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1.
Front Endocrinol (Lausanne) ; 15: 1386309, 2024.
Article En | MEDLINE | ID: mdl-38846494

Introduction: Leptin and its receptors are expressed by the human placenta throughout gestation, yet the role of leptin in early human placental development is not well characterized. Leptin is overexpressed in the placentas from preeclamptic (PE) pregnancies. PE can result from the impaired invasion of fetal placental cells, cytotrophoblasts (CTBs), into the maternal decidua. We hypothesized that elevated leptin levels would impair human CTB invasion. Methods: The effects of leptin on the invasion of human CTBs were evaluated in three cell models, HTR-8/SVneo cells, primary CTBs, and placental villous explants using invasion assays. Further, leptin receptor expression was characterized in all three cell models using RT-PCR. Further phosphokinase assays were performed in HTR-8/SVneo cells to determine signaling pathways involved in CTB invasion in response to differential leptin doses. Results: We found that, prior to 8 weeks gestation, leptin promoted CTB invasion in the explant model. After 11 weeks gestation in explants, primary CTBs and in HTR-8/SVneo cells, leptin promoted invasion at moderate but not at high concentrations. Further, leptin receptor characterization revealed that leptin receptor expression did not vary over gestation, however, STAT, PI3K and MAPK pathways showed different signaling in response to varied leptin doses. Discussion: These data suggest that the excess placental leptin observed in PE may cause impaired CTB invasion as a second-trimester defect. Leptin's differential effect on trophoblast invasion may explain the role of hyperleptinemia in preeclampsia pathogenesis.


Gestational Age , Leptin , Receptors, Leptin , Trophoblasts , Humans , Trophoblasts/metabolism , Trophoblasts/drug effects , Trophoblasts/pathology , Leptin/metabolism , Leptin/pharmacology , Female , Pregnancy , Receptors, Leptin/metabolism , Receptors, Leptin/genetics , Placenta/metabolism , Placenta/drug effects , Placenta/pathology , Pre-Eclampsia/metabolism , Pre-Eclampsia/pathology , Dose-Response Relationship, Drug , Signal Transduction , Placentation/drug effects , Cell Movement/drug effects
2.
Sci Rep ; 14(1): 12672, 2024 06 03.
Article En | MEDLINE | ID: mdl-38830948

Pre-eclampsia (PE) is a hypertensive disorder characterised by systemic vascular resistance and endothelial dysfunction. It is known to influence choroidal thickness (CT). No previous studies have explored the antepartum and postpartum changes in CT with respect to the protein-creatinine ratio (PCR), a measure of proteinuria that is a clinical hallmark of PE. This study evaluated the correlations between antepartum and postpartum CT and the PCR in patients with PE. In this retrospective study, sixty-six eyes (66 patients) were analysed. The patients were divided into two groups according to the median PCR value (2.36 mg/mg): low PCR group (< 2.36 mg/mg) and high PCR group (≥ 2.36 mg/mg). Ophthalmologic clinical data were collected and assessed. We observed higher antepartum CT and higher mean arterial pressure in high PCR group than in low PCR group. Moreover, postpartum CT decreased significantly in high PCR group. In the multivariate analysis, CT changes were correlated with antepartum CT and antepartum PCR after logarithm transformation. In conclusion, a greater decrease in CT was observed in high PCR group than in low PCR group. Further, the antepartum PCR showed a correlation with the extent of CT reduction.


Choroid , Postpartum Period , Pre-Eclampsia , Proteinuria , Humans , Female , Pre-Eclampsia/pathology , Pre-Eclampsia/physiopathology , Pregnancy , Adult , Choroid/pathology , Choroid/diagnostic imaging , Retrospective Studies , Creatinine/blood , Creatinine/urine
3.
Front Endocrinol (Lausanne) ; 15: 1371220, 2024.
Article En | MEDLINE | ID: mdl-38737551

Background and objective: Aberrant epigenetic regulation and increased oxidative stress in the placenta play a significant role in placental pathophysiology and fetal programming in preeclampsia, a hypertensive disorder in human pregnancy. The purpose of the study is to investigate if hypermethylation of histone H3K9 occurs in placental trophoblasts from preeclampsia. Methods: Trophoblasts were isolated and cultured from 14 placentas, 7 from normotensive pregnant women and 7 from preeclamptic pregnancies. Methylated H3K9 expression and antioxidant superoxide dismutase expression were determined by Western blot. We also examined consequences of oxidative stress and the downstream effects of histone methyltransferase inhibition on H3K9 expression associated with antioxidant CuZn-SOD and Mn-SOD expression in placental trophoblasts. Results: We found that expression of mono-, di-, and tri-methylation of histone H3 lysine 9 (H3K9me1, H3K9me2 and H3K9me3) was significantly increased, p<0.01, which correlated with downregulation of antioxidant superoxide dismutase CuZn-SOD and Mn-SOD expression, in trophoblasts from preeclamptic placentas compared to those from uncomplicated control placentas. We further demonstrated hypoxia could promote histone H3K9 methylation in placental trophoblasts, and hypoxia-induced upregulation of H3K9me1, H3K9me2 and H3K9me3 expression was reversible when hypoxic condition was removed. In addition, we also uncovered that inhibition of methyltransferase not only prevented hypoxia-induced upregulation of H3K9me1, H3K9me2 and H3K9me3 expression, but also abolished hypoxia-induced downregulation of CuZn-SOD and Mn-SOD expression in placental trophoblasts. Conclusions: These findings are noteworthy and provide further evidence that increased oxidative stress in the intrauterine environment is likely a mechanism to induce aberrant histone modification in placental trophoblasts in preeclampsia. Moreover, CuZn-SOD and Mn-SOD expression/activity are possibly H3K9 methylation-dependent in placental trophoblasts, which further suggest that oxidative stress and aberrant histone modification have significant impact on placental trophoblasts/fetal programming in preeclampsia.


