OBJECTIVE:To evaluate associations among antepartum pulse pressure and maternal and perinatal outcomes in women with mild chronic hypertension. METHODS:Secondary analysis of the CHAP (Chronic Hypertension and Pregnancy) trial, an open-label randomized controlled trial of antihypertensives (vs none) for mild chronic hypertension (blood pressure below 160/105 mm Hg). Patients without pulse pressure information or outcomes were excluded. The exposure was mean pulse pressure using clinic measurements after enrollment but before delivery, and the primary analysis assessed whether mean pulse pressure was associated with an adverse composite outcome. This composite included preeclampsia with severe features, medically indicated preterm birth (PTB) before 35 weeks of gestation, placental abruption or fetal or neonatal death, and small-for-gestational-age (SGA) birth weight. Logistic regression models were adjusted for randomization assignment. RESULTS:Two thousand three hundred twenty-five patients were eligible. The mean (SD) pulse pressure among patients was 50.2 (7.9) mm Hg. Increasing mean antepartum pulse pressure was associated with an increasing frequency of the adverse composite outcome (adjusted odds ratio [aOR] per 5 mm Hg 1.1; 95% CI, 1.0-1.2), preeclampsia with severe features (aOR 1.2; 95% CI, 1.0-1.1), and indicated PTB before 35 weeks of gestation (aOR 1.1; 95% CI, 1.0-1.2). Conversely, increasing pulse pressure was associated with decreasing rates of SGA birth weight below the 5th percentile (aOR 0.9; 95% CI, 0.9-1.0) but was not associated with SGA birth weight below the 10th percentile (aOR 0.9; 95% CI, 0.9-1.0). CONCLUSION:Increasing pulse pressure was modestly associated with an adverse composite, specifically preeclampsia with severe features and indicated PTB before 35 weeks of gestation, but it was negatively associated with SGA birth weight less than the 5th percentile. The role of antepartum pulse pressure in reducing adverse pregnancy outcomes in patients with chronic hypertension should be further investigated.
An underdeveloped placental vasculature is a cardinal feature in severe, early-onset fetal growth restriction with absent/reversed umbilical artery Doppler end-diastolic velocities (FGRa/r). Tissue microenvironment is a key mediator of angiogenesis; yet, the role of placental villous stromal extracellular matrix (ECM) in FGRa/r remains unknown. We applied an ECM-optimized, proteomic workflow to villous tissue and placental fibroblast cell-derived matrices (CDM) from FGRa/r, gestational age-matched controls, and uncomplicated term pregnancies. No significant differences were detected in villous tissue, although there was a trend toward increased type I collagen and fibronectin in FGRa/r placentas. FGRa/r CDM, however, appeared distinct from both control groups, with elevated matrisome abundance, greater insolubility of matrisome-associated proteins, and 44 differentially expressed matrisome proteins. Fibronectin emerged as a central network hub among differential matrisome proteins, interacting with thrombospondin-1, vitronectin, and transglutaminase-2, all of which were enriched in FGRa/r CDM, suggesting excessive deposition and crosslinking. In contrast, regulators of ECM remodeling and TGFβ activity, including fibrillin-1, decorin, and syndecan-4, were depleted. These features suggest a pro-fibrotic, dysregulated stroma with diminished remodeling capacity. Our findings establish the first, comprehensive proteomic map of human placental stromal matrisome and provide a molecular framework for understanding how aberrant ECM organization contributes to placental dysfunction.
