Jiang Hejin, Liu Rui, Wang Lu, Wang Xinyue, Zhang Mengmeng, Lin Sisi, Cao Zhenping, Wu Feng, Liu Yingbin, Liu Jinyao
State Key Laboratory of Oncogenes and Related Genes, Shanghai Cancer Institute, Shanghai Key Laboratory for Nucleic Acid Chemistry and Nanomedicine, Institute of Molecular Medicine, Renji Hospital, School of Medicine, Shanghai Jiao Tong University, Shanghai, 200127, China.
Department of Biliary-Pancreatic Surgery, Renji Hospital, School of Medicine, Shanghai Jiao Tong University, Shanghai, 200127, China.
Adv Mater. 2023 Feb;35(5):e2208157. doi: 10.1002/adma.202208157. Epub 2022 Dec 16.
Chirality is ubiquitous in biological systems, which is closely related to biological functions, life processes, and even the pathogenesis of diseases. However, the interface between the chirality of synthetic materials and organisms, particularly the immune system, remains poorly understood. Here, supramolecular chiral polymer micelles (SCPMs) are prepared by complexing antigenic proteins with chiral amino acid-modified polyethyleneimine. The introduction of chirality not only reduces the toxicity of cationic polymer, but also benefits cell uptake and antigen presentation. Especially, D-chirality presents the lowest cytotoxicity, while promoting the highest expression level of costimulatory molecules on dendritic cells compared to L-chirality and achirality. The superiority of D-chirality to stimulate dendritic cell maturation is supported by immunization with D-SCPMs, which achieves significant antigen-specific proliferation of T cells in the spleen, lymph nodes, and tumor of mice. Chirality-mediated antigen processing and presentation are demonstrated by D-SCPMs self-assembled from chiral alkaline histidine or neutral phenylalanine modified polyethyleneimine and tumor associated ovalbumin or severe acute respiratory syndrome coronavirus 2 spike 1 antigenic protein. Immunoactivation enabled by D-chirality opens a window to prepare potent nanotherapeutics for disease prevention and treatment.
手性在生物系统中无处不在,它与生物功能、生命过程甚至疾病的发病机制密切相关。然而,合成材料的手性与生物体,特别是免疫系统之间的界面仍知之甚少。在此,通过将抗原蛋白与手性氨基酸修饰的聚乙烯亚胺络合制备了超分子手性聚合物胶束(SCPM)。手性的引入不仅降低了阳离子聚合物的毒性,还有利于细胞摄取和抗原呈递。特别是,与L-手性和非手性相比,D-手性表现出最低的细胞毒性,同时促进树突状细胞上共刺激分子的最高表达水平。用D-SCPM进行免疫支持了D-手性刺激树突状细胞成熟的优越性,这在小鼠的脾脏、淋巴结和肿瘤中实现了T细胞显著的抗原特异性增殖。由手性碱性组氨酸或中性苯丙氨酸修饰的聚乙烯亚胺与肿瘤相关卵清蛋白或严重急性呼吸综合征冠状病毒2刺突1抗原蛋白自组装而成的D-SCPM证明了手性介导的抗原加工和呈递。D-手性实现的免疫激活为制备用于疾病预防和治疗的有效纳米疗法打开了一扇窗口。