Histones , Oxidative Stress , Placenta , Pre-Eclampsia , Trophoblasts , Humans , Female , Pre-Eclampsia/metabolism , Pre-Eclampsia/genetics , Pre-Eclampsia/pathology , Pregnancy , Trophoblasts/metabolism , Histones/metabolism , Adult , Placenta/metabolism , Methylation , Superoxide Dismutase/metabolism , Superoxide Dismutase/genetics , DNA Methylation , Cells, Cultured , Lysine/metabolism
4.
Cell Mol Life Sci ; 81(1): 246, 2024 May 31.
Article En | MEDLINE | ID: mdl-38819479

The glycosylphosphatidylinositol (GPI) biosynthetic pathway in the endoplasmic reticulum (ER) is crucial for generating GPI-anchored proteins (GPI-APs), which are translocated to the cell surface and play a vital role in cell signaling and adhesion. This study focuses on two integral components of the GPI pathway, the PIGL and PIGF proteins, and their significance in trophoblast biology. We show that GPI pathway mutations impact on placental development impairing the differentiation of the syncytiotrophoblast (SynT), and especially the SynT-II layer, which is essential for the establishment of the definitive nutrient exchange area within the placental labyrinth. CRISPR/Cas9 knockout of Pigl and Pigf in mouse trophoblast stem cells (mTSCs) confirms the role of these GPI enzymes in syncytiotrophoblast differentiation. Mechanistically, impaired GPI-AP generation induces an excessive unfolded protein response (UPR) in the ER in mTSCs growing in stem cell conditions, akin to what is observed in human preeclampsia. Upon differentiation, the impairment of the GPI pathway hinders the induction of WNT signaling for early SynT-II development. Remarkably, the transcriptomic profile of Pigl- and Pigf-deficient cells separates human patient placental samples into preeclampsia and control groups, suggesting an involvement of Pigl and Pigf in establishing a preeclamptic gene signature. Our study unveils the pivotal role of GPI biosynthesis in early placentation and uncovers a new preeclampsia gene expression profile associated with mutations in the GPI biosynthesis pathway, providing novel molecular insights into placental development with implications for enhanced patient stratification and timely interventions.


Cell Differentiation , Glycosylphosphatidylinositols , Placentation , Trophoblasts , Trophoblasts/metabolism , Trophoblasts/cytology , Female , Pregnancy , Animals , Humans , Mice , Placentation/genetics , Glycosylphosphatidylinositols/metabolism , Glycosylphosphatidylinositols/biosynthesis , Placenta/metabolism , Placenta/cytology , Wnt Signaling Pathway , Pre-Eclampsia/metabolism , Pre-Eclampsia/genetics , Pre-Eclampsia/pathology , Endoplasmic Reticulum/metabolism , Biosynthetic Pathways/genetics , Unfolded Protein Response , CRISPR-Cas Systems
5.
Biosci Rep ; 44(5)2024 May 29.
Article En | MEDLINE | ID: mdl-38700092

Pre-eclampsia (PE) is a hypertensive disorder of pregnancy which is associated with increased risk of neurodevelopmental disorders in exposed offspring. The pathophysiological mechanisms mediating this relationship are currently unknown, and one potential candidate is the anti-angiogenic factor soluble Fms-like tyrosine kinase 1 (sFlt-1), which is highly elevated in PE. While sFlt-1 can impair angiogenesis via inhibition of VEGFA signalling, it is unclear whether it can directly affect neuronal development independently of its effects on the vasculature. To test this hypothesis, the current study differentiated the human neural progenitor cell (NPC) line ReNcell® VM into a mixed culture of mature neurons and glia, and exposed them to sFlt-1 during development. Outcomes measured were neurite growth, cytotoxicity, mRNA expression of nestin, MBP, GFAP, and ßIII-tubulin, and neurosphere differentiation. sFlt-1 induced a significant reduction in neurite growth and this effect was timing- and dose-dependent up to 100 ng/ml, with no effect on cytotoxicity. sFlt-1 (100 ng/ml) also reduced ßIII-tubulin mRNA and neuronal differentiation of neurospheres. Undifferentiated NPCs and mature neurons/glia expressed VEGFA and VEGFR-2, required for endogenous autocrine and paracrine VEGFA signalling, while sFlt-1 treatment prevented the neurogenic effects of exogenous VEGFA. Overall, these data provide the first experimental evidence for a direct effect of sFlt-1 on neurite growth and neuronal differentiation in human neurons through inhibition of VEGFA signalling, clarifying our understanding of the potential role of sFlt-1 as a mechanism by which PE can affect neuronal development.


Cell Differentiation , Neural Stem Cells , Neurons , Vascular Endothelial Growth Factor Receptor-1 , Humans , Vascular Endothelial Growth Factor Receptor-1/metabolism , Vascular Endothelial Growth Factor Receptor-1/genetics , Neural Stem Cells/metabolism , Neural Stem Cells/drug effects , Neurons/metabolism , Neurons/drug effects , Neurons/cytology , Cell Differentiation/drug effects , Neurites/metabolism , Neurites/drug effects , Neurogenesis/drug effects , Vascular Endothelial Growth Factor A/metabolism , Vascular Endothelial Growth Factor A/genetics , Female , Pre-Eclampsia/metabolism , Pre-Eclampsia/pathology , Pregnancy , Cell Line, Tumor , Signal Transduction
6.
Anal Cell Pathol (Amst) ; 2024: 8972022, 2024.
Article En | MEDLINE | ID: mdl-38715918

