Altesha MA, Ni T, Khan A, Liu K, Zheng X (2019) Circular RNA in cardiovascular disease. J Cell Physiol 234:5588–5600
Article CAS PubMed Google Scholar
Burton GJ, Redman CW, Roberts JM, Moffett A (2019) Pre-eclampsia: pathophysiology and clinical implications. BMJ 366:l2381
Chen L, Shan G (2021) CircRNA in cancer: Fundamental mechanism and clinical potential. Cancer Lett 505:49–57
Article CAS PubMed Google Scholar
Chen LL, Yang L (2015) Regulation of circRNA biogenesis. RNA Biol 12:381–388
Article PubMed PubMed Central Google Scholar
Chen M, Chao B, Xu J, Liu Z, Tao Y, He J, Wang J, Yang H, Luo X, Qi H (2023) CPT1A modulates PI3K/Akt/mTOR pathway to promote preeclampsia. Placenta 133:23–31
Cheng Q, Wang J, Li M, Fang J, Ding H, Meng J, Zhang J, Fang X, Liu H, Ma C, Chen C, Zhang W (2022) CircSV2b participates in oxidative stress regulation through miR-5107-5p-Foxk1-Akt1 axis in Parkinson’s disease. Redox Biol 56:102430
Article CAS PubMed PubMed Central Google Scholar
Croke L (2019) Gestational Hypertension and Preeclampsia: A Practice Bulletin from ACOG. Am Fam Physician 100:649–650
Faas MM, Schuiling GA, Baller JF, Visscher CA, Bakker WW (1994) A new animal model for human preeclampsia: ultra-low-dose endotoxin infusion in pregnant rats. Am J Obstet Gynecol 171:158–164
Article CAS PubMed Google Scholar
Gan H, Lei Y, Yuan N, Tang K, Hao W, Ma Q, Wu M, Zhou X, Li X, Huang J, Deng L, Chen J (2021) Circular RNAs in depression: Biogenesis, function, expression, and therapeutic potential. Biomed Pharmacother 137:111244
Article CAS PubMed Google Scholar
Gathiram P, Moodley J (2016) Pre-eclampsia: its pathogenesis and pathophysiolgy. Cardiovasc J Afr 27:71–78
Article CAS PubMed PubMed Central Google Scholar
Goldenberg RL, Culhane JF, Iams JD, Romero R (2008) Epidemiology and causes of preterm birth. Lancet 371:75–84
Article PubMed PubMed Central Google Scholar
Han B, Chao J, Yao H (2018) Circular RNA and its mechanisms in disease: From the bench to the clinic. Pharmacol Ther 187:31–44
Article CAS PubMed Google Scholar
Hu B, Li H, Zhang X (2021) A Balanced Act: The Effects of GH-GHR-IGF1 Axis on Mitochondrial Function. Front Cell Dev Biol 9:630248
Article PubMed PubMed Central Google Scholar
Hu B, Zhao C, Pan X, Wei H, Mo G, Xian M, Luo W, Nie Q, Li H, Zhang X (2023) Local GHR roles in regulation of mitochondrial function through mitochondrial biogenesis during myoblast differentiation. Cell Commun Signal 21:148
Article CAS PubMed PubMed Central Google Scholar
Huppertz B (2008) Placental origins of preeclampsia: challenging the current hypothesis. Hypertension 51:970–975
Article CAS PubMed Google Scholar
Huppertz B (2018) The Critical Role of Abnormal Trophoblast Development in the Etiology of Preeclampsia. Curr Pharm Biotechnol 19:771–780
Article CAS PubMed PubMed Central Google Scholar
Jeck WR, Sharpless NE (2014) Detecting and characterizing circular RNAs. Nat Biotechnol 32:453–461
Article CAS PubMed PubMed Central Google Scholar
Jim B, Karumanchi SA (2017) Preeclampsia: Pathogenesis, Prevention, and Long-Term Complications. Semin Nephrol 37:386–397
Article CAS PubMed Google Scholar
