参考文献

参考文献

[1] 殷为,钟梅.妊娠期高血压疾病的病因、预测及诊疗进展[J].实用医学杂志,2016,32(11):1887-1890.

[2] 苟文丽,薛艳.妊娠期高血压疾病国际指南与中国实践[J].中国实用妇科与产科杂志,2017,33(6):559-563.

[3] 杨孜.妊娠期高血压疾病在真实临床世界实践之辨析[J].中国实用妇科与产科杂志,2019,35(4):408-416.

[4] Redman C.The six stages of pre-eclampsia[J].Pregnancy hypertension,2014,4(3):246.

[5] 杨孜,张为远.《妊娠期高血压疾病诊治指南(2020)》解读[J].中华妇产科杂志,2020,55(6):425-432.

[6] Maltepe E,Fisher S J.Placenta:the forgotten organ[J].Annu Rev Cell Dev Biol,2015,31:523-552.

[7] Turco M Y,Moffett A.Development of the human placenta[J].Development,2019,146(22):dev163428.

[8] 王卉菲,郭宇婧,王敏,等.妊娠期高血压疾病胎盘浅着床的研究进展[J].国际妇产科学杂志,2020,47(2):165-168.

[9] Abbas Y,Turco M Y,Burton G J,et al.Investigation of human trophoblast invasion in vitro[J].Hum Reprod Update,2020,26(4):501-513.

[10] Pollheimer J,Vondra S,Baltayeva J,et al.Regulation of placental extravillous trophoblasts by the maternal uterine environment[J].Front Immunol,2018,9:2597.

[11] Sato Y.Endovascular trophoblast and spiral artery remodeling[J].Mol Cell Endocrinol,2020,503:110699.

[12] Staff A C.The two-stage placental model of preeclampsia:an update[J].J Reprod Immunol,2019,134-135:1-10.

[13] Schoots M H,Gordijn S J,Scherjon S A,et al.Oxidative stress in placental pathology[J].Placenta,2018,69:153-161.

[14] Soares M J,Iqbal K,Kozai K.Hypoxia and Placental Development[J].Birth Defects Res,2017,109(17):1309-1329.

[15] 张丹,孙大光,张璐,等.低氧诱导因子-3α对胎盘滋养层细胞生长的影响[J].生殖医学杂志,2021,30(4):507-515.

[16] Cheng S B,Nakashima A,Huber W J,et al.Pyroptosis is a critical inflammatory pathway in the placenta from early onset preeclampsia and in human trophoblasts exposed to hypoxia and endoplasmic reticulum stressors[J].Cell Death Dis,2019,10(12):927.

[17] Yu N,Wu J L,Xiao J,et al.HIF-1αregulates angiogenesis via Notch1/STAT3/ETBR pathway in trophoblastic cells[J].Cell Cycle,2019,18(24):3502-3512.

[18] 秦喆,侯海燕,史海霞,等.MMP-2和MMP-9参与多种因素对胎盘滋养细胞侵袭力的调控[J].国际妇产科学杂志,2017,44(3):350-355.

[19] 李介岩,张为远,王欣,等.硫酸镁应用对妊娠期高血压疾病患者胎盘中基质金属蛋白酶-9和水通道蛋白-9表达的影响[J].中华医学杂志,2016,96(30):2421-2423.

[20] Yeung K R,Chiu C L,Pidsley R,et al.DNA methylation profiles in preeclampsia and healthy control placentas[J].Am J Physiol Heart Circ Physiol,2016,310(10):H1295-H1303.

[21] 田天,王腾,程琰,等.基因在子痫前期中的DNA甲基化[J].中华围产医学杂志,2020,23(6):420-426.

[22] 姜波玲.胎盘DNA甲基化的研究进展[J].中国优生与遗传杂志,2015,23(5):4-6+23.

[23] Knöfler M,Haider S,Saleh L,et al.Human placenta and trophoblast development:key molecular mechanisms and model systems[J].Cell Mol Life Sci,2019,76(18):3479-3496.

[24] Zhao L,Sun L F,Zheng X L,et al.[In vitro fertilization-embryo transfer affects focal adhension kinase signaling pathway in early placenta][J].Beijing Da Xue Xue Bao Yi Xue Ban,2019,51(1):151-158.

[25] Ives C W,Sinkey R,Rajapreyar I,et al.Preeclampsia-pathophysiology and clinical presentations:JACC state-of-the-art review[J].J Am Coll Cardiol,2020,76(14):1690-1702.

