Literature DB >> 22989614

Plasma monocyte chemotactic protein-1 levels at 24 hours are a biomarker of primary graft dysfunction after lung transplantation.

Rupal J Shah1, Joshua M Diamond, David J Lederer, Selim M Arcasoy, Edward M Cantu, E J Demissie, Steven M Kawut, Benjamin Kohl, James C Lee, Joshua Sonett, Jason D Christie, Lorraine B Ware.   

Abstract

Monocyte chemotactic protein-1 (MCP-1), also known as "chemokine ligand 2" (CCL2), is a monocyte-attracting chemokine produced in lung epithelial cells. We previously reported an association of increased levels of plasma MCP-1 with primary graft dysfunction (PGD) after lung transplantation in a nested case-control study of extreme phenotypes using a multiplex platform. In this study, we sought to evaluate the role of plasma MCP-1 level as a biomarker across the full spectrum of PGD. We performed a prospective cohort study of 108 lung transplant recipients within the Lung Transplant Outcomes Group cohort. Plasma MCP-1 levels were measured pretransplantation and 6 and 24 hours after transplantation. The primary outcome was development of grade 3 PGD within 72 hours of transplant, with secondary analyses at the 72-hour time point. Multivariable logistic regression was used to evaluate confounding. Thirty subjects (28%) developed PGD. Median MCP-1 measured at 24 hours post-transplant was elevated in subjects with PGD (167.95 vs 103.5 pg/mL, P = .04). MCP-1 levels at 24 hours were associated with increased odds of grade 3 PGD after lung transplantation (odds ratio for each 100 pg/mL, 1.24; 95% confidence interval, 1.00-1.53) and with grade 3 PGD present at the 72-hour time point (odds ratio for each 100 pg/mL, 1.57; 95% confidence interval, 1.18-2.08), independent of confounding variables in multivariable analyses. MCP-1 levels measured preoperatively and 6 hours after transplant were not significantly associated with PGD. Persistent elevations in MCP-1 levels at 24 hours are a biomarker of grade 3 PGD post-transplantation. Monocyte chemotaxis may play a role in the pathogenesis of PGD.
Copyright © 2012 Mosby, Inc. All rights reserved.

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Year:  2012        PMID: 22989614      PMCID: PMC3500407          DOI: 10.1016/j.trsl.2012.08.003

Source DB:  PubMed          Journal:  Transl Res        ISSN: 1878-1810            Impact factor:   7.012


  39 in total

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Authors:  Jason D Christie; Leah B Edwards; Anna Y Kucheryavaya; Christian Benden; Fabienne Dobbels; Richard Kirk; Axel O Rahmel; Josef Stehlik; Marshall I Hertz
Journal:  J Heart Lung Transplant       Date:  2011-10       Impact factor: 10.247

2.  The Registry of the International Society for Heart and Lung Transplantation: twenty-seventh official adult lung and heart-lung transplant report--2010.

Authors:  Jason D Christie; Leah B Edwards; Anna Y Kucheryavaya; Paul Aurora; Fabienne Dobbels; Richard Kirk; Axel O Rahmel; Josef Stehlik; Marshall I Hertz
Journal:  J Heart Lung Transplant       Date:  2010-10       Impact factor: 10.247

3.  Revision of the 1990 working formulation for the classification of pulmonary allograft rejection: Lung Rejection Study Group.

Authors:  S A Yousem; G J Berry; P T Cagle; D Chamberlain; A N Husain; R H Hruban; A Marchevsky; N P Ohori; J Ritter; S Stewart; H D Tazelaar
Journal:  J Heart Lung Transplant       Date:  1996-01       Impact factor: 10.247

4.  Monocyte chemotactic peptide-1 expression and monocyte infiltration in acute renal transplant rejection.

Authors:  G Grandaliano; L Gesualdo; E Ranieri; R Monno; G Stallone; F P Schena
Journal:  Transplantation       Date:  1997-02-15       Impact factor: 4.939

5.  MCP-1 is up-regulated in unstressed and stressed HO-1 knockout mice: Pathophysiologic correlates.

Authors:  Siobhan T Pittock; Suzanne M Norby; Joseph P Grande; Anthony J Croatt; Gary D Bren; Andrew D Badley; Noel M Caplice; Matthew D Griffin; Karl A Nath
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6.  Human monocyte chemoattractant protein-1 (MCP-1). Full-length cDNA cloning, expression in mitogen-stimulated blood mononuclear leukocytes, and sequence similarity to mouse competence gene JE.

