Literature DB >> 25129481

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

Luzhou Xing1, Zhenpeng Dai2, Ali Jabbari2, Jane E Cerise3, Claire A Higgins4, Weijuan Gong4, Annemieke de Jong4, Sivan Harel4, Gina M DeStefano5, Lisa Rothman4, Pallavi Singh4, Lynn Petukhova4, Julian Mackay-Wiggan4, Angela M Christiano6, Raphael Clynes7.   

Abstract

Alopecia areata (AA) is a common autoimmune disease resulting from damage of the hair follicle by T cells. The immune pathways required for autoreactive T cell activation in AA are not defined limiting clinical development of rational targeted therapies. Genome-wide association studies (GWAS) implicated ligands for the NKG2D receptor (product of the KLRK1 gene) in disease pathogenesis. Here, we show that cytotoxic CD8(+)NKG2D(+) T cells are both necessary and sufficient for the induction of AA in mouse models of disease. Global transcriptional profiling of mouse and human AA skin revealed gene expression signatures indicative of cytotoxic T cell infiltration, an interferon-γ (IFN-γ) response and upregulation of several γ-chain (γc) cytokines known to promote the activation and survival of IFN-γ-producing CD8(+)NKG2D(+) effector T cells. Therapeutically, antibody-mediated blockade of IFN-γ, interleukin-2 (IL-2) or interleukin-15 receptor β (IL-15Rβ) prevented disease development, reducing the accumulation of CD8(+)NKG2D(+) T cells in the skin and the dermal IFN response in a mouse model of AA. Systemically administered pharmacological inhibitors of Janus kinase (JAK) family protein tyrosine kinases, downstream effectors of the IFN-γ and γc cytokine receptors, eliminated the IFN signature and prevented the development of AA, while topical administration promoted hair regrowth and reversed established disease. Notably, three patients treated with oral ruxolitinib, an inhibitor of JAK1 and JAK2, achieved near-complete hair regrowth within 5 months of treatment, suggesting the potential clinical utility of JAK inhibition in human AA.

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Year:  2014        PMID: 25129481      PMCID: PMC4362521          DOI: 10.1038/nm.3645

Source DB:  PubMed          Journal:  Nat Med        ISSN: 1078-8956            Impact factor:   53.440


  29 in total

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Authors:  Philippe Saikali; Jack P Antel; Camille L Pittet; Jia Newcombe; Nathalie Arbour
Journal:  J Immunol       Date:  2010-10-06       Impact factor: 5.422

2.  Alopecia areata induced in C3H/HeJ mice by interferon-gamma: evidence for loss of immune privilege.

Authors:  Amos Gilhar; Yossi Kam; Bedia Assy; Richard S Kalish
Journal:  J Invest Dermatol       Date:  2005-01       Impact factor: 8.551

3.  Genome-wide association study in alopecia areata implicates both innate and adaptive immunity.

Authors:  Lynn Petukhova; Madeleine Duvic; Maria Hordinsky; David Norris; Vera Price; Yutaka Shimomura; Hyunmi Kim; Pallavi Singh; Annette Lee; Wei V Chen; Katja C Meyer; Ralf Paus; Colin A B Jahoda; Christopher I Amos; Peter K Gregersen; Angela M Christiano
Journal:  Nature       Date:  2010-07-01       Impact factor: 49.962

4.  Interferon-gamma-deficient mice are resistant to the development of alopecia areata.

Authors:  P Freyschmidt-Paul; K J McElwee; R Hoffmann; J P Sundberg; M Vitacolonna; S Kissling; M Zöller
Journal:  Br J Dermatol       Date:  2006-09       Impact factor: 9.302

5.  Safety and efficacy of INCB018424, a JAK1 and JAK2 inhibitor, in myelofibrosis.

Authors:  Srdan Verstovsek; Hagop Kantarjian; Ruben A Mesa; Animesh D Pardanani; Jorge Cortes-Franco; Deborah A Thomas; Zeev Estrov; Jordan S Fridman; Edward C Bradley; Susan Erickson-Viitanen; Kris Vaddi; Richard Levy; Ayalew Tefferi
Journal:  N Engl J Med       Date:  2010-09-16       Impact factor: 91.245

6.  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.