Preeclampsia (PE) manifests as a pregnancy-specific complication arising from compromised placentation characterized by inadequate trophoblast invasion. A growing body of evidence underscores the pivotal involvement of pseudogenes, a subset of long noncoding RNAs, in the pathological processes of PE. This study presents a novel finding, demonstrating a significant downregulation of the pseudogene PDIA3P1 in PE placental tissues compared to normal tissues. In vitro functional assays revealed that suppressing PDIA3P1 hindered trophoblast proliferation, invasion, and migration, concurrently upregulating the expression of secreted frizzled-related protein 1 (SFRP1). Further exploration of the regulatory role of PDIA3P1 in PE, utilizing human trophoblasts, established that PDIA3P1 exerts its function by binding to HuR, thereby enhancing the stability of Snail expression in trophoblasts. Overall, our findings suggest a crucial role for PDIA3P1 in regulating trophoblast properties and contributing to the pathogenesis of PE, offering potential targets for prognosis and therapeutic intervention.


Down-Regulation , Pre-Eclampsia , RNA, Long Noncoding , Snail Family Transcription Factors , Trophoblasts , Adult , Female , Humans , Pregnancy , Cell Movement/genetics , Cell Proliferation/genetics , Down-Regulation/genetics , Phenotype , Pre-Eclampsia/genetics , Pre-Eclampsia/metabolism , Pre-Eclampsia/pathology , RNA, Long Noncoding/genetics , RNA, Long Noncoding/metabolism , Snail Family Transcription Factors/metabolism , Snail Family Transcription Factors/genetics , Trophoblasts/metabolism , Trophoblasts/pathology
7.
Placenta ; 151: 37-47, 2024 Jun.
Article En | MEDLINE | ID: mdl-38703713

Caspases, a family of cysteine proteases, are pivotal regulators of apoptosis, the tightly controlled cell death process crucial for eliminating excessive or unnecessary cells during development, including placental development. Collecting research has unveiled the multifaceted roles of caspases in the placenta, extending beyond apoptosis. Apart from their involvement in placental tissue remodeling via apoptosis, caspases actively participate in essential regulatory processes, such as trophoblast fusion and differentiation, significantly influencing placental growth and functionality. In addition, growing evidence indicates an elevation in caspase activity under pathological conditions like pre-eclampsia (PE) and intrauterine growth restriction (IUGR), leading to excessive cell death as well as inflammation. Drawing from advancements in caspase research and placental development under both normal and abnormal conditions, we examine the significance of caspases in both cell death (apoptosis) and non-cell death-related processes within the placenta. We also discuss potential therapeutics targeting caspase-related pathways for placenta disorders.


Apoptosis , Caspases , Placenta , Humans , Pregnancy , Female , Caspases/metabolism , Placenta/pathology , Placenta/metabolism , Apoptosis/physiology , Placentation/physiology , Animals , Placenta Diseases/pathology , Placenta Diseases/metabolism , Pre-Eclampsia/pathology , Pre-Eclampsia/metabolism , Trophoblasts/physiology , Trophoblasts/pathology
8.
FASEB J ; 38(11): e23714, 2024 Jun 15.
Article En | MEDLINE | ID: mdl-38814727

Preeclampsia (PE) is a complex human-specific complication frequently associated with placental pathology. The local renin-angiotensin system (RAS) in the human placenta, which plays a crucial role in regulating placental function, has been extensively documented. Glucocorticoids (GCs) are a class of steroid hormones. PE cases often have abnormalities in GCs levels and placental GCs barrier. Despite extensive speculation, there is currently no robust evidence indicating that GCs regulate placental RAS. This study aims to investigate these potential relationships. Plasma and placental samples were collected from both normal and PE pregnancies. The levels of angiotensin-converting enzyme (ACE), angiotensin II (Ang II), cortisol, and 11ß-hydroxysteroid dehydrogenases (11ßHSD) were analyzed. In PE placentas, cortisol, ACE, and Ang II levels were elevated, while 11ßHSD2 expression was reduced. Interestingly, a positive correlation was observed between ACE and cortisol levels in the placenta. A significant inverse correlation was found between the methylation statuses within the 11ßHSD2 gene promoter and its expression, meanwhile, 11ßHSD2 expression was negatively correlated with cortisol and ACE levels. In vitro experiments using placental trophoblast cells confirmed that active GCs can stimulate ACE transcription and expression through the GR pathway. Furthermore, 11ßHSD2 knockdown could enhance this activating effect. An in vivo study using a rat model of intrauterine GCs overexposure during mid-to-late gestation suggested that excess GCs in utero lead to increased ACE and Ang II levels in the placenta. Collectively, this study provides the first evidence of the relationships between 11ßHSD2 expression, GCs barrier, ACE, and Ang II levels in the placenta. It not only contributes to understanding the pathological features of the placental GCs barrier and RAS under PE conditions, also provides important information for revealing the pathological mechanism of PE.


