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Surface Functionalization of Hepatitis E Virus Nanoparticles Using Chemical Conjugation Methods

机译:使用化学偶联方法对戊型肝炎病毒纳米颗粒进行表面功能化

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摘要

Virus-like particles (VLPs) have been used as nanocarriers to display foreign epitopes and/or deliver small molecules in the detection and treatment of various diseases. This application relies on genetic modification, self-assembly, and cysteine conjugation to fulfill the tumor-targeting application of recombinant VLPs. Compared with genetic modification alone, chemical conjugation of foreign peptides to VLPs offers a significant advantage because it allows a variety of entities, such as synthetic peptides or oligosaccharides, to be conjugated to the surface of VLPs in a modulated and flexible manner without alteration of the VLP assembly.Here, we demonstrate how to use the hepatitis E virus nanoparticle (HEVNP), a modularized theranostic capsule, as a multifunctional delivery carrier. Functions of HEVNPs include tissue-targeting, imaging, and therapeutic delivery. Based on the well-established structural research of HEVNP, the structurally independent and surface-exposed residues were selected for cysteine replacement as conjugation sites for maleimide-linked chemical groups via thiol-selective linkages. One particular cysteine-modified HEVNP (a Cys replacement of the asparagine at 573 aa (HEVNP-573C)) was conjugated to a breast cancer cell-specific ligand, LXY30 and labeled with near-infrared (NIR) fluorescence dye (Cy5.5), rendering the tumor-targeted HEVNPs as effective diagnostic capsules (LXY30-HEVNP-Cy5.5). Similar engineering strategies can be employed with other macromolecular complexes with well-known atomic structures to explore potential applications in theranostic delivery.
机译:病毒样颗粒(VLP)已被用作纳米载体,以显示外来抗原决定簇和/或在检测和治疗各种疾病中传递小分子。该申请依靠基因修饰,自组装和半胱氨酸缀合来实现重组VLP的靶向肿瘤的应用。与单独的基因修饰相比,外源肽与VLP的化学缀合具有显着的优势,因为它允许多种实体(如合成肽或寡糖)以调节和灵活的方式与VLP的表面缀合,而不会改变VLP组装。在此,我们演示如何使用模块化的治疗用药胶囊E型肝炎病毒纳米颗粒(HEVNP)作为多功能递送载体。 HEVNP的功能包括组织靶向,成像和治疗递送。基于已建立的HEVNP的结构研究,选择结构独立且表面暴露的残基用于半胱氨酸置换,作为通过硫醇选择性键连接马来酰亚胺连接的化学基团的结合位点。将一种特定的半胱氨酸修饰的HEVNP(在573aa处天冬酰胺的半胱氨酸替代(HEVNP-573C))与乳腺癌细胞特异性配体LXY30偶联,并用近红外(NIR)荧光染料(Cy5.5)标记,将靶向肿瘤的HEVNP用作有效的诊断胶囊(LXY30-HEVNP-Cy5.5)。相似的工程策略可以与其他具有众所周知原子结构的大分子配合物一起使用,以探索其在诊断治疗中的潜在应用。

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