Bacteriophages and phage products: Applications in medicine and biotechnological industries, and general concerns

M. Belay, T. Sisay, Tesfaye Wolde
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引用次数: 7

Abstract

Since their discovery in 1928 antibiotics have transformed medicine and saved millions of lives; however, the current global appearance of antibiotic resistance and absence of new antibiotics commercialization to the health sector return to the post-antibiotic era. Today, scientists are working to revive a century old technique of using bacteriophage as an option to currently available antibiotics in management of bacterial pathogens (resistant or otherwise), and for other practical applications. Bacteriophages, specialist viral predator of bacteria, are considered to be among the most plentiful and diversified organisms in this world and were co-discovered in the early 1900s by Twort in 1915 and d’Herelle in 1917. Since then, phages were investigated by d’Herelle and others for their promising therapeutic role against medically important bacterial infections, and were commercially developed in the 1930s. However, the golden age of antibiotics, together with the scientific controversy regarding their use, the interest in phage therapy rapidly declined. As a mark of the transformed attention, the field of phage research, using intact phage and phage products, has broadened to focus on several different areas: and have been successfully applied in agriculture and food industry to control bacteria pathogens; for the detection of bacterial pathogens, as deliverance carriers for DNA and protein vaccines; and as agents for selection to libraries of proteins, antibodies (phage display). Despite these remarkable achievements, it is important to remember that phages are not infallible, and that there are real concerns that need to be addressed, like narrow host range, bacterial phage resistance, phage clearance in bodily fluids, side effects of bacterial lysis and virulence genes transfer. Up to date progress in biotechnology and synthetic biology can help conquer these methodological obstacles, and provide a more versatile approach for the current antibiotics resistance crisis. Key words: Bacteriophages, biotechnological application, antibiotics resistance, phage products.
噬菌体和噬菌体产品:在医学和生物技术行业的应用以及普遍关注
自1928年发现抗生素以来,抗生素改变了医学,挽救了数百万人的生命;然而,目前全球出现的抗生素耐药性和缺乏新的抗生素商业化,使卫生部门回到了后抗生素时代。如今,科学家们正在努力复兴一项有百年历史的技术,即将噬菌体作为目前可用的抗生素的一种选择,用于管理细菌病原体(耐药性或其他),并用于其他实际应用。噬菌体是细菌的专业病毒捕食者,被认为是世界上最丰富、最多样化的生物之一,于20世纪初由特沃特于1915年和德赫雷勒于1917年共同发现。从那时起,d'Herelle和其他人对噬菌体进行了研究,以证明其对医学上重要的细菌感染具有良好的治疗作用,并于20世纪30年代进行了商业开发。然而,抗生素的黄金时代,加上关于其使用的科学争议,人们对噬菌体治疗的兴趣迅速下降。作为注意力转变的标志,噬菌体研究领域,使用完整的噬菌体和噬菌体产品,已经扩展到几个不同的领域:并已成功应用于农业和食品工业,以控制细菌病原体;用于检测细菌病原体,作为DNA和蛋白质疫苗的递送载体;以及作为选择蛋白质文库、抗体的试剂(噬菌体展示)。尽管取得了这些显著的成就,但重要的是要记住,噬菌体并非万无一失,还有一些真正的问题需要解决,如宿主范围窄、细菌噬菌体耐药性、体液中的噬菌体清除、细菌裂解的副作用和毒力基因转移。生物技术和合成生物学的最新进展可以帮助克服这些方法上的障碍,并为当前的抗生素耐药性危机提供一种更通用的方法。关键词:噬菌体,生物技术应用,抗生素耐药性,噬菌体产品。
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来源期刊
Scientific Research and Essays
Scientific Research and Essays 综合性期刊-综合性期刊
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发文量
6
审稿时长
3.3 months
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