Laboratory Animal and Comparative Medicine ›› 2016, Vol. 36 ›› Issue (6): 466-472.DOI: 10.3969/j.issn.1674-5817.2016.06.013
Previous Articles Next Articles
LI Dong-dong, ZHU Min, PANG Qin-xia, Ding Pei-fang
Received:
2016-08-08
Online:
2016-12-25
Published:
2016-12-25
CLC Number:
LI Dong-dong, ZHU Min, PANG Qin-xia, Ding Pei-fang. Preparation of Pre-eclampsia Animal Model[J]. Laboratory Animal and Comparative Medicine, 2016, 36(6): 466-472.
[1] Mustafa R, Ahmed S, Gupta A, et al.A comprehensive review of hypertension in pregnancy[J]. J Pregnancy, 2012, 2012: 105918. [2] Garovic VD, August P.Preeclampsia and the future risk of hypertension: the pregnant evidence[J]. Curr Hypertens Rep, 2013, 15(2):114-121. [3] 刘翔, 任红旗. 先兆子痫肾损害发病机制的研究进展[J]. 中华临床医师杂志(电子版), 2015(13):2577-2582. [4] Das UN.Cytokines, angiogenic, and antiangiogenic factors and bioactive lipids in preeclampsia[J]. Nutrition, 2015, 31(9): 1083-1095. [5] Falcao S, Bisotto S, Gutkowska J, et al. Hyperhomocysteinemia is not sufficient to cause preeclampsia in an animal model: the importance of folate intake[J]. Am J Obstet Gynecol, 2009, 200(2):198.e1-5. [6] Kasawara KT, Surita FG, Pinto ESJL.Translational studies for exercise in high-risk pregnancy: Pre-eclampsia model[J]. Hypertens Pregnancy, 2016, 35(3):265-279. [7] Kanayama N, Tsujimura R, She L, et al.Cold-induced stress stimulates the sympathetic nervous system, causing hypertension and proteinuria in rats[J]. J Hypertens, 1997, 15(4): 383-389. [8] 俞丽丽, 李力, 陈鸣, 等. 寒冷刺激诱发孕鼠妊娠高血压综合征动物模型研究[J]. 第三军医大学学报, 2001, 23(4): 419-421. [9] 刘远芳, 张红. 黄芪皂苷甲对妊娠高血压大鼠模型的治疗作用及其对胎盘中血管内皮生长因子表达的影响[J]. 中国妇幼保健, 2013, 28(26):4361-4362. [10] Faas MM, Schuiling GA, Baller JF, et al.A new animal model for human preeclampsia: ultra-low-dose endotoxin infusion in pregnant rats[J]. Am J Obstet Gynecol, 1994, 171(1): 158-164. [11] Wang LL, Yu Y, Guan HB, et al.Effect of human umbilical cord mesenchymal stem cell transplantation in a rat model of preeclampsia[J]. Reprod Sci, 2016, 23(8):1058-1070. [12] Hu BH, Yang JY, Huang Q, et al.Cyclosporin A significantly improves preeclampsia signs and suppresses inflammation in a rat model[J]. Cytokine, 2016, 81:77-81. [13] Fu L, Liu Y, Zhang D, et al.Beneficial effect of human umbilical cord-derived mesenchymal stem cells on an endotoxin-induced rat model of preeclampsia[J]. Exp Ther Med, 2015, 10(5):1851-1856. [14] 王志坚, 余艳红. 抗细胞间黏附分子-1单克隆抗体对大鼠子痫前期的治疗作用[J]. 现代妇产科进展, 2007, 16(9): 661-663. [15] Hawfield A, Freedman BI.Pre-eclampsia: the pivotal role of the placenta in its pathophysiology and markers for early detection[J]. Ther Adv Cardiovasc Dis, 2009, 3(1):65-73. [16] Faas MM, Broekema M, Moes H, et al.Altered monocyte function in experimental preeclampsia in the rat[J]. Am J Obstet Gynecol, 2004, 191(4):1192-1198. [17] 王忠民, 王波, 叶萍, 等. 精氨酸对大鼠妊娠高征的治疗作用及其机制的探讨[J]. 上海实验动物科学, 2003, 23(3): 148-150. [18] Alexander BT, Llinas MT, Kruckeberg WC, et al.L-arginine attenuates hypertension in pregnant rats with reduced uterine perfusion pressure[J]. Hypertension, 2004, 43(4):832-836. [19] 金娅, 孙成娟, 张为远. AKR1C3对子痫前期大鼠肾损伤的影响[J]. 