BackgroundThe “great obstetrical syndromes” of fetal growth restriction and hypertensive disorders of pregnancy can occur individually or be interrelated. Placental pathologic findings often overlap between these conditions, regardless of whether one or both diagnoses are present. Quantification of placental villous structures in each of these settings may identify distinct differences in developmental pathways.ObjectiveTo determine how quantity and surface area of placental villi and vessels differ between severe, early-onset fetal growth restriction with absent/reversed umbilical artery Doppler indices, hypertensive disorders of pregnancy, and the two conditions combined among subjects with disease severity warranting early preterm delivery. We hypothesize that trajectories of placental morphogenesis diverge after a common initiating insult of deep defective placentation. Specifically, we postulate that only villi are affected in pregnancy-related hypertension, whereas both villous and vascular structures are proportionally diminished in severe fetal growth restriction, with no additional effect when hypertension is concomitantly present.Study designIn this retrospective cohort study, paraffin-embedded placental tissue was obtained from four groups: [1] Severe fetal growth restriction with absent/reversed umbilical artery end-diastolic velocities and hypertensive disorders of pregnancy, [2] Severe fetal growth restriction with absent/reversed umbilical artery Doppler indices and no hypertension,[3] Gestational age-matched, appropriately grown pregnancies with hypertensive disease, and [4] Gestational age-matched, appropriately grown pregnancies without hypertension. Dual immunohistochemistry for cytokeratin-7 (trophoblast) and CD34 (endothelial cells) was performed followed by artificial intelligence-driven morphometric analyses. Number of villi, total villous area, number of fetoplacental vessels, and total vascular area across villi within a uniform region of interest were quantified. Quantitative analyses of placental structures were modeled with linear regression.ResultsPlacentas from pregnancies complicated by hypertensive disorders of pregnancy exhibited significantly fewer stem villi (-282 stem villi, 95% CI: [-467, -98], p<0.01), smaller stem villous area (-4.3 mm2, 95% CI: [-7.3, -1.2], p<0.01), and fewer stem villous vessels (-4967 stem villous vessels, 95% CI [-8501, -1433], p<0.01), with no difference in total vascular area. In contrast, placental abnormalities in severe growth restriction were limited to terminal villi, with global decreases in number of villi (-873 terminal villi, 95% CI: [-1501, -246], p<0.01), villous area (-1.5 mm2, 95% CI: [-2.7, -0.4], p<0.01), number of blood vessels (-5165 terminal villous vessels, 95% CI: [-8201, -2128], p<0.01), and vascular area (-0.6 mm2, 95% CI: [-1.1, -0.1], p=0.02). The combination of hypertension and growth restriction had no additional effect beyond the individual impact of each state.ConclusionPregnancies complicated by hypertensive disorders of pregnancy exhibited defects in the stem villi only, whereas placental abnormalities in severely growth restricted pregnancies with absent/reversed umbilical artery end-diastolic velocities were limited to the terminal villi. There were no significant statistical interactions with the combination of growth restriction and hypertension, suggesting that distinct pathophysiologic pathways downstream of the initial insult of defective placentation are involved in each entity and do not synergize to result in more severe pathologic consequences. Delineating mechanisms underlying the divergence in placental development after a common inciting event of defective deep placentation may shed light on new targets for prevention or treatment.
