platelet physiology
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2021 ◽  
Vol 22 (19) ◽  
pp. 10732
Author(s):  
Désirée Forstner ◽  
Jacqueline Guettler ◽  
Martin Gauster

Upon activation, maternal platelets provide a source of proinflammatory mediators in the intervillous space of the placenta. Therefore, platelet-derived factors may interfere with different trophoblast subtypes of the developing human placenta and might cause altered hormone secretion and placental dysfunction later on in pregnancy. Increased platelet activation, and the subsequent occurrence of placental fibrinoid deposition, are linked to placenta pathologies such as preeclampsia. The composition and release of platelet-derived factors change over gestation and provide a potential source of predicting biomarkers for the developing fetus and the mother. This review indicates possible mechanisms of platelet-trophoblast interactions and discusses the effect of increased platelet activation on placenta development.


2021 ◽  
Vol 19 (5) ◽  
pp. 1364-1371
Author(s):  
Paolo Gresele ◽  
Emanuela Falcinelli ◽  
Loredana Bury ◽  
Alessandro Pecci ◽  
Marie‐Christine Alessi ◽  
...  

2021 ◽  
Vol 11 (1) ◽  
Author(s):  
Renato S. Gaspar ◽  
Amanda J. Unsworth ◽  
Alaa Al-Dibouni ◽  
Alexander P. Bye ◽  
Tanya Sage ◽  
...  

AbstractMaternal over-nutrition increases the risk of diabetes and cardiovascular events in offspring. While prominent effects on cardiovascular health are observed, the impact on platelet physiology has not been studied. Here, we examined whether maternal high-fat diet (HF) ingestion affects the platelet function in lean and obese offspring. C57BL6/N mice dams were given a HF or control (C) diet for 8 weeks before and during pregnancy. Male and female offspring received C or HF diets for 26 weeks. Experimental groups were: C/C, dam and offspring fed standard laboratory diet; C/HF dam fed standard laboratory diet and offspring fed HF diet; HF/C and HF/HF. Phenotypic and metabolic tests were performed and blood collected for platelet studies. Compared to C/C, offspring HF groups were obese, with fat accumulation, hyperglycaemia and insulin resistance. Female offspring did not present platelet hyperactivity, hence we focused on male offspring. Platelets from HF/HF mice were larger, hyperactive and presented oxidative stress when compared to C/C. Maternal and offspring HF diet results in platelet hyperactivation in male mouse offspring, suggesting a novel ‘double-hit’ effect.


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