中华医学杂志, 2015, 95(1):30-33. [20] Shi X, Chen P, Liu H, et al.Decitabine improves the clinical manifestations of rats with l-NAME-induced pre-eclampsia: a potential approach to studying pre-eclampsia[J]. Hypertens Pregnancy, 2015, 34(4):464-473. [21] 卢敏, 龚护民, 施蕾, 等. 大鼠子痫前期动物模型的建立[J]. 海南医学, 2012, 23(16):21-23. [22] Li H, Ohta H, Tahara Y, et al.Artificial oxygen carriers rescue placental hypoxia and improve fetal development in the rat pre-eclampsia model[J]. Sci Rep, 2015, 5:15271. [23] Liu Q, Yang J.Expression and significance of miR155 and vascular endothelial growth factor in placenta of rats with preeclampsia[J]. Int J Clin Exp Med, 2015, 8(9):15731-15737. [24] Jiang Z, Zou Y, Ge Z, et al.A role of sFlt-1 in oxidative stress and apoptosis in human and mouse pre-eclamptic trophoblasts[J]. Biol Reprod, 2015, 93(3):73. [25] Bridges JP, Gilbert JS, Colson D, et al.Oxidative stress contributes to soluble fms-like tyrosine kinase-1 induced vascular dysfunction in pregnant rats[J]. Am J Hypertens, 2009, 22(5):564-568. [26] Grujic I, Milasinovic L.Hypertension, pre-eclampsia and eclampsia-monitoring and outcome of pregnancy[J]. Med Pregl, 2006, 59(11-12):556-559. [27] Neerhof MG, Synowiec S, Khan S, et al.Impact of endothelin A receptor antagonist selectivity in chronic nitric oxide synthase inhibition-induced fetal growth restriction in the rat[J]. Hypertens Pregnancy, 2010, 29(3):284-293. [28] Pedrycz A, Wieczorski M, Czerny K.Secondary preeclampsia in rats with nephrotic syndrome-experimental model[J]. Reprod Toxicol, 2005, 19(4):493-500. [29] Yousif MH, Adeagbo AS, Kadavil EA, et al.Acetylcholine-induced vasodilation in the uterine vascular bed of pregnant rats with adriamycin-induced nephrosis[J]. Med Princ Pract, 2002, 11(2):57-64. [30] Podjarny E, Losonczy G, Baylis C.Animal models of preeclampsia[J]. Semin Nephrol, 2004, 24(6):596-606. [31] Podjarny E, Baylis C, Losonczy G.Animal models of preeclampsia[J]. Semin Perinatol, 1999, 23(1):2-13. [32] Omatsu K, Kobayashi T, Murakami Y, et al.Phosphatidylserine/phosphatidylcholine microvesicles can induce preeclampsia-like changes in pregnant mice[J]. Semin Thromb Hemost, 2005, 31(3):314-320. [33] 郝莎, 李鹏飞, 李若天, 等. 子痫前期小鼠动物模型的NK细胞和细胞因子的变化[J]. 中国免疫学杂志, 2009, 25(8): 708-712. [34] 张焱, 胡娅莉, 孟奎, 等. 胎盘广泛性微血栓在子痫前期发病中的作用一种新的子痫前期动物模型评价[J]. 现代妇产科进展, 2007, 16(9):679-683. [35] 张焱, 胡娅莉, 华子春, 等. 肝素钠和低分子肝素钙对子痫前期模型小鼠抗凝治疗的效果[J]. 中华围产医学杂志, 2015, 18(2):123-126. [36] Dai SJ, Liang DD, Ren Y, et al.New neo-clerodane diterpenoid alkaloids from Scutellaria barbata with cytotoxic activities[J]. Chem Pharm Bull (Tokyo), 2008, 56(2):207-209. [37] Dai SJ, Peng WB, Shen L, et al.Two new neo-clerodane diterpenoid alkaloids from Scutellaria barbata with cytotoxic activities[J]. J Asian Nat Prod Res, 2009, 11(5):451-456. [38] 徐鑫, 杨星宇, 何碧薇, 等. TLR9激动剂诱导建立小鼠子痫前期动物模型的研究[J]. 