OBJECTIVE:To investigate the optimal gestational age to deliver pregnant people with chronic hypertension to improve perinatal outcomes. METHODS:We conducted a planned secondary analysis of a randomized controlled trial of chronic hypertension treatment to different blood pressure goals. Participants with term, singleton gestations were included. Those with fetal anomalies and those with a diagnosis of preeclampsia before 37 weeks of gestation were excluded. The primary maternal composite outcome included death, serious morbidity (heart failure, stroke, encephalopathy, myocardial infarction, pulmonary edema, intensive care unit admission, intubation, renal failure), preeclampsia with severe features, hemorrhage requiring blood transfusion, or abruption. The primary neonatal outcome included fetal or neonatal death, respiratory support beyond oxygen mask, Apgar score less than 3 at 5 minutes, neonatal seizures, or suspected sepsis. Secondary outcomes included intrapartum cesarean birth, length of stay, neonatal intensive care unit admission, respiratory distress syndrome (RDS), transient tachypnea of the newborn, and hypoglycemia. Those with a planned delivery were compared with those expectantly managed at each gestational week. Adjusted odds ratios (aORs) with 95% CIs are reported. RESULTS:We included 1,417 participants with mild chronic hypertension; 305 (21.5%) with a new diagnosis in pregnancy and 1,112 (78.5%) with known preexisting hypertension. Groups differed by body mass index (BMI) and preexisting diabetes. In adjusted models, there was no association between planned delivery and the primary maternal or neonatal composite outcome in any gestational age week compared with expectant management. Planned delivery at 37 weeks of gestation was associated with RDS (7.9% vs 3.0%, aOR 2.70, 95% CI, 1.40-5.22), and planned delivery at 37 and 38 weeks was associated with neonatal hypoglycemia (19.4% vs 10.7%, aOR 1.97, 95% CI, 1.27-3.08 in week 37; 14.4% vs 7.7%, aOR 1.82, 95% CI, 1.06-3.10 in week 38). CONCLUSION:Planned delivery in the early-term period compared with expectant management was not associated with a reduction in adverse maternal outcomes. However, it was associated with increased odds of some neonatal complications. Delivery timing for individuals with mild chronic hypertension should weigh maternal and neonatal outcomes in each gestational week but may be optimized by delivery at 39 weeks.
OBJECTIVE:To compare differences in postpartum blood pressure (BP) control (BP below 140/90 mm Hg) for participants with hypertension randomized to receive antihypertensive treatment compared with no treatment during pregnancy. METHODS:This study was a planned secondary analysis of a multicenter, open-label, randomized controlled trial (The CHAP [Chronic Hypertension and Pregnancy] trial). Pregnant participants with mild chronic hypertension (BP below 160/105 mm Hg) were randomized into two groups: active (antihypertensive treatment) or control (no treatment unless severe hypertension, BP 160/105 mm Hg or higher). Study outcomes were BP control below 140/90 mm Hg (primary) and medication nonadherence based on a composite score threshold (secondary) at the 6-week postpartum follow-up visit. Participants without follow-up BP measurements were excluded from analysis of the BP control outcome. Participants without health care professional-prescribed antihypertensives at delivery were excluded from the analysis of the adherence outcome. Multivariable logistic regression was used to adjust for potential confounders. RESULTS:Of 2,408 participants, 1,684 (864 active, 820 control) were included in the analysis. A greater percentage of participants in the active group achieved BP control (56.7% vs 51.5%; adjusted odds ratio [aOR] 1.22, 95% CI, 1.00-1.48) than in the control group. Postpartum antihypertensive prescription was higher in the active group (81.7% vs 58.4%, P <.001), and nonadherence did not differ significantly between groups (aOR 0.81, 95% CI, 0.64-1.03). CONCLUSION:Antihypertensive treatment of mild chronic hypertension during pregnancy was associated with better BP control below 140/90 mm Hg in the immediate postpartum period.
