对抗抗生素耐药性的噬菌体疗法的药理和免疫学问题

Q4 Biochemistry, Genetics and Molecular Biology
Isra Noor, Muhammad Hassan Nasir, Aneeq Ur Rehman, Noof Javed, Warda Waheed, Areeba Waheed, Ishmal Jamil, Wajeeha Shafiq, Muhammad Haseeb, Divya Dhawal Bhandari, Hitesh Chopra, A. Othman
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引用次数: 0

摘要

噬菌体是一种能感染细菌细胞并利用其机器进行繁殖的病毒。这种独特的特性为抗击日益严重的全球威胁--抗生素耐药性细菌感染带来了巨大希望。噬菌体有两种类型:一种被命名为温和型噬菌体,将其基因组材料注入细菌并整合到宿主的基因组中;第二种被命名为溶解型噬菌体,它能抑制细菌的整个新陈代谢,以合成其基因组和蛋白质,包括参与打破细菌细胞膜和释放新型噬菌体的溶解蛋白。此外,噬菌体疗法还可以通过抗生物膜活性以及触发先天性和适应性免疫细胞反应来体现。此外,还没有关于噬菌体疗法不良反应的报道。不过,对许多人来说,噬菌体疗法仍然是一个严峻的问题,它可能会影响到未来与免疫反应、噬菌体选择和噬菌体抗药性有关的一些解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Medicinal and immunological aspects of bacteriophage therapy to combat antibiotic resistance
Bacteriophages are viruses that infect bacterial cells and use their machinery to reproduce. This unique characteristic holds immense promise for combating antibiotic-resistant bacterial infections, a growing global threat. There are two types: one of them is named temperate phages, which inject their genomic material into bacteria and integrate into the host’s genome, while the second one is entitled as lytic phages that subdue the entire metabolism of the bacterium for the synthesis of its genome and proteins, including lytic proteins involved in breaking bacterial cell membrane and release of novel phages. In addition, phage therapy can be expressed through anti-biofilm activity and by triggering innate and adaptive immune cells responses. Moreover, no adverse effects of phage therapy have been reported. However, phage therapy is still grim for many and could influence some interpretations related to immune response, bacteriophage selections, and phage resistance in the future.
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CiteScore
2.10
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