11-beta-Hydroxysteroid Dehydrogenase Type 2 , Angiotensin II , DNA Methylation , Peptidyl-Dipeptidase A , Placenta , Pre-Eclampsia , Pregnancy , Female , Pre-Eclampsia/metabolism , Pre-Eclampsia/genetics , Pre-Eclampsia/pathology , Humans , Angiotensin II/metabolism , Placenta/metabolism , Animals , 11-beta-Hydroxysteroid Dehydrogenase Type 2/metabolism , 11-beta-Hydroxysteroid Dehydrogenase Type 2/genetics , Rats , Peptidyl-Dipeptidase A/metabolism , Peptidyl-Dipeptidase A/genetics , Adult , Down-Regulation , Renin-Angiotensin System/genetics , Renin-Angiotensin System/physiology , Hydrocortisone/metabolism , Rats, Sprague-Dawley
9.
Aging (Albany NY) ; 16(10): 8585-8598, 2024 May 17.
Article En | MEDLINE | ID: mdl-38761180

Despite its prevalence, preeclampsia (PE) remains unclear as to its etiology. Here, we aimed to investigate the mechanisms regulating differences in the gene expression of zinc-finger protein 516 (ZNF516) in the placenta. The expression of the placental ZNF516 gene and its association with critical clinical markers were verified, and a rigorous correlation analysis was conducted. With a dual-luciferase reporter gene assay, microRNA targeting the ZNF516 gene was predicted and confirmed. Finally, the molecular processes associated with ZNF516 were explored via microarray and bioinformatic analyses. In hypoxic conditions, miR-371-5p expression was reduced, resulting in ZNF516 expression being induced. Moreover, ZNF516 was shown to hinder trophoblast cell migration and invasion while enhancing trophoblast cell death in various in vitro cellular assays, such as cell counting kit-8, colony formation, wound healing, and Transwell assays. Our findings reveal a new regulatory network facilitated by ZNF516. ZNF516 overexpression inhibits trophoblast growth, movement, and penetration, potentially causing problems with placenta formation with the help of miR-371-5p suppression.


Cell Movement , Cell Proliferation , MicroRNAs , Pre-Eclampsia , Trophoblasts , MicroRNAs/genetics , MicroRNAs/metabolism , Humans , Trophoblasts/metabolism , Cell Movement/genetics , Cell Proliferation/genetics , Female , Pregnancy , Pre-Eclampsia/genetics , Pre-Eclampsia/metabolism , Pre-Eclampsia/pathology , Placenta/metabolism
10.
Acta Cir Bras ; 39: e391524, 2024.
Article En | MEDLINE | ID: mdl-38629649

PURPOSE: Pre-eclampsia (PE) is a pregnancy-related complication. Eucommia is effective in the treatment of hypertensive disorders in pregnancy, but the specific effects and possible mechanisms of Eucommia granules (EG) in PE remain unknown. The aim of this study was to investigate the effects and possible mechanisms of EG in PE rats. METHODS: Pregnant Sprague Dawley rats were divided into five groups (n = 6): the control group, the model group, the low-dose group, the medium-dose group, and the high-dose group of EG. The PE model was established by subcutaneous injection of levonitroarginine methyl ester. Saline was given to the blank and model groups, and the Eucommia granules were given by gavage to the remaining groups. Blood pressure and urinary protein were detected. The body length and weight of the pups and the weight of the placenta were recorded. Superoxide dismutase (SOD) activity and levels of malondialdehyde (MDA), placental growth factor (PIGF), and soluble vascular endothelial growth factor receptor-1 (sFIt-1) were measured in the placenta. Pathological changes were observed by hematoxylin-eosin staining. Wnt/ß-catenin pathway-related protein expression was detected using Western blot. RESULTS: Compared with the model group, the PE rats treated with EG had lower blood pressure and urinary protein. The length and weight of the pups and placental weight were increased. Inflammation and necrosis in the placental tissue was improved. SOD level increased, MDA content and sFIt-1/PIGF ratio decreased, and Wnt/ß-catenin pathway-related protein expression level increased. Moreover, the results of EG on PE rats increased with higher doses of EG. CONCLUSIONS: EG may activate the Wnt/ß-catenin pathway and inhibit oxidative stress, inflammation, and vascular endothelial injury in PE rats, thereby improving the perinatal prognosis of preeclamptic rats. EG may inhibit oxidative stress, inflammation, and vascular endothelial injury through activation of the Wnt/ß-catenin pathway in preeclampsia rats, thereby improving perinatal outcomes in PE rats.


Pre-Eclampsia , Pregnancy Complications , Humans , Rats , Female , Pregnancy , Animals , Pre-Eclampsia/drug therapy , Pre-Eclampsia/metabolism , Pre-Eclampsia/pathology , Placenta , Rats, Sprague-Dawley , Vascular Endothelial Growth Factor A/metabolism , beta Catenin/metabolism , Placenta Growth Factor/metabolism , Placenta Growth Factor/pharmacology , Placenta Growth Factor/therapeutic use , Oxidative Stress , Pregnancy Complications/metabolism , Inflammation/pathology , Superoxide Dismutase/metabolism
11.
Mol Reprod Dev ; 91(4): e23742, 2024 Apr.
Article En | MEDLINE | ID: mdl-38644727

Preeclampsia (PE) is a common pregnancy complication with a high mortality rate. Abnormally activated endoplasmic reticulum stress (ERS) is believed to be responsible for the destruction of key placental cells-trophoblasts. Phenylbutyric acid (4-PBA), an ERS inhibitor, is involved in regulating the development of ERS-related diseases. At present, how 4-PBA affects trophoblasts and its mechanisms is still unclear. In this study, PE cell models were established by stimulating HTR-8/SVneo cells with hypoxia. To verify the underlying mechanisms of 4-PBA on PE, CCT020312, an activator of PERK, was also used. The results showed that 4-PBA restored hypoxia-induced trophoblast viability, inhibited HIF-1α protein expression, inflammation, and PERK/ATF-4/CHOP pathway. Hoechst 33342 staining and flow cytometry results confirmed that 4-PBA decreased hypoxia-induced apoptosis in trophoblasts. The results of the JC-1 analysis and apoptosis initiation enzyme activity assay also demonstrated that 4-PBA inhibited apoptosis related to the mitochondrial pathway. Furthermore, by detecting autophagy in trophoblasts, an increased number of autophagic vesicles, damaged mitochondria, enhanced dansylcadaverine fluorescence, enhanced levels of autophagy proteins Beclin-1, LC3II, and decreased p62 were seen in hypoxia-stimulated cells. These changes were reversed by 4-PBA. Furthermore, it was observed that CCT020312 reversed the effects of 4-PBA on the viability, apoptosis, and autophagosome number of hypoxia-induced trophoblasts. In summary, 4-PBA reduces autophagy and apoptosis via the PERK/ATF-4/CHOP pathway and mitochondrial pathway, thereby restoring the viability of hypoxic trophoblasts. These findings provide a solid evidence base for the use of 4-PBA in PE treatment and guide a new direction for improving the outcomes of patients with PE.