OBJECTIVE: To evaluate maternal and neonatal outcomes by type of antihypertensive used in participants of the CHAP (Chronic Hypertension in Pregnancy) trial. METHODS: We conducted a planned secondary analysis of CHAP, an open-label, multicenter, randomized trial of antihypertensive treatment compared with standard care (no treatment unless severe hypertension developed) in pregnant patients with mild chronic hypertension (blood pressure 140–159/90–104 mm Hg before 20 weeks of gestation) and singleton pregnancies. We performed three comparisons based on medications prescribed at enrollment: labetalol compared with standard care, nifedipine compared with standard care, and labetalol compared with nifedipine. Although active compared with standard care groups were randomized, medication assignment within the active treatment group was not random but based on clinician or patient preference. The primary outcome was the occurrence of superimposed preeclampsia with severe features, preterm birth before 35 weeks of gestation, placental abruption, or fetal or neonatal death. The key secondary outcome was small for gestational age (SGA) neonates. We also compared medication adverse effects between groups. Relative risks (RRs) and 95% CIs were estimated with log binomial regression to adjust for confounding. RESULTS: Of 2,292 participants analyzed, 720 (31.4%) received labetalol, 417 (18.2%) received nifedipine, and 1,155 (50.4%) received no treatment. The mean gestational age at enrollment was 10.5±3.7 weeks; nearly half of participants (47.5%) identified as non-Hispanic Black; and 44.5% used aspirin. The primary outcome occurred in 217 (30.1%), 130 (31.2%), and 427 (37.0%) in the labetalol, nifedipine, and standard care groups, respectively. Risk of the primary outcome was lower among those receiving treatment (labetalol use vs standard adjusted RR 0.82, 95% CI, 0.72–0.94; nifedipine use vs standard adjusted RR 0.84, 95% CI, 0.71–0.99), but there was no significant difference in risk when labetalol was compared with nifedipine (adjusted RR 0.98, 95% CI, 0.82–1.18). There were no significant differences in SGA or serious adverse events between participants receiving labetalol and those receiving nifedipine. CONCLUSION: No significant differences in predetermined maternal or neonatal outcomes were detected on the basis of the use of labetalol or nifedipine for treatment of chronic hypertension in pregnancy. CLINICAL TRIAL REGISTRATION: ClinicalTrials.gov, NCT02299414.
To leverage artificial intelligence (AI)-driven precision pathology to quantify the effects of severe FGR, pregnancy-related HTN, or their interaction on placental villus and vascular properties. We hypothesize that while only villi are affected in HTN, both villous and vascular structures are diminished in severe FGR with no additional effect of concomitant HTN. In this retrospective cohort study, paraffin-embedded placental sections were obtained from four groups: [1] Severe FGR with HTN (n=11) [2] Severe FGR with normotension (n=14) [3] Appropriately grown, gestational age (GA)-matched pregnancies with HTN (n=12) and [4] Appropriately grown, GA-matched pregnancies with normotension (n=14). These underwent immunodetection for cytokeratin-7 (trophoblast) and CD34 (endothelium) followed by AI-driven image analyses. Number of villi and placental vessels, total villous area and total vascular area were quantified. Outcomes were normally distributed, and quantitative analyses were modeled with linear regression models. Pregnancies with HTN exhibited significantly less stem villi (p< 0.01), stem villous area (p< 0.01), and stem villous vessels (p< 0.01), with no difference in vascular area. In contrast, abnormalities in severe FGR were limited to terminal villi, with fewer villi and vessels (p< 0.01) and decreased villous area (p< 0.01) and vascular area (p=0.02). No significant effects were found with the interaction of HTN and severe FGR. Pregnancy-related HTN and severe FGR are associated with stem and terminal villus anomalies, respectively, suggesting that perturbations in placental development may be occurring at different gestational periods for each condition.
