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1.
Nat Commun ; 15(1): 6549, 2024 Aug 02.
Article in English | MEDLINE | ID: mdl-39095385

ABSTRACT

The placenta is crucial for fetal development, yet the impact of environmental stressors such as arsenic exposure remains poorly understood. We apply single-cell RNA sequencing to analyze the response of the mouse placenta to arsenic, revealing cell-type-specific gene expression, function, and pathological changes. Notably, the Prap1 gene, which encodes proline-rich acidic protein 1 (PRAP1), is significantly upregulated in 26 placental cell types including various trophoblast cells. Our study shows a female-biased increase in PRAP1 in response to arsenic and localizes it in the placenta. In vitro and ex vivo experiments confirm PRAP1 upregulation following arsenic treatment and demonstrate that recombinant PRAP1 protein reduces arsenic-induced cytotoxicity and downregulates cell cycle pathways in human trophoblast cells. Moreover, PRAP1 knockdown differentially affects cell cycle processes, proliferation, and cell death depending on the presence of arsenic. Our findings provide insights into the placental response to environmental stress, offering potential preventative and therapeutic approaches for environment-related adverse outcomes in mothers and children.


Subject(s)
Arsenic , Placenta , Single-Cell Analysis , Trophoblasts , Female , Pregnancy , Placenta/metabolism , Placenta/drug effects , Animals , Humans , Mice , Trophoblasts/metabolism , Trophoblasts/drug effects , Trophoblasts/cytology , Arsenic/toxicity , Sequence Analysis, RNA , Stress, Physiological/genetics , Cell Cycle/drug effects , Cell Cycle/genetics , Cell Proliferation/drug effects , Up-Regulation/drug effects , Mice, Inbred C57BL
2.
Sci Rep ; 14(1): 18204, 2024 08 06.
Article in English | MEDLINE | ID: mdl-39107470

ABSTRACT

A limited number of accessible and representative models of human trophoblast cells currently exist for the study of placentation. Current stem cell models involve either a transition through a naïve stem cell state or precise dynamic control of multiple growth factors and small-molecule cues. Here, we demonstrated that a simple five-day treatment of human induced pluripotent stem cells with two small molecules, retinoic acid (RA) and Wnt agonist CHIR 99021 (CHIR), resulted in rapid, synergistic upregulation of CDX2. Transcriptomic analysis of RA + CHIR-treated cells showed high similarity to primary trophectoderm cells. Multipotency was verified via further differentiation towards cells with syncytiotrophoblast or extravillous trophoblast features. RA + CHIR-treated cells were also assessed for the established criteria defining a trophoblast cell model, and they possess all the features necessary to be considered valid. Collectively, our data demonstrate a facile, scalable method for generating functional trophoblast-like cells in vitro to better understand the placenta.


Subject(s)
Cell Differentiation , Induced Pluripotent Stem Cells , Tretinoin , Trophoblasts , Humans , Trophoblasts/drug effects , Trophoblasts/metabolism , Trophoblasts/cytology , Tretinoin/pharmacology , Induced Pluripotent Stem Cells/cytology , Induced Pluripotent Stem Cells/metabolism , Induced Pluripotent Stem Cells/drug effects , Cell Differentiation/drug effects , Pyridines/pharmacology , Female , CDX2 Transcription Factor/metabolism , CDX2 Transcription Factor/genetics , Pyrimidines/pharmacology , Pregnancy , Models, Biological , Cells, Cultured
3.
Mol Biol Rep ; 51(1): 895, 2024 Aug 08.
Article in English | MEDLINE | ID: mdl-39115693

ABSTRACT

BACKGROUND: Insufficient trophoblast invasion, culminating in suboptimal uterine spiral artery remodeling, is pinpointed as a pivotal contributor to preeclampsia (PE) development. LINC01410 has been documented to be increased in various neoplasms, and is significantly associated with the invasive capabilities of tumor cells. Nonetheless, its function and the mechanisms in the pathogenesis of PE require further investigation. METHODS AND RESULTS: LINC01410 and methyltransferase-like 3 (METTL3) were ectopically expressed in HTR-8/Svneo cells via lentiviral transduction. Subsequently, the cells' invasive capabilities and apoptosis rates were evaluated employing Transwell assays and flow cytometry, respectively. The interplay between LINC01410 and METTL3, alongside the m6A methylation of FAS, was probed through RNA immunoprecipitation (RIP). Additionally, the association between FAS and METTL3 was elucidated via Coimmunoprecipitation (Co-IP) assays. The protein level of NF-κB, BAX, and BCL-2 in LINC01410-overexpressing cells was detected by Western blot. Our findings revealed that LINC01410 elevation increased the invasive ability of HTR-8/Svneo cells, directly impacting METTL3 then leading to its reduced expression. Conversely, heightened METTL3 expression mitigated invasiveness while enhancing apoptosis in these cells. Moreover, METTL3's interaction with FAS led to increased FAS expression, subject to m6A methylation. A surge in LINC01410 markedly decreased both mRNA and protein levels of FAS. Furthermore, LINC01410 overexpression significantly reduced NF-κB and BAX protein levels while augmenting BCL-2. CONCLUSIONS: Upregulation of LINC01410 expression promotes trophoblast cell invasion by inhibiting FAS levels through modified m6A alteration and suppressing the NF-κB pathway. These findings underscore the pivotal role of LINC01410 in regulating trophoblast cell invasion and propose it as a promising therapeutic strategy for preventing or alleviating PE. This offers valuable insights for the clinical treatment of PE, for which definitive targeted therapy methods are currently lacking.


