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1.
Am J Obstet Gynecol ; 2024 Jun 12.
Artigo em Inglês | MEDLINE | ID: mdl-38876413

RESUMO

BACKGROUND: There is limited high-quality data on the best practices for maternal blood glucose management during labor. OBJECTIVE: We compared permissive care (target maternal blood glucose 70-180 mg/dL) to usual care (blood glucose 70-110 mg/dL) among laboring individuals with diabetes. STUDY DESIGN: This was a two-site equivalence randomized control trial for individuals with diabetes (pregestational or gestational) at ≥34 weeks in labor. Individuals were randomly allocated to usual care or permissive care. Maternal blood glucose was evaluated by capillary blood glucose monitoring in latent and active labor every 4 and 2 hours. Insulin drip was initiated if maternal blood glucose exceeded the upper bounds of the allocated target. The primary outcome was the first neonatal heel stick glucose within 2 hours of birth before feeding. We assumed a mean first neonatal blood glucose of 50±10 mg/dL. To ensure that the use of permissive care did not increase or decrease the first neonatal blood glucose >10 mg/dL (2-tailed: a=0.05, b=0.1), 96 total participants were required. We calculated adjusted relative risk and 95% confidence intervals in an intention-to-treat analysis. A preplanned Bayesian analysis was used to estimate the probability of equivalence with a neutral informative prior. RESULTS: Of deliveries with diabetes assessed for eligibility (from October 2022 to June 2023), 280 of 511 (54.8%) met eligibility criteria, and 96 of 280 (34.3%) agreed and were randomized. In the usual care group, 17% required an insulin drip compared with none in permissive care. There was equivalence in the primary outcome between usual and permissive care (57.9 vs 57.1 mg/dL; adjusted mean difference, -0.72 [95% confidence interval, -8.87 to 7.43]). Bayesian analysis indicated a 98% posterior probability of the mean difference not being >10 mg/dL. The rate of neonatal hypoglycemia was 25% in the usual care group and 29% in the permissive group (adjusted relative risk, 1.14; 95% confidence interval, 0.60-2.17). There was no difference in other neonatal or maternal outcomes. CONCLUSION: In this randomized control trial, although almost 1 in 6 individuals with diabetes required an insulin drip with usual intrapartum maternal blood glucose care, permissive care was associated with equivalent neonatal blood glucose.

2.
Am J Perinatol ; 2024 Jun 24.
Artigo em Inglês | MEDLINE | ID: mdl-38806155

RESUMO

OBJECTIVE: The study's primary objective was to evaluate adverse outcomes among reproductive-age hospitalizations with diabetic ketoacidosis (DKA), comparing those that are pregnancy-related versus nonpregnancy-related and evaluating temporal trends. STUDY DESIGN: We conducted a retrospective cross-sectional study using the National Inpatient Sample to identify hospitalizations with DKA among reproductive-age women (15-49 years) in the United States (2016-2020). DKA in pregnancy hospitalizations was compared with DKA in nonpregnant hospitalizations. Adverse outcomes evaluated included mechanical ventilation, coma, seizures, renal failure, prolonged hospital stay, and in-hospital death. Multivariable Poisson regression models with robust error variance were used to estimate adjusted relative risk (aRR) and 95% confidence interval (CI). Annual percent change (APC) was used to calculate the change in DKA rate over time. RESULTS: Among 35,210,711 hospitalizations of reproductive-age women, 447,600 (1.2%) were hospitalized with DKA, and among them, 13,390 (3%) hospitalizations were pregnancy-related. The rate of nonpregnancy-related DKA hospitalizations increased over time (APC = 3.8%, 95% CI = 1.5-6.1). After multivariable adjustment, compared with pregnancy-related hospitalizations with DKA, the rates of mechanical ventilation (aRR = 1.56, 95% CI = 1.18-2.06), seizures (aRR = 2.26, 95% CI = 1.72-2.97), renal failure (aRR = 2.26, 95% CI = 2.05-2.50), coma (aRR = 2.53, 95% CI = 1.68-3.83), and in-hospital death (aRR = 2.38, 95% CI = 1.06-5.36) were higher among nonpregnancy-related hospitalizations with DKA. CONCLUSION: A nationally representative sample of hospitalizations indicates that over the 5-year period, the rate of nonpregnancy-related DKA hospitalizations increased among reproductive age women, and a higher risk of adverse outcomes was observed when compared with pregnancy-related DKA hospitalizations. KEY POINTS: · Over 5 years, the rate of pregnancy-related DKA hospitalizations was stable.. · Over 5 years, the rate of nonpregnancy-related DKA hospitalizations increased.. · There is a higher risk of adverse outcomes with DKA outside of pregnancy..

