4.7 Review

Manufacturing of bacteriophages for therapeutic applications

期刊

BIOTECHNOLOGY ADVANCES
卷 49, 期 -, 页码 -

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.biotechadv.2021.107758

关键词

Bacteriophages; Bacteriophage therapy; Bacteriophage biomanufacturing; Upstream bioprocessing; Downstream bioprocessing; Purification

资金

  1. European Regional Development Funds - Regional Operational Program for Lisbon [LISBOA-01-0247-FEDER-033603]
  2. Fundacao para a Ciencia e a Tecnologia [PD/BD/150335/2019, UID/BIO/04565/2020]
  3. Fundação para a Ciência e a Tecnologia [PD/BD/150335/2019] Funding Source: FCT

向作者/读者索取更多资源

Bacteriophages, as the most abundant biological entities on Earth, have a high level of specificity in infecting bacteria and offer a solution to the emergence of multidrug-resistant bacteria. The development of phage therapies should be accompanied by improvements in phage biomanufacturing processes. Key factors in phage production and purification, traditional purification methods, and state-of-the-art purification approaches are discussed, with continuous purification of phages presented as a future trend in biomanufacturing.
Bacteriophages, or simply phages, are the most abundant biological entities on Earth. One of the most interesting characteristics of these viruses, which infect and use bacteria as their host organisms, is their high level of specificity. Since their discovery, phages became a tool for the comprehension of basic molecular biology and originated applications in a variety of areas such as agriculture, biotechnology, food safety, veterinary, pollution remediation and wastewater treatment. In particular, phages offer a solution to one of the major problems in public health nowadays, i.e. the emergence of multidrug-resistant bacteria. In these situations, the use of virulent phages as therapeutic agents offers an alternative to the classic, antibiotic-based strategies. The development of phage therapies should be accompanied by the improvement of phage biomanufacturing processes, both at laboratory and industrial scales. In this review, we first present some historical and general aspects related with the discovery, usage and biology of phages and provide a brief overview of the most relevant phage therapy applications. Then, we showcase current processes used for the production and purification of phages and future alternatives in development. On the production side, key factors such as the bacterial physiological state, the conditions of phage infection and the operation parameters are described alongside with the different operation modes, from batch to semi-continuous and continuous. Traditional purification methods used in the initial phage isolation steps are then described followed by the presentation of current state-of-the-art purification approaches. Continuous purification of phages is finally presented as a future biomanufacturing trend.

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