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负载抗原模拟物的生物相容性单链聚合物纳米颗粒作为潜在的抗癌疫苗。

Biocompatible single-chain polymer nanoparticles loaded with an antigen mimetic as potential anticancer vaccine.

作者信息

Gracia Raquel, Marradi Marco, Salerno Gianluca, Pérez-Nicado Rocmira, Pérez-San Vicente Adrián, Dupin Damien, Rodriguez Javier, Loinaz Iraida, Chiodo Fabrizio, Nativi Cristina

机构信息

CIDETEC Nanomedicine, Parque Cientı́fico y Tecnológico de Guipúzcoa, P° Miramón, 196, 20014 Donostia-San Sebastián, Spain.

Department of Chemistry, University of Florence, via della Lastruccia, 13, I-50019 Sesto F.no (FI), Italy.

出版信息

ACS Macro Lett. 2018 Feb 20;7(2):196-200. doi: 10.1021/acsmacrolett.8b00052. Epub 2018 Jan 25.

Abstract

The "pancarcinoma" Tn antigen (αGalNAc-O-Ser/Thr) is a tumor-associated carbohydrate antigen (TACA) overexpressed on the surface of cancer cells and suitable target for anticancer vaccines. However, TACAs commonly show weak immunogenicity, low in vivo stability, and poor bioavailability. To address these issues, the development of physiologically stable TACA synthetic mimetics and novel nanocarriers for multivalent display are object of intense research. Nanomaterials represent suitable scaffolds to multimerize antigens, but absence of toxicity, easy functionalization and capability to incorporate biomolecules are compulsory characteristics for vaccine nanocarriers. Here, we report on the conjugation of a synthetic Tn-antigen mimetic to biocompatible and water-dispersible dextran-based single-chain nanoparticles (DXT-SCPNs). In vitro stimulation of PBMCs and analysis of interleukins production indicated a specific innate immune modulation mediated by the multivalent presentation of the Tn mimetic at the nanoparticle surface. These preliminary results pave the way for the development of Tn-mimetic clusters on biocompatible DXT-SCPN for TACA-based vaccines.

摘要

“泛癌”Tn抗原(αGalNAc-O-丝氨酸/苏氨酸)是一种肿瘤相关碳水化合物抗原(TACA),在癌细胞表面过度表达,是抗癌疫苗的合适靶点。然而,TACA通常表现出弱免疫原性、低体内稳定性和差生物利用度。为了解决这些问题,开发生理稳定的TACA合成模拟物和用于多价展示的新型纳米载体是深入研究的目标。纳米材料是使抗原多聚化的合适支架,但疫苗纳米载体必须具备无毒性、易于功能化和能够掺入生物分子的特性。在此,我们报道了一种合成Tn抗原模拟物与生物相容性且水分散性的基于葡聚糖的单链纳米颗粒(DXT-SCPNs)的偶联。体外刺激外周血单核细胞(PBMCs)并分析白细胞介素的产生表明,由纳米颗粒表面Tn模拟物的多价呈递介导了特异性固有免疫调节。这些初步结果为基于生物相容性DXT-SCPN开发用于基于TACA的疫苗的Tn模拟簇铺平了道路。

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