Department of Bioengineering, Faculty of Engineering and Natural Sciences, Malatya Turgut Özal University, 44210 Malatya, Turkey.
Department of Chemistry, Faculty of Arts and Science, İnonu University, 44280 Malatya, Turkey.
Adv Colloid Interface Sci. 2022 Jul;305:102694. doi: 10.1016/j.cis.2022.102694. Epub 2022 May 11.
In tissue engineering, it is imperative to control the behaviour of cells/stem cells, such as adhesion, proliferation, propagation, motility, and differentiation for tissue regeneration. Surfaces that allow cells to behave in this way are critical as support materials in tissue engineering. Among these surfaces, brush-type polymers have an important potential for tissue engineering and biomedical applications. Brush structure and length, end groups, bonding densities, hydrophilicity, surface energy, structural flexibility, thermal stability, surface chemical reactivity, rheological and tribological properties, electron and energy transfer ability, cell binding and absorption abilities for various biological molecules of brush-type polymers were increased its importance in tissue engineering applications. In addition, thanks to these functional properties and adjustable surface properties, brush type polymers are used in different high-tech applications such as electronics, sensors, anti-fouling, catalysis, purification and energy etc. This review comprehensively highlights the use of brush-type polymers in tissue engineering applications. Considering the superior properties of brush-type polymer structures, it is believed that in the future, it will be an effective tool in structure designs containing many different biomolecules (enzymes, proteins, etc.) in the field of tissue engineering.
在组织工程中,控制细胞/干细胞的行为(如黏附、增殖、繁殖、迁移和分化)对于组织再生至关重要。允许细胞以这种方式表现的表面作为组织工程中的支撑材料至关重要。在这些表面中,刷型聚合物在组织工程和生物医学应用中具有重要的潜力。刷状结构和长度、端基、键合密度、亲水性、表面能、结构灵活性、热稳定性、表面化学反应性、流变学和摩擦学特性、电子和能量转移能力、细胞结合和吸收各种生物分子的能力增加了其在组织工程应用中的重要性。此外,由于这些功能特性和可调节的表面特性,刷型聚合物被用于不同的高科技应用,如电子、传感器、防污、催化、净化和能源等。本综述全面强调了刷型聚合物在组织工程应用中的使用。考虑到刷型聚合物结构的优越性能,相信在未来,它将成为组织工程领域中包含许多不同生物分子(酶、蛋白质等)的结构设计的有效工具。
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