OBJECTIVE: To estimate the association between mean arterial pressure during pregnancy and neonatal outcomes in participants with chronic hypertension using data from the CHAP (Chronic Hypertension and Pregnancy) trial. METHODS: A secondary analysis of the CHAP trial, an open-label, multicenter randomized trial of antihypertensive treatment in pregnancy, was conducted. The CHAP trial enrolled participants with mild chronic hypertension (blood pressure [BP] 140–159/90–104 mm Hg) and singleton pregnancies less than 23 weeks of gestation, randomizing them to active treatment (maintained on antihypertensive therapy with a goal BP below 140/90 mm Hg) or standard treatment (control; antihypertensives withheld unless BP reached 160 mm Hg systolic BP or higher or 105 mm Hg diastolic BP or higher). We used logistic regression to measure the strength of association between mean arterial pressure (average and highest across study visits) and to select neonatal outcomes. Unadjusted and adjusted odds ratios (per 1-unit increase in millimeters of mercury) of the primary neonatal composite outcome (bronchopulmonary dysplasia, retinopathy of prematurity, necrotizing enterocolitis, or intraventricular hemorrhage grade 3 or 4) and individual secondary outcomes (neonatal intensive care unit admission [NICU], low birth weight [LBW] below 2,500 g, and small for gestational age [SGA]) were calculated. RESULTS: A total of 2,284 participants were included: 1,155 active and 1,129 control. Adjusted models controlling for randomization group demonstrated that increasing average mean arterial pressure per millimeter of mercury was associated with an increase in each neonatal outcome examined except NEC, specifically neonatal composite (adjusted odds ratio [aOR] 1.12, 95% CI, 1.09–1.16), NICU admission (aOR 1.07, 95% CI, 1.06–1.08), LBW (aOR 1.12, 95% CI, 1.11–1.14), SGA below the fifth percentile (aOR 1.03, 95% CI, 1.01–1.06), and SGA below the 10th percentile (aOR 1.02, 95% CI, 1.01–1.04). Models using the highest mean arterial pressure as opposed to average mean arterial pressure also demonstrated consistent associations. CONCLUSION: Increasing mean arterial pressure was positively associated with most adverse neonatal outcomes except NEC. Given that the relationship between mean arterial pressure and adverse pregnancy outcomes may not be consistent at all mean arterial pressure levels, future work should attempt to further elucidate whether there is an absolute threshold or relative change in mean arterial pressure at which fetal benefits are optimized along with maternal benefits. CLINICAL TRIAL REGISTRATION: ClinicalTrials.gov, NCT02299414.
BACKGROUND:Prenatal exposure to cannabis (or more specifically, delta 9-tetrahydrocannabinol [Δ9-THC]) has been consistently linked to low birthweight. Animal models further show that Δ9-THC is associated with rapid postnatal growth. Whether this association is modified by breastfeeding is unknown. METHODS:In this exploratory study, we followed 128 mother-child pairs through 3 years. Urinary Δ9-THC and cannabidiol (CBD) were measured mid-gestation. Generalized linear models estimated the associations between Δ9-THC and neonatal body composition. A mixed-effects model estimated the association between Δ9-THC and body mass index (BMI) z-score trajectories. Interaction was assessed by a three-way product term (Δ9-THC × breastmilk months × age). RESULTS:Fifteen children (12%) had Δ9-THC exposure; three had concomitant CBD exposure. Prenatal exposure to Δ9-THC alone was associated with lower fat mass (-95 g, 95% confidence interval [CI]: -174, -14) and neonatal adiposity (-2.1%; 95% CI: -4.2, -0.4) followed by rapid postnatal growth (0.42 increase in BMI z-score per square root year; 95% CI: 0.12, 0.72). Breastfeeding modified this association (p = 0.04), such that growth was similar for those breastfed for 5 months whereas a shorter duration of breastfeeding was associated with 1.1 higher BMI z-score at 3 years (95% CI: 0.21, 2.05). CONCLUSIONS:Our study suggests that prenatal exposure to Δ9-THC may alter early-life growth. Breastfeeding may stabilize rapid postnatal growth, but the impact of lactational exposure requires further investigation.
Severe, early-onset fetal growth restriction is a leading cause of medically indicated preterm birth and substantially increases the risk for perinatal death or disability. No treatments exist to improve fetal growth or safely prolong pregnancy. Furthermore, wide-ranging phenotypes limit the accurate prediction of pregnancy outcome. In this issue of the JCI, Spencer and colleagues combine a discovery-science approach with ultrasound parameters to identify the most discriminative models for predicting either the primary outcome of fetal or neonatal death, or a secondary outcome of death or delivery at 28 weeks of gestation or earlier. Their findings can better individualize patient counseling but, just as compellingly, provide the capacity to identify those pregnancies that are at such considerable risk as to justify enrollment in paradigm-shifting interventional trials that are in the pipeline.
