In vitro reminiscence: uterine programming in vivo affects respective luminal epithelial cells function in vitro

Author:

Rocha Cecilia Constantino1,Cordeiro Andrey Luiz Lopes2,Campbell Meghan1,Maldonado Mariangela Bueno Cordeiro3,Silva Felipe Alves Correa Carvalho4,Bennett Alexandra1,Waheed Abdul1,Hansen Thomas5,Binelli Mario1

Affiliation:

1. Department of Animal Sciences, University of Florida , Gainesville, Florida, 32611 , USA

2. Center of Biological and Nature Sciences, Federal University of Acre , Rodovia BR 364, Km 04, Rio Branco, Acre, 69920-900 , Brazil

3. Department of Biological Sciences, Sao Paulo State University , Assis, Sao Paulo, 19806-900 , Brazil

4. Department of Animal Science, North Carolina State University , Raleigh, North Carolina, 27607 , USA

5. Department of Biomedical Sciences, Colorado State University , Fort Collins, Colorado, 80521 , USA

Abstract

Abstract In cattle, the endometrium during diestrus and early pregnancy displays cellular responses that are consequences of prior, transient stimuli. Goal was to establish a model to study cellular memory in the endometrium. The hypothesis is that stimuli given to endometrium in vivo are retained as a cellular memory that remains after bovine uterine epithelial cells (BUECs) are isolated, cultured, and further stimulated in vitro. Objectives were to measure BUEC proliferation/migration and responsiveness to recombinant bovine Interferon-tau (rbIFNT) in vitro: among cows that showed estrus (experiment 1 [Exp1]), cows that became or not pregnant to artificial insemination (Exp2), cows that received or not supplemental progesterone (P4; Exp3) and cows that received or not a COX-1/2 inhibitor (Exp4). Only cows that displayed estrus were included in studies. For all experiments endometrial cytology was collected 4 days after estrus, BUECs were cultured, propagated, and submitted to rbIFNT treatment and an in vitro scratch assay. In Exp1, different cows spontaneously grouped according to proliferative/migratory capacity and responsiveness to rbIFNT of their respective BUECs. In Exp2, BUECs from pregnant cows showed greater rbIFNT responsiveness and cellular proliferation. In Exp3, BUECs from cows supplemented with P4 presented inhibited proliferation and increased expression of RSAD2. In Exp4, Flunixin Meglumine modified rbIFNT responsiveness of BUECs in an IFN-signaling pathway-specific manner. In conclusion, physiological and pharmacological stimuli received by the endometrium in vivo were retained as cellular memory in BUECs, persisted in culture, and changed BUEC proliferation/migration and responsiveness to rbIFNT, which are characteristics associated with fertility in cattle.

Funder

USDA National Institute of Food and Agriculture

USDA-Hatch Project

Florida Beef Enhancement Board

Publisher

Oxford University Press (OUP)

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