现代妇产科进展, 2015, 24(4): 266-272. [39] Gadonski G, LaMarca BB, Sullivan E, et al. Hypertension produced by reductions in uterine perfusion in the pregnant rat: role of interleukin 6[J]. Hypertension, 2006, 48(4):711-716. [40] Lamarca B, Speed J, Ray LF, et al.Hypertension in response to IL-6 during pregnancy: role of AT1-receptor activation[J]. Int J Interferon Cytokine Mediat Res, 2011, 2011(3): 65-70. [41] Gilbert JS, Ryan MJ, LaMarca BB, et al. Pathophysiology of hypertension during preeclampsia: linking placental ischemia with endothelial dysfunction[J]. Am J Physiol Heart Circ Physiol, 2008, 294(2):H541-550. [42] LaMarca BB, Bennett WA, Alexander BT, et al. Hypertension produced by reductions in uterine perfusion in the pregnant rat: role of tumor necrosis factor-alpha[J]. Hypertension, 2005, 46(4):1022-1025. [43] LaMarca B, Wallukat G, Llinas M, et al. Autoantibodies to the angiotensin type I receptor in response to placental ischemia and tumor necrosis factor alpha in pregnant rats[J]. Hypertension, 2008, 52(6):1168-1172. [44] Bobek G, Surmon L, Mirabito KM, et al.Placental Regulation of Inflammation and Hypoxia after TNF-alpha Infusion in Mice[J]. Am J Reprod Immunol, 2015, 74(5):407-418. [45] Conrad KP, Benyo DF.Placental cytokines and the pathogenesis of preeclampsia[J]. Am J Reprod Immunol, 1997, 37(3): 240-249. [46] Benyo DF, Smarason A, Redman CW, et al.Expression of inflammatory cytokines in placentas from women with preeclampsia[J]. J Clin Endocrinol Metab, 2001, 86(6):2505-2512. [47] Xia Y, Ramin SM, Kellems RE.Potential roles of angiotensin receptor-activating autoantibody in the pathophysiology of preeclampsia[J]. Hypertension, 2007, 50(2):269-275. [48] Dechend R, Homuth V, Wallukat G, et al.Agonistic antibodies directed at the angiotensin II, AT1 receptor in preeclampsia[J]. J Soc Gynecol Investig, 2006, 13(2):79-86. [49] Dhillion P, Wallace K, Herse F, et al.IL-17-mediated oxidative stress is an important stimulator of AT1-AA and hypertension during pregnancy[J]. Am J Physiol Regul Integr Comp Physiol, 2012, 303(4):R353-358. [50] Winship AL, Koga K, Menkhorst E, et al.Interleukin-11 alters placentation and causes preeclampsia features in mice[J]. Proc Natl Acad Sci U S A, 2015, 112(52):15928-15933. [51] Lim R, Adhikari S, Gurusinghe S, et al.Inhibition of activin A signalling in a mouse model of pre-eclampsia[J]. Placenta, 2015, 36(8):926-931. [52] Zhang D, Liu H, Zeng J, et al.Glucocorticoid exposure in early placentation induces preeclampsia in rats via interfering trophoblast development[J]. Gen Comp Endocrinol, 2016, 225: 61-70. [53] Laszlo KD, Liu XQ, Svensson T, et al.Psychosocial stress related to the loss of a close relative the year before or during pregnancy and risk of preeclampsia[J]. Hypertension, 2013, 62(1):183-189. [54] Ogden E, Hildebrand GJ, Page EW.Rise of blood pressure during ischemia of the gravid uterus[J]. Exp Biol Med, 1940, 43:49-51. [55] Hodari AA.Chronic uterine ischemia and reversible experimental "toxemia of pregnancy"[J]. Am J Obstet Gynecol, 1967, 97(5):597-607. [56] Abitbol MM, Pirani CL, Ober WB, et al.Production of experimental toxemia in the pregnant dog[J]. Obstet Gynecol, 1976, 48(5):537-548. [57] Losonczy G, Brown G, Venuto RC.Increased peripheral resistance during reduced uterine perfusion pressure hypertension in pregnant rabbits[J]. Am J Med Sci, 1992, 303(4): 233-240. [58] Woods LL, Brooks VL.Role of the renin-angiotensin system in hypertension during reduced uteroplacental perfusion pressure[J]. Am J Physiol, 1989, 257(1 Pt 2):R204-209. [59] Abitbol MM.A simplified technique to produce toxemia in the pregnant dog[J]. Am J Obstet Gynecol, 1981, 139(5): 526-534. [60] Combs CA, Katz MA, Kitzmiller JL, et al.Experimental preeclampsia produced by chronic constriction of the lower aorta: validation with longitudinal blood pressure measurements in conscious rhesus monkeys[J]. Am J Obstet Gynecol, 1993, 169(1):215-223. [61] Cavanagh D, Rao PS, Tsai CC, et al.Experimental toxemia in the pregnant primate[J]. Am J Obstet Gynecol, 1977, 128(1):75-85. [62] Ke C.