BACKGROUND:Increased duration of breastfeeding improves maternal cardiovascular health and may be especially beneficial in high-risk populations, such as those with chronic hypertension. Others have shown that individuals with hypertension are less likely to breastfeed, and there has been limited research aimed at supporting breastfeeding goals in this population. The impact of perinatal blood pressure control on breastfeeding outcomes among people with chronic hypertension is unknown. OBJECTIVE:This study aimed to evaluate whether breastfeeding initiation and short-term duration assessed at the postpartum clinic visit differed according to perinatal blood pressure treatment strategy (targeting blood pressure <140/90 mm Hg vs reserving antihypertensive treatment for blood pressure ≥160/105 mm Hg). STUDY DESIGN:We performed a secondary analysis of the Chronic Hypertension and Pregnancy trial. This was an open-label, multicenter, randomized trial where pregnant participants with mild chronic hypertension were randomized to receive antihypertensive medications with goal blood pressure <140/90 mm Hg (active treatment) or deferred treatment until blood pressure ≥160/105 mm Hg (control). The primary outcome was initiation and duration of breastfeeding, assessed at the postpartum clinic visit. We performed bivariate analyses and log-binomial and cumulative logit regression models, adjusting models for variables that were unbalanced in bivariate analyses. We performed additional analyses to explore the relationship between breastfeeding duration and blood pressure measurements at the postpartum visit. RESULTS:Of the 2408 participants from the Chronic Hypertension and Pregnancy trial, 1444 (60%) attended the postpartum study visit and provided breastfeeding information. Participants in the active treatment group had different body mass index class distribution and earlier gestational age at enrollment, and (by design) were more often discharged on antihypertensives. Breastfeeding outcomes did not differ significantly by treatment group. In the active and control treatment groups, 563 (77.5%) and 561 (78.1%) initiated breastfeeding, and mean durations of breastfeeding were 6.5±2.3 and 6.3±2.1 weeks, respectively. The probability of ever breastfeeding (adjusted relative risk, 0.99; 95% confidence interval, 0.93-1.05), current breastfeeding at postpartum visit (adjusted relative risk, 1.01; 95% confidence interval, 0.94-1.10), and weeks of breastfeeding (adjusted odds ratio, 0.87; 95% confidence interval, 0.68-1.12) did not differ by treatment group. Increased duration (≥2 vs <2 weeks) of breastfeeding was associated with slightly lower blood pressure measurements at the postpartum visit, but these differences were not significant in adjusted models. CONCLUSION:In a secondary analysis of the cohort of Chronic Hypertension and Pregnancy trial participants who attended the postpartum study visit and provided breastfeeding information (60% of original trial participants), breastfeeding outcomes did not differ significantly by treatment group. This suggests that maintaining goal blood pressure <140/90 mm Hg throughout the perinatal period is associated with neither harm nor benefit for short-term breastfeeding goals. Further study is needed to understand long-term breastfeeding outcomes among individuals with chronic hypertension and how to support this population in achieving their breastfeeding goals.
OBJECTIVE: To evaluate the association between maternal blood pressure (BP) below 130/80 mm Hg compared with 130–139/80–89 mm Hg and pregnancy outcomes. METHODS: We conducted a planned secondary analysis of CHAP (Chronic Hypertension and Pregnancy), an open label, multicenter, randomized controlled trial. Participants with mean BP below 140/90 mm Hg were grouped as below 130/80 mm Hg compared with 130–139/80–89 mm Hg by averaging postrandomization clinic BP throughout pregnancy. The primary composite outcome was preeclampsia with severe features, indicated preterm birth before 35 weeks of gestation, placental abruption, or fetal or neonatal death. The secondary outcome was small for gestational age (SGA). RESULTS: Of 2,408 patients in CHAP, 2,096 met study criteria; 1,328 had mean BP 130–139/80–89 mm Hg and 768 had mean BP below 130/80 mm Hg. Participants with mean BP below 130/80 mm Hg were more likely to be older, on antihypertensive medication, in the active treatment arm, and to have lower BP at enrollment. Mean clinic BP below 130/80 mm Hg was associated with lower frequency of the primary outcome (16.0% vs 35.8%, adjusted relative risk 0.45; 95% CI 0.38–0.54) as well as lower risk of severe preeclampsia and indicated birth before 35 weeks of gestation. There was no association with SGA. CONCLUSION: In pregnant patients with mild chronic hypertension, mean BP below 130/80 mm Hg was associated with improved pregnancy outcomes without increased risk of SGA. CLINICAL TRIAL REGISTRATION: ClinicalTrials.gov, NCT02299414.
