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人类癌症组织和非癌症组织中的水动力学。

Water dynamics in human cancer and non-cancer tissues.

机构信息

University of Coimbra, Molecular Physical-Chemistry R&D Unit, Department of Chemistry, 3004-535 Coimbra, Portugal.

University of Coimbra, Department of Life Sciences, 3000-456 Coimbra, Portugal.

出版信息

Phys Chem Chem Phys. 2022 Jun 29;24(25):15406-15415. doi: 10.1039/d2cp00621a.

Abstract

Normal-to-malignant transformation is a poorly understood process associated with cellular biomechanical properties. These are strongly dependent on the dynamical behaviour of water, known to play a fundamental role in normal cellular activity and in the maintenance of the three-dimensional architecture of the tissue and the functional state of biopolymers. In this study, quasi-elastic neutron scattering was used to probe the dynamical behaviour of water in human cancer specimens and their respective surrounding normal tissue from breast and tongue, as an innovative approach for identifying particular features of malignancy. This methodology has been successfully used by the authors in human cells and was the first study of human tissues by neutron scattering techniques. A larger flexibility was observed for breast tongue tissues. Additionally, different dynamics were found for malignant and non-malignant specimens, depending on the tissue: higher plasticity for breast invasive cancer the normal, and an opposite effect for tongue. The data were interpreted in the light of two different water populations within the samples: one displaying bulk-like dynamics (extracellular and intracellular/cytoplasmic) and another with constrained flexibility (extracellular/interstitial and intracellular/hydration layers).

摘要

正常到恶性的转变是一个人们知之甚少的过程,与细胞生物力学特性有关。这些特性强烈依赖于水的动力学行为,众所周知,水在正常细胞活动以及组织的三维结构和生物聚合物的功能状态的维持中起着至关重要的作用。在这项研究中,准弹性中子散射被用于探测来自乳房和舌头的人类癌症标本及其各自周围正常组织中的水的动力学行为,这是一种用于识别恶性特征的创新方法。该方法已被作者成功应用于人类细胞,是首次利用中子散射技术研究人类组织。研究发现,与乳房和舌头组织相比,其具有更大的灵活性。此外,根据组织的不同,还发现了恶性和非恶性标本之间的不同动力学:乳腺癌浸润性癌的可塑性更高,而舌头则相反。根据样品中两种不同的水群体,对数据进行了解释:一种显示出类似体相的动力学(细胞外和细胞内/细胞质),另一种则具有受限的灵活性(细胞外/间质和细胞内/水合层)。

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