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热水平和暴露时间对胶原组织变性的影响。

Effect of Heat Level and Expose Time on Denaturation of Collagen Tissues.

作者信息

Derman İrem Deniz, Şenel Esat Can, Ferhanoğlu Onur, Çilesiz İnci, Kazanci Murat

机构信息

Electronics and Communication Engineering, Istanbul Technical University, 34469 Istanbul, Turkey.

Biomedical Engineering Graduate Program, Istanbul Technical University, 34469 Istanbul, Turkey.

出版信息

Cell Mol Bioeng. 2020 Sep 28;14(1):113-119. doi: 10.1007/s12195-020-00653-w. eCollection 2021 Feb.

Abstract

INTRODUCTION

The applied heat level and expose time are main issues in certain operations/applications, such as a laser assisted tissue welding, preparation of collagen-based biomaterials (films, implants). Therefore, the precise investigation of these parameters is crucial. The results can serve as a guideline to assess potential effects while maintaining the functionality of the collagen structures.

METHODS

Collagen tissues from rat-tail tendon, calfskin, and bones are soaked in buffer solutions, then examined by microscope at different temperature levels.

RESULTS

Increase in temperature reduced the microscopically observed collagen crimp contrast for calfskin and rat-tail tendons but not for bone tissues. The contrast level for rat tail tendon decreased down to 80% of its initial value at 37, 157, and 266 s for 70, 65, and 60 °C, respectively. The decrease in the crimp contrast was about only 25% and 2% at 55 and 50 °C after 2 h, respectively. 50% drop in contrast level was occurred for the skin samples at 16, 90, 110 and 1900 s for 70, 65, and 60 °C, respectively. The bone samples, did not show any significant differences in contrast levels.

CONCLUSION

The observed denaturation behaviours are in line with Arrhenius Law. This study could be expanded on to other types of tissues at wider temperature ranges to make a guideline for biological/medical processes that radiate heat in order to assess their side effects on collagen and other proteins.

摘要

引言

在某些操作/应用中,如激光辅助组织焊接、基于胶原蛋白的生物材料(薄膜、植入物)的制备,所施加的热量水平和暴露时间是主要问题。因此,精确研究这些参数至关重要。研究结果可作为评估潜在影响的指导原则,同时保持胶原蛋白结构的功能。

方法

将来自大鼠尾腱、小牛皮肤和骨骼的胶原蛋白组织浸泡在缓冲溶液中,然后在不同温度水平下用显微镜检查。

结果

温度升高降低了小牛皮肤和大鼠尾腱在显微镜下观察到的胶原蛋白卷曲对比度,但对骨组织没有影响。大鼠尾腱的对比度水平在70、65和60°C时,分别在37、157和266秒时降至其初始值的80%。在55和50°C下2小时后,卷曲对比度的降低分别约为25%和2%。皮肤样本在70、65和60°C时,分别在16、90、110和1900秒时对比度水平下降了50%。骨样本的对比度水平没有显示出任何显著差异。

结论

观察到的变性行为符合阿伦尼乌斯定律。这项研究可以扩展到更广泛温度范围内的其他类型组织,为辐射热的生物/医学过程制定指导原则,以评估它们对胶原蛋白和其他蛋白质的副作用。

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