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

Author:

Ge Xuemei12,Jaijyan Dabbu K.1ORCID,Wang Wei3,Cheng Tong3,Tang Qiyi4,Wu Fei5,Jin Tuo5,Zhu Hua1

Affiliation:

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

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

3. State Key Laboratory of Molecular Vaccinology and Molecular Diagnostics, National Institute of Diagnostics and Vaccine Development in Infectious Diseases, School of Life Sciences, School of Public Health Xiamen University Xiamen People's Republic of China

4. Department of Microbiology Howard University College of Medicine Washington District of Columbia USA

5. Center for BioDelivery Sciences, School of Pharmacy Shanghai Jiao Tong University Shanghai People's Republic of China

Abstract

AbstractRNA 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 CX3CL1 chemokine receptor presented in the HCMV‐infected cells. The results demonstrated that the polywraplex conjugated with the target molecule CX3CL1 effectively and specifically delivered the siRNA/scRNA to HCMV infected cells and inhibited virus growth in vitro and in vivo.

Funder

National Natural Science Foundation of China

National Institutes of Health

Publisher

Wiley

Subject

Infectious Diseases,Virology

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Identification and characterization of Varicella Zoster Virus circular RNA in lytic infection;Nature Communications;2024-06-10

2. Synthesis and Self-Assembly of Block Copolymers;Block Co-polymeric Nanocarriers: Design, Concept, and Therapeutic Applications;2023

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