Diabetes in pregnancy (GDM, T1DM, and T2DM): Clinical sciences

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Diabetes in pregnancy (GDM, T1DM, and T2DM): Clinical sciences

Pregnancy, childbirth, and the puerperium

Pregnancy, childbirth, and the puerperium

Preconception care: Clinical sciences
Antepartum fetal surveillance: Clinical sciences
Fetal aneuploidy screening: Clinical sciences
Maternal D alloimmunization (prevention): Clinical sciences
Antepartum care (first trimester): Clinical sciences
Antepartum care (second trimester): Clinical sciences
Antepartum care (third trimester): Clinical sciences
Cytomegalovirus (CMV), parvovirus B19, varicella zoster, and toxoplasmosis infection in pregnancy: Clinical sciences
Group B streptococcus (GBS) colonization in pregnancy: Clinical sciences
Herpes simplex virus infection in pregnancy: Clinical sciences
Abdominal trauma in pregnancy: Clinical sciences
Anemia in pregnancy: Clinical sciences
Approach to acute pelvic pain (GYN): Clinical sciences
Approach to diabetes in pregnancy: Clinical sciences
Approach to first trimester bleeding: Clinical sciences
Approach to hypertensive disorders in pregnancy: Clinical sciences
Approach to third trimester bleeding: Clinical sciences
Cholestasis of pregnancy: Clinical sciences
Diabetes in pregnancy (GDM, T1DM, and T2DM): Clinical sciences
Early pregnancy loss: Clinical sciences
Ectopic pregnancy: Clinical sciences
Fetal growth restriction: Clinical sciences
Gestational hypertension, preeclampsia, eclampsia, and HELLP: Clinical sciences
Hemoglobinopathies in pregnancy: Clinical sciences
Intraamniotic infection: Clinical sciences
Maternal D alloimmunization (management): Clinical sciences
Multifetal gestation: Clinical sciences
Nausea and vomiting of pregnancy: Clinical sciences
Placenta accreta spectrum: Clinical sciences
Placenta previa and vasa previa: Clinical sciences
Placental abruption: Clinical sciences
Therapeutic and induced abortions: Clinical sciences
Induction of labor: Clinical sciences
Intrapartum care (1st, 2nd, 3rd, and 4th stages): Clinical sciences
Intrapartum fetal heart rate monitoring: Clinical sciences
Late-term and postterm pregnancy: Clinical sciences
Pain management during labor: Clinical sciences
Prelabor rupture of membranes: Clinical sciences
Preterm labor: Clinical sciences
Protraction and arrest disorders: Clinical sciences
Shoulder dystocia: Clinical sciences
Vaginal birth after cesarean (VBAC): Clinical sciences
Approach to postpartum fever: Clinical sciences
Approach to postpartum hemorrhage: Clinical sciences
Perinatal depression and anxiety: Clinical sciences
Uterine atony: Clinical sciences
Immediate care of the well newborn: Clinical sciences
Approach to a rash in the well newborn and infant: Clinical sciences
Approach to anemia in the newborn and infant (destruction and blood loss): Clinical sciences
Approach to anemia in the newborn and infant (underproduction): Clinical sciences
Approach to birth injury (pediatrics): Clinical sciences
Approach to complications of prematurity (early): Clinical sciences
Approach to complications of prematurity (late): Clinical sciences
Approach to congenital infections: Clinical sciences
Approach to cyanosis (newborn): Clinical sciences
Approach to hypotonia (newborn and infant): Clinical sciences
Approach to jaundice (newborn and infant): Clinical sciences
Approach to respiratory distress (newborn): Clinical sciences
Approach to vomiting (newborn and infant): Clinical sciences
Neonatal respiratory distress syndrome: Clinical sciences
Alcohol, tobacco, cannabinoid, and substance use in pregnancy: Clinical sciences
Approach to prenatal teratogen exposure: Clinical sciences
Asthma in pregnancy: Clinical sciences
Chronic hypertension in pregnancy: Clinical sciences
Urinary tract infections and kidney stones in pregnancy: Clinical sciences
Venous thromboembolism in pregnancy: Clinical sciences
Anatomy clinical correlates: Female pelvis and perineum
Chlamydia trachomatis
Neisseria gonorrhoeae
Streptococcus agalactiae (Group B Strep)
Treponema pallidum (Syphilis)
Toxoplasma gondii (Toxoplasmosis)
Cytomegalovirus
Hepatitis B and Hepatitis D virus
Herpes simplex virus
HIV (AIDS)
Influenza virus
Parvovirus B19
Rubella virus
Varicella zoster virus
Congenital TORCH infections: Pathology review
Complications during pregnancy: Pathology review
Estrogens and antiestrogens
Progestins and antiprogestins
Uterine stimulants and relaxants

Decision-Making Tree

Transcript

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Diabetes in pregnancy is characterized by hyperglycemia during gestation. Diabetes that initially arises during pregnancy is called gestational diabetes mellitus, or GDM. GDM develops in at-risk patients due to worsening insulin resistance that occurs in the second and third trimesters. Individuals might also present to obstetric care with type 1 or type 2 diabetes, which is referred to as pregestational diabetes. All types of diabetes in pregnancy increase the risk of complications, including fetal macrosomia, shoulder dystocia, preeclampsia, and cesarean birth. Pregestational diabetes has additional risks of congenital malformations, spontaneous abortion, and stillbirth.