Subject(s)
Apoptosis , Methyltransferases , Pre-Eclampsia , RNA, Long Noncoding , Trophoblasts , fas Receptor , Humans , Trophoblasts/metabolism , Methyltransferases/metabolism , Methyltransferases/genetics , fas Receptor/metabolism , fas Receptor/genetics , Female , Apoptosis/genetics , Pregnancy , RNA, Long Noncoding/genetics , RNA, Long Noncoding/metabolism , Pre-Eclampsia/genetics , Pre-Eclampsia/metabolism , Pre-Eclampsia/pathology , Cell Line , Cell Movement/genetics , NF-kappa B/metabolism , Signal Transduction/genetics
4.
Cell Death Dis ; 15(8): 575, 2024 Aug 08.
Article in English | MEDLINE | ID: mdl-39117607

ABSTRACT

Adverse intrauterine conditions may cause fetal growth restriction (FGR), a pregnancy complication frequently linked to perinatal morbidity and mortality. Although many studies have focused on FGR, the pathophysiological processes underlying this disorder are complex and incompletely understood. We have recently determined that galectin-3 (gal-3), a ß-galactoside-binding protein, regulates pregnancy-associated processes, including uterine receptibility, maternal vascular adaptation and placentation. Because gal-3 is expressed at both sides of the maternal-fetal interface, we unraveled the contribution of maternal- and paternal-derived gal-3 on fetal-placental development in the prenatal window and its effects on the post-natal period. Deficiency of maternal gal-3 induced maternal gut microbiome dysbiosis, resulting in a sex-specific fetal growth restriction mainly observed in female fetuses and offspring. In addition, poor placental metabolic adaptions (characterized by decreased trophoblast glycogen content and insulin-like growth factor 2 (Igf2) gene hypomethylation) were only associated with a lack of maternal-derived gal-3. Paternal gal-3 deficiency caused compromised vascularization in the placental labyrinth without affecting fetal growth trajectory. Thus, maternal-derived gal-3 may play a key role in fetal-placental development through the gut-placenta axis.


Subject(s)
Fetal Growth Retardation , Galectin 3 , Placenta , Fetal Growth Retardation/metabolism , Fetal Growth Retardation/genetics , Pregnancy , Female , Animals , Placenta/metabolism , Mice , Galectin 3/metabolism , Galectin 3/deficiency , Galectin 3/genetics , Male , Gastrointestinal Microbiome , Mice, Inbred C57BL , Humans , Fetal Development , Insulin-Like Growth Factor II/metabolism , Insulin-Like Growth Factor II/genetics , Insulin-Like Growth Factor II/deficiency , Trophoblasts/metabolism
5.
Front Cell Infect Microbiol ; 14: 1433424, 2024.
Article in English | MEDLINE | ID: mdl-39165920

ABSTRACT

Introduction: Human trophoblastic cell lines, such as BeWo, are commonly used in 2D models to study placental Trypanosoma cruzi infections. However, these models do not accurately represent natural infections. Three-dimensional (3D) microtissue cultures offer a more physiologically relevant in vitro model, mimicking tissue microarchitecture and providing an environment closer to natural infections. These 3D cultures exhibit functions such as cell proliferation, differentiation, morphogenesis, and gene expression that resemble in vivo conditions. Methods: We developed a 3D culture model using the human trophoblastic cell line BeWo and nonadherent agarose molds from the MicroTissues® 3D Petri Dish® system. Both small (12-256) and large (12-81) models were tested with varying initial cell numbers. We measured the diameter of the 3D cultures and evaluated cell viability using Trypan Blue dye. Trophoblast functionality was assessed by measuring ß-hCG production via ELISA. Cell fusion was evaluated using confocal microscopy, with Phalloidin or ZO-1 marking cell edges and DAPI staining nuclei. T. cruzi infection was assessed by microscopy and quantitative PCR, targeting the EF1-α gene for T. cruzi and GAPDH for BeWo cells, using three parasite strains: VD (isolated from a congenital Chagas disease infant and classified as Tc VI), and K98 and Pan4 (unrelated to congenital infection and classified as Tc I). Results: Seeding 1000 BeWo cells per microwell in the large model resulted in comparable cellular viability to 2D cultures, with a theoretical diameter of 408.68 ± 12.65 µm observed at 5 days. Functionality, assessed through ß-hCG production, exceeded levels in 2D cultures at both 3 and 5 days. T. cruzi infection was confirmed by qPCR and microscopy, showing parasite presence inside the cells for all three tested strains. The distribution and progression of the infection varied with each strain. Discussion: This innovative 3D model offers a simple yet effective approach for generating viable and functional cultures susceptible to T. cruzi infection, presenting significant potential for studying the placental microenvironment.


