Literature DB >> 25073001

Blockade of the programmed death-1 pathway restores sarcoidosis CD4(+) T-cell proliferative capacity.

Nicole A Braun1, Lindsay J Celada, Jose D Herazo-Maya, Susamma Abraham, Guzel Shaginurova, Carla M Sevin, Jan Grutters, Daniel A Culver, Ryszard Dworski, James Sheller, Pierre P Massion, Vasiliy V Polosukhin, Joyce E Johnson, Naftali Kaminski, David S Wilkes, Kyra A Oswald-Richter, Wonder P Drake.   

Abstract

RATIONALE: Effective therapeutic interventions for chronic, idiopathic lung diseases remain elusive. Normalized T-cell function is an important contributor to spontaneous resolution of pulmonary sarcoidosis. Up-regulation of inhibitor receptors, such as programmed death-1 (PD-1) and its ligand, PD-L1, are important inhibitors of T-cell function.
OBJECTIVES: To determine the effects of PD-1 pathway blockade on sarcoidosis CD4(+) T-cell proliferative capacity.
METHODS: Gene expression profiles of sarcoidosis and healthy control peripheral blood mononuclear cells were analyzed at baseline and follow-up. Flow cytometry was used to measure ex vivo expression of PD-1 and PD-L1 on systemic and bronchoalveolar lavage-derived cells of subjects with sarcoidosis and control subjects, as well as the effects of PD-1 pathway blockade on cellular proliferation after T-cell receptor stimulation. Immunohistochemistry analysis for PD-1/PD-L1 expression was conducted on sarcoidosis, malignant, and healthy control lung specimens.
MEASUREMENTS AND MAIN RESULTS: Microarray analysis demonstrates longitudinal increase in PDCD1 gene expression in sarcoidosis peripheral blood mononuclear cells. Immunohistochemistry analysis revealed increased PD-L1 expression within sarcoidosis granulomas and lung malignancy, but this was absent in healthy lungs. Increased numbers of sarcoidosis PD-1(+) CD4(+) T cells are present systemically, compared with healthy control subjects (P < 0.0001). Lymphocytes with reduced proliferative capacity exhibited increased proliferation with PD-1 pathway blockade. Longitudinal analysis of subjects with sarcoidosis revealed reduced PD-1(+) CD4(+) T cells with spontaneous clinical resolution but not with disease progression.
CONCLUSIONS: Analogous to the effects in other chronic lung diseases, these findings demonstrate that the PD-1 pathway is an important contributor to sarcoidosis CD4(+) T-cell proliferative capacity and clinical outcome. Blockade of the PD-1 pathway may be a viable therapeutic target to optimize clinical outcomes.

Entities:  

Keywords:  gene expression; programmed death-1; programmed death-L1; proliferation; sarcoidosis

Mesh:

Substances:

Year:  2014        PMID: 25073001      PMCID: PMC4214083          DOI: 10.1164/rccm.201401-0188OC

Source DB:  PubMed          Journal:  Am J Respir Crit Care Med        ISSN: 1073-449X            Impact factor:   21.405


  47 in total

1.  Functional genomics in sarcoidosis--reduced or increased apoptosis?

Authors:  R M Rutherford; J Kehren; F Staedtler; S D Chibout; J J Egan; M Tamm; J J Gilmartin; M H Brutsche
Journal:  Swiss Med Wkly       Date:  2001-08-11       Impact factor: 2.193

2.  Selective effects of PD-1 on Akt and Ras pathways regulate molecular components of the cell cycle and inhibit T cell proliferation.

Authors:  Nikolaos Patsoukis; Julia Brown; Victoria Petkova; Fang Liu; Lequn Li; Vassiliki A Boussiotis
Journal:  Sci Signal       Date:  2012-06-26       Impact factor: 8.192

3.  Liver-infiltrating lymphocytes in chronic human hepatitis C virus infection display an exhausted phenotype with high levels of PD-1 and low levels of CD127 expression.

