Fever integrates antimicrobial defences, inflammation control, and tissue repair in a cold-blooded vertebrate
Multiple lines of evidence support the value of moderate fever to host survival, but the mechanisms involved remain unclear. This is difficult to establish in warm-blooded animal models, given the strict programmes controlling core body temperature and the physiological stress that results from thei...
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Published in | eLife Vol. 12 |
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Main Authors | , , , , , , , , , |
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eLife Sciences Publications, Ltd
14.03.2023
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Abstract | Multiple lines of evidence support the value of moderate fever to host survival, but the mechanisms involved remain unclear. This is difficult to establish in warm-blooded animal models, given the strict programmes controlling core body temperature and the physiological stress that results from their disruption. Thus, we took advantage of a cold-blooded teleost fish that offered natural kinetics for the induction and regulation of fever and a broad range of tolerated temperatures. A custom swim chamber, coupled to high-fidelity quantitative positional tracking, showed remarkable consistency in fish behaviours and defined the febrile window. Animals exerting fever engaged pyrogenic cytokine gene programmes in the central nervous system, increased efficiency of leukocyte recruitment into the immune challenge site, and markedly improved pathogen clearance in vivo, even when an infecting bacterium grew better at higher temperatures. Contrary to earlier speculations for global upregulation of immunity, we identified selectivity in the protective immune mechanisms activated through fever. Fever then inhibited inflammation and markedly improved wound repair. Artificial mechanical hyperthermia, often used as a model of fever, recapitulated some but not all benefits achieved through natural host-driven dynamic thermoregulation. Together, our results define fever as an integrative host response that regulates induction and resolution of acute inflammation, and demonstrate that this integrative strategy emerged prior to endothermy during evolution. |
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AbstractList | Multiple lines of evidence support the value of moderate fever to host survival, but the mechanisms involved remain unclear. This is difficult to establish in warm-blooded animal models, given the strict programmes controlling core body temperature and the physiological stress that results from their disruption. Thus, we took advantage of a cold-blooded teleost fish that offered natural kinetics for the induction and regulation of fever and a broad range of tolerated temperatures. A custom swim chamber, coupled to high-fidelity quantitative positional tracking, showed remarkable consistency in fish behaviours and defined the febrile window. Animals exerting fever engaged pyrogenic cytokine gene programmes in the central nervous system, increased efficiency of leukocyte recruitment into the immune challenge site, and markedly improved pathogen clearance in vivo, even when an infecting bacterium grew better at higher temperatures. Contrary to earlier speculations for global upregulation of immunity, we identified selectivity in the protective immune mechanisms activated through fever. Fever then inhibited inflammation and markedly improved wound repair. Artificial mechanical hyperthermia, often used as a model of fever, recapitulated some but not all benefits achieved through natural host-driven dynamic thermoregulation. Together, our results define fever as an integrative host response that regulates induction and resolution of acute inflammation, and demonstrate that this integrative strategy emerged prior to endothermy during evolution. |
Author | Wong, Michael E Albers, Emilie H Soliman, Amro M Nashiry, Asif Barreda, Daniel R Haddad, Farah Torrealba, Débora Semple, Shawna L Heimroth, Ryan D Tierney, Keith B |
Author_xml | – sequence: 1 givenname: Farah surname: Haddad fullname: Haddad, Farah organization: University of Alberta, Edmonton, Canada – sequence: 2 givenname: Amro M surname: Soliman fullname: Soliman, Amro M organization: University of Alberta, Edmonton, Canada – sequence: 3 givenname: Michael E surname: Wong fullname: Wong, Michael E organization: University of Alberta, Edmonton, Canada – sequence: 4 givenname: Emilie H surname: Albers fullname: Albers, Emilie H organization: University of Alberta, Edmonton, Canada – sequence: 5 givenname: Shawna L orcidid: 0000-0002-0176-1552 surname: Semple fullname: Semple, Shawna L organization: University of Alberta, Edmonton, Canada – sequence: 6 givenname: Débora surname: Torrealba fullname: Torrealba, Débora organization: University of Alberta, Edmonton, Canada – sequence: 7 givenname: Ryan D surname: Heimroth fullname: Heimroth, Ryan D organization: Emory University, Atlanta, United States – sequence: 8 givenname: Asif surname: Nashiry fullname: Nashiry, Asif organization: University of Alberta, Edmonton, Canada – sequence: 9 givenname: Keith B surname: Tierney fullname: Tierney, Keith B organization: University of Alberta, Edmonton, Canada – sequence: 10 givenname: Daniel R orcidid: 0000-0003-4630-2840 surname: Barreda fullname: Barreda, Daniel R organization: University of Alberta, Edmonton, Canada |
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CitedBy_id | crossref_primary_10_1016_j_fsi_2023_109157 crossref_primary_10_1016_j_cstres_2024_01_002 crossref_primary_10_1093_discim_kyae001 crossref_primary_10_3390_ijms242417574 crossref_primary_10_1016_j_cstres_2024_01_005 |
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Keywords | acute inflammation inflammation host defense fever evolution immunology tissue repair comparative immunology |
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Snippet | Multiple lines of evidence support the value of moderate fever to host survival, but the mechanisms involved remain unclear. This is difficult to establish in... |
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SubjectTerms | acute inflammation Animals Anti-Infective Agents Body Temperature Regulation comparative immunology evolution Fever host defense Immunology and Inflammation Inflammation tissue repair Vertebrates |
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Title | Fever integrates antimicrobial defences, inflammation control, and tissue repair in a cold-blooded vertebrate |
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