Bigger is Faster in the Adaptive Immune Response

Fuente: arXiv
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Main Authors: Ferdous, Jannatul, Fricke, G. Matthew, Cannon, Judy L., Moses, Melanie E.
Format: Preprint
Published: 2025
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author Ferdous, Jannatul
Fricke, G. Matthew
Cannon, Judy L.
Moses, Melanie E.
author_facet Ferdous, Jannatul
Fricke, G. Matthew
Cannon, Judy L.
Moses, Melanie E.
contents Zoonotic pathogens represent a growing global risk, yet the speed of adaptive immune activation across mammalian species remains poorly understood. Despite orders-of-magnitude differences in size and metabolic rate, we show that the time to initiate adaptive immunity is remarkably consistent across species. To understand this invariance, we analyse empirical data showing how the numbers and sizes of lymph nodes scale with body mass, finding that larger animals have both more and larger lymph nodes. Using scaling theory and our mathematical model, we show that larger lymph nodes enable faster search times, conferring an advantage to larger animals that otherwise face slower biological times. This enables mammals to maintain, or even accelerate, the time to initiate the adaptive immune response as body size increases. We validate our analysis in simulations and compare it to empirical data.
format Preprint
id arxiv_https___arxiv_org_abs_2510_09678
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Bigger is Faster in the Adaptive Immune Response
Ferdous, Jannatul
Fricke, G. Matthew
Cannon, Judy L.
Moses, Melanie E.
Biological Physics
Populations and Evolution
Zoonotic pathogens represent a growing global risk, yet the speed of adaptive immune activation across mammalian species remains poorly understood. Despite orders-of-magnitude differences in size and metabolic rate, we show that the time to initiate adaptive immunity is remarkably consistent across species. To understand this invariance, we analyse empirical data showing how the numbers and sizes of lymph nodes scale with body mass, finding that larger animals have both more and larger lymph nodes. Using scaling theory and our mathematical model, we show that larger lymph nodes enable faster search times, conferring an advantage to larger animals that otherwise face slower biological times. This enables mammals to maintain, or even accelerate, the time to initiate the adaptive immune response as body size increases. We validate our analysis in simulations and compare it to empirical data.
title Bigger is Faster in the Adaptive Immune Response
topic Biological Physics
Populations and Evolution
url https://arxiv.org/abs/2510.09678