Mechanisms of skin autoimmunity: Cellular and soluble immune components of the skin.
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[1] A. Rademaker,et al. Antibiotics drive microbial imbalance and vitiligo development in mice. , 2020, The Journal of investigative dermatology.
[2] Tianfu Wu,et al. Discovery of IgG4 Anti‐Gliadin Autoantibody as a Potential Biomarker of Psoriasis Using an Autoantigen Array , 2020, Proteomics. Clinical applications.
[3] J. Schug,et al. miRNA142-3p targets Tet2 and impairs Treg differentiation and stability in models of type 1 diabetes , 2019, Nature Communications.
[4] Angray S. Kang,et al. The desmosomal cadherin desmoglein-3 acts as a keratinocyte anti-stress protein via suppression of p53 , 2019, Cell Death & Disease.
[5] J. Voorhees,et al. IFN-γ enhances cell-mediated cytotoxicity against keratinocytes via JAK2/STAT1 in lichen planus , 2019, Science Translational Medicine.
[6] T. Werfel,et al. Autoimmunity (or Not) in Atopic Dermatitis , 2019, Front. Immunol..
[7] T. Moran,et al. Walnut antigens can trigger autoantibody development in patients with pemphigus vulgaris through a "hit-and-run" mechanism. , 2019, The Journal of allergy and clinical immunology.
[8] C. Johansen,et al. Non-random Plaque-site Recurrence of Psoriasis in Patients Treated with Dead Sea Climatotherapy. , 2019, Acta dermato-venereologica.
[9] E. Schmidt,et al. Pemphigus , 2019, The Lancet.
[10] C. Probst,et al. Serological Diagnosis of Autoimmune Bullous Skin Diseases , 2019, Front. Immunol..
[11] J. Ilonen,et al. Genetic risk for autoimmunity is associated with distinct changes in the human gut microbiome , 2019, Nature Communications.
[12] K. Kridin,et al. Epidermolysis bullosa acquisita: A comprehensive review. , 2019, Autoimmunity reviews.
[13] Hayato Takahashi,et al. Autoimmunity and immunological tolerance in autoimmune bullous diseases. , 2019, International immunology.
[14] K. Astakhova,et al. Autoantibodies in Morphea: An Update , 2019, Front. Immunol..
[15] X. Xiong,et al. The imbalance of gut microbiota and its correlation with plasma inflammatory cytokines in pemphigus vulgaris patients , 2019, Scandinavian journal of immunology.
[16] R. Nussinov,et al. Pathogenic Autoreactive T and B Cells Cross-React with Mimotopes Expressed by a Common Human Gut Commensal to Trigger Autoimmunity. , 2019, Cell host & microbe.
[17] G. Genovese,et al. Autoimmune bullous diseases during pregnancy: insight into pathogenetic mechanisms and clinical features. , 2019, Giornale italiano di dermatologia e venereologia : organo ufficiale, Societa italiana di dermatologia e sifilografia.
[18] C. Selmi. Autoimmunity in 2018 , 2019, Clinical Reviews in Allergy & Immunology.
[19] A. Christiano,et al. Pathomechanisms of immune-mediated alopecia. , 2019, International immunology.
[20] R. Xavier,et al. Gut Microbiota Regulation of T Cells During Inflammation and Autoimmunity. , 2019, Annual review of immunology.
[21] J. Hodgin,et al. The female-biased factor VGLL3 drives cutaneous and systemic autoimmunity. , 2019, JCI insight.
[22] Yan Ding,et al. The Emerging Epigenetic Role of CD8+T Cells in Autoimmune Diseases: A Systematic Review , 2019, Front. Immunol..
[23] A. Purcell,et al. The Evolving Landscape of Autoantigen Discovery and Characterization in Type 1 Diabetes , 2019, Diabetes.
[24] K. Tasanen,et al. Gliptin-Associated Bullous Pemphigoid: A Valuable Model of the Mechanism of Breakdown of Immune Tolerance against BP180. , 2019, The Journal of investigative dermatology.