Authors:  Henry Radziewicz; Chris C Ibegbu; Marina L Fernandez; Kimberly A Workowski; Kamil Obideen; Mohammad Wehbi; Holly L Hanson; James P Steinberg; David Masopust; E John Wherry; John D Altman; Barry T Rouse; Gordon J Freeman; Rafi Ahmed; Arash Grakoui
Journal:  J Virol       Date:  2006-12-20       Impact factor: 5.103

4.  Sarcoidosis is associated with a truncating splice site mutation in BTNL2.

Authors:  Ruta Valentonyte; Jochen Hampe; Klaus Huse; Philip Rosenstiel; Mario Albrecht; Annette Stenzel; Marion Nagy; Karoline I Gaede; Andre Franke; Robert Haesler; Andreas Koch; Thomas Lengauer; Dirk Seegert; Norbert Reiling; Stefan Ehlers; Eberhard Schwinger; Matthias Platzer; Michael Krawczak; Joachim Müller-Quernheim; Manfred Schürmann; Stefan Schreiber
Journal:  Nat Genet       Date:  2005-02-27       Impact factor: 38.330

5.  Sarcoidosis-related mortality in the United States from 1988 to 2007.

Authors:  Jeffrey J Swigris; Amy L Olson; Tristan J Huie; Evans R Fernandez-Perez; Joshua Solomon; David Sprunger; Kevin K Brown
Journal:  Am J Respir Crit Care Med       Date:  2011-02-17       Impact factor: 21.405

6.  Safety, activity, and immune correlates of anti-PD-1 antibody in cancer.

Authors:  Suzanne L Topalian; F Stephen Hodi; Julie R Brahmer; Scott N Gettinger; David C Smith; David F McDermott; John D Powderly; Richard D Carvajal; Jeffrey A Sosman; Michael B Atkins; Philip D Leming; David R Spigel; Scott J Antonia; Leora Horn; Charles G Drake; Drew M Pardoll; Lieping Chen; William H Sharfman; Robert A Anders; Janis M Taube; Tracee L McMiller; Haiying Xu; Alan J Korman; Maria Jure-Kunkel; Shruti Agrawal; Daniel McDonald; Georgia D Kollia; Ashok Gupta; Jon M Wigginton; Mario Sznol
Journal:  N Engl J Med       Date:  2012-06-02       Impact factor: 91.245

7.  PD-1 inhibits T cell proliferation by upregulating p27 and p15 and suppressing Cdc25A.

Authors:  Nikolaos Patsoukis; Duygu Sari; Vassiliki A Boussiotis
Journal:  Cell Cycle       Date:  2012-10-03       Impact factor: 4.534

8.  Multiple mycobacterial antigens are targets of the adaptive immune response in pulmonary sarcoidosis.

Authors:  Kyra A Oswald-Richter; Dia C Beachboard; Xiaoyan Zhan; Christa F Gaskill; Susamma Abraham; Cathy Jenkins; Daniel A Culver; Wonder Drake
Journal:  Respir Res       Date:  2010-11-23

9.  Programmed death-1 ligand 1 interacts specifically with the B7-1 costimulatory molecule to inhibit T cell responses.

Authors:  Manish J Butte; Mary E Keir; Theresa B Phamduy; Arlene H Sharpe; Gordon J Freeman
Journal:  Immunity       Date:  2007-07-12       Impact factor: 31.745

10.  Genome-wide association study of African and European Americans implicates multiple shared and ethnic specific loci in sarcoidosis susceptibility.

Authors:  Indra Adrianto; Chee Paul Lin; Jessica J Hale; Albert M Levin; Indrani Datta; Ryan Parker; Adam Adler; Jennifer A Kelly; Kenneth M Kaufman; Christopher J Lessard; Kathy L Moser; Robert P Kimberly; John B Harley; Michael C Iannuzzi; Benjamin A Rybicki; Courtney G Montgomery
Journal:  PLoS One       Date:  2012-08-27       Impact factor: 3.240

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  37 in total

1.  Proceedings of the Americas Association of Sarcoidosis and Other Granulomatous Diseases (AASOG) 2017 annual meeting.

Authors:  Richard C Bernstein; Lisa A Maier; Elliott Crouser
Journal:  Sarcoidosis Vasc Diffuse Lung Dis       Date:  2018-04-28       Impact factor: 0.670

2.  [Sarcoidosis triggered by immune checkpoint blockade].

