Zhongshan Institute, University of Electronic Science & Technology of China, Zhongshan 528402, PR China; School of Materials and Energy, University of Electronic Science & Technology of China, Chengdu 610054, PR China.
Zhongshan Institute, University of Electronic Science & Technology of China, Zhongshan 528402, PR China; School of Materials and Energy, University of Electronic Science & Technology of China, Chengdu 610054, PR China.
Colloids Surf B Biointerfaces. 2024 Dec;244:114136. doi: 10.1016/j.colsurfb.2024.114136. Epub 2024 Aug 2.
Aggregation-induced emission (AIE) materials are attracting great attention in biomedical fields such as sensors, bioimaging, and cancer treatment, et al. due to their strong fluorescence emission in the aggregated state. In this contribution, a series of tetraphenylene-acetonitrile AIE compounds with D-A-D' structures were synthesized by Suzuki coupling reaction and Knoevenagel condensation, and their relationship of chemical structure and fluorescence properties was investigated in detail, among which TPPA compound was selected as the monomer owing to the longest emission wavelength at about 530 nm with low energy band gap ΔE 3.09 eV of neutral TPPA and 1.43 eV of protonated TPPA. Novel amphiphilic AIE PEG-TA copolymers were prepared by RAFT polymerization of TPPA and PEGMA with about 1.44×10 M and narrow PDI, and the molar ratio of TPPA in the PEG-TA1 and PEG-TA2 copolymers was about 23.4 % and 29.6 %. The as-prepared PEG-TA copolymers would self-assembled in aqueous solution to form core-shell structures with a diameter of 150-200 nm, and their emission wavelength could reversibly convert from 545 nm to 650 nm with excellent pH sensitivity. The CLSM images showed that the PEG-TA FONs and PTX drugs-loaded PTX-TA FONs could be endocytosed by cells and mainly enriched in the cytoplasm, and CCK-8 results showed that the PEG-TA FONs had excellent biocompatibility but PTX-TA FONs had high inhibition ratio for A549 cells, moreover, the flow cytometry also showed that PTX-TA FONs could result in the apoptosis of A549 cells with some extent anti-tumor effect.
聚集诱导发光(AIE)材料由于其在聚集状态下具有强荧光发射,因此在传感器、生物成像和癌症治疗等生物医学领域引起了极大的关注。在本工作中,通过 Suzuki 偶联反应和 Knoevenagel 缩合反应合成了一系列具有 D-A-D'结构的四苯乙烯-乙腈 AIE 化合物,并详细研究了它们的化学结构与荧光性能之间的关系,其中 TPPA 化合物由于中性 TPPA 的最长发射波长约为 530nm,具有较低的能带隙 ΔE(3.09eV)和质子化 TPPA 的 1.43eV,因此被选为单体。通过 TPPA 和 PEGMA 的 RAFT 聚合制备了新型两亲性 AIE PEG-TA 共聚物,其分子量约为 1.44×10 M,PDI 较窄,PEG-TA1 和 PEG-TA2 共聚物中 TPPA 的摩尔比约为 23.4%和 29.6%。所制备的 PEG-TA 共聚物在水溶液中自组装形成直径为 150-200nm 的核壳结构,其发射波长可以在 545nm 和 650nm 之间可逆转换,具有良好的 pH 响应性。CLSM 图像表明,PEG-TA FONs 和负载 PTX 的 PTX-TA FONs 可以被细胞内吞并主要富集在细胞质中,CCK-8 结果表明 PEG-TA FONs 具有良好的生物相容性,而 PTX-TA FONs 对 A549 细胞具有高抑制率,此外,流式细胞术也表明 PTX-TA FONs 可以在一定程度上诱导 A549 细胞凋亡,具有一定的抗肿瘤作用。