Kang Q, Zhang J, Xie C, Fang S, Chai W (2024) Circular RNA SLC8A1 triggers hippocampal neuronal ferroptosis by regulating FUS-mediated ATF3 mRNA stability in epilepsy. Exp Cell Res 434:113848
Article CAS PubMed Google Scholar
Knofler M, Haider S, Saleh L, Pollheimer J, Gamage T, James J (2019) Human placenta and trophoblast development: key molecular mechanisms and model systems. Cell Mol Life Sci 76:3479–3496
Article PubMed PubMed Central Google Scholar
Kopchick JJ, Andry JM (2000) Growth hormone (GH), GH receptor, and signal transduction. Mol Genet Metab 71:293–314
Article CAS PubMed Google Scholar
Levine RJ, Maynard SE, Qian C, Lim KH, England LJ, Yu KF, Schisterman EF, Thadhani R, Sachs BP, Epstein FH, Sibai BM, Sukhatme VP, Karumanchi SA (2004) Circulating angiogenic factors and the risk of preeclampsia. N Engl J Med 350:672–683
Article CAS PubMed Google Scholar
Li Y, Sun XL, Ma CL, Li C, Zhan Y, Li WT, Li C, Wang YH (2021) STX2 Promotes Trophoblast Growth, Migration, and Invasion Through Activation of the PI3K-AKT Pathway in Preeclampsia. Front Cell Dev Biol 9:615973
Article PubMed PubMed Central Google Scholar
Liu J, Zhao J, Feng G, Li R, Jiao J (2022) Silencing of circ-CDK14 suppresses osteosarcoma progression through the miR-198/E2F2 axis. Exp Cell Res 414:113082
Article CAS PubMed Google Scholar
Liu H, Yu L, Ding Y, Peng M, Deng Y (2023) Progesterone Enhances the Invasion of Trophoblast Cells by Activating PI3K/AKT Signaling Pathway to Prevent Preeclampsia. Cell Transplant 32:9636897221145682
Ma B, Zhao H, Gong L, Xiao X, Zhou Q, Lu H, Cui Y, Xu H, Wu S, Tang Y, Ye Y, Gu W, Li X (2021) Differentially expressed circular RNAs and the competing endogenous RNA network associated with preeclampsia. Placenta 103:232–241
Article CAS PubMed Google Scholar
Ma C, Shi ZH, Han XY, Liu C, Yan B, Du JL (2022) Targeting circRNA-MAP4K2 for the treatment of diabetes-induced retinal vascular dysfunction. Aging (Albany NY) 14:6255–6268
Article CAS PubMed Google Scholar
MacDonald TM, Walker SP, Hannan NJ, Tong S, Kaitu’u-Lino TJ (2022) Clinical tools and biomarkers to predict preeclampsia. EBioMedicine 75:103780
Article CAS PubMed Google Scholar
Maruhashi T, Kinoshita Y, Kajikawa M, Kishimoto S, Matsui S, Hashimoto H, Takaeko Y, Aibara Y, Yusoff FM, Hidaka T, Chayama K, Noma K, Nakashima A, Goto C, Takahashi M, Kihara Y, Higashi Y, Hiroshima NRG (2019) Relationship between home blood pressure and vascular function in patients receiving antihypertensive drug treatment. Hypertens Res 42:1175–1185
Moller N, Jorgensen JO (2009) Effects of growth hormone on glucose, lipid, and protein metabolism in human subjects. Endocr Rev 30:152–177
Nunez-Olvera SI, Chavez-Munguia B, Del Rocio Terrones-Gurrola MC, Marchat LA, Puente-Rivera J, Ruiz-Garcia E, Campos-Parra AD, Vazquez-Calzada C, Lizarraga-Verdugo ER, Ramos-Payan R, Salinas-Vera YM, Lopez-Camarillo C (2020) A novel protective role for microRNA-3135b in Golgi apparatus fragmentation induced by chemotherapy via GOLPH3/AKT1/mTOR axis in colorectal cancer cells. Sci Rep 10:10555
Article CAS PubMed PubMed Central Google Scholar
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