Authors:  Kevin J McElwee; Pia Freyschmidt-Paul; Rolf Hoffmann; Sabine Kissling; Susanne Hummel; Mario Vitacolonna; Margot Zöller
Journal:  J Invest Dermatol       Date:  2005-05       Impact factor: 8.551

Review 7.  The biology of interleukin-2 and interleukin-15: implications for cancer therapy and vaccine design.

Authors:  Thomas A Waldmann
Journal:  Nat Rev Immunol       Date:  2006-08       Impact factor: 53.106

8.  Preclinical characterization of the selective JAK1/2 inhibitor INCB018424: therapeutic implications for the treatment of myeloproliferative neoplasms.

Authors:  Alfonso Quintás-Cardama; Kris Vaddi; Phillip Liu; Taghi Manshouri; Jun Li; Peggy A Scherle; Eian Caulder; Xiaoming Wen; Yanlong Li; Paul Waeltz; Mark Rupar; Timothy Burn; Yvonne Lo; Jennifer Kelley; Maryanne Covington; Stacey Shepard; James D Rodgers; Patrick Haley; Hagop Kantarjian; Jordan S Fridman; Srdan Verstovsek
Journal:  Blood       Date:  2010-02-03       Impact factor: 22.113

9.  Maintenance of hair follicle immune privilege is linked to prevention of NK cell attack.

Authors:  Taisuke Ito; Natsuho Ito; Matthias Saatoff; Hideo Hashizume; Hidekazu Fukamizu; Brian J Nickoloff; Masahiro Takigawa; Ralf Paus
Journal:  J Invest Dermatol       Date:  2007-12-27       Impact factor: 8.551

10.  Reprogramming of CTLs into natural killer-like cells in celiac disease.

Authors:  Bertrand Meresse; Shane A Curran; Cezary Ciszewski; Gerasim Orbelyan; Mala Setty; Govind Bhagat; Leanne Lee; Maria Tretiakova; Carol Semrad; Emily Kistner; Robert J Winchester; Veronique Braud; Lewis L Lanier; Daniel E Geraghty; Peter H Green; Stefano Guandalini; Bana Jabri
Journal:  J Exp Med       Date:  2006-05-08       Impact factor: 14.307

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  194 in total

1.  Dietary vitamin A regulates wingless-related MMTV integration site signaling to alter the hair cycle.

Authors:  Liye Suo; John P Sundberg; Helen B Everts
Journal:  Exp Biol Med (Maywood)       Date:  2014-10-30

Review 2.  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

Review 3.  [Pemphigus. Model disease for targeted therapy].

Authors:  R Eming
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Review 4.  Immunological Consequences of JAK Inhibition: Friend or Foe?

Authors:  Donal P McLornan; Alesia A Khan; Claire N Harrison
Journal:  Curr Hematol Malig Rep       Date:  2015-12       Impact factor: 3.952

5.  Multilayered T-cell memory in human skin.

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Journal:  Ann Transl Med       Date:  2015-11

Review 6.  Pemphigus: a Comprehensive Review on Pathogenesis, Clinical Presentation and Novel Therapeutic Approaches.

Authors:  Robert Pollmann; Thomas Schmidt; Rüdiger Eming; Michael Hertl
Journal:  Clin Rev Allergy Immunol       Date:  2018-02       Impact factor: 8.667

Review 7.  Drug discovery for alopecia: gone today, hair tomorrow.

Authors:  Zenildo Santos; Pinar Avci; Michael R Hamblin
Journal:  Expert Opin Drug Discov       Date:  2015-02-09       Impact factor: 6.098

8.  Safety and efficacy of the JAK inhibitor tofacitinib citrate in patients with alopecia areata.

Authors:  Milène Kennedy Crispin; Justin M Ko; Brittany G Craiglow; Shufeng Li; Gautam Shankar; Jennifer R Urban; James C Chen; Jane E Cerise; Ali Jabbari; Mårten Cg Winge; M Peter Marinkovich; Angela M Christiano; Anthony E Oro; Brett A King
Journal:  JCI Insight       Date:  2016-09-22

9.  Oral ruxolitinib induces hair regrowth in patients with moderate-to-severe alopecia areata.

Authors:  Julian Mackay-Wiggan; Ali Jabbari; Nhan Nguyen; Jane E Cerise; Charlotte Clark; Grace Ulerio; Megan Furniss; Roger Vaughan; Angela M Christiano; Raphael Clynes
Journal:  JCI Insight       Date:  2016-09-22

10.  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
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