Authors:  T Yoshimura; N Yuhki; S K Moore; E Appella; M I Lerman; E J Leonard
Journal:  FEBS Lett       Date:  1989-02-27       Impact factor: 4.124

7.  The impact of confounder selection criteria on effect estimation.

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Journal:  Am J Epidemiol       Date:  1989-01       Impact factor: 4.897

8.  Simulation study of confounder-selection strategies.

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  15 in total

1.  Cell-free hemoglobin promotes primary graft dysfunction through oxidative lung endothelial injury.

Authors:  Ciara M Shaver; Nancy Wickersham; J Brennan McNeil; Hiromasa Nagata; Adam Miller; Stuart R Landstreet; Jamie L Kuck; Joshua M Diamond; David J Lederer; Steven M Kawut; Scott M Palmer; Keith M Wille; Ann Weinacker; Vibha N Lama; Maria M Crespo; Jonathan B Orens; Pali D Shah; Chadi A Hage; Edward Cantu; Mary K Porteous; Gundeep Dhillon; John McDyer; Julie A Bastarache; Jason D Christie; Lorraine B Ware
Journal:  JCI Insight       Date:  2018-01-25

2.  The association of post-lung transplant acute kidney injury with mortality is independent of primary graft dysfunction: A cohort study.

Authors:  Michael G S Shashaty; Caitlin M Forker; Todd A Miano; Qufei Wu; Wei Yang; Michelle L Oyster; Mary K Porteous; Edward E Cantu; Joshua M Diamond; Jason D Christie
Journal:  Clin Transplant       Date:  2019-08-28       Impact factor: 2.863

Review 3.  Bronchiolitis obliterans syndrome: the Achilles' heel of lung transplantation.

Authors:  S Samuel Weigt; Ariss DerHovanessian; W Dean Wallace; Joseph P Lynch; John A Belperio
Journal:  Semin Respir Crit Care Med       Date:  2013-07-02       Impact factor: 3.119

Review 4.  Primary graft dysfunction.

Authors:  Yoshikazu Suzuki; Edward Cantu; Jason D Christie
Journal:  Semin Respir Crit Care Med       Date:  2013-07-02       Impact factor: 3.119

5.  The relationship between plasma lipid peroxidation products and primary graft dysfunction after lung transplantation is modified by donor smoking and reperfusion hyperoxia.

Authors:  Lorraine B Ware; Jason D Christie; Joshua M Diamond; Mary K Porteous; L Jackson Roberts; Nancy Wickersham; Melanie Rushefski; Steven M Kawut; Rupal J Shah; Edward Cantu; David J Lederer; Shampa Chatterjee; Vibha N Lama; Sangeeta Bhorade; Maria Crespo; John McDyer; Keith Wille; Jonathan Orens; Ann Weinacker; Selim Arcasoy; Pali D Shah; David S Wilkes; Chadi Hage; Scott M Palmer; Laurie Snyder; Carolyn S Calfee
Journal:  J Heart Lung Transplant       Date:  2016-01-07       Impact factor: 10.247

Review 6.  Protein biomarkers associated with primary graft dysfunction following lung transplantation.

Authors:  B C S Hamilton; J Kukreja; L B Ware; M A Matthay
Journal:  Am J Physiol Lung Cell Mol Physiol       Date:  2017-01-27       Impact factor: 5.464

Review 7.  Pathophysiology and classification of primary graft dysfunction after lung transplantation.

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Journal:  J Thorac Dis       Date:  2017-10       Impact factor: 2.895

Review 8.  Primary graft dysfunction: lessons learned about the first 72 h after lung transplantation.

Authors:  Mary K Porteous; Joshua M Diamond; Jason D Christie
Journal:  Curr Opin Organ Transplant       Date:  2015-10       Impact factor: 2.640

9.  Natural killer cells activated through NKG2D mediate lung ischemia-reperfusion injury.

Authors:  Daniel R Calabrese; Emily Aminian; Benat Mallavia; Fengchun Liu; Simon J Cleary; Oscar A Aguilar; Ping Wang; Jonathan P Singer; Steven R Hays; Jeffrey A Golden; Jasleen Kukreja; Daniel Dugger; Mary Nakamura; Lewis L Lanier; Mark R Looney; John R Greenland
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10.  Effect of Intravenous Lidocaine on Inflammatory and Apoptotic Response of Ischemia-Reperfusion Injury in Pigs Undergoing Lung Resection Surgery.

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Journal:  Biomed Res Int       Date:  2021-06-04       Impact factor: 3.411

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