Subject(s)
Chagas Disease , Placenta , Trophoblasts , Trypanosoma cruzi , Humans , Trophoblasts/parasitology , Trypanosoma cruzi/genetics , Trypanosoma cruzi/growth & development , Trypanosoma cruzi/physiology , Female , Pregnancy , Placenta/parasitology , Chagas Disease/parasitology , Cell Line , Cell Culture Techniques/methods , Cell Survival , Cell Culture Techniques, Three Dimensional/methods
6.
Cell Mol Life Sci ; 81(1): 336, 2024 Aug 09.
Article in English | MEDLINE | ID: mdl-39120751

ABSTRACT

Preeclampsia (PE) is a life-threatening pregnancy-specific complication with controversial mechanisms and no effective treatment except delivery is available. Currently, increasing researchers suggested that PE shares pathophysiologic features with protein misfolding/aggregation disorders, such as Alzheimer disease (AD). Evidences have proposed defective autophagy as a potential source of protein aggregation in PE. Endoplasmic reticulum-selective autophagy (ER-phagy) plays a critical role in clearing misfolded proteins and maintaining ER homeostasis. However, its roles in the molecular pathology of PE remain unclear. We found that lncRNA DUXAP8 was upregulated in preeclamptic placentae and significantly correlated with clinical indicators. DUXAP8 specifically binds to PCBP2 and inhibits its ubiquitination-mediated degradation, and decreased levels of PCBP2 reversed the activation effect of DUXAP8 overexpression on AKT/mTOR signaling pathway. Function experiments showed that DUXAP8 overexpression inhibited trophoblastic proliferation, migration, and invasion of HTR-8/SVneo and JAR cells. Moreover, pathological accumulation of swollen and lytic ER (endoplasmic reticulum) was observed in DUXAP8-overexpressed HTR8/SVneo cells and PE placental villus trophoblast cells, which suggesting that ER clearance ability is impaired. Further studies found that DUXAP8 overexpression impaired ER-phagy and caused protein aggregation medicated by reduced FAM134B and LC3II expression (key proteins involved in ER-phagy) via activating AKT/mTOR signaling pathway. The increased level of FAM134B significantly reversed the inhibitory effect of DUXAP8 overexpression on the proliferation, migration, and invasion of trophoblasts. In vivo, DUXAP8 overexpression through tail vein injection of adenovirus induced PE-like phenotypes in pregnant rats accompanied with activated AKT/mTOR signaling, decreased expression of FAM134B and LC3-II proteins and increased protein aggregation in placental tissues. Our study reveals the important role of lncRNA DUXAP8 in regulating trophoblast biological behaviors through FAM134B-mediated ER-phagy, providing a new theoretical basis for understanding the pathogenesis of PE.


Subject(s)
Autophagy , Endoplasmic Reticulum , Pre-Eclampsia , Proto-Oncogene Proteins c-akt , RNA, Long Noncoding , Signal Transduction , TOR Serine-Threonine Kinases , Trophoblasts , Adult , Animals , Female , Humans , Pregnancy , Rats , Autophagy/genetics , Cell Line , Cell Movement/genetics , Cell Proliferation/genetics , Endoplasmic Reticulum/metabolism , Placenta/metabolism , Pre-Eclampsia/metabolism , Pre-Eclampsia/genetics , Pre-Eclampsia/pathology , Proto-Oncogene Proteins c-akt/metabolism , Rats, Sprague-Dawley , RNA, Long Noncoding/genetics , RNA, Long Noncoding/metabolism , RNA-Binding Proteins/metabolism , RNA-Binding Proteins/genetics , TOR Serine-Threonine Kinases/metabolism , Trophoblasts/metabolism , Trophoblasts/pathology , Male
7.
Sci Rep ; 14(1): 18714, 2024 08 12.
Article in English | MEDLINE | ID: mdl-39134702

ABSTRACT

Chronic histiocytic intervillositis (CHI) is a recurrent placental lesion where maternal macrophages infiltrate the intervillous space. Its cause is unknown, though due to similarities to rejected allografts one hypothesis is that CHI represents maternal-fetal rejection. Here, virtual crossmatching was applied to healthy pregnancies and those with a history of CHI. Anti-HLA antibodies, measured by Luminex, were present in slightly more controls than CHI (8/17 (47.1%) vs 5/14 (35.7%)), but there was no significant difference in levels of sensitisation or fetal specific antibodies. Quantification of immunohistochemical staining for HLA-Class II was increased in syncytiotrophoblast of placentas with CHI (Grade 0.44 [IQR 0.1-0.7]) compared to healthy controls (0.06 [IQR 0-0.2]) and subsequent pregnancies (0.13 [IQR 0-0.3]) (P = 0.0004). HLA-Class II expression was positively related both to the severity of CHI (r = 0.67) and C4d deposition (r = 0.48). There was no difference in overall C4d and HLA-Class I immunostaining. Though increased anti-HLA antibodies were not evident in CHI, increased expression of HLA-Class II at the maternal-fetal interface suggests that they may be relevant in its pathogenesis. Further investigation of antibodies immediately after diagnosis is warranted in a larger cohort of CHI cases to better understand the role of HLA in its pathophysiology.


Subject(s)
Histocompatibility Antigens Class II , Humans , Female , Pregnancy , Adult , Histocompatibility Antigens Class II/metabolism , Placenta/pathology , Placenta/metabolism , Placenta/immunology , Up-Regulation , Placenta Diseases/pathology , Placenta Diseases/immunology , Placenta Diseases/metabolism , Chorionic Villi/metabolism , Chorionic Villi/pathology , Chorionic Villi/immunology , Trophoblasts/metabolism , Trophoblasts/pathology , Trophoblasts/immunology , Chronic Disease
8.
Front Immunol ; 15: 1447190, 2024.
Article in English | MEDLINE | ID: mdl-39176096