[Reconstruction of the urethra with a transposed pedicle skin-tube from the labium majus][J]. Zhonghua Wai Ke Za Zhi, 1983, 21(6):364. [63] Bauer AJ, Banek CT, Needham K, et al.Pravastatin attenuates hypertension, oxidative stress, and angiogenic imbalance in rat model of placental ischemia-induced hypertension[J]. Hypertension, 2013, 61(5):1103-1110. [64] Alexander BT, Kassab SE, Miller MT, et al.Reduced uterine perfusion pressure during pregnancy in the rat is associated with increases in arterial pressure and changes in renal nitric oxide[J]. Hypertension, 2001, 37(4):1191-1195. [65] 周晶, 严国锋, 罗章源, 等. 子痫前期大鼠模型建立及相关指标监测[J]. 实验动物与比较医学, 2015, 35(6):448-452. [66] Spradley FT, Tan AY, Joo WS, et al.Placental growth factor administration abolishes placental ischemia-induced hypertension[J]. Hypertension, 2016, 67(4):740-747. [67] Fraser GM, Morton JS, Schmidt SM, et al.Reduced uterine perfusion pressure decreases functional capillary density in skeletal muscle[J]. Am J Physiol Heart Circ Physiol, 2015, 309(12):H2002-2007. [68] 李怡琳. 合体滋养细胞微绒毛膜制备子痫前期动物模型的研究[D]. 重庆: 第三军医大学, 2013. [69] 刘晓洁. 合体滋养细胞微绒毛膜在子痫前期发病中作用的研究[D]. 重庆:第三军医大学, 2014. [70] Tal R, Shaish A, Barshack I, et al.Effects of hypoxia-inducible factor-1alpha overexpression in pregnant mice: possible implications for preeclampsia and intrauterine growth restriction[J]. Am J Pathol, 2010, 177(6):2950-2962. [71] Haase N, Golic M, Herse F, et al.Relaxin treatment in an ang-II-based transgenic preeclamptic-rat model[J]. PLoS One, 2016, 11(3):e0150743. [72] Kanasaki K, Palmsten K, Sugimoto H, et al.Deficiency in catechol-O-methyltransferase and 2-methoxyoestradiol is associated with pre-eclampsia[J]. Nature, 2008, 453(7198): 1117-1121. [73] Stanley JL, Sulek K, Andersson IJ, et al.Sildenafil therapy normalizes the aberrant metabolomic profile in the Comt(-/-) mouse model of preeclampsia/fetal growth restriction[J]. Sci Rep, 2015, 5:18241. [74] Mao L, Zhou Q, Zhou S, et al.Roles of apolipoprotein E (ApoE) and inducible nitric oxide synthase (iNOS) in inflammation and apoptosis in preeclampsia pathogenesis and progression[J]. PLoS One, 2013, 8(3):e58168. [75] 毛路一. ApoE和iNOS敲除小鼠子痫前期动物模型的建立和胎盘功能异常的研究[D]. 上海: 复旦大学, 2011. [76] Kanayama N, Takahashi K, Matsuura T, et al.Deficiency in p57Kip2 expression induces preeclampsia-like symptoms in mice[J]. Mol Hum Reprod, 2002, 8(12):1129-1135. [77] Mess A, Zaki N, Kadyrov M, et al.Caviomorph placentation as a model for trophoblast invasion[J]. Placenta, 2007, 28(11-12):1234-1238. |
[1] | Xin LIU, Shaobo SHI, Cui ZHANG, Bo YANG, Chuan QU. Construction and Evaluation of End-to-side Anastomosis Model of Autologous Arteriovenous Fistula in Mice [J]. Laboratory Animal and Comparative Medicine, 2023, 43(6): 595-603. |