[26] 程惠,周曙光.PLGF、IL-6与妊娠期高血压病情程度及母婴结局的相关性[J].分子诊断与治疗杂志,2020,12(5):674-677.

[27] 梁玉贞,刘杰.妊娠期高血压患者血清VEGF、IL-18、MCP-1水平及与血液流变学指标关系[J].中国计划生育学杂志,2020,28(1):60-63.

[28] Possomato-Vieira J S,Khalil R A.Mechanisms of dndothelial dysfunction in hypertensive pregnancy and preeclampsia[J].Adv Pharmacol,2016,77:361-431.

[29] Tomimatsu T,Mimura K,Matsuzaki S,et al.Preeclampsia:maternal systemic vascular disorder caused by generalized endothelial dysfunction due to placental antiangiogenic factors[J].Int J Mol Sci,2019,20(17):4246.

[30] Hao N,Chiou T T,Wu C H,et al.Longitudinal changes of PAI-1,MMP-2,and VEGF in peritoneal effluents and their associations with peritoneal small-solute transfer rate in new peritoneal dialysis patients[J].Biomed Res Int,2019,2019:2152584.

[31] Ritter A,Roth S,Kreis N N,et al.Primary cilia in trophoblastic cells:potential involvement in preeclampsia[J].Hypertension,2020,76(5):1491-1505.

[32] Chau K,Hennessy A,Makris A.Placental growth factor and pre-eclampsia[J].J Hum Hypertens,2017,31(12):782-786.

[33] Parchem J G,Kanasaki K,Kanasaki M,et al.Loss of placental growth factor ameliorates maternal hypertension and preeclampsia in mice[J].J Clin Invest,2018,128(11):5008-5017.

[34] Rana S,Lemoine E,Granger J P,et al.Preeclampsia:pathophysiology,challenges,and perspectives[J].Circ Res,2019,124(7):1094-1112.

[35] Stepan H,Hund M,Andraczek T.Combining biomarkers to predict pregnancy complications and redefine preeclampsia:the angiogenic-placental syndrome[J].Hypertension,2020,75(4):918-926.

[36] Kosinska-Kaczynska K,Zgliczynska M,Kozlowski S,et al.Maternal serum placental growth factor,soluble fms-like tyrosine kinase-1,and soluble endoglin in twin gestations and the risk of preeclampsia-a systematic review[J].J Clin Med,2020,9(1):183.

[37] Pérez-Roque L,Núñez-Gómez E,Rodríguez-Barbero A,et al.Pregnancy-induced high plasma levels of soluble endoglin in mice lead to preeclampsia symptoms and placental abnormalities[J].Int J Mol Sci,2020,22(1):165.

[38] Oujo B,Perez-Barriocanal F,Bernabeu C,et al.Membrane and soluble forms of endoglin in preeclampsia[J].Curr Mol Med,2013,13(8):1345-1357.

[39] Phipps E,Prasanna D,Brima W,et al.Preeclampsia:updates in pathogenesis,definitions,and guidelines[J].Clin J Am Soc Nephrol,2016,11(6):1102-1113.

[40] Rocha-Penha L,Caldeira-Dias M,Tanus-Santos J E,et al.Myeloperoxidase in hypertensive disorders of pregnancy and its relation with nitric oxide[J].Hypertension,2017,69(6):1173-1180.

[41] Zullino S,Buzzella F,Simoncini T.Nitric oxide and the biology of pregnancy[J].Vascul Pharmacol,2018,110:71-74.

[42] Furuya K,Kumasawa K,Nakamura H,et al.Endothelin-1 profiles in advanced maternal age complicated with hypertensive disorders of pregnancy[J].Biochem Biophys Res Commun,2019,516(3):941-944.

[43] Granger J P,Spradley F T,Bakrania B A.The endothelin system:a critical player in the pathophysiology of preeclampsia[J].Curr Hypertens Rep,2018,20(4):32.

[44] Hitzerd E,Neuman R I,Broekhuizen M,et al.Transfer and vascular effect of endothelin receptor antagonists in the human placenta[J].Hypertension,2020,75(3):877-884.

[45] McCormick A,Kristianto J,Wang X,et al.Placental endothelin-converting enzyme-1 is decreased in preeclampsia[J].Pregnancy hypertension,2020,20:108-110.

[46] Sibai B,Dekker G,Kupferminc M.Pre-eclampsia[J].Lancet,2005,365(9461):785-799.