ABSTRACT

F. nucleatum, involved in carcinogenesis of colon carcinomas, has been described as part of the commensal flora of the female upper reproductive tract. Although its contribution to destructive inflammatory processes is well described, its role as commensal uterine bacteria has not been thoroughly investigated. Since carcinogenesis shares similar mechanisms with early pregnancy development (including proliferation, invasion, blood supply and the induction of tolerance), these mechanisms induced by F. nucleatum could play a role in early pregnancy. Additionally, implantation and placentation require a well-balanced immune activation, which might be suitably managed by the presence of a limited amount of bacteria or bacterial residues. We assessed the effect of inactivated F. nucleatum on macrophage-trophoblast interactions. Monocytic cells (THP-1) were polarized into M1, M2a or M2c macrophages by IFN-γ, IL-4 or TGF-ß, respectively, and subsequently treated with inactivated fusobacteria (bacteria:macrophage ratio of 0.1 and 1). Direct effects on macrophages were assessed by viability assay, flow cytometry (antigen presentation molecules and cytokines), qPCR (cytokine expression), in-cell Western (HIF and P-NF-κB) and ELISA (VEGF secretion). The function of first trimester extravillous trophoblast cells (HTR-8/SVneo) in response to macrophage-conditioned medium was microscopically assessed by migration (scratch assay), invasion (sprouting assay) and tube formation. Underlying molecular changes were investigated by ELISA (VEGF secretion) and qPCR (matrix-degrading factors and regulators). Inflammation-primed macrophages (M1) as well as high bacterial amounts increased pro-inflammatory NF-κB expression and inflammatory responses. Subsequently, trophoblast functions were impaired. In contrast, low bacterial stimulation caused an increased HIF activation and subsequent VEGF-A secretion in M2c macrophages. Accordingly, there was an increase of trophoblast tube formation. Our results suggest that a low-mass endometrial/decidual microbiome can be tolerated and while it supports implantation and further pregnancy processes.


Subject(s)
Fusobacterium nucleatum , Macrophages , Trophoblasts , Humans , Trophoblasts/immunology , Trophoblasts/microbiology , Trophoblasts/metabolism , Fusobacterium nucleatum/immunology , Fusobacterium nucleatum/physiology , Macrophages/immunology , Macrophages/microbiology , Macrophages/metabolism , Female , Pregnancy , Cytokines/metabolism , THP-1 Cells , NF-kappa B/metabolism , Fusobacterium Infections/immunology , Fusobacterium Infections/microbiology , Vascular Endothelial Growth Factor A/metabolism
9.
Mol Reprod Dev ; 91(8): e23767, 2024 Aug.
Article in English | MEDLINE | ID: mdl-39175337

ABSTRACT

In many mammals, including ruminants, pregnancy requires pregnancy recognition signaling molecules secreted by the conceptus; however, the mechanism underlying pregnancy establishment in cattle remains unknown. Trophoblastic vesicles (TVs) are artificially produced from the extraembryonic tissues of the elongating conceptus and may be useful tools for understanding conception. This study investigated the morphological and functional properties of TVs in comparison to those of intact conceptuses. TVs were prepared from the extraembryonic tissues of conceptuses collected 14 days after artificial insemination (AI), cryopreserved immediately after dissection, and cultured after thawing for subsequent transplantation into the uterus. The transferred TVs were collected 7 days after transplantation and compared with extraembryonic tissue samples collected from conceptuses at 21 days post-AI. The recovered TVs were 40 times longer than those of their pre-transplant counterparts. Microscopic evaluation revealed that their membrane structures consisted of trophoblast and hypoblast layers. The expression patterns of the cell differentiation markers, CDX2, SOX2, and GATA6, and interferon tau (IFNT) protein expression levels in the TVs were similar to those in control extraembryonic tissue samples. These findings suggest that TVs are capable of morphological elongation and maintain IFNT production in a similar way as original trophoblasts.


Subject(s)
Trophoblasts , Animals , Cattle , Female , Trophoblasts/metabolism , Trophoblasts/cytology , Pregnancy , Interferon Type I/metabolism , Pregnancy Proteins/metabolism , Uterus/metabolism , Extracellular Vesicles/metabolism
10.
Sci Rep ; 14(1): 19598, 2024 08 23.
Article in English | MEDLINE | ID: mdl-39179576

ABSTRACT

Prenatal exposure to toxins can adversely affect long-term health outcomes of the offspring. Though chemotherapeutics are now standard of care for treating cancer patients during pregnancy, certain compounds are known to cross the placenta and harm placental tissue. The consequences for the fetus are largely unexplored. Here we examined the responses of newborn cord blood mononuclear cells in tissue culture to two chemotherapeutic drugs, cyclophosphamide and epirubicin, when either directly exposed to these drugs, or indirectly after crossing a placenta trophoblast bilayer barrier. Cord blood mononuclear cells exposed to the conditioned media obtained from cyclophosphamide-exposed trophoblast barriers showed a significant 2.4-fold increase of nuclear ROS levels compared to direct exposure to cyclophosphamide. Indirect exposure to epirubicine-exposed trophoblast barriers not only enhanced nuclear ROS levels but also significantly increased the fraction of cord blood cells with double strand breaks, relative to directly exposed cells. Neither apoptosis nor proliferation markers were affected in cord mononuclear blood cells upon direct or indirect exposure to cyclophosphamide or epirubicin. Our data suggests that trophoblast cells exposed to cyclophosphamide or epirubicine may induce an indirect 'bystander' effect and can aggravate genotoxicity in the fetal compartment.


