Abbonarsi

Eosinophil-dependent skin innervation and itching following contact toxicant exposure in mice - 05/02/15

Doi : 10.1016/j.jaci.2014.07.003 
James J. Lee, PhD a, , Cheryl A. Protheroe, BA b, Huijun Luo, PhD a, Sergei I. Ochkur, PhD a, Gregory D. Scott, BS c, Katie R. Zellner, MS a, Randall J. Raish, MS d, Mark V. Dahl, MD e, Miriam L. Vega, MD, MPH e, Olivia Conley b, Rachel M. Condjella, PhD b, Jake A. Kloeber f, Joseph L. Neely f, Yash S. Patel f, Patty Maizer, MS f, Andrew Mazzolini, MA f, Allison D. Fryer, PhD g, Noah W. Jacoby c, David B. Jacoby, MD c, Nancy A. Lee, PhD b
a Division of Pulmonary Medicine, Department of Biochemistry and Molecular Biology, Mayo Clinic in Arizona, Scottsdale, Ariz 
b Division of Hematology and Oncology, Department of Biochemistry and Molecular Biology, Mayo Clinic in Arizona, Scottsdale, Ariz 
c Division of Pulmonary and Critical Care Medicine, Oregon Health and Science University, Portland, Ore 
d Media Support Services, Mayo Clinic in Arizona, Scottsdale, Ariz 
e Department of Dermatology, Mayo Clinic in Arizona, Scottsdale, Ariz 
f Brophy College Preparatory, Department of Science, Phoenix, Ariz 
g Department of Physiology and Pharmacology, Oregon Health and Science University, Portland, Ore 

Corresponding author: James J. Lee, PhD, Division of Pulmonary Medicine, MCCRB-RESEARCH; CR 2-213, Mayo Clinic in Arizona, 13400 E. Shea Blvd, Scottsdale, AZ 85259.

Abstract

Background

Contact toxicant reactions are accompanied by localized skin inflammation and concomitant increases in site-specific itch responses. The role(s) of eosinophils in these reactions is poorly understood. However, previous studies have suggested that localized eosinophil-nerve interactions at sites of inflammation significantly alter tissue innervation.

Objective

To define a potential mechanistic link between eosinophils and neurosensory responses in the skin leading to itching.

Methods

BALB/cJ mice were exposed to different contact toxicants, identifying trimellitic anhydride (TMA) for further study on the basis of inducing a robust eosinophilia accompanied by degranulation. Subsequent studies using TMA were performed with wild type versus eosinophil-deficient PHIL mice, assessing edematous responses and remodeling events such as sensory nerve innervation of the skin and induced pathophysiological responses (ie, itching).

Results

Exposure to TMA, but not dinitrofluorobenzene, resulted in a robust eosinophil skin infiltrate accompanied by significant levels of degranulation. Follow-up studies using TMA with wild type versus eosinophil-deficient PHIL mice showed that the induced edematous responses and histopathology were, in part, causatively linked with the presence of eosinophils. Significantly, these data also demonstrated that eosinophil-mediated events correlated with a significant increase in substance P content of the cutaneous nerves and an accompanying increase in itching, both of which were abolished in the absence of eosinophils.

Conclusions

Eosinophil-mediated events following TMA contact toxicant reactions increase skin sensory nerve substance P and, in turn, increase itching responses. Thus, eosinophil-nerve interactions provide a potential mechanistic link between eosinophil-mediated events and neurosensory responses following exposure to some contact toxicants.

Il testo completo di questo articolo è disponibile in PDF.

Key words : Contact hypersensitivity, eosinophil-deficient, sensory nerve, degranulation

Abbreviations used : DNCB, DNFB, EAI, EPX-mAb, PGP 9.5, PHIL, TMA


Mappa


 The performance of these studies, including data analysis and manuscript preparation, was supported by resources from the Mayo Foundation and a grant from the United States National Institutes of Health (NIH; to J.J.L. [HL065228, RR0109709], to N.A.L. [HL058723], to D.B.J. [HL113023], to A.D.F. [ES017592 and ES014601] and to J.J.L. and D.B.J. [AR061567]). These funding sources had no involvement in study design, data collection (including analysis and interpretation), the writing of the manuscript, or the decision to submit for publication.
 Disclosure of potential conflict of interest: J. J. Lee has received research support from the National Institutes of Health, consultancy fees from Amgen, payment for development of educational presentations from Jackson Laboratory, and travel support for invited seminars. C. A. Protheroe, H. Luo, S. I. Ochkur, K. R. Zellner, M. V. Dahl, O. Connelly, A. D. Fryer, N. W. Jacoby, D. B. Jacoby, and N. A. Lee have received research support from the National Institutes of Health. M. L. Vega has received research support from the National Institutes of Health and consultancy fees from Amgen. The rest of the authors declare that they have no relevant conflicts of interest.


© 2014  American Academy of Allergy, Asthma & Immunology. Pubblicato da Elsevier Masson SAS. Tutti i diritti riservati.
Aggiungere alla mia biblioteca Togliere dalla mia biblioteca Stampare
Esportazione

    Citazioni Export

  • File

  • Contenuto

Vol 135 - N° 2

P. 477 - febbraio 2015 Ritorno al numero
Articolo precedente Articolo precedente
  • Mucin 1 downregulation associates with corticosteroid resistance in chronic rhinosinusitis with nasal polyps
  • Javier Milara, Teresa Peiró, Miquel Armengot, Soledad Frias, Anselm Morell, Adela Serrano, Julio Cortijo
| Articolo seguente Articolo seguente
  • Eosinophils and itch: Partners in crime or strange bedfellows?
  • Kristin M. Leiferman

Benvenuto su EM|consulte, il riferimento dei professionisti della salute.
L'accesso al testo integrale di questo articolo richiede un abbonamento.

Già abbonato a @@106933@@ rivista ?

@@150455@@ Voir plus

Il mio account


Dichiarazione CNIL

EM-CONSULTE.COM è registrato presso la CNIL, dichiarazione n. 1286925.

Ai sensi della legge n. 78-17 del 6 gennaio 1978 sull'informatica, sui file e sulle libertà, Lei puo' esercitare i diritti di opposizione (art.26 della legge), di accesso (art.34 a 38 Legge), e di rettifica (art.36 della legge) per i dati che La riguardano. Lei puo' cosi chiedere che siano rettificati, compeltati, chiariti, aggiornati o cancellati i suoi dati personali inesati, incompleti, equivoci, obsoleti o la cui raccolta o di uso o di conservazione sono vietati.
Le informazioni relative ai visitatori del nostro sito, compresa la loro identità, sono confidenziali.
Il responsabile del sito si impegna sull'onore a rispettare le condizioni legali di confidenzialità applicabili in Francia e a non divulgare tali informazioni a terzi.


Tutto il contenuto di questo sito: Copyright © 2026 Elsevier, i suoi licenziatari e contributori. Tutti i diritti sono riservati. Inclusi diritti per estrazione di testo e di dati, addestramento dell’intelligenza artificiale, e tecnologie simili. Per tutto il contenuto ‘open access’ sono applicati i termini della licenza Creative Commons.