Placental progesterone and its receptor in HIV-infected pre-eclamptic women

Berkane N, Liere P, Lefevre G, Alfaidy N, Nahed RA, Vincent J, Oudinet JP, Pianos A, Cambourg A, Rozenberg P, Galichon P, Rousseau A, Simon T, Schumacher M, Chabbert-Buffet N, Hertig A (2018) Abnormal steroidogenesis and aromatase activity in preeclampsia. Placenta 69:40–49. https://doi.org/10.1016/j.placenta.2018.07.004

Article  CAS  PubMed  Google Scholar 

Burton GJ, Sebire NJ, Myatt L, Tannetta D, Wang YL, Sadovsky Y, Staff AC, Redman CW (2014) Optimising sample collection for placental research. Placenta 35:9–22. https://doi.org/10.1016/j.placenta.2013.11.005

Article  CAS  PubMed  Google Scholar 

Burton GJ, Redman CW, Roberts JM, Moffett A (2019) Pre-eclampsia: pathophysiology and clinical implications. BMJ 366:2381

Article  Google Scholar 

Chowdhury S, Ferdous J, Nahar KN, Mahmood S (2020) Maternal serum progesterone level in preeclampsia. Bangabandhu Sheikh Mujib Med Univ J 13:9–12

Article  Google Scholar 

Conde-Agudelo A, Villar J, Lindheimer M (2008) Maternal infection and risk of preeclampsia: systematic review and metaanalysis. Am J Obstet Gynaecol 198:7–22

Article  Google Scholar 

Crowe AR, Yue W (2019) Semi-quantitative determination of protein expression using immunohistochemistry staining and analysis: an integrated protocol. Bio Protoc 9:e3465

Article  CAS  PubMed  PubMed Central  Google Scholar 

Fox H, Sebire NJ (2007) Physiology of the placenta. In: Fox H, Sebire NJ (eds) Pathology of the placenta, 3rd edn. Edinburgh, pp 57–67

Chapter  Google Scholar 

Fraichard C, Bonnet-Serrano F, Laguillier-Morizot C, Hebert-Schuster M, Lai-Kuen R, Sibiude J, Fournier T, Cohen M, Guibourdenche J (2021) Protease inhibitor anti-HIV, Lopinavir, impairs placental endocrine function. Int J Mol Sci 22:683

Article  CAS  PubMed  PubMed Central  Google Scholar 

Garrido-Gomez T, Castillo-Marco N, Clemente-Ciscar M, Cordero T, Muñoz-Blat I, Amadoz A, Jimenez-Almazan J, Monfort-Ortiz R, Climent R, Perales-Marin A, Simon C (2021) Disrupted PGR-B and ESR1 signaling underlies defective decidualization linked to severe preeclampsia. Elife 10:e70753

Article  CAS  PubMed  PubMed Central  Google Scholar 

Gomathy E, Akurati L, Radhika K (2018) Early onset and late onset preeclampsia-maternal and perinatal outcomes in a rural teritiary health center. Int J Reprod Contracept Obstet Gynecol 7:2266–2270

Article  Google Scholar 

Guo F, Zhang B, Yang H, Fu Y, Wang Y, Huang J, Cheng M, Li X, Shen Z, Li L (2021) Systemic transcriptome comparison between early-And late-onset pre-eclampsia shows distinct pathology and novel biomarkers. Cell Prolif 54:12968

Article  Google Scholar 

Gupta SK, Malhotra SS, Malik A, Verma S, Chaudhary P (2016) Cell signaling pathways involved during invasion and syncytialization of trophoblast cells. Am J Reprod Immunol 75:361–371. https://doi.org/10.1111/aji.12436

Article  PubMed  Google Scholar 

Iou SG, Eskandari M, Dabiri A (2005) Evaluation of androgen and progesterone levels of women with preeclampsia in third trimester. Med J Islamic World Acad Sci 15:19–22

Google Scholar 

Jensen EC (2013) Quantitative analysis of histological staining and fluorescence using ImageJ. Anat Rec 296:378–381. https://doi.org/10.1002/ar.22641

Article  Google Scholar 

Kale K, Vishwekar P, Balsarkar G, Jassawalla MJ, Sawant G, Madan T (2020) Differential levels of surfactant protein A, surfactant protein D, and progesterone to estradiol ratio in maternal serum before and after the onset of severe early-onset preeclampsia. Am J Reprod Immunol 83:13208. https://doi.org/10.1111/aji.13208

Article  Google Scholar 

Kiprono LV, Wallace K, Moseley J, Martin J, LaMarca B (2013) Progesterone blunts vascular endothelial cell secretion of endothelin-1 in response to placental ischemia. Am J Obstet Gynecol 209:44. https://doi.org/10.1016/j.ajog.2013.03.032

Article  CAS  PubMed Central  Google Scholar 

Lykoudi A, Kolialexi A, Lambrou GI, Braoudaki M, Siristatidis C, Papaioanou GK, Tzetis M, Mavrou A, Papantoniou N (2018) Dysregulated placental micrornas in early and late onset preeclampsia. Placenta 61:24–32. https://doi.org/10.1016/j.placenta.2017.11.005

Article  CAS  PubMed  Google Scholar 

Magee LA, Brown MA, Hall DR, Gupte S, Hennessy A, Karumanchi SA, Kenny LC, McCarthy F, Myers J, Poon LC (2022) The 2021 international society for the study of hypertension in pregnancy classification, diagnosis & management recommendations for international practice. Pregnancy Hypertens 27:148–169

Article  PubMed  Google Scholar 

Maliqueo M, Echiburú B, Crisosto N (2016) Sex steroids modulate uterine-placental vasculature: implications for obstetrics and neonatal outcomes. Front Physiol 7:152

