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慢性低灌注对大鼠颅骨矿物质和有机基质的影响。一项傅里叶变换红外光谱研究。

The effects of chronic hypoperfusion on rat cranial bone mineral and organic matrix. A Fourier transform infrared spectroscopy study.

作者信息

Boyar Handan, Zorlu Faruk, Mut Melike, Severcan Feride

机构信息

Department of Biology, Middle East Technical University, 06531 Ankara, Turkey.

出版信息

Anal Bioanal Chem. 2004 Jun;379(3):433-8. doi: 10.1007/s00216-004-2589-y. Epub 2004 Mar 24.

Abstract

Arteriovenous malformations (AVM) of the brain, errors in the development of the vasculature, produce high flow arteriovenous shunts. They steal blood from surrounding brain tissue, which is chronically hypoperfused. Hypoperfusion is a condition of inadequate tissue perfusion and oxygenation resulting in abnormal tissue metabolism. In the present study Fourier transform infrared (FTIR) spectroscopy was used to investigate the effects of hypoperfusion on rat cranial bone mineral and organic matrix at the molecular level. FTIR spectroscopic analysis revealed that in cranial bones of an experimental group the relative amount of carbonate and phosphate groups increased whereas that of protein (amide I) decreased. Curve-fitting analysis of the v(2) carbonate band showed that amounts of type A and type B carbonates increased slightly ( p=0.423 for both) whereas, type L carbonate decreased slightly ( p=0.522) in hypoperfused cranial bones. Analysis of the C-H region revealed a significant increase ( p=0.037) in the lipid to protein ratio. Because the lipid content is high, hypoperfused cranial bone tissue is more prone to lipid peroxidation. Dialdehydes derived from lipid peroxidation can make cross-links with collagen and might lead to disturbances in the collagen cross-link profile. The 1660 cm(-1)/1690 cm(-1) partial area ratio derived from curve-fitting analysis of the Amide I band is sensitive to the relative amount of collagen non-reducible cross-link hydroxylysyl/lysylpyridinolines (Pyr) and reducible cross-link dihydroxylysinonorleucine (DHLNL) and this ratio reflects collagen maturity. In chronic hypoperfusion a significant decrease ( p=0.004) was observed in this ratio. This means there were less mature collagen cross-links. Disturbances in the collagen maturation can affect mineralization process and lead to formation of pathologic structures in cranial bones. These findings clearly demonstrate that FTIR spectroscopy can be used to extract valuable information at molecular level, leading to better understanding of the effect of hypoperfusion on rat cranial bones.

摘要

脑动静脉畸形(AVM)是血管发育中的错误,会产生高流量动静脉分流。它们从周围长期灌注不足的脑组织窃取血液。灌注不足是指组织灌注和氧合不足,导致组织代谢异常的一种状态。在本研究中,傅里叶变换红外(FTIR)光谱用于在分子水平上研究灌注不足对大鼠颅骨矿物质和有机基质的影响。FTIR光谱分析显示,实验组颅骨中碳酸根和磷酸根的相对含量增加,而蛋白质(酰胺I)的相对含量减少。对v(2)碳酸根谱带的曲线拟合分析表明,在灌注不足的颅骨中,A型和B型碳酸盐的含量略有增加(两者p = 0.423),而L型碳酸盐略有减少(p = 0.522)。对C-H区域的分析显示,脂质与蛋白质的比率显著增加(p = 0.037)。由于脂质含量高,灌注不足的颅骨组织更容易发生脂质过氧化。脂质过氧化产生的二醛可与胶原蛋白交联,可能导致胶原蛋白交联谱的紊乱。由酰胺I谱带曲线拟合分析得出的1660 cm(-1)/1690 cm(-1)部分面积比,对胶原蛋白不可还原交联羟基赖氨酸/赖氨酸吡啶啉(Pyr)和可还原交联二羟基赖氨酸正亮氨酸(DHLNL)的相对含量敏感,该比率反映了胶原蛋白的成熟度。在慢性灌注不足时,该比率显著降低(p = 0.004)。这意味着胶原蛋白交联的成熟度较低。胶原蛋白成熟度的紊乱会影响矿化过程,并导致颅骨中病理结构的形成。这些发现清楚地表明,FTIR光谱可用于在分子水平上提取有价值的信息,从而更好地理解灌注不足对大鼠颅骨的影响。

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