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抗菌肽及其共轭衍生物的应用现状

Current Status of the Application of Antimicrobial Peptides and Their Conjugated Derivatives.

作者信息

Del Olmo Marcel Lí, Andreu Cecilia

机构信息

Departament de Bioquímica i Biologia Molecular, Universitat de València (UVEG), Doctor Moliner 50, 46100 Burjassot, València, Spain.

Department de Química Orgànica, Universitat de València (UVEG), Vicent Andrés Estellés, sn, 46100 Burjassot, València, Spain.

出版信息

Molecules. 2025 Jul 22;30(15):3070. doi: 10.3390/molecules30153070.

Abstract

A significant issue in healthcare is the growing prevalence of antibiotic-resistant strains. Therefore, it is necessary to develop strategies for discovering new antibacterial compounds, either by identifying natural products or by designing semisynthetic or synthetic compounds with this property. In this context, a great deal of research has recently been carried out on antimicrobial peptides (AMPs), which are natural, amphipathic, low-molecular-weight molecules that act by altering the cell surface and/or interfering with cellular activities essential for life. Progress is also being made in developing strategies to enhance the activity of these compounds through their association with other molecules. In addition to identifying AMPs, it is essential to ensure that they maintain their integrity after passing through the digestive tract and exhibit adequate activity against their targets. Significant advances are being made in relation to analyzing various types of conjugates and carrier systems, such as nanoparticles, vesicles, hydrogels, and carbon nanotubes, among others. In this work, we review the current knowledge of different types of AMPs, their mechanisms of action, and strategies to improve performance.

摘要

医疗保健领域的一个重要问题是抗生素耐药菌株的日益流行。因此,有必要制定发现新抗菌化合物的策略,要么通过鉴定天然产物,要么通过设计具有这种特性的半合成或合成化合物。在这种背景下,最近对抗菌肽(AMPs)进行了大量研究,抗菌肽是天然的、两亲性的、低分子量分子,其作用方式是改变细胞表面和/或干扰生命所必需的细胞活动。通过将这些化合物与其他分子结合来增强其活性的策略也在取得进展。除了鉴定抗菌肽外,还必须确保它们在通过消化道后保持完整性,并对其靶标表现出足够的活性。在分析各种类型的缀合物和载体系统方面取得了重大进展,例如纳米颗粒、囊泡、水凝胶和碳纳米管等。在这项工作中,我们综述了不同类型抗菌肽的现有知识、它们的作用机制以及提高性能的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9116/12348590/977e8ccbd112/molecules-30-03070-g001.jpg

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