Subject(s)
Cyclophosphamide , Epirubicin , Fetal Blood , Placenta , Humans , Fetal Blood/cytology , Fetal Blood/metabolism , Female , Pregnancy , Cyclophosphamide/toxicity , Cyclophosphamide/adverse effects , Epirubicin/adverse effects , Placenta/drug effects , Placenta/metabolism , Leukocytes, Mononuclear/drug effects , Leukocytes, Mononuclear/metabolism , Trophoblasts/drug effects , Trophoblasts/metabolism , Reactive Oxygen Species/metabolism , DNA Damage/drug effects , Apoptosis/drug effects , Infant, Newborn , Antineoplastic Agents/toxicity , Antineoplastic Agents/pharmacology , Antineoplastic Agents/adverse effects , Cells, Cultured
11.
Commun Biol ; 7(1): 1041, 2024 Aug 23.
Article in English | MEDLINE | ID: mdl-39179795

ABSTRACT

Chorion trophoblasts (CTCs) and immune cell-enriched decidua (DECs) comprise the maternal-fetal membrane interface called the chorio-decidual interface (CDi) which constantly gets exposed to maternal stressors without leading to labor activation. This study explored how CTCs act as a barrier at CDi. The roles of human leukocyte antigen (HLA)-G and progesterone receptor membrane component 2 (PGRMC2) in mediating immune homeostasis were also investigated. The CDi was recreated in a two-chamber microfluidic device (CDi-on-chip) with an outer chamber of primary DECs and immune cell line-derived innate immune cells and an inner chamber of wild-type or PGRMC2 or HLA-G knockout immortalized CTCs. To mimic maternal insults, DECs were treated with lipopolysaccharide, poly(I:C), or oxidative stress inducer cigarette smoke extract. Expression levels of inflammation and immunity genes via targeted RNA sequencing, production of soluble mediators, and immune cell migration into CTCs were determined. In CDi-on-chip, decidua and immune cells became inflammatory in response to insults while CTCs were refractory, highlighting their barrier function. HLA-G and PGRMC2 are found to be vital to immune homeostasis at the CDi, with PGRMC2 serving as an upstream regulator of inflammation, HLA-G expression, and mesenchymal-epithelial transition, and HLA-G serving as a frontline immunomodulatory molecule, thus preventing fetal membrane compromise.


Subject(s)
HLA-G Antigens , Homeostasis , Receptors, Progesterone , Humans , Female , HLA-G Antigens/genetics , HLA-G Antigens/metabolism , Receptors, Progesterone/metabolism , Receptors, Progesterone/genetics , Pregnancy , Membrane Proteins/metabolism , Membrane Proteins/genetics , Decidua/metabolism , Decidua/immunology , Extraembryonic Membranes/metabolism , Trophoblasts/metabolism , Trophoblasts/immunology , Chorion/metabolism
12.
Ann Med ; 56(1): 2394584, 2024 Dec.
Article in English | MEDLINE | ID: mdl-39183455

ABSTRACT

BACKGROUND: With the decline of global fertility, drug therapeutic of ectopic pregnancy is of great significance. Lithospermum erythrorhizon is using for embryo killing as herbal medicine. Shikonin is the critical nucleus of Lithospermum erythrorhizon; however, the mechanism is still unclear. The study aimed to explore the mechanism of shikonin against ectopic pregnancy. MATERIAL AND METHODS: In this study, we examined the viability and LDH release of HTR-8/SVneo cells by assays, observed pore formation in cell membranes by microscopy imaging and PI staining, and IL-1ß release by WB and ELISA assay kit. Then, we used network pharmacology to analyse the potential interaction between shikonin, ectopic pregnancy and pyroptosis and used molecular docking techniques to verify interactions between shikonin and core common targets. Finally, western blotting and immunofluorescence assay were used to explore the mechanism of shikonin-inducing pyroptosis of HTR-8/SVneo cells. RESULTS: Shikonin could cause a significant inhibition of HTR-8/SVneo cell viability in a concentration- and time-dependent manner. In HTR-8/SVneo cells, shikonin-induced cell swelling, bubble formation, an increase in the release of lactate dehydrogenase (LDH) and up-regulation of several pyroptosis-associated factors. And network pharmacology showed that The main targets of shikonin-ectopic pregnancy-pyroptosis were IL-1ß and caspase-1, and molecular docking results showed that shikonin can closely bind to IL-1ß, caspase-1 and GSDMD. Additionally, the necroptosis inhibitor GSK'872 could not suppress the expression of mature-IL-1ß and prevent the pyroptosis phenotype from developing. However, the nucleotide oligomerization domain-like receptor family pyrin domain containing 3 (NLRP3) inhibitor MCC-950 could downregulate the expression of pyroptosis-associated factors and prevent the pyroptosis phenotype from developing. Shikonin led to an elevation in the expression of cathepsin B (CTSB), and the CTSB inhibitor CA-074 abolished pyroptosis induced by shikonin; however, the NLRP3 inhibitor MCC-950 could not inhibit the expression of CTSB. CONCLUSIONS: Our results suggest that shikonin activates CTSB to induce NLRP3-dependent pyroptosis in HTR-8/SVneo cells. This study has important clinical implications for the treatment of ectopic pregnancy.