Activating Transcription Factor 4 , Apoptosis , Autophagy , Cell Hypoxia , Phenylbutyrates , Pre-Eclampsia , Transcription Factor CHOP , Trophoblasts , eIF-2 Kinase , Trophoblasts/drug effects , Trophoblasts/metabolism , Trophoblasts/pathology , Female , Humans , Pre-Eclampsia/metabolism , Pre-Eclampsia/drug therapy , Pre-Eclampsia/pathology , Autophagy/drug effects , Transcription Factor CHOP/metabolism , Apoptosis/drug effects , Pregnancy , Phenylbutyrates/pharmacology , eIF-2 Kinase/metabolism , Activating Transcription Factor 4/metabolism , Cell Hypoxia/drug effects , Signal Transduction/drug effects , Endoplasmic Reticulum Stress/drug effects , Cell Line
12.
Biochim Biophys Acta Mol Basis Dis ; 1870(5): 167189, 2024 Jun.
Article En | MEDLINE | ID: mdl-38648899

OBJECTIVES: Gamete and embryo-foetal origins of adult diseases hypothesis proposes that adulthood chronic disorders are associated with adverse foetal and early life traits. Our study aimed to characterise developmental changes and underlying mechanisms of metabolic disorders in offspring of pre-eclampsia (PE) programmed pregnancy. METHODS: Nω-Nitro-l-arginine methyl ester hydrochloride (L-NAME) induced pre-eclampsia-like C57BL/6J mouse model was used. Lipid profiling, histological morphology, indirect calorimetry, mRNA sequencing, and pyrosequencing were performed on PE offspring of both young and elderly ages. RESULTS: PE offspring exhibited increased postnatal weight gain, hepatic lipid accumulation, enlarged adipocytes, and impaired energy balance that continued to adulthood. Integrated RNA sequencing of foetal and 52-week-old livers revealed that the differentially expressed genes were mainly enriched in lipid metabolism, including glycerol-3-phosphate acyl-transferase 3 (Gpat3), a key enzyme for de novo synthesis of triglycerides (TG), and carnitine palmitoyltransferase-1a (Cpt1a), a key transmembrane enzyme that mediates fatty acid degradation. Pyrosequencing of livers from PE offspring identified hypomethylated and hypermethylated regions in Gpat3 and Cpt1a promoters, which were associated with upregulated and downregulated expressions of Gpat3 and Cpt1a, respectively. These epigenetic alterations are persistent and consistent from the foetal stage to adulthood in PE offspring. CONCLUSION: These findings suggest a methylation-mediated epigenetic mechanism for PE-induced intergenerational lipid accumulation, impaired energy balance and obesity in offspring, and indicate the potential benefits of early interventions in offspring exposed to maternal PE to reduce their susceptibility to metabolic disorder in their later life.


DNA Methylation , Fetal Development , Mice, Inbred C57BL , Pre-Eclampsia , Animals , Pregnancy , Female , Mice , Fetal Development/genetics , Pre-Eclampsia/genetics , Pre-Eclampsia/metabolism , Pre-Eclampsia/pathology , Fatty Liver/metabolism , Fatty Liver/genetics , Fatty Liver/pathology , Lipid Metabolism/genetics , Liver/metabolism , Liver/pathology , Male , Prenatal Exposure Delayed Effects/metabolism , Prenatal Exposure Delayed Effects/genetics , Prenatal Exposure Delayed Effects/pathology , Disease Models, Animal
13.
Biochim Biophys Acta Mol Basis Dis ; 1870(5): 167191, 2024 Jun.
Article En | MEDLINE | ID: mdl-38648900

AIMS: Trophoblast cell dysfunction is one of the important factors leading to preeclampsia (PE). Cytoplasmic polyadenylation element-binding 2 (CPEB2) has been found to be differentially expressed in PE patients, but whether it mediates PE process by regulating trophoblast cell function is unclear. METHODS: The expression of CPEB2 and somatostatin receptor 3 (SSTR3) was detected by quantitative real-time PCR, Western blot (WB) and immunofluorescence staining. Cell functions were analyzed by CCK-8 assay, EdU assay, flow cytometry and transwell assay. Epithelial-mesenchymal transition (EMT)-related protein levels were detected by WB. The interaction of CPEB2 and SSTR3 was confirmed by RIP assay, dual-luciferase reporter assay and PCR poly(A) tail assay. Animal experiments were performed to explore the effect of CPEB2 on PE progression in vivo, and the placental tissues of rat were used for H&E staining, immunohistochemical staining and TUNEL staining. RESULTS: CPEB2 was lowly expressed in PE patients. CPEB2 upregulation accelerated trophoblast cell proliferation, migration, invasion and EMT, while its knockdown had an opposite effect. CPEB2 bound to the CPE site in the 3'-UTR of SSTR3 mRNA to suppress SSTR3 translation through reducing poly(A) tails. Besides, SSTR3 overexpression suppressed trophoblast cell proliferation, migration, invasion and EMT, while its silencing accelerated trophoblast cell functions. However, these effects could be reversed by CPEB2 upregulation and knockdown, respectively. In vivo experiments, CPEB2 overexpression relieved histopathologic changes, inhibited apoptosis, promoted proliferation and enhanced EMT in the placenta of PE rat by decreasing SSTR3 expression. CONCLUSION: CPEB2 inhibited PE progression, which promoted trophoblast cell functions by inhibiting SSTR3 translation through polyadenylation.


