Literature DB >> 15854035

Transfer of CD8(+) cells induces localized hair loss whereas CD4(+)/CD25(-) cells promote systemic alopecia areata and CD4(+)/CD25(+) cells blockade disease onset in the C3H/HeJ mouse model.

Kevin J McElwee1, Pia Freyschmidt-Paul, Rolf Hoffmann, Sabine Kissling, Susanne Hummel, Mario Vitacolonna, Margot Zöller.   

Abstract

Alopecia areata (AA) is a suspected hair follicle specific autoimmune disease. The potential for cell transfer of AA using the C3H/HeJ mouse model was examined. Cells isolated from lymph nodes and spleens of AA-affected mice using magnetic bead conjugated monoclonal antibodies were subcutaneously injected into normal C3H/HeJ recipients. Within 5 wk, all CD8(+) cell-injected mice exhibited localized hair loss exclusively at the site of injection that persisted until necropsy. In contrast, some CD4(+) and CD4(+)/CD25(-) cell-injected mice developed extensive, systemic AA, and a combination of CD8(+) and CD4(+)/CD25(-) cells injected yielded the highest frequency of systemic AA induction. CD4(+)/CD25(+) cells were less able to transfer the disease phenotype, partially blockaded systemic AA induction by CD4(+)/CD25(-) cells, and prevented CD8(+) cell-induced, injection site-localized hair loss. CD11c(+) and CD19(+) cells failed to promote significant phenotype changes. Increases in co-stimulatory ligands CD40 and CD80, plus increased leukocyte apoptosis resistance with reduced CD95, CD95L, and CD120b expression, were associated with successful alopecia induction. The results suggest that CD8(+) cells may be the primary instigators of the hair loss phenotype. However, systemic disease expression fate is, apparently determined by CD4(+)/CD25(-) cells, while CD4(+)/CD25(+) lymphocytes may play a predominantly regulatory role.

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Year:  2005        PMID: 15854035     DOI: 10.1111/j.0022-202X.2005.23692.x

Source DB:  PubMed          Journal:  J Invest Dermatol        ISSN: 0022-202X            Impact factor:   8.551


  34 in total

Review 1.  The role of lymphocytes in the development and treatment of alopecia areata.

Authors:  Hongwei Guo; Yabin Cheng; Jerry Shapiro; Kevin McElwee
Journal:  Expert Rev Clin Immunol       Date:  2015-09-07       Impact factor: 4.473

2.  The C3H/HeJ mouse and DEBR rat models for alopecia areata: review of preclinical drug screening approaches and results.

Authors:  Jing Sun; Kathleen A Silva; Kevin J McElwee; Lloyd E King; John P Sundberg
Journal:  Exp Dermatol       Date:  2008-10       Impact factor: 3.960

3.  Transfer of Alopecia Areata to C3H/HeJ Mice Using Cultured Lymph Node-Derived Cells.

Authors:  Eddy H C Wang; Mohsen Khosravi-Maharlooei; Reza Baradar Jalili; Richard Yu; Aziz Ghahary; Jerry Shapiro; Kevin J McElwee
Journal:  J Invest Dermatol       Date:  2015-05-06       Impact factor: 8.551

4.  Alopecia areata is driven by cytotoxic T lymphocytes and is reversed by JAK inhibition.

Authors:  Luzhou Xing; Zhenpeng Dai; Ali Jabbari; Jane E Cerise; Claire A Higgins; Weijuan Gong; Annemieke de Jong; Sivan Harel; Gina M DeStefano; Lisa Rothman; Pallavi Singh; Lynn Petukhova; Julian Mackay-Wiggan; Angela M Christiano; Raphael Clynes
Journal:  Nat Med       Date:  2014-08-17       Impact factor: 53.440

5.  A mouse model of clonal CD8+ T lymphocyte-mediated alopecia areata progressing to alopecia universalis.

Authors:  Rajshekhar Alli; Phuong Nguyen; Kelli Boyd; John P Sundberg; Terrence L Geiger
Journal:  J Immunol       Date:  2011-11-23       Impact factor: 5.422

6.  A transcriptomic map of murine and human alopecia areata.

Authors:  Nicholas Borcherding; Sydney B Crotts; Luana S Ortolan; Nicholas Henderson; Nicholas L Bormann; Ali Jabbari
Journal:  JCI Insight       Date:  2020-07-09

7.  High-throughput T cell receptor sequencing identifies clonally expanded CD8+ T cell populations in alopecia areata.

Authors:  Annemieke de Jong; Ali Jabbari; Zhenpeng Dai; Luzhou Xing; Dustin Lee; Mei Mei Li; Madeleine Duvic; Maria Hordinsky; David A Norris; Vera Price; Julian Mackay-Wiggan; Raphael Clynes; Angela M Christiano
Journal:  JCI Insight       Date:  2018-10-04

Review 8.  Alopecia areata: Animal models illuminate autoimmune pathogenesis and novel immunotherapeutic strategies.

Authors:  Amos Gilhar; Adam G Schrum; Amos Etzioni; Herman Waldmann; Ralf Paus
Journal:  Autoimmun Rev       Date:  2016-03-10       Impact factor: 9.754

9.  A randomized controlled trial comparing total glucosides of paeony capsule and compound glycyrrhizin tablet for alopecia areata.

Authors:  Ding-Quan Yang; Li-Ping You; Pei-Hua Song; Li-Xin Zhang; Yan-Ping Bai
Journal:  Chin J Integr Med       Date:  2012-08-02       Impact factor: 1.978

Review 10.  What causes alopecia areata?

Authors:  K J McElwee; A Gilhar; D J Tobin; Y Ramot; J P Sundberg; M Nakamura; M Bertolini; S Inui; Y Tokura; L E King; B Duque-Estrada; A Tosti; A Keren; S Itami; Y Shoenfeld; A Zlotogorski; R Paus
Journal:  Exp Dermatol       Date:  2013-09       Impact factor: 3.960

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