Subject(s)
Inflammasomes , Lithospermum , Molecular Docking Simulation , NLR Family, Pyrin Domain-Containing 3 Protein , Naphthoquinones , Pyroptosis , Trophoblasts , Naphthoquinones/pharmacology , Humans , Pyroptosis/drug effects , Lithospermum/chemistry , NLR Family, Pyrin Domain-Containing 3 Protein/metabolism , Trophoblasts/drug effects , Trophoblasts/metabolism , Inflammasomes/metabolism , Inflammasomes/drug effects , Female , Pregnancy , Cell Line , Interleukin-1beta/metabolism , Cell Survival/drug effects , Network Pharmacology
13.
Nat Commun ; 15(1): 5602, 2024 Jul 03.
Article in English | MEDLINE | ID: mdl-38961108

ABSTRACT

Abnormal trophoblast self-renewal and differentiation during early gestation is the major cause of miscarriage, yet the underlying regulatory mechanisms remain elusive. Here, we show that trophoblast specific deletion of Kat8, a MYST family histone acetyltransferase, leads to extraembryonic ectoderm abnormalities and embryonic lethality. Employing RNA-seq and CUT&Tag analyses on trophoblast stem cells (TSCs), we further discover that KAT8 regulates the transcriptional activation of the trophoblast stemness marker, CDX2, via acetylating H4K16. Remarkably, CDX2 overexpression partially rescues the defects arising from Kat8 knockout. Moreover, increasing H4K16ac via using deacetylase SIRT1 inhibitor, EX527, restores CDX2 levels and promoted placental development. Clinical analysis shows reduced KAT8, CDX2 and H4K16ac expression are associated with recurrent pregnancy loss (RPL). Trophoblast organoids derived from these patients exhibit impaired TSC self-renewal and growth, which are significantly ameliorated with EX527 treatment. These findings suggest the therapeutic potential of targeting the KAT8-H4K16ac-CDX2 axis for mitigating RPL, shedding light on early gestational abnormalities.


Subject(s)
CDX2 Transcription Factor , Cell Proliferation , Cell Self Renewal , Histone Acetyltransferases , Trophoblasts , Trophoblasts/metabolism , CDX2 Transcription Factor/metabolism , CDX2 Transcription Factor/genetics , Animals , Female , Humans , Mice , Pregnancy , Cell Self Renewal/genetics , Histone Acetyltransferases/metabolism , Histone Acetyltransferases/genetics , Abortion, Habitual/metabolism , Abortion, Habitual/genetics , Mice, Knockout , Histones/metabolism , Cell Differentiation , Placentation/genetics
14.
Cells ; 13(13)2024 Jul 06.
Article in English | MEDLINE | ID: mdl-38995001

ABSTRACT

BACKGROUND: Extravillous trophoblasts (EVTs) form stratified columns at the placenta-uterus interface. In the closest part to fetal structures, EVTs have a proliferative phenotype, whereas in the closest part to maternal structures, they present a migratory phenotype. During the placentation process, Connexin 40 (Cx40) participates in both the proliferation and migration of EVTs, which occurs under hypoxia. However, a possible interaction between hypoxia and Cx40 has not yet been established. METHODS: We developed two cellular models, one with "low Cx40" (Jeg-3), which reflected the expression of this protein found in migratory EVTs, and one with "high Cx40" (Jeg-3/hCx40), which reflected the expression of this protein in proliferative cells. We analyzed the migration and proliferation of these cells under normoxic and hypoxic conditions for 24 h. Jeg-3 cells under hypoxia increased their migratory capacity over their proliferative capacity. However, in Jeg-3/hCx40, the opposite effect was induced. On the other hand, hypoxia promoted gap junction (GJ) plaque formation between neighboring Jeg-3 cells. Similarly, the activation of a nitro oxide (NO)/cGMP/PKG-dependent pathway induced an increase in GJ-plaque formation in Jeg-3 cells. CONCLUSIONS: The expression patterns of Cx40 play a crucial role in shaping the responses of EVTs to hypoxia, thereby influencing their migratory or proliferative phenotype. Simultaneously, hypoxia triggers an increase in Cx40 gap junction (GJ) plaque formation through a pathway dependent on NO.


Subject(s)
Cell Hypoxia , Cell Movement , Cell Proliferation , Connexins , Gap Junction alpha-5 Protein , Gap Junctions , Trophoblasts , Trophoblasts/metabolism , Humans , Gap Junctions/metabolism , Connexins/metabolism , Female , Pregnancy , Cell Line , Models, Biological , Extravillous Trophoblasts
15.
Proc Natl Acad Sci U S A ; 121(31): e2404229121, 2024 Jul 30.
Article in English | MEDLINE | ID: mdl-39052836

ABSTRACT

The distinct human leukocyte antigen (HLA) class I expression pattern of human extravillous trophoblasts (EVT) endows them with unique tolerogenic properties that enable successful pregnancy. Nevertheless, how this process is elaborately regulated remains elusive. Previously, E74 like ETS transcription factor 3 (ELF3) was identified to govern high-level HLA-C expression in EVT. In the present study, ELF3 is found to bind to the enhancer region of two adjacent NOD-like receptor (NLR) genes, NLR family pyrin domain-containing 2 and 7 (NLRP2, NLRP7). Notably, our analysis of ELF3-deficient JEG-3 cells, a human choriocarcinoma cell line widely used to study EVT biology, suggests that ELF3 transactivates NLRP7 while suppressing the expression of NLRP2. Moreover, we find that NLRP2 and NLRP7 have opposing effects on HLA-C expression, thus implicating them in immune evasion at the maternal-fetal interface. We confirmed that NLRP2 suppresses HLA-C levels and described a unique role for NLRP7 in promoting HLA-C expression in JEG-3. These results suggest that these two NLR genes, which arose via gene duplication in primates, are fine-tuned by ELF3 yet have acquired divergent functions to enable proper expression levels of HLA-C in EVT, presumably through modulating the degradation kinetics of IkBα. Targeting the ELF3-NLRP2/NLRP7-HLA-C axis may hold therapeutic potential for managing pregnancy-related disorders, such as recurrent hydatidiform moles and fetal growth restriction, and thus improve placental development and pregnancy outcomes.


