DILAPAN-S® was FDA-approved for pre-induction cervical ripening in 2015. Since that time, there have been limited studies comparing its efficacy, safety, and patient satisfaction to other mechanical cervical ripening techniques. The purpose of this trial is to perform a noninferiority randomized clinical trial comparing DILAPAN-S® to the Foley catheter for outpatient cervical ripening in term elective labor inductions, examining time spent on the labor and delivery unit, patient safety, and patient satisfaction feedback.
In 2019, Grobman et al, published the ARRIVE trial showing that labor inductions without medical indication at 39 weeks gestation are associated with improved maternal and perinatal outcomes compared to expectant management.1 In the wake of these landmark findings, labor inductions without medical indication are becoming increasingly common not only on a nation scale, but locally as well. Recent data show that labor inductions without medical indication encompass nearly one third of all inductions at Christiana Care Health System. Labor induction can include both mechanical and pharmacological measures to ripen the cervix and stimulate uterine contractions. The ultimate challenge, which has been the focus of numerous studies to date, is to determine which mechanical and/or pharmacological products and which clinical settings are safest and most efficacious for inducing labor. Currently, transcervical Foley catheters are the gold-standard mechanical method of cervical ripening. However, new-emerging data has shown that hygroscopic cervical dilators, traditionally used for early pregnancy termination, may be a viable alternative. DILAPAN-S® , a hygroscopic dilator composed of a synthetic hydrogel was approved by the Food and Drug Administration for cervical ripening in 2015 and has been the subject of recent investigation. In a single-center, randomized, open-label trial consisting of 419 patients, Saad et al showed that DILAPAN-S® is not inferior to the Foley catheter for pre-induction cervical ripening at term; there was no significant difference in maternal and neonatal adverse events and patients with DILAPAN-S® were more satisfied than patients with the Foley catheter as far as sleep, relaxing time, and performance of desired daily activities.2 Furthermore, in the pursuit of improving patient satisfaction with consideration of healthcare resources, studies have investigated the safety and efficacy of outpatient mechanical cervical ripening.3 Sciscione et al, showed that in a low-risk population of 1,905 patients, no adverse outcomes were associated with outpatient Foley catheter cervical ripening and patients on average avoided 9.6 hours of hospitalizations compared to the inpatient group.4 The ACOG practice bulletin on induction of labor now states that outpatient cervical ripening, particularly mechanical methods, may be appropriate in select patients.5 Based on the literature cited above, it is plausible to hypothesize that DILAPAN-S® used for outpatient cervical ripening may optimize patient satisfaction and healthcare resource utilization without compromising patient safety and efficacy. The purpose of this trial is to perform a noninferiority randomized clinical trial comparing DILAPAN-S® to the Foley catheter for outpatient cervical ripening in term elective labor inductions, examining time spent on the labor and delivery unit, patient safety, and patient satisfaction feedback.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
NONE
A 16 F Foley catheter with a 30-mL balloon and stylet is inserted into the endocervical canal under direct visualization by sterile speculum exam or by digital palpation. The Foley catheter is advanced to or past the internal os, and the balloon is filled with 30-40 mL of sterile water. The catheter is then placed on genital traction by taping the end of the catheter to the medial portion of the thigh.