Polyadenylation , Pre-Eclampsia , RNA-Binding Proteins , Receptors, Somatostatin , Trophoblasts , Pregnancy , Humans , Pre-Eclampsia/metabolism , Pre-Eclampsia/genetics , Pre-Eclampsia/pathology , Female , Animals , Receptors, Somatostatin/metabolism , Receptors, Somatostatin/genetics , Rats , RNA-Binding Proteins/metabolism , RNA-Binding Proteins/genetics , Trophoblasts/metabolism , Trophoblasts/pathology , Cell Proliferation , Epithelial-Mesenchymal Transition/genetics , Rats, Sprague-Dawley , Adult , Disease Progression , Cell Movement/genetics , Protein Biosynthesis , Placenta/metabolism , Placenta/pathology
14.
Placenta ; 149: 1-6, 2024 Apr.
Article En | MEDLINE | ID: mdl-38430682

INTRODUCTION: We aimed to assess neonatal and maternal outcomes in appropriate-for-gestational-weight (AGA) neonates of mothers with both gestational diabetes mellitus (GDM) and preeclampsia (PET). METHODS: Medical records of women diagnosed with GDM or PET were reviewed. Women with AGA neonates were divided into three groups- GDM, PET, and GDM + PET and maternal neonatal and placental outcomes were compared. The primary outcome was a composite of adverse neonatal outcomes, including intensive care unit admission (NICU), neurological morbidity, hypoglycemia, ventilation, respiratory distress syndrome (RDS), phototherapy, sepsis, blood transfusion, and neonatal death. Post-hoc analysis was performed to determine between-group significance. RESULTS: Composite adverse neonatal outcomes are significantly lower in women with multiple morbidities compared to women with confined PET (p = 0.015), and a similar trend is observed when comparing neonatal outcomes between women with GDM to those with GDM + PET, yet these results are underpowered (18.9 % vs. 12.8 % respectively, p = 0.243). Placentas of women with GDM + PET were larger, with a lower rate of placentas below the 10th percentile as compared to placentas of women with isolated PET (p < 0.001), but with similar rates of MVM lesions. DISCUSSION: While maternal and placental outcomes in patients of the GDM + PET group resemble the characteristics of the PET group, surprisingly, the neonatal outcomes in this group are significantly better compared to isolated morbidities. The paradoxical benefit attributed to the coexistence of GDM + PET may be explained by a balance of the opposing trends characterizing these morbidities-the reduced blood and nutrient supply characterizing PET vs. chronic overflow and abundance typical of GDM. CLINICAL TRIAL REGISTRATION: approval of local ethics committee WOMC-19-0152.


Diabetes, Gestational , Pre-Eclampsia , Infant, Newborn , Pregnancy , Humans , Female , Diabetes, Gestational/pathology , Pre-Eclampsia/pathology , Birth Weight , Placenta/pathology , Retrospective Studies , Pregnancy Outcome
15.
J Assist Reprod Genet ; 41(5): 1403-1416, 2024 May.
Article En | MEDLINE | ID: mdl-38536597

PURPOSE: Preeclampsia (PE) is a vascular remodeling disorder cloesly linked to trophoblast dysfunction, involving defects in their proliferation, migration, and apoptosis. Maternal exosomal microRNAs (miRNAs) have been reported to play pivotal roles in the development of PE. However, the mechanism underlying the role of maternal exosomes in trophoblast dysfunction regarding the development of PE is poorly understood. METHODS: Plasma exosomes from maternal peripheral blood were collected from pregnant women with PE and from those with normal pregnancy. Bioinformatics analysis was used to identify significantly differentially expressed miRNAs under these two conditions. The expression of the miR-3198 gene in plasma exosomes was detected using quantitative real-time polymerase chain reaction. Dual luciferase reporter assay was used to confirm binding of miR-3198 and 3'UTR region of WNT3. Cell proliferation was examined using the Cell Count Kit-8 and EdU assays, and flow cytometry was performed to detect apoptosis and cell cycle. Changes in cell migration were examined using transwell and scratch assays. RESULTS: Patients with PE showed decreased expression of plasma-derived exosomal miR-3198. The proliferation and migration abilities of HTR-8/SVneo and primary human trophoblast cells were both improved when cocultured with miR-3198-rich exosomes. Exposure to miR-3198-enriched exosomes facilitated cell cycle progression but reduced apoptosis in HTR-8/SVneo cells. Notably, overexpression of miR-3198 partially prevented the inhibitory effects of WNT3 on proliferation and migration in HTR-8/SVneo cells. CONCLUSION: Exosomal miR-3198 in the maternal peripheral blood may regulate the biological functions of trophoblasts by targeting WNT3 and influence the development of diseases of placental origin.