Subject(s)
Adaptor Proteins, Signal Transducing , Apoptosis Regulatory Proteins , Extravillous Trophoblasts , HLA-C Antigens , Trophoblasts , Female , Humans , Pregnancy , Adaptor Proteins, Signal Transducing/metabolism , Adaptor Proteins, Signal Transducing/genetics , Cell Line, Tumor , Gene Expression Regulation , HLA-C Antigens/metabolism , HLA-C Antigens/genetics , Proto-Oncogene Proteins c-ets/metabolism , Proto-Oncogene Proteins c-ets/genetics , Transcription Factors/metabolism , Transcription Factors/genetics , Trophoblasts/metabolism , DNA-Binding Proteins/genetics , DNA-Binding Proteins/metabolism
16.
Biomolecules ; 14(7)2024 Jul 10.
Article in English | MEDLINE | ID: mdl-39062540

ABSTRACT

The migration, proliferation, and apoptosis of trophoblastic cells play a crucial role in ensuring the effective preservation of pregnancy at the maternal-fetal interface. Any deviations in the structure and function of these cells might potentially result in the development of numerous pregnancy-related disorders, including missed abortion (MA). This study involved the examination of semaphorin 4A (SEMA4A) expression in missed abortion (n = 18) and normal early pregnancy (n = 18) villus. The findings of this study indicate a statistically significant decrease in the expression of SEMA4A in the villi of individuals diagnosed with missed abortion, as compared to the control group. The results of our vitro study showed that SEMA4A promoted the migration and proliferation of trophoblast cells and inhibited their apoptosis. Subsequent studies have shown that SEMA4A may be involved in regulating p-STAT3/STAT3, MMP9, bcl-2, and BAX levels. In summary, the findings of this study indicate a correlation between the decreased level of SEMA4A in chorionic villi and missed abortion. These results offer novel theoretical insights into the proper implantation and development of SEMA4A embryos at the maternal-fetal interface.


Subject(s)
Apoptosis , Cell Proliferation , STAT3 Transcription Factor , Semaphorins , Signal Transduction , Trophoblasts , Humans , Female , Trophoblasts/metabolism , Pregnancy , Semaphorins/metabolism , Semaphorins/genetics , STAT3 Transcription Factor/metabolism , Adult , Cell Movement , Chorionic Villi/metabolism , Abortion, Missed/metabolism , Matrix Metalloproteinase 9/metabolism
17.
Proc Natl Acad Sci U S A ; 121(28): e2404062121, 2024 Jul 09.
Article in English | MEDLINE | ID: mdl-38968109

ABSTRACT

Nutrient sensing and adaptation in the placenta are essential for pregnancy viability and proper fetal growth. Our recent study demonstrated that the placenta adapts to nutrient insufficiency through mechanistic target of rapamycin (mTOR) inhibition-mediated trophoblast differentiation toward syncytiotrophoblasts (STBs), a highly specialized multinucleated trophoblast subtype mediating extensive maternal-fetal interactions. However, the underlying mechanism remains elusive. Here, we unravel the indispensable role of the mTORC1 downstream transcriptional factor TFEB in STB formation both in vitro and in vivo. TFEB deficiency significantly impaired STB differentiation in human trophoblasts and placenta organoids. Consistently, systemic or trophoblast-specific deletion of Tfeb compromised STB formation and placental vascular construction, leading to severe embryonic lethality. Mechanistically, TFEB conferred direct transcriptional activation of the fusogen ERVFRD-1 in human trophoblasts and thereby promoted STB formation, independent of its canonical function as a master regulator of the autophagy-lysosomal pathway. Moreover, we demonstrated that TFEB directed the trophoblast syncytialization response driven by mTOR complex 1 (mTORC1) signaling. TFEB expression positively correlated with the reinforced trophoblast syncytialization in human fetal growth-restricted placentas exhibiting suppressed mTORC1 activity. Our findings substantiate that the TFEB-fusogen axis ensures proper STB formation during placenta development and under nutrient stress, shedding light on TFEB as a mechanistic link between nutrient-sensing machinery and trophoblast differentiation.


Subject(s)
Basic Helix-Loop-Helix Leucine Zipper Transcription Factors , Cell Differentiation , Mechanistic Target of Rapamycin Complex 1 , Trophoblasts , Trophoblasts/metabolism , Humans , Basic Helix-Loop-Helix Leucine Zipper Transcription Factors/metabolism , Basic Helix-Loop-Helix Leucine Zipper Transcription Factors/genetics , Female , Pregnancy , Mice , Animals , Mechanistic Target of Rapamycin Complex 1/metabolism , Placenta/metabolism , Signal Transduction , Autophagy/physiology
18.
Int J Mol Sci ; 25(14)2024 Jul 18.
Article in English | MEDLINE | ID: mdl-39063129

ABSTRACT

Successful human pregnancy needs several highly controlled steps to guarantee an oocyte's fertilization, the embryo's pre-implantation development, and its subsequent implantation into the uterine wall. The subsequent placenta development ensures adequate fetal nutrition and oxygenation, with the trophoblast being the first cell lineage to differentiate during this process. The placenta sustains the growth of the fetus by providing it with oxygen and nutrients and removing waste products. It is not surprising that issues with the early development of the placenta can lead to common pregnancy disorders, such as recurrent miscarriage, fetal growth restriction, pre-eclampsia, and stillbirth. Understanding the normal development of the human placenta is essential for recognizing and contextualizing any pathological aberrations that may occur. The effects of these issues may not become apparent until later in pregnancy, during the mid or advanced stages. This review discusses the process of the embryo implantation phase, the molecular mechanisms involved, and the abnormalities in those mechanisms that are thought to contribute to the development of pre-eclampsia. The review also covers the histological hallmarks of pre-eclampsia as found during the examination of placental tissue from pre-eclampsia patients.


