4.8 Article

Lung-resident eosinophils represent a distinct regulatory eosinophil subset

期刊

JOURNAL OF CLINICAL INVESTIGATION
卷 126, 期 9, 页码 3279-3295

出版社

AMER SOC CLINICAL INVESTIGATION INC
DOI: 10.1172/JCI85664

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资金

  1. Fonds de la Recherche Scientifique-Fonds National de la Recherche Scientifique (FRS-FNRS)
  2. Fonds pour la Recherche Fondamentale Strategique-WELBIO (FRFS-WELBIO) [CR-2012S-01R]
  3. Belgian Program on Interuniversity Attraction Poles (IUAP) T-TIME [P7/30]
  4. Action de Recherche Concertee de la Federation Wallonie-Bruxelles de Belgique
  5. Fonds Leon Fredericq
  6. Marie Curie Fellowship of the European Commission [655153]
  7. Charge de Recherches postdoctoral fellowship of the FRS-FNRS
  8. Acteria Foundation
  9. Marie Curie Actions (MSCA) [655153] Funding Source: Marie Curie Actions (MSCA)

向作者/读者索取更多资源

Increases in eosinophil numbers are associated with infection and allergic diseases, including asthma, but there is also evidence that eosinophils contribute to homeostatic immune processes. In mice, the normal lung contains resident eosinophils (rEos), but their function has not been characterized. Here, we have reported that steady-state pulmonary rEos are IL-5-independent parenchymal Siglec-F(int)CD621(+)CD101(lo) cells with a ring-shaped nucleus. During house dust mite-induced airway allergy, rEos features remained unchanged, and rEos were accompanied by recruited inflammatory eosinophils (iEos), which were defined as IL-5-dependent peribronchial Siglec-F(hi)CD62L-CD101(hi) cells with a segmented nucleus. Gene expression analyses revealed a mare regulatory profile for rEos than for iEos, and correspondingly, mice lacking lung rEos showed an increase in Th2 cell responses to inhaled allergens. Such elevation of Th2 responses was linked to the ability of rEos, but not iEos, to inhibit the maturation, and therefore the pro-Th2 function, of allergen-loaded DCs. Finally, we determined that the parenchymal rEos found in nonasthmatic human lungs (Siglec-8(+)CD62L(+)IL-3R(lo) cells) were phenotypically distinct from the iEos isolated from the sputa of eosinophilic asthmatic patients (Siglec-8(+)CD62L(lo)IL-3R(hi) cells), suggesting that our findings in mice are relevant to humans. In conclusion, our data define lung rEos as a distinct eosinophil subset with key homeostatic functions.

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