管理幽门螺杆菌感染:从传统治疗方法过渡到替代治疗方法

Serhat Öcal
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摘要

幽门螺杆菌是感染者胃微生物群的重要组成部分,通常与慢性胃炎、消化性溃疡疾病和胃癌等疾病有关。近年来,世界范围内日益增长的抗生素耐药性已成为有效治疗幽门螺杆菌感染的重大障碍。因此,有必要探索创新的治疗策略,旨在加强现有的基于抗生素的根除疗法的效力。这些前卫的策略包括将益生菌和益生元作为幽门螺杆菌治疗的补充措施,使用抗菌肽作为传统抗生素的潜在替代品,以及通过可摄取装置应用光动力疗法。其他先进的方法包括部署利用微粒和纳米颗粒的药物输送系统、发明疫苗、探索天然产物以及噬菌体疗法的潜在使用。这篇综述提供了这些新兴策略的当代概要,旨在抑制幽门螺杆菌,深入研究他们的优势,障碍,以及在他们的发展过程中要考虑的方面。一项重大成就将是研制出一种有效的人类疫苗;然而,以前开发这种疫苗的尝试遇到了障碍,甚至停止了。许多天然产物显示抗h。幽门螺杆菌的特性,主要在实验室环境中。尽管如此,仍需要进行更广泛的临床研究,以充分了解它们在消灭幽门螺杆菌中的作用。最后,噬菌体治疗虽然显示出作为一种合适的替代方案的潜力,但仍面临着相当大的挑战,主要是针对幽门螺杆菌的高毒力噬菌体的分离。
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Managing Helicobacter pylori infection: transitioning from conventional to alternative treatment approaches
Helicobacter pylori, an essential constituent of the gastric microbiome in those infected, is commonly associated with medical conditions such as chronic gastritis, peptic ulcer disease, and gastric cancer. In recent years, the growing resistance to antibiotics worldwide has emerged as a substantial hurdle in the effective treatment of H. pylori infection. Consequently, it has necessitated the exploration of innovative treatment strategies aimed at bolstering the potency of existing antibiotic-based eradication therapies. Such avant-garde strategies include the incorporation of probiotics and prebiotics as complementary measures to H. pylori treatment, the use of antimicrobial peptides as potential replacements for traditional antibiotics, and the application of photodynamic therapy via ingestible devices. Other advanced methodologies entail deploying drug delivery systems that utilize microparticles and nanoparticles, the invention of vaccines, the exploration of natural products, and the potential use of phage therapy. This review offers a contemporary synopsis of these burgeoning strategies designed to suppress H. pylori, delving into their strengths, hurdles, and aspects to consider during their development. A significant achievement would be the creation of an efficient human vaccine; however, previous attempts at developing such vaccines have met with obstacles or even cessation. Numerous natural products have displayed anti-H. pylori properties, predominantly in laboratory environments. Nonetheless, a requirement remains for more extensive clinical studies to fully comprehend their role in exterminating H. pylori. Finally, phage therapy, while demonstrating potential as a suitable alternative, grapples with considerable challenges, chiefly the isolation of highly virulent bacteriophages that specifically target H. pylori.
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