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通过工程化细胞外囊泡递呈抗 HPV16 E7 scFv 抑制 HPV 感染细胞的增殖。

The Intracellular Delivery Of Anti-HPV16 E7 scFvs Through Engineered Extracellular Vesicles Inhibits The Proliferation Of HPV-Infected Cells.

机构信息

National Center for Global Health, Istituto Superiore Di Sanità (ISS), Rome, Italy.

Department of Science, Roma Tre University, Rome, Italy.

出版信息

Int J Nanomedicine. 2019 Nov 7;14:8755-8768. doi: 10.2147/IJN.S209366. eCollection 2019.

Abstract

PURPOSE

Single-chain variable fragments (scFvs) are one of the smallest antigen-binding units having the invaluable advantage to be expressed by a unique short open reading frame (ORF). Despite their reduced size, spontaneous cell entry of scFvs remains inefficient, hence precluding the possibility to target intracellular antigens. Here, we describe an original strategy to deliver scFvs inside target cells through engineered extracellular vesicles (EVs). This approach relies on the properties of a Human Immunodeficiency Virus (HIV)-1 Nef mutant protein referred to as Nef. It is a previously characterized Nef allele lacking basically all functions of wt Nef, yet strongly accumulating in the EV lumen also when fused at its C-terminus with a foreign protein. To gain the proof-of-principle for the efficacy of the proposed strategy, the tumor-promoting Human Papilloma Virus (HPV)16-E7 protein was considered as a scFv-specific intracellular target. The oncogenic effect of HPV16-E7 relies on its binding to the tumor suppressor pRb protein leading to a dysregulated cell duplication. Interfering with this interaction means impairing the HPV16-E7-induced cell proliferation.

METHODS

The Nef gene was fused in frame at its 3'-terminus with the ORF coding for a previously characterized anti-HPV16-E7 scFv. Interaction between the Nef-fused anti-HPV16-E7 scFv and the HPV16-E7 protein was tested by both confocal microscope and co-immunoprecipitation analyses on co-transfected cells. The in cis anti-proliferative effect of the Nef/anti-HPV16-E7 scFv was assayed by transfecting HPV16-infected cells. The anti-proliferative effect of EVs engineered with Nef/anti-HPV16-E7 scFv on HPV16-E7-expressing cells was evaluated in two ways: i) through challenge with purified EVs by a Real-Time Cell Analysis system and ii) in transwell co-cultures by an MTS-based assay.

RESULTS

The Nef/anti-HPV16-E7 scFv chimeric product is efficiently uploaded in EVs, binds HPV16-E7, and inhibits the proliferation of HPV16-E7-expressing cells. Most important, challenge with cell-free EVs incorporating the Nef/anti-HPV16-E7 scFv led to the inhibition of proliferation of HPV16-E7-expressing cells. The proliferation of these cells was hindered also when they were co-cultured in transwells with cells producing EVs uploading Nef/anti-HPV16-E7 scFv.

CONCLUSION

Our data represent the proof-of-concept for the possibility to target intracellular antigens through EV-mediated delivery of scFvs. This finding could be relevant to design novel methods of intracellular therapeutic interventions.

摘要

目的

单链可变片段(scFv)是最小的抗原结合单位之一,具有表达独特短开放阅读框(ORF)的宝贵优势。尽管它们的体积较小,但 scFv 的自发细胞进入仍然效率低下,因此排除了靶向细胞内抗原的可能性。在这里,我们描述了一种通过工程化细胞外囊泡(EV)将 scFv 递送到靶细胞内的原始策略。该方法依赖于人类免疫缺陷病毒(HIV)-1 Nef 突变蛋白的特性,该蛋白称为 Nef。它是一种以前被表征的 Nef 等位基因,基本上缺乏 wt Nef 的所有功能,但当其 C 末端与外源蛋白融合时,仍能强烈地在 EV 腔中积累。为了证明所提出策略的有效性,我们选择了肿瘤促进型人乳头瘤病毒(HPV)16-E7 蛋白作为 scFv 特异性的细胞内靶标。HPV16-E7 的致癌作用依赖于其与肿瘤抑制因子 pRb 蛋白的结合,导致细胞复制失调。干扰这种相互作用意味着破坏 HPV16-E7 诱导的细胞增殖。

方法

将 Nef 基因在其 3' 末端与编码先前表征的抗 HPV16-E7 scFv 的 ORF 融合。通过共转染细胞的共聚焦显微镜和共免疫沉淀分析测试 Nef-融合抗 HPV16-E7 scFv 与 HPV16-E7 蛋白之间的相互作用。通过转染 HPV16 感染的细胞来测定 Nef/抗 HPV16-E7 scFv 的 cis 抗增殖作用。通过实时细胞分析系统用纯化的 EV 进行挑战和在 transwell 共培养物中通过 MTS 测定评估工程化 EV 中 Nef/抗 HPV16-E7 scFv 的抗增殖作用。

结果

Nef/抗 HPV16-E7 scFv 嵌合产物可有效地加载到 EV 中,与 HPV16-E7 结合,并抑制 HPV16-E7 表达细胞的增殖。最重要的是,用包含 Nef/抗 HPV16-E7 scFv 的无细胞 EV 进行挑战会抑制 HPV16-E7 表达细胞的增殖。当这些细胞在 transwell 中与产生 Nef/抗 HPV16-E7 scFv 的 EV 的细胞共培养时,这些细胞的增殖也受到阻碍。

结论

我们的数据代表了通过 EV 介导的 scFv 递送来靶向细胞内抗原的可能性的概念验证。这一发现可能与设计新的细胞内治疗干预方法有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c162/6844212/d3caa12e64a2/IJN-14-8755-g0001.jpg

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