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Preparation of Nano-sized Collagen I and Collagen II Particles

机译:纳米胶原I和胶原II颗粒的制备

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This pilot study describes a new method to prepare nano-sized collagen type I and collagen type II particles by using a high-voltage electrostatic field system. Observations from transmission electron microscopy showed that, the nano-sized collagen II particles with a range of 150 nm in diameter could be produced with a good spherical shape under the experimental setting of 2.7~4.5 kVcm{sup}(-1), under 23°C and a moderate concentration of collagen II solution at 0.2 mg/ml. When the treatment temperature increased to 30°C or higher, collagen II began to lose the tendency to individually separated spherical shaped nano-sized particles, instead, the fibrillogenesis of collagen II occurred by the spontaneous reconstitution of collagen II and then formed collagen II fibrils. More strict experimental settings were necessary for preparing nano-sized collagen I particles, that are, lower temperature setting (under 7°C environment), lower collagen concentration (0.1 mg/ml) and lower applied voltage (2.5 kVcm{sup}(-1)). Moreover, these prepared nano-sized collagen I particles exhibited smaller size in diameter (100 nm) but poorer sphericity than collagen II particles. They often aggregated together and exhibited an irregular outer shape.
机译:该试点研究描述了一种通过使用高压静电场系统制备纳米型胶原I和胶原II颗粒的新方法。来自透射电子显微镜的观察结果表明,在直径为150nm的纳米胶原II颗粒,可以在23℃以下的2.7〜4.5 kVcm {sup}( - 1)下,以良好的球形形状产生良好的球形。 °C和中等浓度的胶原II溶液,0.2mg / ml。当治疗温度增加至30℃或更高时,胶原II开始失去单独分离的球形纳米尺寸颗粒的趋势,而是通过胶原II的自发重构发生胶原II的原纤维生成,然后形成胶原II纤维。制备纳米胶原I颗粒的更严格的实验设置是必需的,即较低的温度设定(在7°C环境下),较低的胶原浓度(0.1mg / ml)和较低施加的电压(2.5kVcm {sup}( - 1))。此外,这些制备的纳米胶原I颗粒的直径(100nm)的尺寸较小,但球形较差的球体比胶原II颗粒。它们经常聚集在一起并表现出不规则的外形。

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