Department Biomedical Materials, Institute of Pharmacy, Martin Luther University Halle-Wittenberg, Heinrich-Damerow-Strasse 4, 06120 Halle (Saale), Germany.
Wood Technology and Wood Chemistry, University of Goettingen, Büsgenweg 4, D-37077 Göttingen, Germany.
J Mater Chem B. 2020 Jan 28;8(4):607-628. doi: 10.1039/c9tb02052g. Epub 2020 Jan 15.
Thermoresponsive polymers hold great potential in the biomedical field, since they enable the fabrication of cell sheets, in situ drug delivery and 3D-printing under physiological conditions. In this review we provide an overview of several thermoresponsive polymers and their application, with focus on poly(N-isopropylacrylamide)-surfaces for cell sheet engineering. Basic knowledge of important processes like protein adsorption on surfaces and cell adhesion is provided. For different thermoresponsive polymers, namely PNIPAm, Pluronics, elastin-like polypeptides (ELP) and poly(N-vinylcaprolactam) (PNVCL), synthesis and basic chemical and physical properties have been described and the mechanism of their thermoresponsive behavior highlighted. Fabrication methods of thermoresponsive surfaces have been discussed, focusing on PNIPAm, and describing several methods in detail. The latter part of this review is dedicated to the application of the thermoresponsive polymers and with regard to cell sheet engineering, the process of temperature-dependent cell sheet detachment is explained. We provide insight into several applications of PNIPAm surfaces in cell sheet engineering. For Pluronics, ELP and PNVCL we show their application in the field of drug delivery and tissue engineering. We conclude, that research of thermoresponsive polymers has made big progress in recent years, especially for PNIPAm since the 1990s. However, manifold research possibilities, e.g. in surface fabrication and 3D-printing and further translational applications are conceivable in near future.
温敏聚合物在生物医学领域有很大的应用潜力,因为它们能够在生理条件下制造细胞片、原位药物输送和 3D 打印。在这篇综述中,我们概述了几种温敏聚合物及其应用,重点介绍了用于细胞片工程的聚(N-异丙基丙烯酰胺)表面。提供了有关表面蛋白吸附和细胞黏附等重要过程的基本知识。对于不同的温敏聚合物,即 PNIPAm、Pluronics、弹性蛋白样多肽 (ELP) 和聚(N-乙烯基己内酰胺)(PNVCL),描述了它们的合成和基本化学和物理性质,并强调了它们的温敏行为机制。讨论了温敏表面的制造方法,重点是 PNIPAm,并详细描述了几种方法。这篇综述的后一部分专门介绍了温敏聚合物的应用,以及在细胞片工程方面,温度依赖性细胞片脱落的过程。我们深入了解了 PNIPAm 表面在细胞片工程中的几种应用。对于 Pluronics、ELP 和 PNVCL,我们展示了它们在药物输送和组织工程领域的应用。我们得出结论,温敏聚合物的研究近年来取得了很大进展,特别是自 20 世纪 90 年代以来的 PNIPAm。然而,在未来的不久,还可以设想在表面制造和 3D 打印以及进一步的转化应用等方面进行多种研究。