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口腔种植学中的抗菌多糖

Antibacterial Polysaccharides in Dental Implantology.

作者信息

Hallmann Lubica, Gerngroß Mark Daniel

机构信息

School of Dentistry, Kiel University, 24105 Kiel, Germany.

Institute of Material Science, Faculty of Engineering, Kiel University, 24143 Kiel, Germany.

出版信息

Mar Drugs. 2025 Aug 4;23(8):321. doi: 10.3390/md23080321.

Abstract

The aim of this review is to summarize and evaluate the properties of antibacterial polysaccharides for application in dental implantology to identify knowledge gaps and provide new research ideas. : The electronic databases PubMed, Medline, ProQuest, and Google Scholar were used to search for peer-reviewed scientific publications published between 2018 and 2025 that provide insights to answer research questions on the role of antibacterial polysaccharides in combating pathogens in dental implantology without triggering immune reactions and inflammation. Further research questions relate to the efficacy against various dental pathogens and the understanding of the antibacterial mechanism, which may enable the development of functionalized polysaccharides with long-term antibacterial activity. Biomedical implants have revolutionized medicine but also increased the risk of infections. Implant infections are a major problem in implantology and lead to implant failure and replacement. An antibacterial coating could be an excellent strategy to extend the lifespan of implants and improve the quality of the patient's life. Bacterial resistance to antibiotics poses significant challenges for researchers, forcing them to search for new ways to prevent bacterial infections in implantology. Antibacterial natural polymers have recently received considerable research attention due to their long-term antibacterial activity. Polysaccharides from marine sources, such as chitosan and alginate, or pectin, xanthan, etc., from various plants, appear to be promising biopolymers for such applications in implantology due to their antibacterial activity, biocompatibility, and osteogenic properties. The antibacterial activity of these natural biopolymers depends on their chemical and physical properties. Nanopolysaccharides exhibit higher antibacterial activity than conventional polysaccharides, but their toxicity to human cells must be considered. Their antibacterial activity is based on the disruption of bacterial DNA or RNA synthesis, increased cell wall permeability, membrane disruption, and cytoplasmic leakage. Polysaccharides are a class of natural polymers with a broad spectrum of biological activities. They exhibit antioxidant, immunomodulatory, anticoagulant, anticancer, anti-inflammatory, antibacterial, and antiviral activity. Furthermore, polysaccharides are non-cytotoxic and exhibit good biocompatibility with osteogenic cells. Bactericidal polysaccharides are attractive new antibacterial materials against implant infections and open up new perspectives in implantology.

摘要

本综述的目的是总结和评估抗菌多糖在牙种植学中的应用特性,以识别知识空白并提供新的研究思路。使用电子数据库PubMed、Medline、ProQuest和谷歌学术搜索2018年至2025年间发表的同行评审科学出版物,这些出版物有助于回答关于抗菌多糖在牙种植学中对抗病原体而不引发免疫反应和炎症作用的研究问题。进一步的研究问题涉及对各种牙科病原体的疗效以及对抗菌机制的理解,这可能有助于开发具有长期抗菌活性的功能化多糖。生物医学植入物彻底改变了医学,但也增加了感染风险。植入物感染是种植学中的一个主要问题,会导致植入物失败和更换。抗菌涂层可能是延长植入物使用寿命和改善患者生活质量的绝佳策略。细菌对抗生素的耐药性给研究人员带来了重大挑战,迫使他们寻找预防种植学中细菌感染的新方法。抗菌天然聚合物因其长期抗菌活性最近受到了相当多的研究关注。海洋来源的多糖,如壳聚糖和藻酸盐,或来自各种植物的果胶、黄原胶等,由于其抗菌活性、生物相容性和成骨特性,似乎是用于种植学此类应用的有前途的生物聚合物。这些天然生物聚合物的抗菌活性取决于它们的化学和物理性质。纳米多糖比传统多糖表现出更高的抗菌活性,但必须考虑其对人类细胞的毒性。它们的抗菌活性基于对细菌DNA或RNA合成的破坏、细胞壁通透性增加、膜破坏和细胞质泄漏。多糖是一类具有广泛生物活性的天然聚合物。它们具有抗氧化、免疫调节、抗凝、抗癌、抗炎、抗菌和抗病毒活性。此外,多糖无细胞毒性,与成骨细胞具有良好的生物相容性。杀菌多糖是对抗植入物感染的有吸引力的新型抗菌材料,为种植学开辟了新的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2de8/12388009/9cef2ae59256/marinedrugs-23-00321-g001.jpg

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