首页> 美国卫生研究院文献>PLoS Clinical Trials >The Influence of Arginine on the Response of Enamel Matrix Derivative (EMD) Proteins to Thermal Stress: Towards Improving the Stability of EMD-Based Products
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The Influence of Arginine on the Response of Enamel Matrix Derivative (EMD) Proteins to Thermal Stress: Towards Improving the Stability of EMD-Based Products

机译:精氨酸对牙釉质基质衍生物(EMD)蛋白对热应力的响应的影响:改善基于EMD的产品的稳定性

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摘要

In a current procedure for periodontal tissue regeneration, enamel matrix derivative (EMD), which is the active component, is mixed with a propylene glycol alginate (PGA) gel carrier and applied directly to the periodontal defect. Exposure of EMD to physiological conditions then causes it to precipitate. However, environmental changes during manufacture and storage may result in modifications to the conformation of the EMD proteins, and eventually premature phase separation of the gel and a loss in therapeutic effectiveness. The present work relates to efforts to improve the stability of EMD-based formulations such as Emdogain through the incorporation of arginine, a well-known protein stabilizer, but one that to our knowledge has not so far been considered for this purpose. Representative EMD-buffer solutions with and without arginine were analyzed by 3D-dynamic light scattering, UV-Vis spectroscopy, transmission electron microscopy and Fourier transform infrared spectroscopy at different acidic pH and temperatures, T, in order to simulate the effect of pH variations and thermal stress during manufacture and storage. The results provided evidence that arginine may indeed stabilize EMD against irreversible aggregation with respect to variations in pH and T under these conditions. Moreover, stopped-flow transmittance measurements indicated arginine addition not to suppress precipitation of EMD from either the buffers or the PGA gel carrier when the pH was raised to 7, a fundamental requirement for dental applications.
机译:在当前的牙周组织再生程序中,将作为活性成分的釉质基质衍生物(EMD)与藻酸丙二醇酯(PGA)凝胶载体混合,并直接应用于牙周缺损。然后将EMD暴露在生理条件下使其沉淀。然而,在制造和储存期间的环境变化可能导致对EMD蛋白构象的修饰,最终导致凝胶的过早相分离和治疗效果的丧失。目前的工作涉及通过加入精氨酸(一种众所周知的蛋白质稳定剂)来提高基于EMD的配方(例如Emdogain )的稳定性的努力,但据我们所知,到目前为止还没有发现考虑用于此目的。用3D动态光散射,UV-Vis光谱,透射电子显微镜和傅里叶变换红外光谱在不同的酸性pH和温度T下分析了有或没有精氨酸的代表性EMD缓冲溶液,以模拟pH值变化和制造和存储过程中的热应力。结果提供了证据,在这些条件下,精氨酸确实可以稳定EMD抵抗不可逆的聚集,从而防止pH和T的变化。而且,停止流动的透射率测量表明,当pH升高至7时,添加精氨酸并不能抑制EMD从缓冲液或PGA凝胶载体中沉​​淀出来,这是牙科应用的基本要求。

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