[2] | Shuwu XIE, Ruling SHEN, Jinxing LIN, Chun FAN. Progress in Establishment and Application of Laboratory Animal Models Related to Development of Male Infertility Drugs [J]. Laboratory Animal and Comparative Medicine, 2023, 43(5): 504-511. |
[3] | Yanjuan CHEN, Ruling SHEN. Progress in the Application of Animal Disease Models in the Medical Research on Colorectal Cancer [J]. Laboratory Animal and Comparative Medicine, 2023, 43(5): 512-523. |
[4] | Rui ZHANG, Meiyu LÜ, Jianjun ZHANG, Jinlian LIU, Yan CHEN, Zhiqiang HUANG, Yao LIU, Lanhua ZHOU. Research Progress on Establishing and Evaluation of Acne Animal Models [J]. Laboratory Animal and Comparative Medicine, 2023, 43(4): 398-405. |
[5] | Jin LU, Jian WANG, Lian ZHU, Guofeng YAN, Zhengwen MA, Yao LI, Jianjun DAI, Yinqiu ZHU, Jing ZHOU. Establishment of Preeclampsia Model in Goat and Evaluation on Maternal Biological Characteristics [J]. Laboratory Animal and Comparative Medicine, 2023, 43(4): 371-380. |
[6] | Jiahui YU, Qian GONG, Lenan ZHUANG. Animal Models of Pulmonary Arterial Hypertension and Their Application in Drug Research [J]. Laboratory Animal and Comparative Medicine, 2023, 43(4): 381-397. |
[7] | Yasheng DENG, Jiang LIN, Chiling GAN, Guanfeng ZENG, Jiayin HUANG, Huifang DENG, Yingxian MA, Siyin HAN. Literature Analysis of the Preparation Elements of Animal Models of Skin Photoaging and the Data of Subjects [J]. Laboratory Animal and Comparative Medicine, 2023, 43(4): 406-414. |
[8] | Xue WANG, Yonghe HU. Analysis of Common Types and Construction Elements of Diabetic Mouse Models [J]. Laboratory Animal and Comparative Medicine, 2023, 43(4): 415-421. |
[9] | Hui HUANG, Yasheng DENG, Tianwei LIANG, Yiqing ZHENG, Yanping FAN, Na RONG, Jiang LIN. Evaluation and Analysis of Modeling Methods for Animal Models with Diminished Ovarian Reserve [J]. Laboratory Animal and Comparative Medicine, 2023, 43(4): 422-428. |
[10] | Lei XIANG, Jinzhu JING, Zhen LIANG, Guoqiang YAN, Wenfeng GUO, Meng ZHANG, Wei ZHANG, Yajun LIU. A Visual Analysis on Animal Model of Sarcopenia Based on VOSviewer [J]. Laboratory Animal and Comparative Medicine, 2023, 43(4): 429-439. |
[11] | Zhigang TAN, Jinxin LIU, Chuya ZHENG, Wenfeng LIAO, Luping FENG, Hongli PENG, Xiu YAN, Zhenjian ZHUO. Advances and Applications in Animal Models of Neuroblastoma [J]. Laboratory Animal and Comparative Medicine, 2023, 43(3): 288-296. |
[12] | Can LAI, Lele LI, Tala HU, Yan MENG. Recent Advances of Animal Models of Renal Interstitial Fibrosis [J]. Laboratory Animal and Comparative Medicine, 2023, 43(2): 163-172. |
[13] | Ling HU, Zhibin HU, Yunqing HU, Yuqiang DING. Overview of Studies in Animal Models of Schizophrenia [J]. Laboratory Animal and Comparative Medicine, 2023, 43(2): 145-155. |
[14] | Danyang YIN, Yi HU, Rengfei SHI. Advances in Animal Aging Models [J]. Laboratory Animal and Comparative Medicine, 2023, 43(2): 156-162. |
[15] | Haosheng WU, Hang SU, Chao ZHU, Wenhui WANG, Shengbing WU, Shuai CUI, Meiqi ZHOU. Research Progress of Animal Models of Stress Cardiomyopathy [J]. Laboratory Animal and Comparative Medicine, 2023, 43(2): 173-179. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||