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根除的挑战与前景:靶向毒力因子、代谢及疫苗创新

Challenges and Prospects for Eradication of : Targeting Virulence Factors, Metabolism, and Vaccine Innovation.

作者信息

Bakiera Adrian, Solarz Anita, Kowalczyk Marika, Cichoż-Lach Halina, Korona-Głowniak Izabela

机构信息

Department of Pharmaceutical Microbiology, Medical University of Lublin, 20-093 Lublin, Poland.

Stefan Cardinal Wyszynski District Specialist Hospital, 20-718 Lublin, Poland.

出版信息

Pathogens. 2025 Jun 21;14(7):619. doi: 10.3390/pathogens14070619.

Abstract

is a Gram-negative bacterium that infects almost half of the global population and is linked to gastric conditions like peptic ulcers and gastric cancer, as well as other diseases such as neurological disorders, cardiovascular problems, and iron deficiency anemia. Its survival in the acidic stomach environment is due to virulence factors like urease, flagella, and adhesion proteins (BabA, SabA). Current treatments involve a combination of antibiotics (clarithromycin, metronidazole, amoxicillin, tetracycline) and proton pump inhibitors, but increasing antibiotic resistance, especially to clarithromycin and metronidazole, poses a major challenge. Resistance mechanisms include mutations in drug targets, efflux pump overexpression, and enzymatic degradation of antibiotics. This has prompted exploration of alternative therapies targeting bacterial processes like urease activity, biofilm formation, and metabolic pathways (energy production, amino acid synthesis, iron acquisition). Natural compounds, such as chitosan and plant extracts, show promise in combating growth and virulence. Vaccine development is also ongoing, with DNA vaccines showing potential for broad immune responses. However, no vaccine is yet close to widespread clinical use.

摘要

是一种革兰氏阴性菌,感染了全球近一半的人口,与消化性溃疡和胃癌等胃部疾病以及神经紊乱、心血管问题和缺铁性贫血等其他疾病有关。它能在胃酸环境中存活,这归因于脲酶、鞭毛和黏附蛋白(BabA、SabA)等毒力因子。目前的治疗方法包括联合使用抗生素(克拉霉素、甲硝唑、阿莫西林、四环素)和质子泵抑制剂,但抗生素耐药性不断增加,尤其是对克拉霉素和甲硝唑的耐药性,构成了重大挑战。耐药机制包括药物靶点突变、外排泵过度表达以及抗生素的酶促降解。这促使人们探索针对细菌过程(如脲酶活性、生物膜形成和代谢途径(能量产生、氨基酸合成、铁获取))的替代疗法。天然化合物,如壳聚糖和植物提取物,在对抗其生长和毒力方面显示出前景。疫苗研发也在进行中,DNA疫苗显示出产生广泛免疫反应的潜力。然而,尚无疫苗接近广泛临床应用。

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