Authors:  Markus Heppt; Anne-Charlotte Niesert; Michael Flaig; Carola Berking
Journal:  Hautarzt       Date:  2018-10       Impact factor: 0.751

Review 3.  Potential immunotherapies for sarcoidosis.

Authors:  Van Le; Elliott D Crouser
Journal:  Expert Opin Biol Ther       Date:  2018-01-17       Impact factor: 4.388

4.  Similar activation state of neutrophils in sputum of asthma patients irrespective of sputum eosinophilia.

Authors:  T Tak; B Hilvering; K Tesselaar; L Koenderman
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5.  Declining Pulmonary Function in Interstitial Lung Disease Linked to Lymphocyte Dysfunction.

Authors:  Cody A Schott; Christian Ascoli; Yue Huang; David L Perkins; Patricia W Finn
Journal:  Am J Respir Crit Care Med       Date:  2020-03-01       Impact factor: 21.405

6.  Programmed Death-1 Inhibition of Phosphatidylinositol 3-Kinase/AKT/Mechanistic Target of Rapamycin Signaling Impairs Sarcoidosis CD4+ T Cell Proliferation.

Authors:  Lindsay J Celada; Joseph E Rotsinger; Anjuli Young; Guzel Shaginurova; Debresha Shelton; Charlene Hawkins; Wonder P Drake
Journal:  Am J Respir Cell Mol Biol       Date:  2017-01       Impact factor: 6.914

7.  IFN-γ-Producing T-Helper 17.1 Cells Are Increased in Sarcoidosis and Are More Prevalent than T-Helper Type 1 Cells.

Authors:  Joris Ramstein; Caroline E Broos; Laura J Simpson; K Mark Ansel; Sara A Sun; Melissa E Ho; Prescott G Woodruff; Nirav R Bhakta; Laura Christian; Christine P Nguyen; Bobby J Antalek; Bryan S Benn; Rudi W Hendriks; Bernt van den Blink; Mirjam Kool; Laura L Koth
Journal:  Am J Respir Crit Care Med       Date:  2016-06-01       Impact factor: 21.405

Review 8.  Genetic, Immunologic, and Environmental Basis of Sarcoidosis.

Authors:  David R Moller; Ben A Rybicki; Nabeel Y Hamzeh; Courtney G Montgomery; Edward S Chen; Wonder Drake; Andrew P Fontenot
Journal:  Ann Am Thorac Soc       Date:  2017-12

9.  PD-1 up-regulation on CD4+ T cells promotes pulmonary fibrosis through STAT3-mediated IL-17A and TGF-β1 production.

Authors:  Lindsay J Celada; Jonathan A Kropski; Jose D Herazo-Maya; Weifeng Luo; Amy Creecy; Andrew T Abad; Ozioma S Chioma; Grace Lee; Natalie E Hassell; Guzel I Shaginurova; Yufen Wang; Joyce E Johnson; Amy Kerrigan; Wendi R Mason; Robert P Baughman; Gregory D Ayers; Gordon R Bernard; Daniel A Culver; Courtney G Montgomery; Toby M Maher; Philip L Molyneaux; Imre Noth; Steven E Mutsaers; Cecilia M Prele; R S Peebles; Dawn C Newcomb; Naftali Kaminski; Timothy S Blackwell; Luc Van Kaer; Wonder P Drake
Journal:  Sci Transl Med       Date:  2018-09-26       Impact factor: 17.956

Review 10.  From granuloma to fibrosis: sarcoidosis associated pulmonary fibrosis.

Authors:  Catherine A Bonham; Mary E Strek; Karen C Patterson
Journal:  Curr Opin Pulm Med       Date:  2016-09       Impact factor: 3.155

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