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用于治疗性核酸递送以对抗人巨细胞病毒感染的合理设计的合成载体。

Rationally designed synthetic vectors for therapeutic nucleic acid delivery against human cytomegalovirus infection.

作者信息

Ge Xuemei, Jaijyan Dabbu K, Wang Wei, Cheng Tong, Tang Qiyi, Wu Fei, Jin Tuo, Zhu Hua

机构信息

Department of Microbiology, Biochemistry and Molecular Genetics, New Jersey Medical School, Rutgers The State University of New Jersey, Newark, New Jersey, USA.

Department of Food Science and Technology, College of Light Industry Science and Engineering, Nanjing Forestry University, Nanjing, People's Republic of China.

出版信息

J Med Virol. 2023 Mar;95(3):e28586. doi: 10.1002/jmv.28586.

Abstract

RNA therapy represents a great way to precisely regulate cellular processes by modulating the gene expression. Despite this potential, a profound gap exists in our knowledge of how to subsequently deliver these RNAs into the specific target cells and turn therapeutically active RNAs into practical medicines. An advanced series of interlocked, thermodynamically self-regulated processes that enable the precise assembly of functional synthetic carriers of siRNA to the target cells in vivo was developed. To demonstrate the efficacy of this delivery system, we used it to treat human cytomegalovirus (HCMV) infection in a humanized mouse model. In this study, we use small interfering RNA (siRNA) and small complementary RNA (scRNA) to inhibit the expressions of two HCMV genes, IE1 and IE2. The auto-regulated nanocarrier polywraplex with core-shell structure was designed to condense and package these RNAs for delivering. To allow these particles recognize the HCMV-infected cells, a ligand was coupled on the surface of nanoparticle, which would specifically target the HCMV-encoded CX CL chemokine receptor presented in the HCMV-infected cells. The results demonstrated that the polywraplex conjugated with the target molecule CX CL effectively and specifically delivered the siRNA/scRNA to HCMV infected cells and inhibited virus growth in vitro and in vivo.

摘要

RNA疗法是一种通过调节基因表达来精确调控细胞过程的好方法。尽管有这种潜力,但在如何将这些RNA随后递送到特定靶细胞并将具有治疗活性的RNA转化为实用药物方面,我们的知识存在巨大差距。我们开发了一系列先进的、相互关联的、热力学自调节过程,能够在体内将siRNA的功能性合成载体精确组装到靶细胞中。为了证明这种递送系统的功效,我们在人源化小鼠模型中用它来治疗人巨细胞病毒(HCMV)感染。在这项研究中,我们使用小干扰RNA(siRNA)和小互补RNA(scRNA)来抑制两个HCMV基因IE1和IE2的表达。设计具有核壳结构的自调节纳米载体聚包裹体来浓缩和包装这些RNA以进行递送。为了使这些颗粒识别HCMV感染的细胞,在纳米颗粒表面偶联了一种配体,该配体将特异性靶向HCMV感染细胞中呈现的HCMV编码的CXCL趋化因子受体。结果表明,与靶分子CXCL偶联的聚包裹体有效地、特异性地将siRNA/scRNA递送到HCMV感染的细胞中,并在体外和体内抑制病毒生长。

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