Li Yuanxin, Sun Jing, Li Jingjing, Liu Kai, Zhang Hongjie
State Key Laboratory of Rare Earth Resource Utilization, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun, 130022 China.
University of Science and Technology of China, Hefei, 230026 China.
Nano Res. 2022;15(6):5161-5172. doi: 10.1007/s12274-022-4103-2. Epub 2022 Mar 7.
Functional proteins are the most versatile macromolecules. They can be obtained by extraction from natural sources or by genetic engineering technologies. The outstanding selectivity, specificity, binding activity, and biocompatibility endow engineered proteins with outstanding performance for disease therapy. Nevertheless, their stability is dramatically impaired in blood circulation, hindering clinical translations. Thus, many strategies have been developed to improve the stability, efficacy, bioavailability, and productivity of therapeutic proteins for clinical applications. In this review, we summarize the recent progress in the fabrication and application of therapeutic proteins. We first introduce various strategies for improving therapeutic efficacy via bioengineering and nanoassembly. Furthermore, we highlight their diverse applications as growth factors, nanovaccines, antibody-based drugs, bioimaging molecules, and cytokine receptor antagonists. Finally, a summary and perspective for the future development of therapeutic proteins are presented.
功能蛋白是用途最为广泛的大分子。它们可以通过从天然来源提取或通过基因工程技术获得。出色的选择性、特异性、结合活性和生物相容性赋予了工程蛋白卓越的疾病治疗性能。然而,它们在血液循环中的稳定性会显著受损,这阻碍了其临床转化。因此,人们已经开发了许多策略来提高治疗性蛋白的稳定性、疗效、生物利用度和生产效率,以用于临床应用。在本综述中,我们总结了治疗性蛋白制造和应用方面的最新进展。我们首先介绍通过生物工程和纳米组装提高治疗效果的各种策略。此外,我们重点介绍了它们作为生长因子、纳米疫苗、基于抗体的药物、生物成像分子和细胞因子受体拮抗剂的多种应用。最后,对治疗性蛋白的未来发展进行了总结和展望。