[25] L. Eidsmo,et al. A skewed pool of resident T cells triggers psoriasis‐associated tissue responses in never‐lesional skin from patients with psoriasis , 2019, The Journal of allergy and clinical immunology.
[26] S. Abraham,et al. Autoimmune Theories of Chronic Spontaneous Urticaria , 2019, Front. Immunol..
[27] Shuli Li,et al. Perspectives of New Advances in the Pathogenesis of Vitiligo: From Oxidative Stress to Autoimmunity , 2019, Medical science monitor : international medical journal of experimental and clinical research.
[28] P. Nilsson,et al. The antimicrobial protein S100A12 identified as a potential autoantigen in a subgroup of atopic dermatitis patients , 2019, Clinical and Translational Allergy.
[29] J. Anaya,et al. Molecular mimicry and autoimmunity. , 2018, Journal of autoimmunity.
[30] M. Shabana,et al. Assessment of circulating FCεRIa in Chronic Spontaneous Urticaria patients and its correlation with clinical and immunological variables. , 2018, Immunobiology.
[31] S. Klein,et al. The evolution of greater humoral immunity in females than males: implications for vaccine efficacy. , 2018, Current opinion in physiology.
[32] T. Bieber,et al. Human and computational models of atopic dermatitis: A review and perspectives by an expert panel of the International Eczema Council , 2018, The Journal of allergy and clinical immunology.
[33] M. Asquith,et al. The microbiome and HLA-B27-associated acute anterior uveitis , 2018, Nature Reviews Rheumatology.
[34] A. Christiano,et al. High-throughput T cell receptor sequencing identifies clonally expanded CD8+ T cell populations in alopecia areata. , 2018, JCI insight.
[35] Zhenhuan Zhao,et al. Nature of T cell epitopes in lupus antigens and HLA-DR determines autoantibody initiation and diversification , 2018, Annals of the rheumatic diseases.
[36] Sen Guo,et al. Identification of the Risk HLA-A Alleles and Autoantigen in Han Chinese Vitiligo Patients and the Association of CD8+T Cell Reactivity with Disease Characteristics , 2018, Medical science monitor : international medical journal of experimental and clinical research.
[37] Fabian J Theis,et al. Type I Immune Response Induces Keratinocyte Necroptosis and Is Associated with Interface Dermatitis. , 2018, The Journal of investigative dermatology.
[38] S. Nylén,et al. Resident T Cells in Resolved Psoriasis Steer Tissue Responses that Stratify Clinical Outcome. , 2018, The Journal of investigative dermatology.
[39] F. Bianchi,et al. Autoantibody profile and clinical patterns in 619 Italian patients with cutaneous lupus erythematosus , 2018, Journal of the European Academy of Dermatology and Venereology : JEADV.
[40] T. Bieber,et al. Atopic dermatitis , 2018, Nature Reviews Disease Primers.
[41] R. Pollmann,et al. TH1/TH17 cell recognition of desmoglein 3 and bullous pemphigoid antigen 180 in patients with lichen planus. , 2018, The Journal of allergy and clinical immunology.
[42] S. Sano,et al. Mouse models of psoriasis and their relevance , 2018, The Journal of dermatology.
[43] K. Eyerich,et al. Immune response patterns in non‐communicable inflammatory skin diseases , 2018, Journal of the European Academy of Dermatology and Venereology : JEADV.
[44] O. Schmetzer,et al. IL‐24 is a common and specific autoantigen of IgE in patients with chronic spontaneous urticaria , 2017, The Journal of allergy and clinical immunology.
[45] M. Maurer,et al. Autoimmune comorbidity in chronic spontaneous urticaria: A systematic review. , 2017, Autoimmunity reviews.
[46] F. Rieux-Laucat,et al. Autoimmune and inflammatory manifestations occur frequently in patients with primary immunodeficiencies , 2017, The Journal of allergy and clinical immunology.
[47] Ping Wang,et al. The deposition of anti-DNA IgG contributes to the development of cutaneous lupus erythematosus. , 2017, Immunology letters.
[48] A. Levine,et al. A neoantigen fitness model predicts tumour response to checkpoint blockade immunotherapy , 2017, Nature.
