Nordihydroguaiaretic Acid-Cross-Linked Phenylboronic Acid-Functionalized Polyplex Micelles for Anti-angiogenic Gene Therapy of Orthotopic and Metastatic Tumors

被引:2
作者
Hao, Tangna [1 ,2 ]
Zhang, Bingning [1 ,2 ]
Li, Wenjing [1 ]
Yang, Xianxian [1 ]
Wu, Sha [1 ]
Yuan, Yujie [1 ]
Cui, Hongxia [1 ]
Chen, Qixian [3 ]
Li, Zhen [1 ,4 ]
机构
[1] Dalian Med Univ, Coll Pharm, Dalian 116044, Peoples R China
[2] Dalian Med Univ, Affiliated Hosp 2, Dept Pharm, Dalian 116011, Peoples R China
[3] Zhejiang Univ, Innovat Ctr Yangtze River Delta, Jiaxing 314100, Peoples R China
[4] Fudan Univ, State Key Lab Mol Engn Polymers, Shanghai 200438, Peoples R China
关键词
polyplex micelles; phenylboronic acid; polyphenol; gene delivery; tumor therapy; metastasis; TARGETED DRUG-DELIVERY; BLOCK-CATIOMER; ANTIANGIOGENIC GENE; PEGYLATED POLYPLEX; DNA; NANOCARRIERS; POLY(ETHYLENE; NANOPARTICLES; NANOMEDICINE; CONSTRUCTION;
D O I
10.1021/acsami.4c05311
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Polyplexes are required to be equipped with multiple functionalities to accomplish adequate structure stability and gene transfection efficacy for gene therapy. Herein, a 4-carboxy-3-fluorophenylboronic acid (FPBA)-functionalized block copolymer of PEG-b-PAsp(DET/FBA) and PAsp(DET/FBA) (abbreviated as PB and HB) was synthesized and applied for engineering functional polyplex micelles (PMs) through ionic complexation with pDNA followed by strategic cross-linking with nordihydroguaiaretic acid (NDGA) in respect to the potential linkage of polyphenol and FPBA moieties. In relation to polyplex micelles void of cross-linking, the engineered multifunctional polyplex micelles (PBHBN-PMs) were determined to possess improved structural tolerability against the exchange reaction with charged species. Besides, the FPBA/NDGA cross-linking appeared to be selectively cleaved in the acidic endosomal compartments but not the neutral milieu. Furthermore, the PBHB-PMs with the optimal FPBA/NDGA cross-linking degree were identified to possess appreciable cellular uptake and endosomal escape activities, eliciting a significantly high level of gene expression relative to P-PMs and PB-PMs. Eventually, in vivo antitumor therapy by our proposed multifunctional PMs appeared to be capable of facilitating expression of the antiangiogenic genomic payloads (sFlt-1 pDNA) via systemic administration. The enriched antiangiogenic sFlt-1 in the tumors could silence the activities of angiogenic cytokines for the inhibited neo-vasculature and the suppressed growth of orthotopic 4T1 tumors. Of note, the persistent expression of the antiangiogenic sFlt-1 is also presumed to migrate into the blood circulation, thereby accounting for an overall antiangiogenic environment in preventing the potential pulmonary metastasis. Hence, our elaborated multifaceted PMs inspired fascinating potential as an intriguing gene delivery system for the treatment of clinical solid tumors and metastasis.
引用
收藏
页码:34620 / 34631
页数:12
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