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Surface Engineering and Cell Adhesion

机译:表面工程和细胞粘附

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摘要

Cell adhesion is a multi-process phenomenon involving physical, physico-chemical and biological mechanisms. The complexity of interfaces is the reason why progress in the theory of cell adhesion has been slow. Greater understanding of interaction mechanisms has been enhanced by complete knowledge of supports and of biological components, in particular the extracellular matrix, membrane walls, cell multiplication processes and apoptosis. The construction of novel surfaces with strongly hydrophilic or ultrahydropho-bic properties has allowed new theoretical advances, while at the same time offering numerous and varied technological applications. These include: 1. Bioadhesion with mechanical anchoring using ubiquitous surface roughness and deformability of certain micro-organisms. 2. Physico-chemical bioadhesion or repellence resulting mainly from the energy characteristics of support surfaces. 3. Processes of sorting and guidance by biomolecules present at the support-biofilm interface, generating biochemical responses that can induce cell multiplication or degeneration (as in cancer), or cell death.
机译:细胞粘附是涉及物理,物理化学和生物学机制的多过程现象。界面的复杂性是细胞粘附理论进展缓慢的原因。通过完全了解支持物和生物成分(尤其是细胞外基质,膜壁,细胞增殖过程和细胞凋亡),对相互作用机理有了更深入的了解。具有强亲水性或超疏水性的​​新型表面的构造在理论上取得了新的进展,同时提供了许多不同的技术应用。其中包括:1.使用普遍存在的表面粗糙度和某些微生物的可变形性进行机械锚固的生物粘附。 2.理化生物粘附或排斥主要是由支撑表面的能量特性引起的。 3.通过存在于支持物-生物膜界面的生物分子进行分类和指导的过程,产生可诱导细胞增殖或变性(如癌症)或细胞死亡的生化反应。

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