高压静电场系统制备ⅱ型胶原纳米颗粒。

S J Chang, G C-C Niu, S M Kuo, C C Ho, M S Bair
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引用次数: 10

摘要

该试点研究描述了一种利用高压静电场系统从II型胶原蛋白制备纳米级颗粒的新方法。透射电镜观察表明,其中一种情况下,纳米级胶原II颗粒表现出良好的球形性,在实验设置为3 kV cm(-1),处理时间为3 h, 25℃(胶原浓度为0.2 mg ml(-1))下,颗粒直径在23.3+/-1.7 nm范围内。当处理温度升高到30℃时,II型胶原开始失去形成单独分离的球形纳米颗粒的倾向。此外,在37摄氏度的温度下,形成了胶原II的纤维结构,而不是纳米颗粒形状。这一结果可能是由一个被称为纤维形成的熵驱动过程造成的,一个更大的力导致胶原分子自组装,然后形成胶原原纤维。有趣的是,这实际上是第一次尝试在高压静电场的作用下,直接从II型胶原溶液中产生纳米颗粒,并有一套胶原浓度和低温设置的工作参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Preparation of nano-sized particles from collagen II by a high-voltage electrostatic field system.

The pilot study describes a novel method for preparing nano-sized particles from collagen II using a high-voltage electrostatic field system. Observations from transmission electron microscopy showed that, in one of the cases, the nano-sized collagen II particles exhibited good sphericity, and the particles were in the range of 23.3+/-1.7 nm in diameter at the experimental setting of 3 kV cm(-1), for a 3 h treatment period and at 25 degrees C (with a collagen concentration of 0.2 mg ml(-1)). When the treatment temperature increased to 30 degrees C, the collagen II began to lose the tendency to form individually separated spherically shaped nano-particles. Moreover, a fibrous structure of collagen II was formed instead of a nano-particle shape at the temperature of 37 degrees C. This result is probably contributed to by an entropy-driven process that is termed fibrillogenesis, a larger force causing the collagen molecules to self-assemble and then form collagen fibrils. It is interesting to note that this is practically the first attempt to produce nano-particles directly from collagen II solution under the treatment of a high-voltage electrostatic field, together with a set of working parameters for the collagen concentration and low-temperature setting.

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