Apoptosis , Cell Movement , Cell Proliferation , Exosomes , MicroRNAs , Pre-Eclampsia , Trophoblasts , Humans , Pre-Eclampsia/genetics , Pre-Eclampsia/pathology , Female , Exosomes/genetics , Exosomes/metabolism , Trophoblasts/metabolism , Trophoblasts/pathology , MicroRNAs/genetics , Pregnancy , Cell Movement/genetics , Cell Proliferation/genetics , Adult , Apoptosis/genetics , Wnt3 Protein/genetics , Wnt3 Protein/metabolism
16.
J Assist Reprod Genet ; 41(4): 843-859, 2024 Apr.
Article En | MEDLINE | ID: mdl-38536596

PURPOSE: In the first of two companion papers, we comprehensively reviewed the recent evidence in the primary literature, which addressed the increased prevalence of hypertensive disorders of pregnancy, late-onset or term preeclampsia, fetal overgrowth, postterm birth, and placenta accreta in women conceiving by in vitro fertilization. The preponderance of evidence implicated frozen embryo transfer cycles and, specifically, those employing programmed endometrial preparations, in the higher risk for these adverse maternal and neonatal pregnancy outcomes. Based upon this critical appraisal of the primary literature, we formulate potential etiologies and suggest strategies for prevention in the second article. METHODS: Comprehensive review of primary literature. RESULTS: Presupposing significant overlap of these apparently diverse pathological pregnancy outcomes within subjects who conceive by programmed autologous FET cycles, shared etiologies may be at play. One plausible but clearly provocative explanation is that aberrant decidualization arising from suboptimal endometrial preparation causes greater than normal trophoblast invasion and myometrial spiral artery remodeling. Thus, overly robust placentation produces larger placentas and fetuses that, in turn, lead to overcrowding of villi within the confines of the uterine cavity which encroach upon intervillous spaces precipitating placental ischemia, oxidative and syncytiotrophoblast stress, and, ultimately, late-onset or term preeclampsia. The absence of circulating corpus luteal factors like relaxin in most programmed cycles might further compromise decidualization and exacerbate the maternal endothelial response to deleterious circulating placental products like soluble fms-like tyrosine kinase-1 that mediate disease manifestations. An alternative, but not mutually exclusive, determinant might be a thinner endometrium frequently associated with programmed endometrial preparations, which could conspire with dysregulated decidualization to elicit greater than normal trophoblast invasion and myometrial spiral artery remodeling. In extreme cases, placenta accreta could conceivably arise. Though lower uterine artery resistance and pulsatility indices observed during early pregnancy in programmed embryo transfer cycles are consistent with this initiating event, quantitative analyses of trophoblast invasion and myometrial spiral artery remodeling required to validate the hypothesis have not yet been conducted. CONCLUSIONS: Endometrial preparation that is not optimal, absent circulating corpus luteal factors, or a combination thereof are attractive etiologies; however, the requisite investigations to prove them have yet to be undertaken. Presuming that in ongoing RCTs, some or all adverse pregnancy outcomes associated with programmed autologous FET are circumvented or mitigated by employing natural or stimulated cycles instead, then for women who can conceive using these regimens, they would be preferable. For the 15% or so of women who require programmed FET, additional research as suggested in this review is needed to elucidate the responsible mechanisms and develop preventative strategies.


Embryo Transfer , Fertilization in Vitro , Pregnancy Outcome , Humans , Female , Pregnancy , Embryo Transfer/methods , Pre-Eclampsia/pathology , Pre-Eclampsia/etiology , Pre-Eclampsia/prevention & control , Infant, Newborn , Placenta Accreta/pathology , Placenta/pathology , Endometrium/pathology
17.
J Assist Reprod Genet ; 41(4): 821-842, 2024 Apr.
Article En | MEDLINE | ID: mdl-38536594

PURPOSE: In this first of two companion papers, we critically review the evidence recently published in the primary literature, which addresses adverse maternal and neonatal pregnancy outcomes associated with programmed embryo transfer cycles. We next consider whether these pathological pregnancy outcomes might be attributable to traditional risk factors, unknown parental factors, embryo culture, culture duration, or cryopreservation. Finally, in the second companion article, we explore potential etiologies and suggest strategies for prevention. METHODS: Comprehensive review of primary literature. RESULTS: The preponderance of retrospective and prospective observational studies suggests that increased risk for hypertensive disorders of pregnancy (HDP) and preeclampsia in assisted reproduction involving autologous embryo transfer is associated with programmed cycles. For autologous frozen embryo transfer (FET) and singleton live births, the risk of developing HDP and preeclampsia, respectively, was less for true or modified natural and stimulated cycles relative to programmed cycles: OR 0.63 [95% CI (0.57-0.070)] and 0.44 [95% CI (0.40-0.50)]. Though data are limited, the classification of preeclampsia associated with programmed autologous FET was predominantly late-onset or term disease. Other adverse pregnancy outcomes associated with autologous FET, especially programmed cycles, included increased prevalence of large for gestational age infants and macrosomia, as well as higher birth weights. In one large registry study, FET was associated with fetal overgrowth of a symmetrical nature. Postterm birth and placenta accreta not associated with prior cesarean section, uterine surgery, or concurrent placenta previa were also associated with autologous FET, particularly programmed cycles. The heightened risk of these pathologic pregnancy outcomes in programmed autologous FET does not appear to be attributable to traditional risk factors, unknown parental factors, embryo culture, culture duration, or cryopreservation, although the latter may contribute a modest degree of increased risk for fetal overgrowth and perhaps HDP and preeclampsia in FET irrespective of the endometrial preparation. CONCLUSIONS: Programmed autologous FET is associated with an increased risk of several, seemingly diverse, pathologic pregnancy outcomes including HDP, preeclampsia, fetal overgrowth, postterm birth, and placenta accreta. Though the greater risk for preeclampsia specifically associated with programmed autologous FET appears to be well established, further research is needed to substantiate the limited data currently available suggesting that the classification of preeclampsia involved is predominately late-onset or term. If substantiated, then this knowledge could provide insight into placental pathogenesis, which has been proposed to differ between early- and late-onset or term preeclampsia (see companion paper for a discussion of potential mechanisms). If a higher prevalence of preeclampsia with severe features as suggested by some studies is corroborated in future investigations, then the danger to maternal and fetal/neonatal health is considerably greater with severe disease, thus increasing the urgency to find preventative measures. Presupposing significant overlap of these diverse pathologic pregnancy outcomes within subjects who conceive by programmed embryo transfer, there may be common etiologies.


