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Azithromycin dosing and preterm premature rupture of membranes treatment (ADAPT): a randomized controlled Phase I
Rupsa C Boelig1, Kevin Lam2, Ankit Rochani3
1Division of Maternal Fetal Medicine, Department of Obstetrics and Gynecology, Sidney Kimmel Medical College (Boelig); Department of Pharmacology, Physiology, and Cancer Biology, Sidney Kimmel Medical College, Thomas Jefferson University (Boelig Kraft, and Lam), Philadelphia, PA.
Insights
Daily 500 mg azithromycin dosing for preterm prelabor rupture of membranes maintains higher amniotic fluid concentrations compared to a single 1 g dose. This suggests daily dosing is more effective for maintaining therapeutic drug levels.
Area of Science:
- Pharmacology
- Obstetrics
- Infectious Diseases
Background:
- Antibiotics are recommended for preterm premature rupture of membranes (PPROM) to prolong latency.
- Azithromycin is commonly used, but optimal dosing in PPROM is unclear.
- A single 1g dose of azithromycin may not achieve sustained therapeutic amniotic fluid concentrations.
Purpose of the Study:
- To compare the pharmacokinetics of single-dose versus daily dosing of azithromycin in PPROM.
- To evaluate azithromycin concentrations in amniotic fluid and plasma over 8 days.
Main Methods:
- Randomized clinical trial comparing 1g oral azithromycin once versus 500mg daily for 7 days in PPROM.
- Primary outcome: amniotic fluid azithromycin concentrations.
- Secondary outcome: plasma azithromycin trough concentrations.
Main Results:
- Daily 500mg azithromycin resulted in significantly higher and more sustained amniotic fluid concentrations compared to a single 1g dose.
- Plasma azithromycin levels were higher initially with the 1g dose but declined rapidly, while daily dosing maintained elevated levels.
- The study was halted early due to low enrollment, with 3 participants per group.
Conclusions:
- Approximately 500mg daily dosing of azithromycin maintains higher amniotic fluid concentrations above minimum inhibitory concentrations for longer periods in PPROM.
- Daily dosing appears more effective than a single dose for achieving sustained therapeutic drug levels in the amniotic fluid for PPROM management.
Background:
Seven days of antibiotics are recommended in the setting of preterm premature rupture of membranes to promote latency. Azithromycin has generally replaced a 7-day course of erythromycin in current clinical practice. Azithromycin clears from plasma quickly and concentrates in local tissue, which is why daily dosing is not always needed, and local tissue, rather than plasma, concentrations are used to determine dosing. On the basis of limited pharmacokinetic studies in pregnancy, a 1-time dose of 1 g azithromycin may not maintain local (amniotic fluid) drug concentrations above minimum inhibitory concentrations for common genitourinary pathogens (50-500 ng/mL).
Objective:
We aimed to compare the pharmacokinetics of 1-time vs daily dosing of azithromycin in the setting of preterm prelabor rupture of membranes.
Study Design:
This is a randomized clinical trial of singletons with preterm prelabor rupture of membranes randomized to 1 g oral azithromycin once or 500 mg oral azithromycin daily for 7 days. The primary outcome was amniotic fluid azithromycin concentrations over 8 days. Secondary outcomes included plasma azithromycin trough concentrations. Plasma was collected at 1-4 hours and 12-24 hours after the first dose and then every 24 hours through 8 days. Amniotic fluid was collected opportunistically throughout the day noninvasively with Always Flex foam pads. We aimed to enroll 20 participants to achieve n=5 still pregnant through 8 days in each group. Continuous variables were compared using the Mann-Whitney U test, and the relationship between azithromycin concentration and time was assessed using linear regression.
Results:
The study was halted after 6 enrolled because of lagging enrollment, with 3 in each group. The mean gestational age of enrollment was 27.1±1.7 weeks in the 1 g group and 31.0±1.4 weeks in the 500 mg daily group. One participant in each group had latency to delivery >7 days. Regarding amniotic fluid azithromycin concentration, there was a difference in change in amniotic fluid azithromycin concentration over time between groups (P<.001). The amniotic fluid concentration of azithromycin was relatively stable in the 1 g once group (B,-0.07; 95% confidence interval, -0.44 to 0.31; P=.71), whereas amniotic fluid concentration (ng/mL) increased over time (hours) in the 500 mg daily group (B, 1.3; 95% confidence interval, 0.7-1.9; P<.001). By ≥96 hours, median amniotic fluid levels of azithromycin were lower in the 1 g once group (median, 11; interquartile, 7-56) compared with 500 mg daily (median, 46; interquartile, 23-196), with a median difference of -27 (interquartile,-154 to -1; P=.03). In plasma, there was higher azithromycin concentration during the first 24 hours with 1 g once vs 500 mg daily (median difference, 637 ng/mL; 101-1547; P=.01); however, by ≥96 hours plasma azithromycin declined and was virtually undetectable in the 1 g once group, whereas trough plasma levels in the 500 mg remained elevated (median difference -207 ng/mL; interquartile, -271 to -155; P=.03).
Conclusion:
Approximately 500 mg daily dosing of azithromycin maintains higher amniotic fluid concentrations and more consistently greater than common minimum inhibitory concentrations over 8 days compared with 1 g once in the setting of PPROM. El resumen está disponible en Español al final del artículo.
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