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Viromimetic STING Agonist-Loaded Hollow Polymeric Nanoparticles for Safe and Effective Vaccination against Middle East Respiratory Syndrome Coronavirus.用于安全有效预防中东呼吸综合征冠状病毒的载有拟病毒STING激动剂的中空聚合物纳米颗粒
Adv Funct Mater. 2019 Jul 11;29(28):1807616. doi: 10.1002/adfm.201807616. Epub 2019 Apr 12.
2
Potent STING activation stimulates immunogenic cell death to enhance antitumor immunity in neuroblastoma.强效 STING 激活可刺激免疫原性细胞死亡,增强神经母细胞瘤中的抗肿瘤免疫。
J Immunother Cancer. 2020 Mar;8(1). doi: 10.1136/jitc-2019-000282.
3
Employing bicontinuous-to-micellar transitions in nanostructure morphology for on-demand photo-oxidation responsive cytosolic delivery and off-on cytotoxicity.利用纳米结构形态中的双连续到胶束转变按需实现光氧化响应的细胞质递送和开-关细胞毒性。
Nanoscale. 2020 Mar 5;12(9):5332-5340. doi: 10.1039/c9nr10921h.
4
Pulmonary surfactant-biomimetic nanoparticles potentiate heterosubtypic influenza immunity.肺表面活性剂仿生纳米颗粒增强了异源流感免疫。
Science. 2020 Feb 21;367(6480). doi: 10.1126/science.aau0810.
5
Agonists and inhibitors of the STING pathway: Potential agents for immunotherapy.STING 通路的激动剂和抑制剂:免疫治疗的潜在药物。
Med Res Rev. 2020 May;40(3):1117-1141. doi: 10.1002/med.21649. Epub 2019 Dec 2.
6
An inhalable nanoparticulate STING agonist synergizes with radiotherapy to confer long-term control of lung metastases.一种可吸入的纳米颗粒 STING 激动剂与放射疗法协同作用,可长期控制肺转移。
Nat Commun. 2019 Nov 8;10(1):5108. doi: 10.1038/s41467-019-13094-5.
7
Pharmacological modulation of nucleic acid sensors - therapeutic potential and persisting obstacles.核酸传感器的药理学调节——治疗潜力和持续存在的障碍。
Nat Rev Drug Discov. 2019 Nov;18(11):845-867. doi: 10.1038/s41573-019-0043-2. Epub 2019 Sep 25.
8
STING pathway agonism as a cancer therapeutic.STING 通路激动剂作为一种癌症治疗方法。
Immunol Rev. 2019 Jul;290(1):24-38. doi: 10.1111/imr.12765.
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The STING ligand cGAMP potentiates the efficacy of vaccine-induced CD8+ T cells.STING 配体 cGAMP 增强了疫苗诱导的 CD8+ T 细胞的疗效。
JCI Insight. 2019 Apr 4;4(7). doi: 10.1172/jci.insight.125107.
10
Pharmacological Modulation of the STING Pathway for Cancer Immunotherapy.STING 通路的药理学调节在癌症免疫治疗中的作用。
Trends Mol Med. 2019 May;25(5):412-427. doi: 10.1016/j.molmed.2019.02.007. Epub 2019 Mar 15.

两亲性聚电解质接枝共聚物增强环状二核苷酸 STING 激动剂的活性。

Amphiphilic Polyelectrolyte Graft Copolymers Enhance the Activity of Cyclic Dinucleotide STING Agonists.

机构信息

Department of Chemical and Biomolecular Engineering, Vanderbilt University, Nashville, TN, 37235, USA.

The SyBBURE Searle Undergraduate Research Program, Vanderbilt University, Nashville, TN, 37235, USA.

出版信息

Adv Healthc Mater. 2021 Jan;10(2):e2001056. doi: 10.1002/adhm.202001056. Epub 2020 Nov 23.

DOI:10.1002/adhm.202001056
PMID:33225632
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7856189/
Abstract

Cyclic dinucleotide (CDN) agonists of stimulator of interferon genes (STING) hold great therapeutic potential, but their activity is hindered by poor drug-like properties that restrict cytosolic bioavailability. Here, this challenge is addressed through the synthesis and evaluation of a novel series of PEGMA-co-DEAEMA-co-BMA copolymers with pH-responsive, membrane-destabilizing activity to enhance intracellular delivery of the CDN, cGAMP. Copolymers are synthesized with PEGMA of two different molecular weights (300 and 950 Da) and over a range of PEG mass fraction and polymer molecular weight, and relationships between copolymer structure, self-assembly, endosomal escape, and cGAMP activity are elucidated. A subset of polymers that self-assembled into 50-800 nm nanoparticles is identified, which can be loaded with cGAMP via a simple mixing strategy, resulting in significantly enhanced immunostimulatory activity. Increased cGAMP activity is found to be highly correlated with the capacity of carriers to enhance intracellular CDN uptake and to promote endosomal destabilization, findings that establish efficient cytosolic delivery as a criterion for CDN carriers. Additionally, it is demonstrated that a lead CDN carrier formulation can enhance STING activation in vivo in a model of intratumoral immunotherapy. Collectively, these investigations demonstrate the utility of PEGMA-co-DEAEMA-co-BMA copolymers as carriers for CDNs and potentially other cytosolically-acting drug cargo.

摘要

环状二核苷酸 (CDN) 作为干扰素基因刺激物 (STING) 的激动剂具有很大的治疗潜力,但由于其较差的药物样性质限制了细胞溶质的生物利用度,其活性受到阻碍。在这里,通过合成和评估一系列具有 pH 响应性和破坏膜活性的新型聚乙二醇甲基丙烯酸酯-co-二乙基烯丙基二甲基氯化铵-co-甲基丙烯酸丁酯共聚物来解决这一挑战,以增强 CDN,cGAMP 的细胞内递送。共聚物是用两种不同分子量的聚乙二醇甲基丙烯酸酯 (300 和 950 Da) 和一系列聚乙二醇质量分数和聚合物分子量合成的,并阐明了共聚物结构、自组装、内涵体逃逸和 cGAMP 活性之间的关系。鉴定出一组自组装成 50-800nm 纳米颗粒的聚合物,可通过简单的混合策略将 cGAMP 加载到其中,从而显著增强免疫刺激性。发现 cGAMP 活性的增加与载体增强细胞内 CDN 摄取和促进内涵体不稳定的能力高度相关,这些发现将有效的细胞质递送确立为 CDN 载体的标准。此外,还证明了一种先导 CDN 载体配方可以在肿瘤内免疫治疗的模型中增强体内 STING 激活。总之,这些研究表明聚乙二醇甲基丙烯酸酯-co-二乙基烯丙基二甲基氯化铵-co-甲基丙烯酸丁酯共聚物可用作 CDN 及其他潜在的细胞溶质作用药物载体。