4.4 Article

Macrophage Cell Lines and Murine Infection by Salmonella enterica Serovar Typhi L-Form Bacteria

期刊

INFECTION AND IMMUNITY
卷 90, 期 6, 页码 -

出版社

AMER SOC MICROBIOLOGY
DOI: 10.1128/iai.00119-22

关键词

Salmonella; L-form; ampicillin; macrophage; antibiotic resistance

资金

  1. ICMR [2019-3127/Gen/ADHOC-BMS]

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Antibiotic resistance is a major threat to public health worldwide. This study investigates the temporary and reversible resistance induced by antibiotic treatment, specifically focusing on the development of L-form bacteria in response to ampicillin. The researchers cultured ampicillin-sensitive Salmonella enterica serovar Typhi Ty2 strain in increasing concentrations of ampicillin over 14 days, resulting in the development of an L-form strain with altered characteristics and increased pathogenicity. These findings highlight the potential for drug escape and cell-to-cell spread of bacteria during antibiotic treatment and the need for new approaches to reduce infection reservoirs.
Antibiotic resistance of pathogenic bacteria has emerged as a major threat to public health worldwide. While stable resistance due to the acquisition of genomic mutations or plasmids carrying antibiotic resistance genes is well established, much less is known about the temporary and reversible resistance induced by antibiotic treatment, such as that due to treatment with bacterial cell wall-inhibiting antibiotics such as ampicillin. Typically, ampicillin concentration in the blood and other tissues gradually increases over time after initiation of the treatment. As a result, the bacterial population is exposed to a concentration gradient of ampicillin during the treatment of infectious diseases. This is different from in vitro drug testing, where the organism is exposed to fixed drug concentrations from the beginning until the end. To mimic the mode of antibiotic exposure of microorganisms within host tissues, we cultured the wild-type, ampicillin-sensitive Salmonella enterica serovar Typhi Ty2 strain (S. Typhi Ty2) in the presence of increasing concentrations of ampicillin over a period of 14 days. This resulted in the development of a strain that displayed several features of the so-called L-form of bacteria, including the absence of the cell wall, altered shape, and lower growth rate compared with the parental form. Studies of the pathogenesis of S. Typhi L-form showed efficient infection of the murine and human macrophage cell lines. More importantly, S. Typhi L-form was also able to establish infection in a mouse model to the extent comparable to its parental form. These results suggested that L-form generation following the initiation of treatment with antibiotics could lead to drug escape of S. Typhi and cell to cell (macrophages) spread of the bacteria, which sustain the infection. Oral infection by the L-form bacteria underscores the potential of rapid disease transmission through the fecal-oral route, highlighting the need for new approaches to decrease the reservoir of infection.

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