Embryo Transfer , Pre-Eclampsia , Pregnancy Outcome , Humans , Female , Pregnancy , Embryo Transfer/adverse effects , Embryo Transfer/methods , Pre-Eclampsia/pathology , Pre-Eclampsia/epidemiology , Infant, Newborn , Fertilization in Vitro/adverse effects , Fertilization in Vitro/methods , Cryopreservation , Hypertension, Pregnancy-Induced/pathology , Hypertension, Pregnancy-Induced/epidemiology , Risk Factors
18.
J Vis Exp ; (203)2024 Jan 26.
Article En | MEDLINE | ID: mdl-38345224

Cerebrovascular complications, including cerebral edema and ischemic and hemorrhagic stroke, constitute the leading cause of maternal mortality associated with preeclampsia. The underlying mechanisms of these cerebrovascular complications remain unclear. However, they are linked to placental dysfunction and blood-brain barrier (BBB) disruption. Nevertheless, the connection between these two distant organs is still being determined. Increasing evidence suggests that the placenta releases signaling molecules, including extracellular vesicles, into maternal circulation. Extracellular vesicles are categorized according to their size, with small extracellular vesicles (sEVs smaller than 200 nm in diameter) considered critical signaling particles in both physiological and pathological conditions. In preeclampsia, there is an increased number of circulating sEVs in maternal circulation, the signaling function of which is not well understood. Placental sEVs released in preeclampsia or from normal pregnancy placentas exposed to hypoxia induce brain endothelial dysfunction and disruption of the BBB. In this protocol, we assess whether sEVs isolated from placental explants cultured under hypoxic conditions (modeling one aspect of preeclampsia) disrupt the BBB in vivo.


Extracellular Vesicles , Pre-Eclampsia , Pregnancy , Humans , Female , Mice , Animals , Placenta/blood supply , Pre-Eclampsia/etiology , Pre-Eclampsia/pathology , Blood-Brain Barrier/pathology , Extracellular Vesicles/pathology , Hypoxia/pathology
19.
Reprod Sci ; 31(3): 591-602, 2024 Mar.
Article En | MEDLINE | ID: mdl-37684516

Early onset fetal growth restriction (FGR) is one of the main adverse pregnancy conditions, often associated with poor neonatal outcomes. Frequently, early onset FGR is associated with early onset hypertensive disorders of pregnancy (HDP), and in particular preeclampsia (PE). However, to date, it is still an open question whether pregnancies complicated by early FGR plus HDP (FGR-HDP) and those complicated by early onset FGR without HDP (normotensive-FGR (n-FGR)) show different prenatal and postnatal outcomes and, consequently, should benefit from different management and long-term follow-up. Recent data support the hypothesis that the presence of PE may have an additional impact on maternal hemodynamic impairment and placental lesions, increasing the risk of poor neonatal outcomes in pregnancy affected by early onset FGR-HDP compared to pregnancy affected by early onset n-FGR. This review aims to elucidate this poor studied topic, comparing the clinical characteristics, perinatal outcomes, and potential long-term sequelae of early onset FGR-HDP and early onset n-FGR.


Hypertension, Pregnancy-Induced , Pre-Eclampsia , Pregnancy Complications , Infant, Newborn , Pregnancy , Female , Humans , Fetal Growth Retardation/etiology , Placenta/pathology , Hypertension, Pregnancy-Induced/diagnosis , Hypertension, Pregnancy-Induced/pathology , Pre-Eclampsia/pathology , Pregnancy Complications/pathology
20.
Placenta ; 145: 19-26, 2024 Jan.
Article En | MEDLINE | ID: mdl-38011757

INTRODUCTION: Hypertensive disorders of pregnancy (HDP) and fetal growth restriction (FGR) are common obstetrical complications, often with pathological features of maternal vascular malperfusion (MVM) in the placenta. Currently, clinical placental pathology methods involve a manual visual examination of histology sections, a practice that can be resource-intensive and demonstrates moderate-to-poor inter-pathologist agreement on diagnostic outcomes, dependant on the degree of pathologist sub-specialty training. METHODS: This study aims to apply machine learning (ML) feature extraction methods to classify digital images of placental histopathology specimens, collected from cases of HDP [pregnancy induced hypertension (PIH), preeclampsia (PE), PE + FGR], normotensive FGR, and healthy pregnancies, according to the presence or absence of MVM lesions. 159 digital images were captured from histological placental specimens, manually scored for MVM lesions (MVM- or MVM+) and used to develop a support vector machine (SVM) classifier model, using features extracted from pre-trained ResNet18. The model was trained with data augmentation and shuffling, with the performance assessed for patch-level and image-level classification through measurements of accuracy, precision, and recall using confusion matrices. RESULTS: The SVM model demonstrated accuracies of 70 % and 79 % for patch-level and image-level MVM classification, respectively, with poorest performance observed on images with borderline MVM presence, as determined through post hoc observation. DISCUSSION: The results are promising for the integration of ML methods into the placental histopathological examination process. Using this study as a proof-of-concept will lead our group and others to carry ML models further in placental histopathology.


Hypertension, Pregnancy-Induced , Pre-Eclampsia , Pregnancy , Female , Humans , Placenta/pathology , Pregnancy Outcome , Retrospective Studies , Pre-Eclampsia/pathology , Hypertension, Pregnancy-Induced/pathology , Fetal Growth Retardation/diagnostic imaging , Fetal Growth Retardation/pathology
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