生物技术通报 ›› 2023, Vol. 39 ›› Issue (6): 126-132.doi: 10.13560/j.cnki.biotech.bull.1985.2022-0860

• 综述与专论 • 上一篇    下一篇

抗菌适配体的筛选与应用进展

李典典1(), 粟元1, 李洁2, 许文涛1, 朱龙佼1()   

  1. 1.中国农业大学营养与健康系 食品精准营养与质量控制教育部重点实验室,北京 100083
    2.北京农学院食品科学与工程学院 食品质量与安全北京实验室 农产品有害微生物及农残安全检测与控制北京市重点实验室,北京 102206
  • 收稿日期:2022-07-11 出版日期:2023-06-26 发布日期:2023-07-07
  • 通讯作者: 朱龙佼,女,副教授,博士生导师,研究方向:功能核酸生物传感器检测技术;E-mail: zhulongjiao@cau.edu.cn
  • 作者简介:李典典,女,硕士研究生,研究方向: 生物与医药工程;E-mail: 3219435892@qq.com
  • 基金资助:
    河北省重点研发计划(21372801D);中国农业大学2115人才培育计划(00109012);北京市科协2022-2024年度青年人才托举工程项目(BYESS2022133);北京市景观休闲农业创新团队项目(BAIC09-2022)

Progress in Selection and Application of Antibacterial Aptamers

LI Dian-dian1(), SU Yuan1, LI Jie2, XU Wen-tao1, ZHU Long-jiao1()   

  1. 1. Key Laboratory of Precision Nutrition and Food Quality, Department of Nutrition and Health, China Agricultural University, Beijing 100083
    2. Beijing Laboratory of Food Quality and Safety, Beijing Key Laboratory of Agricultural Product Detection and Control of Spoilage Organisms and Pesticide Residue, Faculty of Food Science and Engineering, Beijing University of Agriculture, Beijing 102206
  • Received:2022-07-11 Published:2023-06-26 Online:2023-07-07

摘要:

现代医学及分子生物技术当前所面临的一个重大挑战是探索新的治疗方案来应对细菌感染。因多重耐药细菌的比率不断增加,同时结合抗菌药物的功效、研发进程及成本,更加重了细菌感染治疗形势的严峻性。针对这一形势,最有希望的解决方案是寻找抗菌药物的替代来源,而经SELEX筛选获得的抗菌适配体是极具潜力的替代品。抗菌适配体可通过干扰细菌生化进程、控制细菌菌膜形成、阻断毒素侵染等机制降低细菌的致病能力。目前,基于适配体的抗菌策略主要包括单一适配体抑菌、适配体复合纳米材料、适配体复合抗生素等。本文总结了关于常见致病菌细胞或其相关成分适配体的筛选策略,并从适配体的裁剪修饰、抑菌机制及其在抑菌治疗中的应用等方面展开论述,展望了基于抗菌适配体的抑菌策略在感染治疗中的发展前景,旨在为致病菌引发的感染性疾病的诊治提供新思路。

关键词: 抗菌适配体, 筛选, 抑菌机制

Abstract:

One of the major challenges in modern medicine and molecular biotechnology is to explore new therapeutic options for bacterial infections. The increasing rates of multidrug-resistant bacteria, overlaid with the efficacy, development process, and cost of antimicrobial agents, has made the treatments of bacterial infections even more challenging. In response to this situation, the most promising solution is to find alternative sources of antibacterial drugs, and antibacterial aptamers obtained through SELEX screening are promising alternatives. Antibacterial aptamers can reduce the pathogenic abilities of bacteria by interfering with the biochemical processes of bacteria, controlling the formations of bacterial membrane and blocking the infections of toxins. Currently, aptamer-based antibacterial strategies mainly include single aptamer antibacteria, aptamer composite nanomaterials, aptamer composite antibiotics, etc. In this paper, the screening strategies of aptamers for common pathogenic cells or their related components are summarized, and the adaptation and modification of aptamers are discussed from the aspects of antimicrobial mechanism and its application in antimicrobial therapy. The development prospect of antimicrobial strategies based on antibacterial aptamers in the treatment of infection is prospected, aiming to provide new ideas for the diagnosis and treatment of infectious diseases caused by pathogenic bacteria.

Key words: antibacterial aptamer, selection, bacteriostatic mechanism