Your first step in evaluating a patient with a chief concern suggesting diabetes in pregnancy is to obtain a focused history. Start by determining if the patient has GDM or pregestational diabetes, and then review recent blood glucose measurements. Patients with diabetes in pregnancy usually check a fingerstick glucose four to five times daily, including fasting; postprandial, or after each meal; and sometimes at bedtime. Most patients keep a glucose log, or you can scroll through glucose readings on their glucometer. Target glucose levels include a fasting glucose of less than 95 and either a one-hour postprandial glucose of less than 140 or a two-hour postprandial glucose that’s less than 120.

Individuals with GDM who consistently achieve target glucose levels with diet and exercise have A1GDM. A1GDM is also called diet-controlled GDM because blood glucose levels are adequately controlled without medication.

During the antepartum period, a patient with A1GDM should continue previously prescribed lifestyle modifications, including a carbohydrate-controlled diet and 30 minutes of moderate-intensity aerobic exercise at least 5 days per week, such as walking 10 to 15 minutes after each meal. Advise the patient to continue self-monitoring of fasting and postprandial glucose levels to assess the response to lifestyle interventions. You can modify the frequency of glucose monitoring if a patient’s glucose remains well controlled with diet and exercise.

Because of the higher risk of fetal macrosomia and shoulder dystocia, you should assess fetal growth by ultrasound in the late third trimester. If the estimated fetal weight is 4,500 grams or greater, counsel the patient regarding the risks and benefits of a scheduled cesarean delivery to reduce the risk of birth trauma.

Patients with A1GDM should deliver from 39 to 40 and 6/7 weeks. Once the patient with A1GDM is admitted for delivery, check their initial glucose level and repeat as indicated. Most patients with A1GDM remain euglycemic throughout labor.

After delivery, hyperglycemia associated with both types of GDM frequently resolves. However, up to one-third of patients with GDM will have impaired glucose metabolism at postpartum screening. Therefore, all patients with GDM should undergo screening for diabetes at 4 to 12 weeks postpartum with a 2-hour oral glucose tolerance test. Even if hyperglycemia is not noted, patients with GDM are at risk for developing diabetes years later.

On the flip side, patients with GDM who don’t consistently achieve target glucose levels after lifestyle changes have A2GDM. A2GDM requires the addition of pharmacotherapy along with diet and exercise to maintain blood glucose at target levels.

Insulin is first-line therapy because it doesn’t cross the placenta and it can achieve tight metabolic control. Metformin is a second-line option, but it crosses the placenta, and the long-term effects after fetal exposure are unknown. Metformin is a reasonable choice for patients who decline, can’t afford, or are unable to safely administer insulin.

Patients with A2GDM should continue a carbohydrate-controlled diet and regular exercise. Additionally, individuals should monitor fasting and postprandial glucose so pharmacotherapy can be titrated to achieve target glucose levels. Suboptimal glucose control increases the risk of fetal demise. Therefore, all patients who require pharmacotherapy should undergo antepartum fetal surveillance, usually starting at 32 weeks of gestation.

As before, assess fetal growth by ultrasound in the late third trimester, and counsel the patient on the risks and benefits of elective cesarean birth if the estimated fetal weight is 4,500 grams or more. The timing of delivery for patients with A2GDM depends on the response of glucose levels to diet, exercise, and pharmacotherapy.

Sources

  1. "Management of Diabetes in Pregnancy: Standards of Medical Care in Diabetes - 2022" Diabetes Care (2022)
  2. "ACOG Committee Opinion No. 831: Medically Indicated Late-Preterm and Early-Term Deliveries" Obstet Gynecol (2021)
  3. "ACOG Practice Bulletin No. 190: Gestational diabetes mellitus" Obstet Gynecol (2018)
  4. "SMFM Statement: Pharmacological treatment of gestational diabetes" Am J Obstet Gynecol (2018)
  5. "ACOG Practice Bulletin No. 201: Pregestational Diabetes Mellitus" Obstet Gynecol (2018)
  6. "Lifestyle interventions for the treatment of women with gestational diabetes" Cochrane Database Syst Rev (2017)
  7. "Insulin for the treatment of women with gestational diabetes" Cochrane Database Syst Rev (2017)
  8. "ACOG Practice Bulletin No. 201: Pregestational diabetes mellitus" Obstet Gynecol (2018)