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具有联合溶瘤特性的仿生人工烟草花叶病毒,可彻底摧毁多药耐药性癌症。

Bioinspired Artificial Tobacco Mosaic Virus with Combined Oncolytic Properties to Completely Destroy Multidrug-Resistant Cancer.

机构信息

Huaxi MR Research Center (HMRRC), Department of Radiology, West China Hospital, Sichuan University, Chengdu, 610047, P. R. China.

National Engineering Research Center for Biomaterials, Sichuan University, Chengdu, 610064, P. R. China.

出版信息

Adv Mater. 2020 Mar;32(9):e1904958. doi: 10.1002/adma.201904958. Epub 2020 Jan 21.

DOI:10.1002/adma.201904958
PMID:31961987
Abstract

Although biomimetic virus-like strategies have been widely used in antitumor applications, construction of uniquely shaped virus-like agents and optimization of their specific morphological features to achieve diverse antitumor functions are worthwhile pursuits. Here, a novel strategy to construct an artificial tobacco mosaic virus (ATMV) that closely mimics the structure of the rod-like tobacco mosaic virus (TMV) is developed. The supramolecular array is self-assembled from small, repeated subunits of tailor-made capsid-mimicking dendrons onto RGD-modified single-walled carbon nanotube to construct the ATMVs with high structural stability. The ATMVs are tactfully designed with shielding, targeting, and arming approaches, including shielding the viruses against premature elimination, selectively targeting tumor tissue, and arming the viruses with oncolytic abilities. The elongated particles are concealed in blood until they arrived at a tumor site, then they induce robust composite oncolytic processes including cytomembrane penetration, endoplasmic reticulum disruption to cause Ca release, chemotherapeutic delivery, and photothermal therapy. Excitingly, the ATMVs not only lyse primary infected cells, but permeate adjacent cells for secondary infection, spreading cell-to-cell and continuing to induce lysis even deep in solid tumors. This work inspires a uniquely shaped virus-like agent with tactically optimized oncolytic functions that completely defeated large drug-resistant colon tumor (LoVo/Adr, ≈500 mm ).

摘要

尽管仿生病毒样策略已被广泛应用于抗肿瘤应用中,但构建具有独特形状的病毒样制剂并优化其特定形态特征以实现多样化的抗肿瘤功能仍是值得追求的目标。在这里,开发了一种构建人工烟草花叶病毒(ATMV)的新策略,该策略紧密模拟了棒状烟草花叶病毒(TMV)的结构。超分子阵列是由定制的壳聚糖模拟树突状小分子重复亚基自组装到 RGD 修饰的单壁碳纳米管上构建而成的,具有高结构稳定性的 ATMV。ATMV 采用了屏蔽、靶向和武装策略进行巧妙设计,包括屏蔽病毒以防止过早消除、选择性靶向肿瘤组织以及为病毒提供溶瘤能力。这些拉长的颗粒在血液中隐藏,直到它们到达肿瘤部位,然后诱导强大的复合溶瘤过程,包括细胞膜穿透、内质网破坏导致 Ca 释放、化学治疗药物递送和光热治疗。令人兴奋的是,ATMV 不仅可以裂解原发性感染细胞,还可以渗透邻近细胞进行二次感染,在实体肿瘤深处继续诱导细胞间裂解。这项工作启发了一种具有战术优化溶瘤功能的独特形状的病毒样制剂,完全击败了大的耐药结肠肿瘤(LoVo/Adr,≈500mm)。

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