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基于点击化学反应的自组装 D-精氨酸衍生物用于细胞内共递送抗原和佐剂的潜在免疫治疗。

Self-assembled D-arginine derivatives based on click chemical reactions for intracellular codelivery of antigens and adjuvants for potential immunotherapy.

机构信息

Department of Geriatrics, The Shenzhen Hospital of Peking University, Shenzhen, Guangdong, 518036, China.

Department of Infertility and Reproductive Health, Shenzhen Longhua District Maternity & Child Healthcare Hospital, Shenzhen, Guangdong, 518109, China.

出版信息

J Mater Chem B. 2022 May 11;10(18):3491-3500. doi: 10.1039/d2tb00346e.

DOI:10.1039/d2tb00346e
PMID:35403659
Abstract

Self-assembled amino acid derivatives could form well-defined nanostructures which have great application value for drug delivery systems. In particular, D-amino acid derivatives possess tremendous advantages including anti-degradation and good lysosome escape compared with L-amino acid derivatives. In this work, 9-fluorenylmethyloxycarbonyl (Fmoc) neighboring D-arginine derivatives were replaced by dibenzocyclooctyne (DBCO) to extend the class of functional D-arginine derivatives, which were further reacted with various cross-linkers including azide to construct a library of self-assembled supramolecular nanovehicles and strengthen the stability of nanostructures for disease immunotherapy. Moreover, studies demonstrated that the combination of DBCO modified D-arginine derivative DR3 and cross-linker C1 not only reinforced the cellular uptake efficiency of ovalbumin (OVA) which was chosen as the model antigen, but also promoted the cytokine TNF-α release of RAW 264.7 cells after the introduction of adjuvant unmethylated cytosine-phosphate-guanine dinucleotides (CpG). Furthermore, the nanovaccine based on DR3C1 could enhance the antigen OVA and adjuvant cytosolic delivery of marrow derived dendritic cells (BMDCs), which improved the antigen-presentation cross efficiency and induced the maturation of BMDCs. Taken together, we believe that D-arginine derivatives functionalized by DBCO provide an effective strategy for disease immunotherapy and act as a great potential delivery tool.

摘要

自组装氨基酸衍生物可以形成具有良好定义的纳米结构,对于药物传递系统具有巨大的应用价值。特别是,D-氨基酸衍生物与 L-氨基酸衍生物相比具有巨大的优势,包括抗降解和良好的溶酶体逃逸。在这项工作中,9-芴甲氧羰基(Fmoc)邻位 D-精氨酸衍生物被二苯并环辛炔(DBCO)取代,以扩展功能 D-精氨酸衍生物的类别,进一步与各种交联剂(包括叠氮化物)反应,构建了自组装超分子纳米载体库,并增强了纳米结构的稳定性,用于疾病免疫治疗。此外,研究表明,DBCO 修饰的 D-精氨酸衍生物 DR3 与交联剂 C1 的结合不仅增强了作为模型抗原的卵清蛋白(OVA)的细胞摄取效率,而且在引入佐剂未甲基化胞嘧啶-磷酸-鸟嘌呤二核苷酸(CpG)后促进了 RAW 264.7 细胞中 TNF-α 的释放。此外,基于 DR3C1 的纳米疫苗可以增强骨髓来源的树突状细胞(BMDCs)中抗原 OVA 和佐剂胞质的传递,从而提高抗原呈递交叉效率并诱导 BMDCs 的成熟。综上所述,我们认为 DBCO 功能化的 D-精氨酸衍生物为疾病免疫治疗提供了一种有效的策略,并作为一种有潜力的递送工具。

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