Subject(s)
Placenta , Placentation , Pre-Eclampsia , Humans , Pre-Eclampsia/metabolism , Pre-Eclampsia/pathology , Pregnancy , Female , Placenta/pathology , Placenta/metabolism , Embryo Implantation , Trophoblasts/metabolism , Trophoblasts/pathology
19.
Sci Total Environ ; 948: 174979, 2024 Oct 20.
Article in English | MEDLINE | ID: mdl-39053546

ABSTRACT

Microcystin-leucine arginine (MC-LR) has been reported to exhibit placental toxicity, leading to potential adverse pregnancy outcomes. Placental abnormalities often coincide with congenital heart defects (CHD). However, the extent to which MC-LR-induced placental abnormalities contribute to CHD and the cellular mechanisms underlying this association remain unknown. In this study, we observed abnormal polarization of placental macrophages in pregnant mice exposed to MC-LR during pregnancy, and the embryos developed cardiac developmental defects that persisted into adulthood. Trophoblast-derived extracellular vesicles (T-EVs) increase in number during pregnancy and act as a critical signal in macrophage polarization. However, MC-LR significantly affected the miRNA expression profile of T-EVs. Upon internalization into macrophages, T-EV-derived miR-377-3p specifically targets the 3'UTR region of NR6A1 to inhibit gene expression. Silencing of transcription suppressor NR6A1 leads to abnormal activation of the downstream mTOR/S6K1/SREBP pathway, inducing metabolic reprogramming and ultimately leading to M1 polarization of macrophages. This study elucidated the placental mechanism underlying MC-LR-induced CHD for the first time, providing insights into the environmental risks associated with CHD.


Subject(s)
Extracellular Vesicles , Macrophages , Microcystins , Trophoblasts , Animals , Female , Pregnancy , Mice , Trophoblasts/drug effects , Extracellular Vesicles/metabolism , Macrophages/drug effects , Microcystins/toxicity , Coronary Disease/chemically induced , Marine Toxins , Prenatal Exposure Delayed Effects , Maternal Exposure/adverse effects , MicroRNAs/metabolism , Placenta
20.
J Biochem Mol Toxicol ; 38(7): e23759, 2024 Jul.
Article in English | MEDLINE | ID: mdl-39003567

ABSTRACT

Fetal growth restriction (FGR) severely affects the health outcome of newborns and represents a major cause of perinatal morbidity. The precise involvement of circCULT1 in the progression of FGR remains unclear. We performed next-generation sequencing and RT-qPCR to identify differentially expressed circRNAs in placental tissues affected by FGR by comparing them with unaffected counterparts. Edu, flow cytometry, and transwell assay were conducted to detect HTR8/SVneo cell's function in regard to cell proliferation, migration, and invasion. The interaction between circCUL1 and hsa-miR-30e-3p was assessed through dual-luciferase reporter assays, validation of the interaction between circCUL1 and ANXA1 was performed using RNA pulldown and immunoprecipitation assays. Western blot analysis was performed to evaluate protein levels of autophagy markers and components of the PI3K/AKT signaling pathway. A knockout (KO) mouse model was established for homologous mmu-circ-0001469 to assess fetal mouse growth and development indicators. Our findings revealed an upregulation of circCUL1 expression in placental tissues from patients with FGR. We found that suppression of circCUL1 increased the trophoblast cell proliferation, migration, and invasion, circCUL1 could interact with hsa-miR-30e-3p. Further, circCUL1 stimulated autophagy, modulating trophoblast cell autophagy via the ANXA1/PI3K/AKT pathway, and a notable disparity was observed, with KO mice displaying accelerated embryo development and exhibiting heavier placentas in comparison to wild-type C57BL/6 mice. By modulating the ANXA1/PI3K/AKT signaling pathway through the interaction with hsa-miR-30e-3p, circCUL1 promotes autophagy while concurrently suppressing trophoblast cell proliferation, migration, and invasion. These findings offer novel insights into potential diagnostic markers and therapeutic targets for FGR research.


Subject(s)
Autophagy , Cell Movement , Fetal Growth Retardation , MicroRNAs , Phosphatidylinositol 3-Kinases , Proto-Oncogene Proteins c-akt , Trophoblasts , Animals , Female , Humans , Mice , Pregnancy , Annexin A1 , Fetal Growth Retardation/metabolism , Fetal Growth Retardation/genetics , Fetal Growth Retardation/pathology , Mice, Knockout , MicroRNAs/metabolism , MicroRNAs/genetics , Phosphatidylinositol 3-Kinases/metabolism , Proto-Oncogene Proteins c-akt/metabolism , RNA, Circular/genetics , RNA, Circular/metabolism , Signal Transduction , Trophoblasts/metabolism , Trophoblasts/pathology
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