Preterm labor: Clinical sciences

Last updated: January 30, 2025

Preterm labor: 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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Preterm labor is defined as regular uterine contractions accompanied by a change in cervical dilation, effacement, or both, that occurs between 20 and 0/7 weeks of gestation and 36 and 6/7 weeks of gestation. It’s diagnosed when a patient presents with regular uterine contractions and a cervical dilation of at least 3 cm. Preterm labor can be either spontaneous or preceded by premature rupture of membranes; or it can be iatrogenic due to maternal or fetal causes necessitating early delivery. The majority of patients who initially present with evidence of preterm labor do not deliver prematurely; however, when labor progresses to preterm birth, there’s an increased risk of neonatal morbidity and mortality.

When a patient presents with a chief concern suggesting preterm labor, your first step is to perform a focused history and physical exam. To meet criteria for preterm labor your patient’s pregnancy must be at least 20 weeks and less than 37 weeks of gestation. They may report uterine contractions, abdominal cramps, low back pain, pelvic pressure, spotting, or vaginal bleeding.

Additionally, history might reveal some important risk factors for preterm birth, including a prior preterm birth; short interval pregnancy, defined as less than 18 months between deliveries; a known short cervix, meaning less than 25 mm in the current pregnancy; past procedures on the cervix; infections during the current pregnancy, such as urinary or genital tract infections; maternal prepregnancy body mass index less than 18.5; extremes of maternal age, specifically those younger than 17 or older than 35 years; and tobacco or substance use during pregnancy. Also, certain social determinants of health are associated with preterm birth, specifically lower levels of education, living in an disadvantaged area, and lack of access to prenatal care. An additional important consideration is that preterm birth is higher for Non-Hispanic Black and Indigenous individuals.

Here’s a clinical pearl! The risk factors discussed refer to singleton pregnancies; however, multifetal gestations are at an increased risk of preterm labor and birth as well.

On physical exam, you’ll find regular uterine contractions, intact amniotic membranes, and possible vaginal bleeding. If your patient has ruptured membranes they are diagnosed with preterm, premature rupture of membranes, or PPROM, and not preterm labor.

Okay, if your patient is at least 20 weeks but less than 34 weeks of gestation, their labor is considered early preterm. Your next step is to obtain a fetal fibronectin, or fFN, specimen, by performing a sterile speculum exam and collecting a sample of cervicovaginal secretions from the posterior vaginal fornix.

Fetal fibronectin is a protein that acts like a “glue” between the amniotic membranes and the uterus. Normally, fFN is found at low levels in cervicovaginal secretions; however, when found at higher levels, its presence is associated with an increased risk of spontaneous preterm birth. That being said, the positive predictive value of fFN is quite low, meaning that when used alone it is not a reliable indicator of which patients will go into preterm labor. Rather, the utility of the fFN test is in its high negative predictive value, so when the fFN is negative in a patient with preterm labor symptoms, you can be assured that your patient is not experiencing preterm labor.

Moreover, several factors can interfere with the accuracy of the fFN test. These include the use of lubricants, soaps, and vaginal progesterone; moderate or gross vaginal bleeding; and the presence of semen or sperm, most commonly found if the patient was sexually active within 24 hours. If these are present, the specimen should not be collected.

Next, assess cervical dilation. If your patient is at least 3 centimeters dilated, diagnose preterm labor and admit them to labor and delivery.

Now it's time to begin interventions that can help decrease neonatal morbidity and mortality. First administer antenatal steroids, which promote fetal lung maturation, and decrease the risk of respiratory distress syndrome, intracranial hemorrhage, necrotizing enterocolitis, and death. There are two steroids available which are administered intramuscularly: dexamethasone which is given in 4 doses every 12 hours, and betamethasone which is given in 2 doses 24 hours apart. A full course has the greatest benefit and a patient is considered to be “steroid complete” 48 hours after the first dose of medication. Even in instances where delivery is imminent and the patient will not receive the full course, there is still a benefit to giving a partial course of steroids.

Next, obtain a GBS culture and begin antibiotics for GBS prophylaxis, generally either IV penicillin or ampicillin. Continue the antibiotics until delivery or if cultures return negative. Additionally, if your patient is between 24 and 32 weeks of gestation, administer IV magnesium sulfate for fetal neuroprotection, as it reduces the risk and severity of cerebral palsy.

Finally, begin tocolysis by administering medications to inhibit uterine contractions. The goal of tocolysis is to allow for a complete course of antenatal steroids, administration of magnesium sulfate, and transport to a tertiary facility if indicated. Accordingly, tocolysis should be continued for up to 48 hours, when possible.

Here’s another clinical pearl! There are some situations where tocolysis is contraindicated. These include intrauterine fetal demise; lethal fetal anomaly; non-reassuring fetal status; intraamniotic infection; PPROM; maternal bleeding with hemodynamic instability such as with placental abruption; severe preeclampsia or eclampsia; and if a maternal contraindication to a specific medication used for tocolysis is present.

Tocolytic options include calcium channel blockers, or CCBs; non-steroidal anti-inflammatory drugs, or NSAIDs; beta-adrenergic receptor agonists; and magnesium sulfate. CCBs, like nifedipine, may cause dizziness, flushing, hypotension, and decreased maternal heart rate, so CCBs are contraindicated in patients with hypotension or preload-dependent cardiac lesions, like aortic insufficiency.

NSAIDs, like indomethacin, are safe for patients less than 32 weeks of gestation but are associated with in-utero constriction of the fetal ductus arteriosus and oligohydramnios, as well as necrotizing enterocolitis and patent ductous arteriosus in newborns. Contraindications to NSAIDs include platelet, renal, or hepatic dysfunction; a history of gastrointestinal ulcers; and asthma.

Sources

  1. "Management of Preterm Labor. " Obstet. Gynecol (2016. 128(4):e155-164. [Reaffirmed 2022].)
  2. "Practice Advisory: Use of Antenatal Corticosteroids at 22 Weeks of Gestation." American College of Obstetricians and Gynecologists. ( September 2021. [Reaffirmed October 2022]. )
  3. "Practice Bulletin No. 130: Prediction and Prevention of Preterm Birth." Obstet. Gynecol. (2021. 138(2):e65-e90.)
  4. "Fetal fibronectin testing for reducing the risk of preterm birth. ." Cochrane Database Syst Rev (2019;7(7):CD006843. Published 2019 Jul 29)
  5. "Tocolysis. [Updated 2022 Sep 22]" StatPearls Publishing (2023 Jan)
  6. "Current perspectives on the use of fetal fibronectin testing in preterm labor diagnosis and management. " Am J Manag Care (2017 Dec;23(19 Suppl):S356-S362.)