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首页> 外文期刊>Thermochimica Acta: An International Journal Concerned with the Broader Aspects of Thermochemistry and Its Applications to Chemical Problems >The effects of urea and n-propanol on collagen denaturation: using DSC, circular dicroism and viscosity
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The effects of urea and n-propanol on collagen denaturation: using DSC, circular dicroism and viscosity

机译:尿素和正丙醇对胶原蛋白变性的影响:使用DSC,圆二色性和粘度

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摘要

The effect of urea and n-propanol on circular dichroism (CD) and viscosity of purified type1 collagen solution at various temperatures and differential scanning calorimetry (DSC) of rat-tail tendon (RTT) collagen fibre have been studied. CD reveals a spectrum with a positive peak at around 220 nm and a negative peak at 200 nm characteristics of collagen triple helix. The molar ellipticity decreases as the concentration of urea increases up to particular concentration (collagen solution treated with 265 muM of urea) and after that it increases (collagen solution treated with 500 muM of urea). There is a linear decrease in molar ellipticity as the concentration of n-propanol increases. Denaturation temperature of urea and n-propanol treated with purified collagen solution has been studied using viscosity method. Additives such as urea and n-propanol decrease the thermal stability of collagen triple helix in solution and in RTT collagen fibre. Thermal helix to coil transition of urea and n-propanol treated collagen depends on the degree of hydration and the concentration of these additives. Thermodynamic parameters such as the peak temperature, enthalpy of activation, and energy of activation for collagen-gelatin transition for native, urea and n-propanol treated RTT collagen fibre has been calculated using DSC. The change in the thermodynamic parameters has been observed for native, urea and n-propanol treated RTT collagen fibres. The experimental results show that the change in the water structure, dehydration and desolvation induced by different additives such as urea and n-propanol on RTT may vary with the type of denaturation. (C) 2003 Elsevier B.V. All rights reserved.
机译:研究了尿素和正丙醇在不同温度下对圆二色性(CD)和纯化的Type1胶原蛋白溶液的粘度的影响,并研究了鼠尾肌腱(RTT)胶原纤维的差示扫描量热法(DSC)。 CD揭示了具有胶原三重螺旋特征的在220nm左右具有正峰而在200nm具有负峰的光谱。摩尔椭圆率随着尿素浓度增加到特定浓度(用265μM尿素处理的胶原溶液)而降低,然后增加(用500μM尿素处理的胶原溶液)。随着正丙醇浓度的增加,摩尔椭圆率线性降低。采用粘度法研究了纯化胶原蛋白溶液处理后尿素和正丙醇的变性温度。诸如尿素和正丙醇之类的添加剂会降低溶液和RTT胶原纤维中胶原三螺旋的热稳定性。尿素和正丙醇处理过的胶原蛋白从热螺旋到螺旋的转变取决于水合程度和这些添加剂的浓度。已经使用DSC计算了天然,尿素和正丙醇处理的RTT胶原纤维的热力学参数,例如峰值温度,活化焓和胶原-明胶转变的活化能。对于天然,尿素和正丙醇处理过的RTT胶原纤维,已经观察到热力学参数的变化。实验结果表明,不同的添加剂(如尿素和正丙醇)在RTT上引起的水结构变化,脱水和去溶剂化可能随变性的类型而变化。 (C)2003 Elsevier B.V.保留所有权利。

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