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Bläckberg, A.

Publications and source records attributed to Bläckberg, A..

2 recordsLinked to original sources

Invasive streptococcal infection can lead to the generation of cross-strain opsonic antibodies

IntroductionThe human pathogen Streptococcus pyogenes causes substantial morbidity and mortality. It is unclear if antibodies developed after infections with this pathogen are opsonic and if they are strain-specific or more broadly protective. Here, we quantified the opsonic antibody response following invasive S. pyogenes infection. Materials and MethodsFour patients with S. pyogenes bacteremia between 2018-2020 at Sk[a]ne University Hospital in Lund, Sweden, were prospectively enrolled. Acute and convalescent sera were obtained, and the S. pyogenes isolates were genome-sequenced (emm118, emm85, and two emm1). Quantitative antibody binding and phagocytosis assays were used to evaluate isolate-dependent opsonic antibody function in response to infection. ResultsAntibody binding increased modestly against the infecting isolate and across emm types in convalescent compared to acute sera for all patients. For two patients, phagocytosis increased in convalescent serum for both the infecting isolate and across types. The increase was only across types for one patient, and one had no improvement. No correlation to the clinical outcomes was observed. ConclusionInvasive S. pyogenes infections result in a modestly increased antibody binding with differential opsonic capacity, both non-functional binding and broadly opsonic binding across types. These findings question the dogma that an invasive infection should lead to a strong type-specific antibody increase rather than a more modest but broadly reactive response, as seen in these patients. Furthermore, our results indicate that an increase in antibody titers might not be indicative of an opsonic response and highlight the importance of evaluating antibody function in S. pyogenes infections.

immunology↗

Opsonization by non-neutralizing antibodies can confer protection to SARS-CoV-2 despite Spike-dependent modulation of phagocytosis

Spike-specific antibodies are central to effective COVID19 immunity. Research efforts have focused on antibodies that neutralize the ACE2-Spike interaction but not on non-neutralizing antibodies. Antibody-dependent phagocytosis is an immune mechanism enhanced by opsonization, where typically, more bound antibodies trigger a stronger phagocyte response. Here, we show that Spike-specific antibodies, dependent on concentration, can either enhance or reduce Spike-bead phagocytosis by monocytes independently of the antibody neutralization potential. Surprisingly, we find that both convalescent patient plasma and patient-derived monoclonal antibodies lead to maximum opsonization already at low levels of bound antibodies and is reduced as antibody binding to Spike protein increases. Moreover, we show that this Spike-dependent modulation of opsonization seems to affect the outcome in an experimental SARS-CoV-2 infection model. These results suggest that the levels of anti-Spike antibodies could influence monocyte-mediated immune functions and propose that non-neutralizing antibodies could confer protection to SARS-CoV-2 infection by mediating phago-cytosis.

immunology↗