Severe fetal growth restriction (FGR) is characterized by increased placental vascular resistance resulting from aberrant angiogenesis. Interactions between endothelial cells (ECs) and the extracellular matrix (ECM) are critical to the complex process of angiogenesis. We have previously found that placental stromal abnormalities contribute to impaired angiogenesis in severe FGR. The objective of this research is to better characterize the effect of individual ECM proteins on placental angiogenic properties in the setting of severe FGR. ECs were isolated from human placentae, either control or affected by severe FGR, and subjected to a series of experiments to interrogate the role of ECM proteins on adhesion, proliferation, migration, and apoptosis. We found impaired proliferation and migration of growth-restricted ECs. Although individual substrates did not substantially impact migratory capacity, collagens I, III, and IV partially mitigated proliferative defects seen in FGR ECs. Differences in adhesion and apoptosis between control and FGR ECs were not evident. Our findings demonstrate that placental angiogenic defects that characterize severe FGR cannot be explained by a singular ECM protein, but rather, the placental stroma as a whole. Further investigation of the effects of stromal composition, architecture, stiffness, growth factor sequestration, and capacity for remodeling is essential to better understand the role of ECM in impaired angiogenesis in severe FGR.
Impaired vascular development is a central finding in severe fetal growth restriction (FGR) with abnormal Doppler velocimetry. Angiogenesis involves complex interactions between endothelial cells (ECs) and extracellular matrix (ECM). Our laboratory previously found that FGR ECs exhibit deficient angiogenic properties, a deficit that is further worsened in the presence of ECM generated from FGR placentae but partially rescued by control ECM. Our objective was to identify the effects of individual ECM substrates on EC function to better characterize the impaired angiogenic pathway characteristic of FGR. ECs were isolated from term control (n=8) or severe FGR (n=8) human placentae and plated on six individual ECM proteins: fibronectin; collagens I, III, and IV; laminin; and thrombospondin. Adhesion was assessed by colorimetric staining. Live cell microscopy was used to determine proliferation. Migration was analyzed via relative wound density following wound scratch. Apoptosis was evaluated by immunoblotting for cleaved caspase 3. T tests, ANOVAs, and nonlinear regressions were performed. There was no difference between adhesion of control and FGR ECs to individual ECM substrates. Control ECs proliferated more rapidly than FGR ECs (p< 0.01; figure 1). Deficient growth of FGR ECs was not rescued by any ECM substrate. Migration of FGR ECs was impaired relative to control ECs when accounting for all substrates (p=0.02). This finding persisted specifically in the presence of collagen I (p=0.03; figure 2) but not other substrates. Apoptosis was not detected for either type of ECs on any substrate. ECs from placentae affected by severe FGR display impaired proliferation and migration. This growth deficit appears to be independent of individual ECM substrates. FGR migratory defects persist on collagen I but not other substrates. Our data suggest that no singular ECM protein is responsible for the aberrant angiogenesis seen in severe FGR and rather there are likely multiple mechanisms underlying this pathology.View Large Image Figure ViewerDownload Hi-res image Download (PPT)
Fetal growth restriction (FGR), which most commonly results from suboptimal placental function, substantially increases risks for adverse perinatal and long-term outcomes. The only "treatment" that exists is delivery, which averts stillbirth but does not improve out-comes in survivors. Furthermore, the potential long-term consequences of FGR to the fe-tus, including cardiometabolic disorders, predispose these individuals to developing FGR in their future pregnancies. This creates a multi-generational cascade of adverse effects stem-ming from a single dysfunctional placenta, and understanding the mechanisms underlying placental-mediated FGR is critically important if we are to improve outcomes and overall health. The mechanisms behind FGR remain unknown. However, placental insufficiency de-rived from maldevelopment of the placental vascular systems is the most common etiology. To highlight important mechanistic interactions within the placenta, we focus on placental vascular development in the setting of FGR. We delve into fetoplacental angiogenesis, a robust and ongoing process in normal pregnancies that is impaired in severe FGR. We re-view cellular models of FGR, with special attention to fetoplacental angiogenesis, and we highlight novel integrin-extracellular matrix interactions that regulate placental angiogenesis in severe FGR. In total, this review focuses on key developmental processes, with specific focus on the human placenta, an underexplored area of research.