[49] J. Rambert,et al. Vitiligo Skin Is Imprinted with Resident Memory CD8 T Cells Expressing CXCR3. , 2017, The Journal of investigative dermatology.
[50] R. Clark,et al. Clinically resolved psoriatic lesions contain psoriasis-specific IL-17–producing &agr;&bgr; T cell clones , 2017, The Journal of clinical investigation.
[51] Fabian J Theis,et al. Toll‐like receptor 7/8 agonists stimulate plasmacytoid dendritic cells to initiate TH17‐deviated acute contact dermatitis in human subjects , 2017, The Journal of allergy and clinical immunology.
[52] E. Sprecher,et al. A distinct cutaneous microbiota profile in autoimmune bullous disease patients , 2017, Experimental dermatology.
[53] C. Benoist,et al. Protective major histocompatibility complex allele prevents type 1 diabetes by shaping the intestinal microbiota early in ontogeny , 2017, Proceedings of the National Academy of Sciences.
[54] Matthew C. Altman,et al. Absence of functional fetal regulatory T cells in humans causes in utero organ-specific autoimmunity. , 2017, The Journal of allergy and clinical immunology.
[55] L. Misery,et al. First-line rituximab combined with short-term prednisone versus prednisone alone for the treatment of pemphigus (Ritux 3): a prospective, multicentre, parallel-group, open-label randomised trial , 2017, The Lancet.
[56] M. Ståhle,et al. Dynamic Changes in Resident and Infiltrating Epidermal Dendritic Cells in Active and Resolved Psoriasis. , 2017, The Journal of investigative dermatology.
[57] L. Folkersen,et al. CD49a Expression Defines Tissue-Resident CD8+ T Cells Poised for Cytotoxic Function in Human Skin , 2017, Immunity.
[58] P. Nikamo,et al. MicroRNA‐146a suppresses IL‐17–mediated skin inflammation and is genetically associated with psoriasis , 2017, The Journal of allergy and clinical immunology.
[59] K. Kaukinen,et al. Dermatitis herpetiformis: a cutaneous manifestation of coeliac disease , 2017, Annals of medicine.
[60] James T. Elder,et al. VGLL3-regulated gene network as a promoter of sex biased autoimmune diseases , 2016, Nature Immunology.
[61] G. Ogg,et al. Psoriatic T cells recognize neolipid antigens generated by mast cell phospholipase delivered by exosomes and presented by CD1a , 2016, The Journal of experimental medicine.
[62] Mayte Suárez-Fariñas,et al. Major differences between human atopic dermatitis and murine models, as determined by using global transcriptomic profiling , 2016, The Journal of allergy and clinical immunology.
[63] P. Hodgkin,et al. Autoreactive T cells in chronic spontaneous urticaria target the IgE Fc receptor Iα subunit. , 2016, The Journal of allergy and clinical immunology.
[64] J. Rossjohn,et al. CD1a on Langerhans cells controls inflammatory skin diseases , 2016, Nature Immunology.
[65] J. Crowe,et al. Determinants of VH1-46 Cross-Reactivity to Pemphigus Vulgaris Autoantigen Desmoglein 3 and Rotavirus Antigen VP6 , 2016, The Journal of Immunology.
[66] A. Celada,et al. Streptococcus pyogenes-induced cutaneous lymphocyte antigen-positive T cell-dependent epidermal cell activation triggers TH17 responses in patients with guttate psoriasis. , 2016, The Journal of allergy and clinical immunology.
[67] A. Lanzavecchia,et al. Reengineering chimeric antigen receptor T cells for targeted therapy of autoimmune disease , 2016, Science.
[68] C. Klemann,et al. Cut to the chase: a review of CD26/dipeptidyl peptidase‐4's (DPP4) entanglement in the immune system , 2016, Clinical and experimental immunology.
[69] James T. Elder,et al. Large scale meta-analysis characterizes genetic architecture for common psoriasis associated variants , 2016, Nature Communications.
[70] R. Valenta,et al. α-NAC–Specific Autoreactive CD8+ T Cells in Atopic Dermatitis Are of an Effector Memory Type and Secrete IL-4 and IFN-γ , 2016, The Journal of Immunology.
