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首页> 外文期刊>Industrial and organizational psychology >Comparison of the Structural Characteristics of Native Collagen Fibrils Derived from Bovine Tendons Using Two Different Methods: Modified Acid-Solubilized and Pepsin-Aided Extraction
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Comparison of the Structural Characteristics of Native Collagen Fibrils Derived from Bovine Tendons Using Two Different Methods: Modified Acid-Solubilized and Pepsin-Aided Extraction

机译:两种不同方法衍生自牛筋的天然胶原纤维结构特征的比较:改性酸溶解和胃蛋白辅助提取

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Native collagen fibrils (CF) were successfully extracted from bovine tendons using two different methods: modified acid-solubilized extraction for A-CF and pepsin-aided method for P-CF. The yields of A-CF and P-CF were up to 64.91% (+/- 1.07% SD) and 56.78% (+/- 1.22% SD) (dry weight basis), respectively. The analyses of both amino acid composition and sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) confirmed that A-CF and P-CF were type I collagen fibrils. Both A-CF and P-CF retained the intact crystallinity and integrity of type I collagen's natural structure by FTIR spectra, circular dichroism spectroscopy (CD) and X-ray diffraction detection. The aggregation structures of A-CF and P-CF were displayed by UV-Vis. However, A-CF showed more intact aggregation structure than P-CF. Microstructure and D-periodicities of A-CF and P-CF were observed (SEM and TEM). The diameters of A-CF and P-CF are about 386 and 282 nm, respectively. Although both A-CF and P-CF were theoretically concordant with the Schmitt hypothesis, A-CF was of evener thickness and higher integrity in terms of aggregation structure than P-CF. Modified acid-solubilized method provides a potential non-enzyme alternative to extract native collagen fibrils with uniform thickness and integral aggregation structure.
机译:使用两种不同的方法成功地从牛肌腱中提取了原生胶原型原纤维:改性酸溶解的A-CF和Pepsin辅助方法的P-CF。 A-CF和P-CF的产率可分别为64.91%(+/- 1.07%SD)和56.78%(+/- 1.22%SD)(干重基)。氨基酸组合物和十二烷基硫酸钠 - 聚丙烯酰胺凝胶电泳(SDS-PAGE)的分析证实,A-CF和P-CF是I型胶原纤维。 A-CF和P-CF均通过FTIR光谱,圆形二色光谱(CD)和X射线衍射检测保留I型胶原蛋白的天然结构的完整结晶度和完整性。通过UV-VI显示A-CF和P-CF的聚集结构。然而,A-CF显示比P-CF更完整的聚集结构。观察到A-CF和P-CF的微观结构和D周期(SEM和TEM)。 A-CF和P-CF的直径分别为约386和282nm。虽然A-CF和P-CF在理论上与Schmitt假设理论上是均匀的,但是A-CF在聚集结构方面具有比P-CF的聚集结构更高的完整性。改性酸溶解方法提供潜在的非酶替代方案,以提取具有均匀厚度和整体聚集结构的天然胶原原纤维。

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