Background: The ability to diagnose preeclampsia clinically is suboptimal. Our objective was to validate a novel multianalyte assay and characterize its performance, when intended for use as an aid to rule-out preeclampsia. Methods: Prospective, multicenter cohort study of pregnant individuals presenting between 28 0/7 and 36 6/7 weeks’ with preeclampsia-associated signs and symptoms. Individuals not diagnosed with preeclampsia after baseline evaluation were enrolled in the study cohort, with those who later developed preeclampsia, classified as cases and compared with a negative control group who did not develop preeclampsia. Individuals with assay values at time of enrollment ≥0.0325, determined using a previously developed algorithm, considered at risk. The primary analysis was the time to develop preeclampsia assessed using a multivariate Cox regression model. Results: One thousand thirty-six pregnant individuals were enrolled in the study cohort with an incidence of preeclampsia of 30.3% (27.6%–33.2%). The time to develop preeclampsia was shorter for those with an at-risk compared with negative assay result (log-rank P <0.0001; adjusted hazard ratio of 4.81 [3.69–6.27, P <0.0001]). The performance metrics for the assay to rule-out preeclampsia within 7 days of enrollment showed a sensitivity 76.4% (67.5%–83.5%), negative predictive value 95.0% (92.8%–96.6%), and negative likelihood ratio 0.46 (0.32–0.65). Assay performance improved if delivery occurred <37 weeks and for individuals enrolled between 28 and 35 weeks. Conclusions: We confirmed that a novel multianalyte assay was associated with the time to develop preeclampsia and has a moderate sensitivity and negative likelihood ratio but high negative predictive value when assessed as an aid to rule out preeclampsia within 7 days of enrollment. Registration: The study was registered on Clinicaltrials.gov (Identifier NCT02780414).
Placentas from pregnancies complicated by severe early-onset fetal growth restriction (FGR) exhibit diminished vascular development mediated by impaired angiogenesis, but underlying mechanisms remain unknown. In this study, we show that FGR endothelial cells demonstrate inherently reduced migratory capacity despite the presence of fibronectin, a matrix protein abundant in placental stroma that displays abnormal organization in FGR placentas. Thus, we hypothesized that aberrant endothelial-fibronectin interactions in FGR are a key mechanism underlying impaired FGR endothelial migration. Using human fetoplacental endothelial cells isolated from uncomplicated term control and FGR pregnancies, we assessed integrin α5β1 and αvβ3 regulation during cell migration. We show that endothelial integrin α5β1 and αvβ3 interactions with fibronectin are required for migration and that FGR endothelial cells responded differentially to integrin inhibition, indicating integrin dysregulation in FGR. Whole-cell expression was not different between groups. However, there were significantly more integrins in focal adhesions and reduced intracellular trafficking in FGR. These newly identified changes in FGR endothelial cellular processes represent previously unidentified mechanisms contributing to persistent angiogenic deficiencies in FGR.