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Biology subjects

Stebbins, E.

Publications and source records attributed to Stebbins, E..

2 recordsLinked to original sources

Memory B cells dominate the early antibody-secreting cell response to SARS-CoV-2 mRNA vaccination in naive individuals independently of their antibody affinity

Memory B cells (MBCs) formed over the individuals lifetime constitute nearly half of the adult peripheral blood B cell repertoire in humans. To assess their response to novel antigens, we tracked the origin and followed the differentiation paths of MBCs in the early anti-S response to mRNA vaccination in SARS-CoV-2-naive individuals on single-cell and monoclonal antibody level. Newly generated and pre-existing MBCs differed in their differentiation paths despite similar levels of SARS-CoV-2 and common corona virus S-reactivity. Pre-existing highly mutated MBCs showed no signs of germinal center re-entry and rapidly developed into mature antibody secreting cells (ASCs). In contrast, newly generated MBCs derived from naive precursors showed strong signs of antibody affinity maturation before differentiating into ASCs. Thus, although pre-existing human MBCs have an intrinsic propensity to differentiate into ASCs, the quality of the anti-S antibody and MBC response improved through the clonal selection and affinity maturation of naive precursors. HighlightsO_LImRNA vaccination of SARS-CoV-2 naive individuals recruits naive and pre-existing MBCs with similar levels of S-reactivity into the response C_LIO_LIS-reactive naive but not pre-existing MBCs undergo affinity maturation C_LIO_LIS-reactive pre-existing MBCs dominate the early ASC response independent of their antigen affinity C_LIO_LIHigh-affinity S-reactive MBCs and ASCs develop over time and originate from affinity matured naive precursors C_LI

immunology↗

Identification of potent and orally efficacious phosphodiesterase inhibitors in Cryptosporidium parvum-infected immunocompromised mice

Cryptosporidium species, mostly C. parvum and C. hominis in humans, are intestinal apicomplexan parasites that cause life-threatening diarrhea in young children and people with cell-mediated immune defects, such as due to AIDS. There is only one approved treatment for cryptosporidiosis, but it is ineffective for immunocompromised people and only modestly effective for children. In this study, screening 278 compounds from the Merck KGaA, Darmstadt, Germany collection and accelerated follow-up work enabled by prior investigation of the compounds resulted in identification of a series of pyrazolopyrimidine human phosphodiesterase (PDE)-V inhibitors with potent anticryptosporidial activity and efficacy following oral administration in C. parvum-infected immunocompromised mice. The novel PDE inhibitor leads (compounds PDEi2 and PDEi5) affect parasite egress from infected host cells. They have comparable activity against C. parvum and C. hominis, rapidly eliminate C. parvum in tissue culture, and have minimal off-target effects in a panel of safety screening assays. In comparison, the potent human PDE-V inhibitors sildenafil and the 4-aminoquinoline compound 7a have no useful activity against C. parvum. Based on homology modeling and in silico compound docking, PDEi5 interacts directly with an active-site metal ion and docks well to two C. parvum PDEs. In contrast, larger amino acid side groups (Val900/Tyr11128 and His884/Asn1112) in both C. parvum PDEs replace alanine in human PDE-V and block sildenafil binding, explaining its lack of efficacy. These results identify a promising new drug target and lead series for anticryptosporidial drug development and validates a route to target-based optimization.

microbiology↗