Literature DB >> 28858636

Damage-Associated molecular pattern markers HMGB1 and cell-Free fetal telomere fragments in oxidative-Stressed amnion epithelial cell-Derived exosomes.

Samantha Sheller-Miller1, Rheanna Urrabaz-Garza2, George Saade3, Ramkumar Menon4.   

Abstract

Term labor in humans is associated with increased oxidative stress (OS) -induced senescence and damages to amnion epithelial cells (AECs). Senescent fetal cells release alarmin high-mobility group box 1 (HMGB1) and cell-free fetal telomere fragments (cffTF) which can be carried by exosomes to other uterine tissues to produce parturition-associated inflammatory changes. This study characterized AEC-derived exosomes under normal and OS conditions and their packaging of HMGB1 and cffTF. Primary AECs were treated with either standard media or oxidative stress-induced media (exposure to cigarette smoke extract for 48h). Senescence was determined, and exosomes were isolated and characterized. To colocalize HMGB1 and cffTF in amnion exosomes, immunofluorescent staining and in situ hybridization were performed, followed by confocal microscopy. Next generation sequencing (NGS) determined exosomal cffTF and other cell-free amnion cell DNA specificity. Regardless of condition, primary AECs produce exosomes with a classic size, shape, and markers. OS and senescence caused the translocation of HMGB1 and cffTF from AECs' nuclei to cytoplasm compared to untreated cells, which was inhibited by antioxidant N-acetyl cysteine (NAC). Linescans confirmed colocalization of HMGB1 and cffTF in exosomes were higher in the cytoplasm after CSE treatment compared to untreated AECs. NGS determined that besides cffTF, AEC exosomes also carry genomic and mitochondrial DNA, regardless of growth conditions. Sterile inflammatory markers HMGB1 and cffTF from senescent fetal cells are packaged inside exosomes. We postulate that this exosomal cargo can act as a fetal signal at term and can cause labor-associated changes in neighboring tissues.
Copyright © 2017 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Amniochorion; DAMPs; Fetal signals; Inflammation; Microvesicles; Parturition

Mesh:

Substances:

Year:  2017        PMID: 28858636      PMCID: PMC5632595          DOI: 10.1016/j.jri.2017.08.003

Source DB:  PubMed          Journal:  J Reprod Immunol        ISSN: 0165-0378            Impact factor:   4.054


  46 in total

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Authors:  Sohee Cho; Eun Seong Hwang
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2.  Chorioamniotic membrane senescence: a signal for parturition?

Authors:  Faranak Behnia; Brandie D Taylor; Michael Woodson; Marian Kacerovsky; Hal Hawkins; Stephen J Fortunato; George R Saade; Ramkumar Menon
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3.  Expression profiles of fetal membrane nicotinamide adenine dinucleotide phosphate oxidases (NOX) 2 and 3 differentiates spontaneous preterm birth and pPROM pathophysiologies.

Authors:  J Polettini; M G Silva; M Kacerovsky; T A Syed; G Saade; R Menon
Journal:  Placenta       Date:  2014-01-03       Impact factor: 3.481

Review 4.  Mechanistic Differences Leading to Infectious and Sterile Inflammation.

Authors:  Faranak Behnia; Samantha Sheller; Ramkumar Menon
Journal:  Am J Reprod Immunol       Date:  2016-02-02       Impact factor: 3.886

5.  Prevalence and clinical significance of sterile intra-amniotic inflammation in patients with preterm labor and intact membranes.

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Journal:  Am J Reprod Immunol       Date:  2014-07-31       Impact factor: 3.886

6.  HMGB1 and cord blood: its role as immuno-adjuvant factor in innate immunity.

Authors:  Alessandra Ciucci; Ida Gabriele; Zulema A Percario; Elisabetta Affabris; Vittorio Colizzi; Giorgio Mancino
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8.  Senescence of primary amniotic cells via oxidative DNA damage.

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9.  Placenta-derived exosomes continuously increase in maternal circulation over the first trimester of pregnancy.

Authors:  Suchismita Sarker; Katherin Scholz-Romero; Alejandra Perez; Sebastian E Illanes; Murray D Mitchell; Gregory E Rice; Carlos Salomon
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10.  Amnion-Epithelial-Cell-Derived Exosomes Demonstrate Physiologic State of Cell under Oxidative Stress.

Authors:  Samantha Sheller; John Papaconstantinou; Rheanna Urrabaz-Garza; Lauren Richardson; George Saade; Carlos Salomon; Ramkumar Menon
Journal:  PLoS One       Date:  2016-06-22       Impact factor: 3.240

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  34 in total

1.  Cell-Free DNA Release by Mouse Fetal Membranes.

Authors:  Michala R Sawyer; Sharareh Adeli; Mark Phillippe
Journal:  Reprod Sci       Date:  2018-12-20       Impact factor: 3.060

2.  Amnion membrane organ-on-chip: an innovative approach to study cellular interactions.

Authors:  Lauren Richardson; Sehoon Jeong; Sungjin Kim; Arum Han; Ramkumar Menon
Journal:  FASEB J       Date:  2019-06-04       Impact factor: 5.191

3.  Quantitative Proteomics by SWATH-MS of Maternal Plasma Exosomes Determine Pathways Associated With Term and Preterm Birth.

Authors:  Ramkumar Menon; Christopher Luke Dixon; Samantha Sheller-Miller; Stephen J Fortunato; George R Saade; Carlos Palma; Andrew Lai; Dominic Guanzon; Carlos Salomon
Journal:  Endocrinology       Date:  2019-03-01       Impact factor: 4.736

4.  Dexamethasone induces primary amnion epithelial cell senescence through telomere-P21 associated pathway†.

Authors:  Laura F Martin; Lauren S Richardson; Márcia Guimarães da Silva; Samantha Sheller-Miller; Ramkumar Menon
Journal:  Biol Reprod       Date:  2019-06-01       Impact factor: 4.285

Review 5.  Location is the key to function: HMGB1 in sepsis and trauma-induced inflammation.

Authors:  Meihong Deng; Melanie J Scott; Jie Fan; Timothy R Billiar
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6.  Amnion epithelial cell-derived exosomes induce inflammatory changes in uterine cells.

Authors:  Emily E Hadley; Samantha Sheller-Miller; George Saade; Carlos Salomon; Sam Mesiano; Robert N Taylor; Brandie D Taylor; Ramkumar Menon
Journal:  Am J Obstet Gynecol       Date:  2018-08-21       Impact factor: 8.661

7.  Oxidative stress-induced downregulation of glycogen synthase kinase 3 beta in fetal membranes promotes cellular senescence†.

Authors:  Narmada Lavu; Lauren Richardson; Enkhtuya Radnaa; Talar Kechichian; Rheanna Urrabaz-Garza; Samantha Sheller-Miller; Elizabeth Bonney; Ramkumar Menon
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8.  Extracellular Vesicles from Albumin-Induced Tubular Epithelial Cells Promote the M1 Macrophage Phenotype by Targeting Klotho.

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Review 9.  Fetal membrane architecture, aging and inflammation in pregnancy and parturition.

Authors:  Ramkumar Menon; Lauren S Richardson; Martha Lappas
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10.  Stretch, scratch, and stress: Suppressors and supporters of senescence in human fetal membranes.

Authors:  Lauren S Richardson; Enkhtuya Radnaa; Rheanna Urrabaz-Garza; Narmada Lavu; Ramkumar Menon
Journal:  Placenta       Date:  2020-07-25       Impact factor: 3.481

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