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Pregled bibliografske jedinice broj: 72032

Hyperglycaemia in vitro alters the proliferation and mitochondrial activity of the choriocarcinoma cell lines BeWo, JAR and JEG-3 as models for human first-trimester trophoblast


Weiss, U.; Červar Živković Mila; Puerstner, P.; Schmut, O.; Haas, J.; Mauschitz, R.; Arikan, G.; Desoye, Gerbert
Hyperglycaemia in vitro alters the proliferation and mitochondrial activity of the choriocarcinoma cell lines BeWo, JAR and JEG-3 as models for human first-trimester trophoblast // Diabetologia. Supplement (Berlin), 44 (2001), 2; 209-219 (međunarodna recenzija, članak, znanstveni)


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Naslov
Hyperglycaemia in vitro alters the proliferation and mitochondrial activity of the choriocarcinoma cell lines BeWo, JAR and JEG-3 as models for human first-trimester trophoblast

Autori
Weiss, U. ; Červar Živković Mila ; Puerstner, P. ; Schmut, O. ; Haas, J. ; Mauschitz, R. ; Arikan, G. ; Desoye, Gerbert

Izvornik
Diabetologia. Supplement (Berlin) (0941-5602) 44 (2001), 2; 209-219

Vrsta, podvrsta i kategorija rada
Radovi u časopisima, članak, znanstveni

Ključne riječi
Fetal growth delay; Diabetic pregnancy; Congenital-malformations; High-glucose; Rat embryos; In-vitro; Apoptosis; Insulin; Supplementation; Placenta

Sažetak
Aims/hypothesis. Early intrauterine growth delay in diabetes could be caused by a reduced growth of the placenta. Our study investigates whether hyperglycaemia in vitro reduces trophoblast proliferation. Methods. First-trimester trophoblast cell models (BeWo, JAR and JEG-3 choriocarcinoma cells) were cultured for 24 and 48 h with 5.5 mmol/l D-glucose, 25 mmol/l D-glucose (hyperglycaemia) and with an osmotic control. Cell number, total protein and nucleic acid content and mitochondrial activity (tetrazolium salt assay) were measured, the cell cycle analysed (FACS, cyclin B1 levels) and apoptosis (Annexin-V) measured. Results. In BeWo cells hyperglycaemia reduced cell number, protein, nucleic acid and cyclin B1 levels. The reduced G(2)/M and increased G(0)/G(1) population after 24 h reflects growth arrest at G(0)/G(1). In JAR cells after 24 h the population was arrested in G(0)/G(1), whereas after 48 h the G(0)/G(1) block was abrogated and the cells were arrested at G(2)/M. The net effect was an unchanged cell number. In JEG-3 cells hyperglycaemia resulted in fewer cells after 24 h but not after 48 h indicating some adaptation. Mitochondrial activity was either stimulated (BeWo) or reduced (JAR, JEG-3) under hyperglycaemia. Some of these effects were also induced by hyperosmolarity alone. Conclusion/interpretation. Hyperglycaemia has the potential to inhibit the proliferation of first-trimester trophoblast cell models. The mechanisms leading to growth arrest and to changes in mitochondrial activity are complex and depend on differentiation. We hypothesise a hyperglycaemia-induced impairment of placental growth in the first trimester of a poorly controlled diabetic pregnancy.

Izvorni jezik
Engleski

Znanstvena područja
Kliničke medicinske znanosti



POVEZANOST RADA


Projekti:
108086

Ustanove:
Medicinski fakultet, Zagreb

Profili:

Avatar Url Marija Weiss (autor)


Citiraj ovu publikaciju:

Weiss, U.; Červar Živković Mila; Puerstner, P.; Schmut, O.; Haas, J.; Mauschitz, R.; Arikan, G.; Desoye, Gerbert
Hyperglycaemia in vitro alters the proliferation and mitochondrial activity of the choriocarcinoma cell lines BeWo, JAR and JEG-3 as models for human first-trimester trophoblast // Diabetologia. Supplement (Berlin), 44 (2001), 2; 209-219 (međunarodna recenzija, članak, znanstveni)
Weiss, U., Červar Živković Mila, Puerstner, P., Schmut, O., Haas, J., Mauschitz, R., Arikan, G. & Desoye, G. (2001) Hyperglycaemia in vitro alters the proliferation and mitochondrial activity of the choriocarcinoma cell lines BeWo, JAR and JEG-3 as models for human first-trimester trophoblast. Diabetologia. Supplement (Berlin), 44 (2), 209-219.
@article{article, author = {Weiss, U. and Puerstner, P. and Schmut, O. and Haas, J. and Mauschitz, R. and Arikan, G. and Desoye, Gerbert}, year = {2001}, pages = {209-219}, keywords = {Fetal growth delay, Diabetic pregnancy, Congenital-malformations, High-glucose, Rat embryos, In-vitro, Apoptosis, Insulin, Supplementation, Placenta}, journal = {Diabetologia. Supplement (Berlin)}, volume = {44}, number = {2}, issn = {0941-5602}, title = {Hyperglycaemia in vitro alters the proliferation and mitochondrial activity of the choriocarcinoma cell lines BeWo, JAR and JEG-3 as models for human first-trimester trophoblast}, keyword = {Fetal growth delay, Diabetic pregnancy, Congenital-malformations, High-glucose, Rat embryos, In-vitro, Apoptosis, Insulin, Supplementation, Placenta} }
@article{article, author = {Weiss, U. and Puerstner, P. and Schmut, O. and Haas, J. and Mauschitz, R. and Arikan, G. and Desoye, Gerbert}, year = {2001}, pages = {209-219}, keywords = {Fetal growth delay, Diabetic pregnancy, Congenital-malformations, High-glucose, Rat embryos, In-vitro, Apoptosis, Insulin, Supplementation, Placenta}, journal = {Diabetologia. Supplement (Berlin)}, volume = {44}, number = {2}, issn = {0941-5602}, title = {Hyperglycaemia in vitro alters the proliferation and mitochondrial activity of the choriocarcinoma cell lines BeWo, JAR and JEG-3 as models for human first-trimester trophoblast}, keyword = {Fetal growth delay, Diabetic pregnancy, Congenital-malformations, High-glucose, Rat embryos, In-vitro, Apoptosis, Insulin, Supplementation, Placenta} }

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  • Current Contents Connect (CCC)
  • Web of Science Core Collection (WoSCC)
    • SCI-EXP, SSCI i/ili A&HCI


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