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Self-Assembled Monolayers for Dental Implants

机译:牙种植体的自组装单分子膜

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摘要

Implant-based therapy is a mature approach to recover the health conditions of patients affected by edentulism. Thousands of dental implants are placed each year since their introduction in the 80s. However, implantology faces challenges that require more research strategies such as new support therapies for a world population with a continuous increase of life expectancy, to control periodontal status and new bioactive surfaces for implants. The present review is focused on self-assembled monolayers (SAMs) for dental implant materials as a nanoscale-processing approach to modify titanium surfaces. SAMs represent an easy, accurate, and precise approach to modify surface properties. These are stable, well-defined, and well-organized organic structures that allow to control the chemical properties of the interface at the molecular scale. The ability to control the composition and properties of SAMs precisely through synthesis (i.e., the synthetic chemistry of organic compounds with a wide range of functional groups is well established and in general very simple, being commercially available), combined with the simple methods to pattern their functional groups on complex geometry appliances, makes them a good system for fundamental studies regarding the interaction between surfaces, proteins, and cells, as well as to engineering surfaces in order to develop new biomaterials.
机译:基于植入物的疗法是一种成熟的方法,可以使受牙本质病影响的患者恢复健康状况。自从80年代问世以来,每年都会植入数千个牙科植入物。但是,植入术面临挑战,需要更多的研究策略,例如针对预期寿命不断增长的世界人口提供新的支持疗法,以控制牙周状态和植入物的新生物活性表面。本综述的重点是用于牙科植入物材料的自组装单分子膜(SAMs),作为修饰钛表面的纳米级加工方法。 SAM代表一种轻松,准确和精确的方法来修改表面特性。这些是稳定,定义明确且组织良好的有机结构,可在分子规模上控制界面的化学性质。结合简单的构图方法,可以通过合成来精确控制SAM的组成和特性的能力(即具有广泛功能基团的有机化合物的合成化学方法已经确立,通常非常简单,可商购)。它们在复杂几何形状的器具上的官能团,使其成为有关表面,蛋白质和细胞之间以及与工程表面之间相互作用的基础研究的良好系统,以开发新的生物材料。

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