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弹性蛋白样重组体的免疫调节纳米颗粒:用于结核病疫苗开发的单分子。

Immunomodulatory nanoparticles from elastin-like recombinamers: single-molecules for tuberculosis vaccine development.

机构信息

Bioforge Group, University of Valladolid , CIBER-BBN, Paseo de Belén 11, 47011 Valladolid, Spain.

出版信息

Mol Pharm. 2013 Feb 4;10(2):586-97. doi: 10.1021/mp300325v. Epub 2013 Jan 24.

Abstract

This study investigates both the physicochemical properties and immunogenicity of a genetically engineered elastin-like block corecombinamer (ELbcR) containing a major membrane protein sequence from Mycobacterium tuberculosis. The recombinant production of this ELbcR allows the production of large quantities of safe, antigenic particle-based constructs that directly and reversibly self-assemble into highly biocompatible, multivalent, monodisperse, and stable nanovesicles with a diameter of 55 nm from the same gene product using a highly efficient and cost-effective inverse transition cycling (ITC) procedure. The compositional complexity of these vesicles is retained after secondary processes such as endotoxin removal, sterilization, and lyophilization. An initial pro-chemotactic cytokine response (IL-1β) followed by a pro-Th2/IL-5 response was observed in mice plasma following subcutaneous administration of the antigen-loaded nanovesicles in mice. This biphasic model of cytokine production was coupled with humoral isotype switching from IgM- to IgG-specific antibodies against the antigen, which was only observed in the presence of both the antigen and the polymer in the same construct and in the absence of additional adjuvants.

摘要

本研究调查了一种基因工程弹性蛋白样嵌合体(ELbcR)的理化性质和免疫原性,该嵌合体含有结核分枝杆菌主要膜蛋白序列。该 ELbcR 的重组生产允许大量生产安全的、基于抗原的颗粒状构建体,这些构建体可直接且可逆地自组装成具有高度生物相容性、多价、单分散和稳定的纳米囊泡,直径为 55nm,使用高效且具有成本效益的逆转变环(ITC)程序从同一基因产物。这些囊泡的组成复杂性在经过内毒素去除、灭菌和冷冻干燥等二次处理后得以保留。在皮下给予载抗原的纳米囊泡后,在小鼠血浆中观察到初始促趋化细胞因子反应(IL-1β),随后是促 Th2/IL-5 反应。这种细胞因子产生的双相模型与体液同种型转换相关,即针对抗原的 IgM-到 IgG-特异性抗体,仅在同一构建体中同时存在抗原和聚合物且不存在额外佐剂的情况下观察到。

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