Article  PubMed  PubMed Central  Google Scholar 

Mani S, Oyola M (2012) Progesterone signaling mechanisms in brain and behavior. Front Endocrinol 3:7

Article  CAS  Google Scholar 

Marín R, Chiarello DI, Abad C, Rojas D, Toledo F, Sobrevia L (2020) Oxidative stress and mitochondrial dysfunction in early-onset and late-onset preeclampsia. Biochim Biophys Acta (BBA) Mol Basis Dis 1866:165961. https://doi.org/10.1016/j.bbadis.2020.165961

Article  CAS  Google Scholar 

Mesiano S (2007) Myometrial progesterone responsiveness. Seminars in reproductive medicine, vol 25. Thieme Publishers Inc, New York, pp 5–13

Google Scholar 

Mohammadi H, Papp E, Cahill L, Rennie M, Banko N, Pinnaduwage L, Lee J, Kibschull M, Dunk C, Sled JG, Serghides L (2018) HIV antiretroviral exposure in pregnancy induces detrimental placenta vascular changes that are rescued by progesterone supplementation. Sci Rep 8:6552

Article  PubMed  PubMed Central  Google Scholar 

Moon J-Y, Moon MH, Kim KT, Jeong DH, Kim YN, Chung BC, Choi MH (2014) Cytochrome P450-mediated metabolic alterations in preeclampsia evaluated by quantitative steroid signatures. J Steroid Biochem Mol Biol 139:182–191

Article  CAS  PubMed  Google Scholar 

Naicker T, Dorsamy E, Ramsuran D, Burton GJ, Moodley J (2013) The role of apoptosis on trophoblast cell invasion in the placental bed of normotensive and preeclamptic pregnancies. Hypertens Pregnancy 32:245–256

Article  CAS  PubMed  Google Scholar 

Papp E, Mohammadi H, Loutfy MR, Yudin MH, Murphy KE, Walmsley SL, Shah R, MacGillivray J, Silverman M, Serghides L (2015) HIV protease inhibitor use during pregnancy is associated with decreased progesterone levels, suggesting a potential mechanism contributing to fetal growth restriction. J Infect Dis 211:10–18

Article  CAS  PubMed  Google Scholar 

Park MN, Park KH, Lee JE, Shin YY, An SM, Kang SS, Cho WS, An BS, Kim SC (2018) The expression and activation of sex steroid receptors in the preeclamptic placenta. Int J Mol Med 41:2943–2951

CAS  PubMed  Google Scholar 

Pei J, Liu Z, Wang C, Chu N, Liu L, Tang Y, Liu H, Xiang Q, Cheng H, Li M, Gu W (2022) Progesterone attenuates SIRT1-deficiency-mediated pre-eclampsia. Biomol 12:422

CAS  Google Scholar 

Powis KM, Shapiro RL (2014) Protease inhibitors and adverse birth outcomes: is progesterone the missing piece to the puzzle? J Infect Dis 211:4–7

Article  PubMed  Google Scholar 

Pylypchuk I, Pylypchuk S (2021) Endocrine function of the placenta and its effect on pregnancy. International science conference on multidisciplinary research. Int Sci Group 1:464

Raghupathy R, Szekeres-Bartho J (2022) Progesterone: a unique hormone with immunomodulatory roles in pregnancy. Int J Mol Sci 23:1333

Article  CAS  PubMed  PubMed Central  Google Scholar 

Rana S, Lemoine E, Granger JP, Karumanchi SA (2019) Preeclampsia: pathophysiology, challenges, and perspectives. Circ Res 124:1094–1112

Article  CAS  PubMed  Google Scholar 

Rekawiecki R, Dobrzyn K, Kotwica J, Kowalik M (2020) Progesterone receptor coregulators as factors supporting the function of the corpus luteum in cows. Genes 11:923

Article  CAS  PubMed  PubMed Central  Google Scholar 

Roberts JM, Hubel CA (2009) The two stage model of preeclampsia: variations on the theme. Placenta 30:32–37

Article  Google Scholar 

Sankar KD, Bhanu PS, Ramalingam K, Kiran S, Ramakrishna BA (2013) Histomorphological and morphometrical changes of placental terminal villi of normotensive and preeclamptic mothers. Anat Cell Biol 46:285–290

Article  PubMed  PubMed Central  Google Scholar 

Scarpin KM, Graham JD, Mote PA, Clarke CL (2009) Progesterone action in human tissues: regulation by progesterone receptor (PR) isoform expression, nuclear positioning and coregulator expression. Nucl Recept Signal 7:9

Article  Google Scholar 

Sikhosana ML, Suchard M, Kuonza L, Cutland C, Slogrove A, Otwombe K, Motaze NV (2022) Association between preeclampsia and HIV: a case-control study in urban South Africa. AJOG Glob Rep 2:100056. https://doi.org/10.1016/j.xagr.2022.100056

Article  PubMed  PubMed Central  Google Scholar 

StatsSA (2017) Mortality and causes of death in South Africa: findings from death notification (P0309.3). https://www.statssa.gov.za/publications/P03093/P030932017.pdf. Accessed 25 May 2022

Steegers EA, Von Dadelszen P, Duvekot JJ, Pijnenborg R (2010) Pre-eclampsia. Lancet 376:631–644

Article  PubMed  Google Scholar 

Szekeres-Bartho J, Halasz M, Palkovics T (2009) Progesterone in pregnancy; receptor–ligand interaction and signaling pathways. J Reprod Immunol 83:60–64

Article  CAS  PubMed  Google Scholar 

Taraborrelli S (2015) Physiology, production and action of progesterone. Acta Obstet Gynecol Scand 94:8–16

Article  CAS  PubMed  Google Scholar 

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