University of Michigan, Department of Chemistry, 930 N. University Avenue, Ann Arbor, Michigan 48109, USA.
J Biomed Opt. 2011 Jul;16(7):071407. doi: 10.1117/1.3574525.
The ability to probe fresh tissue is a key feature to biomedical Raman spectroscopy. However, it is unclear how Raman spectra of calcified tissues are affected by freezing. In this study, six transverse sections of femoral cortical bone were subjected to multiple freeze∕thaw cycles and probed using a custom Raman microscope. Significant decreases were observed in the amide I and amide III bands starting after two freeze thaw cycles. Raman band intensities arising from proline residues of frozen tissue appeared consistent with fresh tissue after four cycles. Crystallinity values of bone mineral diminished slightly with freezing and were noticeable after only one freezing. Mineral carbonate levels did not deviate significantly with freezing and thawing. The authors recommend freezing and thawing bone tissue only once to maintain accurate results.
探测新鲜组织的能力是生物医学拉曼光谱学的一个关键特征。然而,目前尚不清楚钙化组织的拉曼光谱会受到冷冻的影响。在这项研究中,对股骨皮质骨的六个横断面进行了多次冻融循环,并使用定制的拉曼显微镜进行了探测。在经过两个冻融循环后,酰胺 I 和酰胺 III 带明显减少。来自冷冻组织脯氨酸残基的拉曼带强度在四个循环后与新鲜组织一致。骨矿物质的结晶度值随着冷冻而略有降低,仅在一次冷冻后就变得明显。矿化碳酸根水平随冷冻和解冻变化不大。作者建议仅对骨组织进行一次冷冻和解冻,以保持准确的结果。