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  • Organism-Level Analysis of Vaccination Reveals Networks of Protection across Tissues.

Organism-Level Analysis of Vaccination Reveals Networks of Protection across Tissues.

Cell (2017-09-26)
Motohiko Kadoki, Ashwini Patil, Cornelius C Thaiss, Donald J Brooks, Surya Pandey, Deeksha Deep, David Alvarez, Ulrich H von Andrian, Amy J Wagers, Kenta Nakai, Tarjei S Mikkelsen, Magali Soumillon, Nicolas Chevrier
ABSTRACT

A fundamental challenge in immunology is to decipher the principles governing immune responses at the whole-organism scale. Here, using a comparative infection model, we observe immune signal propagation within and between organs to obtain a dynamic map of immune processes at the organism level. We uncover two inter-organ mechanisms of protective immunity mediated by soluble and cellular factors. First, analyzing ligand-receptor connectivity across tissues reveals that type I IFNs trigger a whole-body antiviral state, protecting the host within hours after skin vaccination. Second, combining parabiosis, single-cell analyses, and gene knockouts, we uncover a multi-organ web of tissue-resident memory T cells that functionally adapt to their environment to stop viral spread across the organism. These results have implications for manipulating tissue-resident memory T cells through vaccination and open up new lines of inquiry for the analysis of immune responses at the organism level.

MATERIALS
Product Number
Brand
Product Description

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FTY720, ≥98% (HPLC)
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RNAlater®, Stabilize and protect RNA with immediate RNase inactivation
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SIGMAFAST OPD, tablet
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Benzyl benzoate, ReagentPlus®, ≥99.0%
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Histodenz, nonionic density gradient medium
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Benzyl alcohol, ACS reagent, ≥99.0%