[71] G. Srinivas,et al. Skin microbiota-associated inflammation precedes autoantibody induced tissue damage in experimental epidermolysis bullosa acquisita. , 2016, Journal of autoimmunity.
[72] Nicolai J. Birkbak,et al. Clonal neoantigens elicit T cell immunoreactivity and sensitivity to immune checkpoint blockade , 2016, Science.
[73] Jorge Bernardino de la Serna,et al. Filaggrin inhibits generation of CD1a neolipid antigens by house dust mite–derived phospholipase , 2016, Science Translational Medicine.
[74] S. Krebs,et al. Melanocyte antigen triggers autoimmunity in human psoriasis , 2015, The Journal of experimental medicine.
[75] Q. Lu,et al. Epigenetic dynamics in immunity and autoimmunity. , 2015, The international journal of biochemistry & cell biology.
[76] R. Spritz,et al. Major association of vitiligo with HLA‐A*02:01 in Japanese , 2015, Pigment cell & melanoma research.
[77] M. Pan,et al. Immune cellular regulation on autoantibody production in pemphigus , 2015, The Journal of dermatology.
[78] B. Marinari,et al. The antimicrobial peptide LL37 is a T-cell autoantigen in psoriasis , 2014, Nature Communications.
[79] C. Zielinski,et al. Defining Th‐cell subsets in a classical and tissue‐specific manner: Examples from the skin , 2014, European journal of immunology.
[80] A. Christiano,et al. Alopecia areata is driven by cytotoxic T lymphocytes and is reversed by JAK inhibition , 2014, Nature Medicine.
[81] Fabian J Theis,et al. Intraindividual genome expression analysis reveals a specific molecular signature of psoriasis and eczema , 2014, Science Translational Medicine.
[82] I. Polanco,et al. The HLA-DQ2 genotype selects for early intestinal microbiota composition in infants at high risk of developing coeliac disease , 2014, Gut.
[83] H. Jacobe,et al. Morphea in adults and children cohort III: nested case-control study--the clinical significance of autoantibodies in morphea. , 2013, JAMA dermatology.
[84] R. Morita,et al. Th17 Cells Carrying TCR Recognizing Epidermal Autoantigen Induce Psoriasis-like Skin Inflammation , 2013, The Journal of Immunology.
[85] X. Li,et al. Ultraviolet B enhances DNA hypomethylation of CD4+ T cells in systemic lupus erythematosus via inhibiting DNMT1 catalytic activity. , 2013, Journal of dermatological science.
[86] Heather Brooks,et al. Allergens as Immunomodulatory Proteins: The Cat Dander Protein Fel d 1 Enhances TLR Activation by Lipid Ligands , 2013, The Journal of Immunology.
[87] B. Qaqish,et al. Cutting Edge: Brazilian Pemphigus Foliaceus Anti-Desmoglein 1 Autoantibodies Cross-React with Sand Fly Salivary LJM11 Antigen , 2012, The Journal of Immunology.
[88] Jie Zheng,et al. Cognate Th2–B Cell Interaction is Essential for the Autoantibody Production in Pemphigus Vulgaris , 2012, Journal of Clinical Immunology.
[89] A. Irvine,et al. Filaggrin mutations associated with skin and allergic diseases. , 2011, The New England journal of medicine.
[90] A. Yoshimura,et al. Desmoglein 3-specific CD4+ T cells induce pemphigus vulgaris and interface dermatitis in mice. , 2011, The Journal of clinical investigation.
[91] J. Ring,et al. Mutual antagonism of T cells causing psoriasis and atopic eczema. , 2011, The New England journal of medicine.
[92] A. Heratizadeh,et al. Malassezia sympodialis thioredoxin-specific T cells are highly cross-reactive to human thioredoxin in atopic dermatitis. , 2011, The Journal of allergy and clinical immunology.
[93] Thomas Vogl,et al. Crucial role for human Toll-like receptor 4 in the development of contact allergy to nickel , 2010, Nature Immunology.
[94] Annette Lee,et al. Genome-wide association study in alopecia areata implicates both innate and adaptive immunity , 2010, Nature.