A bivalve speculum will be used to visualize and prepare the cervix with an antiseptic solution. The DILAPAN-S® (4 x 65 mm) will be inserted in the cervical canal until it traverses the internal os. As many dilators as needed to achieve the desired effect should be inserted. Specific number of pieces always depends on decision and clinical judgement of physician and indications. A gauze pad moistened with sterile water or saline may be inserted into the vagina to help keep the DILAPAN-S® in place, if needed
Time spent on the labor and delivery unit
Length of time spent on the labor and delivery unit, hours
Time frame: through study completion, an average of 2 years
Rate of vaginal delivery
Time frame: through study completion, an average of 2 years
Rate of cesarean delivery
Time frame: through study completion, an average of 2 years
Indication for cesarean delivery
Reasons for cesarean delivery include: non-reassuring fetal heart rate tracing, arrest of dilation, arrest of descent, failed induction of labor, maternal request, other
Time frame: through study completion, an average of 2 years
Time from device insertion to delivery
Time from device (Foley bulb or Dilapan) insertion to delivery (vaginal or cesarean), hours
Time frame: through study completion, an average of 2 years
Rate of vaginal delivery within 24 hours of device insertion
Time frame: through study completion, an average of 2 years
Rate of vaginal delivery within 36 hours of device insertion
Time frame: through study completion, an average of 2 years
Time from device insertion to expulsion or extraction
Time from device (Foley bulb or Dilapan) insertion to spontaneous expulsion or device removal, hours
Time frame: through study completion, an average of 2 years
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Rate of device expulsion at home
Percentage of patients whose device (Foley bulb or Dilapan) was expelled at home
Time frame: through study completion, an average of 2 years
Rate of patients that received Pitocin
Time frame: through study completion, an average of 2 years
Average number of Dilapan dilator rods used
Multiple Dilapan rods may be placed for cervical dilation. The number of rods used is at the discretion of the clinician.
Time frame: through study completion, an average of 2 years
Change in Bishop score before and after mechanical cervical ripening
Change in Bishop score from initial assessment to first exam following device expulsion/removal.
Time frame: through study completion, an average of 2 years
Time from device insertion to active stage of labor
The active stage of labor is defined as cervical dilation greater than or equal to 6cm, hours
Time frame: through study completion, an average of 2 years
Rate of artificial rupture of membranes
Time frame: through study completion, an average of 2 years
Rate of epidural or spinal anesthesia during labor
Time frame: through study completion, an average of 2 years
Rate of analgesia needed for device insertion
Analgesia methods may include butorphanol, neuraxial blockade, nitric oxide, etc.
Time frame: through study completion, an average of 2 years
Rate of complications from device insertion
Complications include: incidental rupture of membranes, device malfunction/breakage, vaginal bleeding (defined as gross blood apparent on glove, perineum, vagina, or within Foley catheter lumen), cervical laceration, vasovagal reaction
Time frame: through study completion, an average of 2 years
Rate of tachysystole
Defined as at least 6 contractions in 10 minutes for 2 consecutive 10-minute periods
Time frame: through study completion, an average of 2 years
Rate of postpartum hemorrhage
Defined as 1,000 mL or blood loss accompanied by signs or symptoms of hypovolemia within 24 hours after the birth process
Time frame: through study completion, an average of 2 years
Rate of shoulder dystocia
Time frame: through study completion, an average of 2 years
Rate of suspected intraamniotic infection
Defined as the presence of maternal intrapartum fever and one or more of the following: maternal leukocytosis, purulent cervical drainage, or fetal tachycardia
Time frame: through study completion, an average of 2 years
Rate of any serious maternal morbidity
Serious maternal morbidities include uterine rupture, admission to an intensive care unit, and sepsis
Time frame: through study completion, an average of 2 years
Rate of maternal death
Time frame: through study completion, an average of 2 years
Maternal satisfaction
A two-part maternal satisfaction survey will be administered immediately after device placement and then postpartum day one
Time frame: through study completion, an average of 2 years
Rate of 1 minute Apgar score < 5
Rate of 1 minute Apgar score less than 5
Time frame: through study completion, an average of 2 years
Rate of 5 minute Apgar score < 7
Rate of 5 minute Apgar score less than 7
Time frame: through study completion, an average of 2 years
Rate of NICU admission
Rate of neonates admitted to the NICU
Time frame: through study completion, an average of 2 years
Rate of NICU admission > 48 hours
Rate of neonates requiring NICU admission for longer than 48 hours
Time frame: through study completion, an average of 2 years
NICU length of stay
Length of NICU admission, days
Time frame: through study completion, an average of 2 years
Rate of any adverse neonatal outcome
Includes death, severe respiratory distress syndrome (defined as intubation and mechanical ventilation for a minimum of 12 hours), hypoxic-ischemic encephalopathy, seizure, culture-proven neonatal sepsis, birth trauma (bone fracture, intracranial hemorrhage, neurologic injury, retinal hemorrhage), hypotension requiring vasopressor support, receipt of total body cooling.
Time frame: through study completion, an average of 2 years