Literature DB >> 32979718

Isolation and characterization human chorion membrane trophoblast and mesenchymal cells.

Ramkumar Menon1, Enkhtuya Radnaa2, Faranak Behnia3, Rheanna Urrabaz-Garza2.   

Abstract

INTRODUCTION: To develop protocols for isolation and culture of human chorionic mesenchymal and trophoblast cells and test their differential responsiveness to oxidative stress.
METHODS: Chorion trophoblast cells (CTC) and chorion mesenchymal cells (CMC) were isolated from term fetal membranes by modifying current protocols. Their purity and characteristics were tested using bright field microscopy and after staining for cytokeratin (CK)-7 and vimentin. Cigarette smoke extract (CSE) was used to stimulate cells, and we determined reactive oxygen species (ROS) production using 2'7'-dichlorodihydro-fluorescein assay, stress signaler p38MAPK activation (Western blot) and senescence by flow cytometry. Co-treatment with antioxidant N-acetyl cystine (NAC) either alone or in combination with SB203580 (p38MAPK inhibitor) was used to test oxidative stress (OS)- and p38MAPK-mediated effects.
RESULTS: The isolation and cell culture protocol used in this study yielded 92% pure CTC and 100% pure CMC. CSE treatment significantly induced ROS production, P-p38MAPK activation, and senescence in both cell types compared to controls. Cotreatment with NAC reduced ROS production and p38MAPK activation, and co-treatment with both NAC and SB203580 reduced senescence. ROS response in CMC was higher than CTC; however, senescence of CTC was 10-fold higher than CMC.
CONCLUSIONS: We introduce approaches for proper isolation and culture of CTC and CMC without any influence or overgrowth of one specific type cell that can confound results. Using this approach, we determined differential effects of CTC and CMC to OS condition seen at term labor. Both CTC and CMC undergo p38MAPK-mediated senescence; however, the rate of senescence is higher in CTC.
Copyright © 2020 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Amnion; Fetal membranes; Inflammation senescence; Oxidative stress; Preterm birth; Trophoblast

Year:  2020        PMID: 32979718      PMCID: PMC7584780          DOI: 10.1016/j.placenta.2020.09.017

Source DB:  PubMed          Journal:  Placenta        ISSN: 0143-4004            Impact factor:   3.481


  3 in total

1.  Generation and characterization of human Fetal membrane and Decidual cell lines for reproductive biology experiments†.

Authors:  Enkhtuya Radnaa; Rheanna Urrabaz-Garza; Nathan D Elrod; Mariana de Castro Silva; Richard Pyles; Arum Han; Ramkumar Menon
Journal:  Biol Reprod       Date:  2022-03-19       Impact factor: 4.161

2.  Functional role and regulation of permeability-glycoprotein (P-gp) in the fetal membrane during drug transportation.

Authors:  Ananthkumar Kammala; Meagan Benson; Esha Ganguly; Lauren Richardson; Ramkumar Menon
Journal:  Am J Reprod Immunol       Date:  2021-12-15       Impact factor: 3.886

3.  Extracellular vesicles from maternal uterine cells exposed to risk factors cause fetal inflammatory response.

Authors:  Megan C Shepherd; Enkhtuya Radnaa; Ourlad Alzeus Tantengco; Talar Kechichian; Rheanna Urrabaz-Garza; Ananth Kumar Kammala; Samantha Sheller-Miller; Ramkumar Menon
Journal:  Cell Commun Signal       Date:  2021-10-07       Impact factor: 7.525

  3 in total

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