ArticleImmunoHorizons2026
Intermittent fasting alters the antigen-specific CD5+ B-1 cell natural antibody repertoire in male and female mice.
Article in ImmunoHorizons, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
Natural antibodies (NAbs), primarily produced by CD5+ B-1 cells, provide critical early protection against infections such as Streptococcus pneumoniae. The structure of these natural antibodies, germline-like with minimal N-additions, is essential for their protective capacity. The protective capacity and germline status of NAbs are compromised in aged male mice but maintained in aged female mice. CD5+ B-1 cells are maintained through self-renewal, necessary for maintaining germline-like natural antibodies, and this process depends on autophagy. Intermittent fasting enhances autophagy and stem cell self-renewal, suggesting that it may influence B-1 cell persistence and natural antibody structure. Young (4-wk-old) male and female mice were placed on a fasting regimen (24-h fast weekly) or fed ad libitum for 12 wk. Here, we show that intermittent fasting modulates the antigen-specific natural IgM repertoire of young male and female mice, altering both peritoneal and splenic phosphatidylcholine-specific CD5+ B-1 cell repertoires, with the most pronounced effects in the spleen. Intermittent fasting increased the prevalence of germline-like (few N-additions) antibodies and led to an increase in VH11 usage, a variable gene mainly utilized during fetal development. Fasting also affected components of the serum repertoire; however, these effects differed between male and female mice. Female mice showed a significant decrease in phosphorylcholine- and pneumococcal polysaccharide serotype 3-specific IgM levels, whereas male mice showed a significant increase in phosphatidylcholine-specific IgM levels. We also observed a significant decrease in splenic CD5+ B-1 cells and serum interleukin-5 levels after fasting. These results suggest that intermittent fasting may help preserve or restore protective NAbs.
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