[47] Rambaldi M P,Weiner E,Mecacci F,et al.Immunomodulation and preeclampsia[J].Best Pract Res Clin Obstet Gynaecol,2019,60:87-96.

[48] Guney G,Taskin M I,Tokmak A.Increase of circulating inflammatory molecules in preeclampsia,an update[J].Eur Cytokine Netw,2020,31(1):18-31.

[49] Hahn S,Hasler P,Vokalova L,et al.Feto-maternal microchimerism:the pre-eclampsia conundrum[J].Front Immunol,2019,10:659.

[50] Vishnyakova P,Elchaninov A,Fatkhudinov T,et al.Role of the Monocyte-macrophage system in normal pregnancy and preeclampsia[J].Int J Mol Sci,2019,20(15):3695.

[51] 金妮,芦洁,王明,等.蜕膜自然杀伤细胞对孕早期母胎界面免疫微环境的影响[J].中国计划生育和妇产科,2021,13(7):42-45.

[52] Goldman-Wohl D,Yagel S.NK cells and pre-eclampsia[J].Reprod Biomed Online,2008,16(2):227-231.

[53] Zhou J,Xiao X M,Wu Y H.Expression of interferon-γin decidual natural killer cells from women with hypertensive disorder complicating pregnancy[J].J Obstet Gynaecol Res,2014,40(3):670-676.

[54] Xu X,Zhou Y,Wei H.Roles of HLA-G in the maternal-fetal immune microenvironment[J].Front Immunol,2020,11:592010.

[55] Yang X,Yang Y,Yuan Y,et al.The roles of uterine natural killer(NK)cells and KIR/HLA-C combination in the development of preeclampsia:a systematic review[J].Biomed Res Int,2020,2020:4808072.

[56] 周静,欧荣英,周美茜,等.妊娠期高血压胎盘组织HLA-Ⅰ类分子的表达意义及其与妊娠结局的关系[J].中华全科医学,2018,16(10):1670-1673+1698.

[57] 谢莹莺,赵海宁,谢诗璇,等.青海高原地区胎儿生长受限患者胎盘组织人类白细胞相关抗原G表达的研究[J].实用妇产科杂志,2016,32(6):469-471.

[58] Kulski J K,Shiina T,Dijkstra J M.Genomic diversity of the major histocompatibility complex in health and disease[J].Cells,2019,8(10):1270.

[59] PapúchováH,Meissner T B,Li Q,et al.The dual role of HLA-C in tolerance and immunity at the maternal-fetal interface[J].Front Immunol,2019,10:2730.

[60] Turco M Y,Gardner L,Kay R G,et al.Trophoblast organoids as a model for maternalfetal interactions during human placentation[J].Nature,2018,564(7735):263-267.

[61] 徐冰凝,赫英东,陈倩.补体系统在子痫前期发病中的作用[J].现代妇产科进展,2015,24(8):628-630+633.

[62] 赫英东,陈倩.补体系统检测在妊娠期高血压性疾病诊治中的临床价值[J].中华检验医学杂志,2017,40(9):667-671.

[63] TeiriläL,Heikkinen-Eloranta J,Kotimaa J,et al.Regulation of the complement system and immunological tolerance in pregnancy[J].Semin Immunol,2019,45:101337.

[64] Chighizola C B,Lonati P A,Trespidi L,et al.The complement system in the pathophysiology of pregnancy and in systemic autoimmune rheumatic diseases during pregnancy[J].Front Immunol,2020,11:2084.

[65] Redman C W,Sargent I L.Preeclampsia and the systemic inflammatory response[J].Semin Nephrol,2004,24(6):565-570.

[66] Balk R A.Systemic inflammatory response syndrome(SIRS):where did it come from and is it still relevant today?[J].Virulence,2014,5(1):20-26.

[67] Pathak A,Agrawal A.Evolution of C-Reactive protein[J].Front Immunol,2019,10:943.

[68] Paternoster D M,Fantinato S,Stella A,et al.C-reactive protein in hypertensive disorders in pregnancy[J].Clin Appl Thromb Hemost,2006,12(3):330-337.

[69] Bellos I,Karageorgiou V,Kapnias D,et al.The role of interleukins in preeclampsia:a comprehensive review[J].Am J Reprod Immunol,2018,80(6):e13055.

[70] Chatterjee P,Chiasson V L,Bounds K R,et al.Regulation of the anti-inflammatory cytokines interleukin-4 and interleukin-10 during pregnancy[J].Front Immunol,2014,5:253.