[95] T. Gambichler,et al. Detection of clonal T cells in the circulation of patients with nephrogenic systemic fibrosis. , 2009, Archives of dermatology.
[96] Hayato Takahashi,et al. A Single Helper T Cell Clone Is Sufficient to Commit Polyclonal Naive B Cells to Produce Pathogenic IgG in Experimental Pemphigus Vulgaris1 , 2009, The Journal of Immunology.
[97] R. Hegde,et al. Allergenicity resulting from functional mimicry of a Toll-like receptor complex protein , 2008, Nature.
[98] Q. Lu,et al. Demethylation of CD40LG on the Inactive X in T Cells from Women with Lupus1 , 2007, The Journal of Immunology.
[99] James T. Elder,et al. Psoriasis: epidemiology. , 2007, Clinics in dermatology.
[100] J. Roujeau,et al. A single cycle of rituximab for the treatment of severe pemphigus. , 2007, The New England journal of medicine.
[101] M. Zöller,et al. Interferon‐γ‐deficient mice are resistant to the development of alopecia areata , 2006 .
[102] J. Guilhou,et al. The presence of dominant T‐cell clones in peripheral blood of patients with collagen vascular disorders: a prospective study of 97 cases , 2006, The British journal of dermatology.
[103] P. Schmid‐Grendelmeier,et al. IgE-mediated and T cell-mediated autoimmunity against manganese superoxide dismutase in atopic dermatitis. , 2005, The Journal of allergy and clinical immunology.
[104] Y. Liu,et al. HLA DR B1*04, *07-restricted epitopes on Keratin 17 for autoreactive T cells in psoriasis. , 2005, Journal of dermatological science.
[105] J. Gudjonsson,et al. Peripheral blood T cell responses to keratin peptides that share sequences with streptococcal M proteins are largely restricted to skin‐homing CD8+ T cells , 2004, Clinical and experimental immunology.
[106] M. Debenedette,et al. Cytotoxic T lymphocyte reactivity to gp100, MelanA/MART-1, and tyrosinase, in HLA-A2-positive vitiligo patients. , 2003, The Journal of investigative dermatology.
[107] W. Uter,et al. Dichotomy of Autoreactive Th1 and Th2 Cell Responses to Desmoglein 3 in Patients with Pemphigus Vulgaris (PV) and Healthy Carriers of PV-Associated HLA Class II Alleles1 , 2003, The Journal of Immunology.
[108] D. Gutsch,et al. Demethylation of ITGAL (CD11a) regulatory sequences in systemic lupus erythematosus. , 2002, Arthritis and rheumatism.
[109] M. Landau,et al. Melanocyte-associated T cell epitopes can function as autoantigens for transfer of alopecia areata to human scalp explants on Prkdc(scid) mice. , 2001, The Journal of investigative dermatology.
[110] A. Necker,et al. Specific cytotoxic T lymphocyte responses against Melan-A/MART1, tyrosinase and gp100 in vitiligo by the use of major histocompatibility complex/peptide tetramers: the role of cellular immunity in the etiopathogenesis of vitiligo. , 2001, The Journal of investigative dermatology.
[111] H. Rammensee,et al. HLA-A2 restricted, melanocyte-specific CD8(+) T lymphocytes detected in vitiligo patients are related to disease activity and are predominantly directed against MelanA/MART1. , 2001, The Journal of investigative dermatology.
[112] W. Porter,et al. Skin T cell proliferative response to M protein and other cell wall and membrane proteins of group A streptococci in chronic plaque psoriasis , 2001, Clinical and experimental immunology.
[113] J. Kinet,et al. Serum IgG autoantibodies directed against the alpha chain of Fc epsilon RI: a selective marker and pathogenetic factor for a distinct subset of chronic urticaria patients? , 1995, The Journal of clinical investigation.
[114] E. Sprecher,et al. Mechanisms Causing Loss of Keratinocyte Cohesion in Pemphigus. , 2018, The Journal of investigative dermatology.
[115] Thomas Bieber,et al. Atopic dermatitis. , 2008, The New England journal of medicine.