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首页> 外文期刊>Cell biology international. >Verification of simple hydration/dehydration methods to characterize multiple water compartments on Tendon Type 1 Collagen.
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Verification of simple hydration/dehydration methods to characterize multiple water compartments on Tendon Type 1 Collagen.

机译:验证了简单的水合/脱水方法,以表征Tendon 1型胶原蛋白上的多个水室。

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摘要

A molecular model of collagen hydration is used to validate centrifugal dehydration force (CDF) and re-hydration isotherm (RHI) methods to measure and characterize hydration compartments on bovine tendon. The CDF method assesses fluid flow rate from flexor and extensor tendons expressed in (g-water/g-dry mass-minute) and hydration capacity of compartments in (g-water/g-dry mass). Measured water compartment capacities agree with the molecular model of collagen hydration [Fullerton GD, Rahal A. Collagen structure: the molecular source of tendon magic angle effect. J Mag Reson Imag 2007;25:345-361; Fullerton GD, Amurao MR. Evidence that collagen and tendon have monolayer water coverage in the native state. Cell Biol Int 2006;30(1):56-65]. Native tendon hydration has monolayer coverage on collagen h(m)=1.6g/g which divides into primary hydration on polar surfaces h(pp)=0.8g/g and secondary hydration h(s)=0.8g/g bridging over hydrophobic surfaces. Primary hydration is hydrogen bonded to collagen polar side chains h(psc)=0.54g/g with small free energy or to the protein main chain hydration h(pmc)=0.26g/g with greater free energy of binding. The CDF method replaces the more time consuming water proton NMR spin-lattice dehydration (NMR titration) method, confirms the presence of three non-bulk water compartments on collagen (h(pmc)=0.26g/g, h(pp)=0.8g/g and h(m)=1.6g/g). This CDF method provides the most reproducible experimental measure of total tissue non-bulk water (TNBW). The re-hydration isotherm method, on the other hand, provides the most accurate measure of the Ramachandran water-bridge capacity h(Ra)=0.0656g/g. The only equipment needed are: microfilterfuge tubes, a microcentrifuge capable of 14,000xg or 4MPa, a vacuum drying oven, an accurate balance and curve fitting ability. The newly validated methods should be useful for characterizing multiple water compartments in biological and non-biological materials by allowing direct measurement of water compartment changes induced by pH, co-solute salt, glycation and protein cross-linking.
机译:使用胶原蛋白水化的分子模型来验证离心脱水力(CDF)和再水化等温线(RHI)方法,以测量和表征牛腱上的水化区室。 CDF方法评估以(克水/克干质量-分钟)表示的屈肌和伸肌腱的流体流速,以及以克水/克干质量表示的隔室水合能力。测得的水室容量与胶原水化的分子模型一致[Fullerton GD,Rahal A.胶原结构:肌腱魔角效应的分子来源。 J Mag Reson Imag 2007; 25:345-361;富勒顿GD,Amurao先生。胶原蛋白和肌腱在天然状态下具有单层水覆盖的证据。 Cell Biol Int 2006; 30(1):56-65]。天然肌腱水化在胶原蛋白h(m)= 1.6g / g上具有单层覆盖度,分为极性表面上的一次水化h(pp)= 0.8g / g和二次水化h(s)= 0.8g / g在疏水性表面上桥接。初级水合是通过氢以较小的自由能与胶原蛋白极性侧链h(psc)= 0.54g / g结合,或以较大的结合自由能与蛋白质主链水合h(pmc)= 0.26g / g。 CDF方法取代了耗时更长的水质子NMR自旋晶格脱水(NMR滴定)方法,证实了胶原蛋白上存在三个非散装水隔室(h(pmc)= 0.26g / g,h(pp)= 0.8) g / g和h(m)= 1.6g / g)。这种CDF方法提供了总组织非散装水(TNBW)的最可重复的实验方法。另一方面,再水化等温线方法可提供最准确的Ramachandran水桥容量h(Ra)= 0.0656g / g度量。唯一需要的设备是:微型过滤器管,能够在14,000xg或4MPa压力下运行的微型离心机,真空干燥箱,精确的天平和曲线拟合能力。通过直接测量由pH值,共溶盐,糖基化和蛋白质交联引起的水室变化,新验证的方法对于表征生物和非生物材料中的多个水室应该很有用。

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