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Thermo-responsive polymers: Applications of smart materials in drug delivery and tissue engineering

机译:热敏聚合物:智能材料在药物输送和组织工程中的应用

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摘要

Synthetic polymers are attracting great attention in the last decades for their use in the biomedical field as nanovectors for controlled drug delivery, hydrogels and scaffolds enabling cell growth. Among them, polymers able to respond to environmental stimuli have been recently under growing consideration to impart a "smart" behavior to the final product, which is highly desirable to provide it with a specific dynamic and an advanced function. In particular, thermo-responsive polymers, materials able to undergo a discontinuous phase transition or morphological change in response to a temperature variation, are among the most studied. The development of the so-called controlled radical polymerization techniques has paved the way to a high degree of engineering for the polymer architecture and properties, which in turn brought to a plethora of sophisticated behaviors for these polymers by simply switching the external temperature. These can be exploited in many different fields, from separation to advanced optics and biosensors. The aim of this review is to critically discuss the latest advances in the development of thermo-responsive materials for biomedical applications, including a highly controlled drug delivery, mediation of cell growth and bioseparation. The focus is on the structural and design aspects that are required to exploit such materials for cutting-edge applications in the biomedical field.
机译:在过去的几十年中,合成聚合物由于在生物医学领域中作为用于控制药物递送的纳米载体,水凝胶和使细胞生长的支架而受到广泛关注。其中,近来越来越多地考虑能够响应环境刺激的聚合物,以赋予最终产品“智能”的性能,这是非常希望为其提供特定动态和先进功能的。特别地,对热响应性聚合物,能够响应温度变化而经历不连续相变或形态变化的材料进行了最深入的研究。所谓的受控自由基聚合技术的发展为聚合物结构和性能的高度工程化铺平了道路,而这又通过简单地改变外部温度而为这些聚合物带来了许多复杂的行为。从分离到先进的光学和生物传感器,它们可以在许多不同领域中得到利用。这篇综述的目的是批判性地讨论生物医学应用的热响应材料开发的最新进展,包括高度控制的药物输送,细胞生长介导和生物分离。重点是在生物医学领域中将这些材料用于前沿应用所需的结构和设计方面。

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