Department of Chemistry, Rutgers University, Newark, NJ 07102, USA.
Biopolymers. 2011 Sep;95(9):607-15. doi: 10.1002/bip.21618. Epub 2011 Mar 10.
Water is an integral part of collagen's triple helical and higher order structure. Studies of model triple helical peptides have revealed the presence of repetitive intrachain, interchain, and intermolecular water bridges (Bella et al., Structure 1995, 15, 893-906). In addition, an extended cylinder of hydration is thought to be responsible for collagen fiber assembly. Confocal Raman spectroscopy and dynamic vapor sorption (DVS) measurements of human Type I collagen and pigskin dermis were performed to probe relative humidity (RH)-dependent differences in the nature and level of collagen hydration. Raman spectra were also acquired as a function of time for both Type I collagen and pigskin dermis samples upon exchange of a 100% RH H(2) O to deuterium oxide (D(2) O) environment. Alterations in Amide I and III modes were consistent with anticipated changes in hydrogen bonding strength as RH increased and upon H → D exchange. Of note is the identification of a Raman spectral marker (band at 938 cm(-1) ) which appears to be sensitive to alterations in collagen-bound water. Analysis of DVS isotherms provided a quantitative measure of adsorbed and absorbed water vapor consistent with the Raman results. The development of a Raman spectral marker of collagen hydration in intact tissue is relevant to diverse fields of study ranging from the evaluation of therapeutics for wound healing to hydration of aging skin.
水是胶原蛋白三螺旋和更高阶结构的组成部分。对模型三螺旋肽的研究揭示了重复的链内、链间和分子间的水桥的存在(Bella 等人,结构 1995,15,893-906)。此外,一个扩展的水合圆柱被认为负责胶原蛋白纤维的组装。对人 I 型胶原蛋白和猪皮真皮进行共焦拉曼光谱和动态蒸汽吸附(DVS)测量,以探测相对湿度(RH)依赖性对胶原蛋白水合性质和水平的差异。还对 I 型胶原蛋白和猪皮真皮样本随时间的拉曼光谱进行了采集,在将 100%RH 的 H(2)O 交换为重水(D(2)O)环境时。酰胺 I 和 III 模式的变化与预期的氢键强度变化一致,随着 RH 的增加和 H→D 交换而发生。值得注意的是,鉴定出一个似乎对胶原蛋白结合水的变化敏感的拉曼光谱标记(在 938cm(-1)处的带)。DVS 等温线分析提供了与拉曼结果一致的吸附和吸收水蒸气的定量测量。在完整组织中鉴定出胶原蛋白水合的拉曼光谱标记与从伤口愈合治疗评估到老化皮肤水合的多个研究领域相关。