[71] Li Y,Wang Y,Ding X,et al.Serum levels of TNF-αand IL-6 are associated with pregnancy-induced hypertension[J].Reprod Sci,2016,23(10):1402-1408.

[72] Duncan J W,Younes S T,Hildebrandt E,et al.Tumor necrosis factor-αimpairs cerebral blood flow in pregnant rats:role of vascularβ-epithelial Na+channel[J].Am J Physiol Heart Circ Physiol,2020,318(4):H1018-H1027.

[73] Agius A,Sultana R,Camenzuli C,et al.An update on the genetics of pre-eclampsia[J].Minerva Ginecol,2018,70(4):465-479.

[74] Yong H E J,Murthi P,Brennecke S P,et al.Genetic approaches in preeclampsia[J].Methods Mol Biol,2018,1710:53-72.

[75] Parchem J G,Kanasaki K,Lee S B,et al.STOX1 deficiency is associated with reninmediated gestational hypertension and placental defects[J].JCI Insight,2021,6(2):e141588.

[76] Maduro M R.Epigenetic role in hypertensive disorders of pregnancy[J].Reprod Sci,2017,24(11):1481.

[77] Demura M,Saijoh K.The role of DNA methylation in hypertension[J].Adv Exp Med Biol,2017,956:583-598.

[78] Majchrzak-Celińska A,Kosicka K,Paczkowska J,et al.HSD11B2,RUNX3,and LINE-1 methylation in placental DNA of hypertensive disorders of pregnancy patients[J].Reprod Sci,2017,24(11):1520-1531.

[79] Kazmi N,Sharp G C,Reese S E,et al.Hypertensive disorders of pregnancy and DNA methylation in newborns[J].Hypertension,2019,74(2):375-383.

[80] Tucci V,Isles A R,Kelsey G,et al.Genomic imprinting and physiological processes in mammals[J].Cell,2019,176(5):952-965.

[81] Lambertini L.Genomic imprinting:sensing the environment and driving the fetal growth[J].Curr Opin Pediatr,2014,26(2):237-242.

[82] Cech T R,Steitz J A.The noncoding RNA revolution-trashing old rules to forge new ones[J].Cell,2014,157(1):77-94.

[83] Skalis G,Katsi V,Miliou A,et al.Micro RNAs in Preeclampsia[J].Microrna,2019,8(1):28-35.

[84] Lv Y,Lu C,Ji X,et al.Roles of microRNAs in preeclampsia[J].J Cell Physiol,2019,234(2):1052-1061.

[85] Hay W W,Jr.Placental-fetal glucose exchange and fetal glucose metabolism[J].Trans Am Clin Climatol Assoc,2006,117:321-339;discussion 339-340.

[86] Stanirowski P J,Szukiewicz D,Pyzlak M,et al.Impact of pre-gestational and gestational diabetes mellitus on the expression of glucose transporters GLUT-1,GLUT-4 and GLUT-9 in human term placenta[J].Endocrine,2017,55(3):799-808.

[87] Janzen C,Lei M Y,Cho J,et al.Placental glucose transporter 3(GLUT3)is upregulated in human pregnancies complicated by late-onset intrauterine growth restriction[J].Placenta,2013,34(11):1072-1078.

[88] Duttaroy A K,Basak S.Maternal dietary fatty acids and their roles in human placental development[J].Prostaglandins Leukot Essent Fatty Acids,2020,155:102080.

[89] Fenzl V,Flegar-Meštric′Z,Perkov S,et al.Trace elements and oxidative stress in hypertensive disorders of pregnancy[J].Arch Gynecol Obstet,2013,287(1):19-24.

[90] Kontic-Vucinic O,Terzic M,Radunovic N.The role of antioxidant vitamins in hypertensive disorders of pregnancy[J].J Perinat Med,2008,36(4):282-290.

[91] Hofmeyr G J,Manyame S,Medley N,et al.Calcium supplementation commencing before or early in pregnancy,for preventing hypertensive disorders of pregnancy[J].Cochrane Database Syst Rev,2019,9(9):Cd011192.

[92] 中华医学会心血管病学分会女性心脏健康学组,中华医学会心血管病学分会高血压学组.妊娠期高血压疾病血压管理专家共识(2019)[J].中华心血管病杂志,2020,48(3):195-204.

[93] 中华医学会妇产科学分会妊娠期高血压疾病学组.妊娠期高血压疾病诊治指南(2020)[J].中华妇产科杂志,2020,55(4):227-238.