3.
Am J Perinatol ; 2024 May 27.
Artigo em Inglês | MEDLINE | ID: mdl-38688321

RESUMO

OBJECTIVE: To examine the association of adverse outcomes among parturients with large for gestational age (LGA; birth weight ≥ 90th) newborns, stratified by diabetes status. Additionally, we described the temporal trends of adverse outcomes among LGA neonates. STUDY DESIGN: This retrospective cohort study used the U.S. Vital Statistics dataset between 2014 and 2020. The inclusion criteria were singleton, nonanomalous LGA live births who labored and delivered at 24 to 41 weeks with known diabetes status. The coprimary outcomes were composite neonatal adverse outcomes of the following: Apgar score < 5 at 5 minutes, assisted ventilation > 6 hours, seizure, or neonatal or infant mortality, and maternal adverse outcomes of the following: maternal transfusion, ruptured uterus, unplanned hysterectomy, admission to intensive care unit, or unplanned procedure. Multivariable Poisson regression models were used to estimate adjusted relative risks (aRR) and 95% confidence intervals (CI). Average annual percent change (AAPC) was calculated to assess changes in rates of LGA and morbidity over time. RESULTS: Of 27 million births in 7 years, 1,843,467 (6.8%) met the inclusion criteria. While 1,656,888 (89.9%) did not have diabetes, 186,579 (10.1%) were with diabetes. Composite neonatal adverse outcomes (aRR = 1.48, 95% CI = 1.43, 1.52) and composite maternal adverse outcomes (aRR = 1.37, 95% CI = 1.36, 1.38) were significantly higher among individuals with diabetes, compared with those without diabetes. From 2014 to 2020, the LGA rate was stable among people without diabetes. However, there was a downward trend of LGA in people with diabetes (AAPC = - 2.4, 95% CI = - 3.5, -1.4). CONCLUSION: In pregnancies with LGA newborns, composite neonatal and maternal morbidities were higher in those with diabetes, compared with those without diabetes. KEY POINTS: · Large for gestational age stratified by diabetes status.. · Composite neonatal and maternal adverse outcomes are worse among individuals with diabetes as compared to those without.. · During 2014 to 2020, the trend of LGA in individuals without diabetes increased..

4.
Am J Obstet Gynecol MFM ; 6(3): 101268, 2024 03.
Artigo em Inglês | MEDLINE | ID: mdl-38242498

RESUMO

BACKGROUND: Unlike pregestational diabetes mellitus, the American College of Obstetricians and Gynecologists recommends antenatal corticosteroids in those with gestational diabetes mellitus at risk for preterm birth. However, this recommendation is based on limited data, only 10.6% of the Antenatal Late Preterm Steroids study sample had gestational diabetes mellitus. There is a paucity of data on the risk of neonatal respiratory and other morbidity in this population. OBJECTIVE: This study aimed to examine respiratory outcomes in parturients with gestational diabetes mellitus who received antenatal corticosteroids and delivered during the late preterm period vs those who did not. STUDY DESIGN: This population-based cohort study used the US Vital Statistics dataset between 2016 to 2020. The inclusion criteria were singleton, nonanomalous individuals who delivered between 34.0 to 36.6 weeks with gestational diabetes mellitus and known status of antepartum corticosteroid exposure. The primary outcome, a composite neonatal adverse outcome, included Apgar score <5 at 5 minutes, immediate assisted ventilation, assisted ventilation >6 hours, surfactant use, seizure, or neonatal mortality. The secondary outcome was a composite maternal adverse outcome, including maternal blood transfusion, ruptured uterus, unplanned hysterectomy, and admission to the intensive care unit. Multivariable Poisson regression models were used to estimate adjusted relative risks and 95% confidence intervals. Average annual percent change was calculated to assess changes in rates of corticosteroid exposure over the study period. RESULTS: Of 19 million births during the study period, 110,197 (0.6%) met the inclusion criteria, and among them, 23,028 (20.9%) individuals with gestational diabetes mellitus received antenatal corticosteroids. The rate of antenatal steroid exposure remained stable over the 5 years (APC=10.7; 95% confidence interval, -5.4 to 29.4). The composite neonatal adverse outcome was significantly higher among those who received corticosteroids than among those who did not (137.1 vs 216.5 per 1000 live births; adjusted relative risk 1.24; 95% confidence interval, 1.20-1.28). Three components of the composite neonatal adverse outcome-immediate assisted ventilation, intubation >6 hours, and surfactant use-were significantly higher with exposure than without. In addition, the composite maternal adverse outcome was significantly higher among those who received corticosteroids (adjusted relative risk, 1.34; 95% confidence interval, 1.18-1.52). Three components of the composite maternal adverse outcome-admission to intensive care unit, blood transfusion, and unplanned hysterectomy-were significantly higher among the exposed group. Subgroup analysis, among large for gestational age, by gestational age, and race and ethnicity, confirm the trend of increased likelihood of adverse outcomes with exposure to corticosteroid. CONCLUSION: Individuals with gestational diabetes mellitus and antenatal corticosteroid exposure, who delivered in the late preterm, were at higher risk of neonatal and maternal adverse outcomes than those unexposed to corticosteroid.


Assuntos
Diabetes Gestacional , Nascimento Prematuro , Recém-Nascido , Gravidez , Humanos , Feminino , Diabetes Gestacional/diagnóstico , Diabetes Gestacional/epidemiologia , Nascimento Prematuro/epidemiologia , Nascimento Prematuro/etiologia , Nascimento Prematuro/prevenção & controle , Estudos de Coortes , Estudos Retrospectivos , Corticosteroides/efeitos adversos , Tensoativos
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