oviduct epithelial cell
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2020 ◽  
Vol 21 (20) ◽  
pp. 7589
Author(s):  
Tabinda Sidrat ◽  
Abdul Aziz Khan ◽  
Myeon-Don Joo ◽  
Yiran Wei ◽  
Kyeong-Lim Lee ◽  
...  

Oviduct flushing is enriched by a wide variety of nutrients that guide the 3–4 days journey of pre-implantation embryo through the oviduct as it develops into a competent blastocyst (BL). However, little is known about the specific requirement and role of these nutrients that orchestrate the early stages of embryonic development. In this study, we aimed to characterize the effect of in vitro-derived bovine oviduct epithelial cell (BOECs) secretion that mimics the in vivo oviduct micro-fluid like environment, which allows successful embryonic development. In this study, the addition of an in vitro derived BOECs-condition media (CM) and its isolated exosomes (Exo) significantly enhances the quality and development of BL, while the hatching ability of BLs was found to be high (48.8%) in the BOECs-Exo supplemented group. Surprisingly, BOECs-Exo have a dynamic effect on modulating the embryonic metabolism by restoring the pyruvate flux into TCA-cycle. Our analysis reveals that Exo treatment significantly upregulates the pyruvate dehydrogenase (PDH) and glutamate dehydrogenase (GLUD1) expression, required for metabolic fine-tuning of the TCA-cycle in the developing embryos. Exo treatment increases the influx into TCA-cycle by strongly suppressing the PDH and GLUD1 upstream inhibitors, i.e., PDK4 and SIRT4. Improvement of TCA-cycle function was further accompanied by higher metabolic activity of mitochondria in BOECs-CM and Exo in vitro embryos. Our study uncovered, for the first time, the possible mechanism of BOECs-derived secretion in re-establishing the TCA-cycle flux by the utilization of available nutrients and highlighted the importance of pyruvate in supporting bovine in vitro embryonic development.


2019 ◽  
Vol 43 (4) ◽  
pp. 448-455
Author(s):  
Aytül KÜRÜM ◽  
Siyami KARAHAN ◽  
Hakan KOCAMIŞ ◽  
Miyase ÇINAR ◽  
Emel ERGÜN

2018 ◽  
Vol 105 ◽  
pp. 66-74 ◽  
Author(s):  
Jingu No ◽  
Minghui Zhao ◽  
Seunghoon Lee ◽  
Sun A. Ock ◽  
Yoonseok Nam ◽  
...  

Reproduction ◽  
2017 ◽  
Vol 153 (6) ◽  
pp. 759-773 ◽  
Author(s):  
L Jordaens ◽  
V Van Hoeck ◽  
V Maillo ◽  
A Gutierrez-Adan ◽  
W F A Marei ◽  
...  

We hypothesized that elevated non-esterified fatty acids (NEFA) modify in vitro bovine oviduct epithelial cell (BOEC) metabolism and barrier function. Hereto, BOECs were studied in a polarized system with 24-h treatments at Day 9: (1) control (0 µM NEFA + 0% EtOH), (2) solvent control (0 µM NEFA + 0.45% EtOH), (3) basal NEFA (720 µM NEFA + 0.45% EtOH in the basal compartment) and (4) apical NEFA (720 µM NEFA + 0.45% EtOH in the apical compartment). FITC-albumin was used for monolayer permeability assessment and related to transepithelial electric resistance (TER). Fatty acid (FA), glucose, lactate and pyruvate concentrations were measured in spent medium. Intracellular lipid droplets (LD) and FA uptake were studied using Bodipy 493/503 and immunolabelling of FA transporters (FAT/CD36, FABP3 and CAV1). BOEC-mRNA was retrieved for qRT-PCR. Results revealed that apical NEFA reduced relative TER increase (46.85%) during treatment and increased FITC–albumin flux (27.59%) compared to other treatments. In basal NEFA, FAs were transferred to the apical compartment as free FAs: mostly palmitic and oleic acid increased respectively 56.0 and 33.5% of initial FA concentrations. Apical NEFA allowed no FA transfer, but induced LD accumulation and upregulated FA transporter expression (↑CD36, ↑FABP3 and ↑CAV1). Gene expression in apical NEFA indicated increased anti-apoptotic (↑BCL2) and anti-oxidative (↑SOD1) capacity, upregulated lipid metabolism (↑CPT1, ↑ACSL1 and ↓ACACA) and FA uptake (↑CAV1). All treatments had similar carbohydrate metabolism and oviduct function-specific gene expression (OVGP1, ESR1 and FOXJ1). Overall, elevated NEFAs affected BOEC metabolism and barrier function differently depending on NEFA exposure side. Data substantiate the concept of the oviduct as a gatekeeper that may actively alter early embryonic developmental conditions.


Lab on a Chip ◽  
2017 ◽  
Vol 17 (5) ◽  
pp. 905-916 ◽  
Author(s):  
Marcia A. M. M. Ferraz ◽  
Heiko H. W. Henning ◽  
Pedro F. Costa ◽  
Jos Malda ◽  
Ferry P. Melchels ◽  
...  

The use of 3D-printing in bovine oviduct epithelial cell cultures allows better bio-mimicking of embryo production than classical in vitro fertilization.


2014 ◽  
Vol 149 (3-4) ◽  
pp. 103-116 ◽  
Author(s):  
Barbara Schmaltz-Panneau ◽  
Amanda Cordova ◽  
Sophie Dhorne-Pollet ◽  
Christelle Hennequet-Antier ◽  
Sveltlana Uzbekova ◽  
...  

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