Placental aging and oxidation damage in a tissue micro-array model: an immunohistochemistry study

妊娠期 宫内生长受限 赫尔普综合征 子痫前期 滋养层 胎儿 男科 生物 胎盘 怀孕 胎龄 胎盘功能不全 内分泌学 内科学 医学 遗传学
作者
Ambrogio P. Londero,Maria ­Orsaria,Stefania Marzinotto,Tiziana Grassi,Arrigo Fruscalzo,Angelo Calcagno,Serena Bertozzi,Nastassia Nardini,Enrica Stella,Ralph J. Lellé,Lorenza Driul,Gianluca Tell,Laura Mariuzzi
出处
期刊:Histochemistry and Cell Biology [Springer Science+Business Media]
卷期号:146 (2): 191-204 被引量:54
标识
DOI:10.1007/s00418-016-1435-6
摘要

To evaluate the expression of markers correlated with cellular senescence and DNA damage (8-hydroxy-2'-deoxy-guanosine (8-OHdG), p53, p21, APE1/Ref-1 (APE1), interleukin (IL-6 and IL-8) in placentas from healthy and pathologic pregnancies. This retrospective study considered a placental tissue micro-array containing 92 controls from different gestational ages and 158 pathological cases including preeclampsia (PE), HELLP syndrome (hemolysis, elevated liver enzymes, low platelet count), small for gestational age (SGA) fetuses, and intrauterine growth restriction (IUGR) occurring at different gestational ages. In this study, we demonstrated a significant influence of gestational age on the expression in the trophoblast of 8-OHdG, p53, p21, APE1, and IL-6. In placentas of cases affected by PE, HELLP, or IUGR, there was an increased expression of 8-OHdG, p53, APE1, and IL-6 compared to controls (only IL-8 was significantly decreased in cases). In both groups of pathology between 22- and 34-week gestation and after 34-week gestation, APE1 levels were higher in the trophoblast of women affected by hypertensive disorders of pregnancy than women carrying an IUGR fetus. The cytoplasmic expression of 8-OHdG was increased in placentas in IUGR cases compared to PE or HELLP pregnancies. In cases after 34-week gestation, p21 was higher in SGA and IUGR than in controls and late PE. Moreover, p53 was increased after 34-week gestation in IUGR pregnancies. Placentas from pathological pregnancies had an altered expression of 8-OHdG, p53, p21, APE1, IL-6, and IL-8. The alterations of intracellular pathways involving these elements may be the cause or the consequence of placental dysfunction, but in any case reflect an impaired placental function, possibly due to increased aging velocity in pathologic cases.
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