱导的酶交联减少导致胶原蛋白形态和分子组成的体外变化。

β-Aminopropionitrile-Induced Reduction in Enzymatic Crosslinking Causes In Vitro Changes in Collagen Morphology and Molecular Composition.

作者信息

Canelón Silvia P, Wallace Joseph M

机构信息

Weldon School of Biomedical Engineering, Purdue University, West Lafayette, Indiana, United States of America.

Department of Biomedical Engineering, Indiana University-Purdue University at Indianapolis, Indianapolis, Indiana, United States of America.

出版信息

PLoS One. 2016 Nov 9;11(11):e0166392. doi: 10.1371/journal.pone.0166392. eCollection 2016.

Abstract

Type I collagen morphology can be characterized using fibril D-spacing, a metric which describes the periodicity of repeating bands of gap and overlap regions of collagen molecules arranged into collagen fibrils. This fibrillar structure is stabilized by enzymatic crosslinks initiated by lysyl oxidase (LOX), a step which can be disrupted using β-aminopropionitrile (BAPN). Murine in vivo studies have confirmed effects of BAPN on collagen nanostructure and the objective of this study was to evaluate the mechanism of these effects in vitro by measuring D-spacing, evaluating the ratio of mature to immature crosslinks, and quantifying gene expression of type I collagen and LOX. Osteoblasts were cultured in complete media, and differentiated using ascorbic acid, in the presence or absence of 0.25mM BAPN-fumarate. The matrix produced was imaged using atomic force microscopy (AFM) and 2D Fast Fourier transforms were performed to extract D-spacing from individual fibrils. The experiment was repeated for quantitative reverse transcription polymerase chain reaction (qRT-PCR) and Fourier Transform infrared spectroscopy (FTIR) analyses. The D-spacing distribution of collagen produced in the presence of BAPN was shifted toward higher D-spacing values, indicating BAPN affects the morphology of collagen produced in vitro, supporting aforementioned in vivo experiments. In contrast, no difference in gene expression was found for any target gene, suggesting LOX inhibition does not upregulate the LOX gene to compensate for the reduction in aldehyde formation, or regulate expression of genes encoding type I collagen. Finally, the mature to immature crosslink ratio decreased with BAPN treatment and was linked to a reduction in peak percent area of mature crosslink hydroxylysylpyridinoline (HP). In conclusion, in vitro treatment of osteoblasts with low levels of BAPN did not induce changes in genes encoding LOX or type I collagen, but led to an increase in collagen D-spacing as well as a decrease in mature crosslinks.

摘要

I型胶原蛋白的形态可以通过原纤维D间距来表征,该指标描述了排列成胶原纤维的胶原分子间隙和重叠区域重复带的周期性。这种纤维状结构由赖氨酰氧化酶(LOX)引发的酶促交联稳定,这一步骤可以使用β-氨基丙腈(BAPN)来破坏。小鼠体内研究已经证实了BAPN对胶原纳米结构的影响,本研究的目的是通过测量D间距、评估成熟交联与未成熟交联的比例以及定量I型胶原蛋白和LOX的基因表达来评估这些影响在体外的机制。成骨细胞在完全培养基中培养,并在存在或不存在0.25mM BAPN-富马酸盐的情况下用抗坏血酸进行分化。使用原子力显微镜(AFM)对产生的基质进行成像,并进行二维快速傅里叶变换以从单个原纤维中提取D间距。对定量逆转录聚合酶链反应(qRT-PCR)和傅里叶变换红外光谱(FTIR)分析重复该实验。在BAPN存在下产生的胶原蛋白的D间距分布向更高的D间距值偏移,表明BAPN影响体外产生的胶原蛋白的形态,支持上述体内实验。相比之下,未发现任何靶基因的基因表达有差异,这表明LOX抑制不会上调LOX基因以补偿醛形成的减少,也不会调节编码I型胶原蛋白的基因的表达。最后,BAPN处理使成熟交联与未成熟交联的比例降低,并且与成熟交联羟赖氨酰吡啶啉(HP)的峰面积百分比降低有关。总之,用低水平BAPN体外处理成骨细胞不会诱导编码LOX或I型胶原蛋白的基因发生变化,但会导致胶原蛋白D间距增加以及成熟交联减少。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5cd5/5102343/16c7685efde2/pone.0166392.g001.jpg

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