Ko Yun Hee, Nguyen Hai Ha Tran, Branstetter Christopher R, Park Soeun, Lee Jin-Kyun, Yang Jaesung, Jung Jangwook P, Kim Myungwoong
Department of Chemistry and Chemical Engineering, Inha University, Incheon 22212, Republic of Korea.
Department of Applied Chemistry, Reutlingen University, Alteburgstraße 150, 72762 Reutlingen, Germany.
Polymers (Basel). 2023 Dec 21;16(1):44. doi: 10.3390/polym16010044.
We demonstrate a single-component hydrophilic photocrosslinkable copolymer system that incorporates all critical functionalities into one chain. This design allows for the creation of uniform functional organic coatings on a variety of substrates. The copolymers were composed of a poly(ethylene oxide)-containing monomer, a monomer that can release a primary amine upon UV light, and a monomer with reactive epoxide or cyclic dithiocarbonate with a primary amine. These copolymers are easily incorporated into the solution-casting process using polar solvents. Furthermore, the resulting coating can be readily stabilized through UV light-induced crosslinking, providing an advantage for controlling the surface properties of various substrates. The photocrosslinking capability further enables us to photolithographically define stable polymer domains in a desirable region. The resulting copolymer coatings were chemically versatile in immobilizing complex molecules by (i) post-crosslinking functionalization with the reactive groups on the surface and (ii) the formation of a composite coating by mixing varying amounts of a protein of interest, i.e., fish skin gelatin, which can form a uniform dual crosslinked network. The number of functionalization sites in a thin film could be controlled by tuning the composition of the copolymers. In photocrosslinking and subsequent functionalizations, we assessed the reactivity of the epoxide and cyclic dithiocarbonate with the generated primary amine. Moreover, the orthogonality of the possible reactions of the presented reactive functionalities in the crosslinked thin films with complex molecules is assessed. The resulting copolymer coatings were further utilized to define a hydrophobic surface or an active surface for the adhesion of biological objects.
我们展示了一种单组分亲水性可光交联共聚物体系,该体系将所有关键功能整合到一条链中。这种设计允许在各种基材上形成均匀的功能性有机涂层。共聚物由含聚环氧乙烷的单体、在紫外光照射下能释放伯胺的单体以及带有与伯胺反应的环氧基或环状二硫代碳酸酯的单体组成。这些共聚物很容易使用极性溶剂融入溶液浇铸工艺中。此外,通过紫外光诱导交联可以很容易地稳定所得涂层,这为控制各种基材的表面性质提供了优势。光交联能力还使我们能够通过光刻在所需区域定义稳定的聚合物域。所得共聚物涂层在固定复杂分子方面具有化学多功能性,方法如下:(i) 通过表面上的反应基团进行后交联功能化,以及 (ii) 通过混合不同量的目标蛋白质(即鱼皮明胶)形成复合涂层,鱼皮明胶可以形成均匀的双交联网络。薄膜中的功能化位点数量可以通过调整共聚物的组成来控制。在光交联和随后的功能化过程中,我们评估了环氧基和环状二硫代碳酸酯与生成的伯胺的反应活性。此外,还评估了交联薄膜中所呈现的反应性功能与复杂分子可能发生反应的正交性。所得共聚物涂层进一步用于定义疏水表面或用于生物物体粘附的活性表面。