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胶原蛋白结构与非线性磁化率:热、糖基化和酶解对二次谐波信号强度的影响。

Collagen structure and nonlinear susceptibility: effects of heat, glycation, and enzymatic cleavage on second harmonic signal intensity.

作者信息

Kim B M, Eichler J, Reiser K M, Rubenchik A M, Da Silva L B

机构信息

Medical Technology Program, Lawrence Livermore National Laboratory, Livermore, California 94550, USA.

出版信息

Lasers Surg Med. 2000;27(4):329-35. doi: 10.1002/1096-9101(2000)27:4<329::aid-lsm5>3.0.co;2-c.

Abstract

BACKGROUND AND OBJECTIVE

Helical macromolecules such as collagen and DNA are characterized by nonlinear optical properties, including nonlinear susceptibility. Because collagen is the predominant component of most biological tissues, as well as the major source of second harmonic generation (SHG), it is reasonable to assume that changes in harmonic signal can be attributed to structural changes in collagen. The purpose of this study is to determine whether various modifications of collagen structure affect second harmonic intensity.

STUDY DESIGN/MATERIALS AND METHODS: SHG was measured in tissues from cows, humans, and chickens. The effects of beam polarization, thermal denaturation, glyco-oxidative damage, and enzymatic cleavage of tissues on second harmonic intensity was studied.

RESULTS

The second harmonic intensity differed considerably among different tissues, as did the effect of the incident beam polarization. In structurally modified collagen, SHG was significantly degraded from SHG in intact collagen.

CONCLUSION

These structural modifications are representative of changes that occur in pathophysiologic conditions such as thermal injury, diabetes, tumor invasion, and abnormal wound healing. The ability to assess these changes rapidly and noninvasively has considerable clinical applicability. SHG analysis might provide a unique tool for monitoring these structural changes of collagen.

摘要

背景与目的

螺旋状大分子如胶原蛋白和DNA具有非线性光学特性,包括非线性极化率。由于胶原蛋白是大多数生物组织的主要成分,也是二次谐波产生(SHG)的主要来源,因此可以合理推测谐波信号的变化可归因于胶原蛋白的结构变化。本研究的目的是确定胶原蛋白结构的各种修饰是否会影响二次谐波强度。

研究设计/材料与方法:在牛、人及鸡的组织中测量二次谐波。研究了光束偏振、热变性、糖氧化损伤及组织酶解对二次谐波强度的影响。

结果

不同组织的二次谐波强度差异显著,入射光束偏振的影响也如此。在结构修饰的胶原蛋白中,二次谐波强度相对于完整胶原蛋白中的二次谐波强度显著降低。

结论

这些结构修饰代表了诸如热损伤、糖尿病、肿瘤侵袭及异常伤口愈合等病理生理状况下发生的变化。快速且无创评估这些变化的能力具有相当大的临床应用价值。二次谐波分析可能为监测胶原蛋白的这些结构变化提供一种独特工具。

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