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The Relationship Between Progesterone, Sleep, and LH and FSH Secretory Dynamics in Early Postmenarchal Girls
Bob Z Sun1,2, Tairmae Kangarloo3, Judith M Adams3
1Clinical Research Branch, National Institute of Environmental Health Sciences, National Institutes of Health, Research Triangle Park, North Carolina.
Insights
Progesterone exposure may slow LH pulse frequency during sleep in early puberty. However, normal follicle development can occur without this slowing, suggesting immature LH patterns do not cause menstrual irregularity.
Area of Science:
- Reproductive endocrinology
- Neuroendocrinology
- Pubertal development
Background:
- Luteinizing hormone (LH) pulse frequency increases during sleep in puberty.
- In adult women, LH pulse frequency slows during sleep in the follicular phase (FP) of the menstrual cycle.
- The origin and significance of this sleep-related LH pattern transition are unknown.
Purpose of the Study:
- To investigate the relationship between progesterone (P4) exposure and sleep-related slowing of LH pulses in the FP.
- To examine the impact of P4 exposure and LH pulse patterns on the intercycle follicle-stimulating hormone (FSH) rise and folliculogenesis.
- To assess these factors in early postmenarchal girls.
Main Methods:
- Studied 23 girls (gynecologic age 0.4–3.5 years) over two menstrual cycles.
- Conducted hormone measurements and pelvic ultrasounds.
- Performed frequent blood sampling with polysomnography during the follicular phase.
Main Results:
- Four patterns of P4 exposure were observed, ranging from ovulatory to anovulatory cycles.
- Peak P4 and pregnanediol (Pd) in cycle 1 inversely correlated with LH pulse frequency during sleep in cycle 2's FP (r = -0.5; P = 0.02).
- Intercycle FSH rise and folliculogenesis occurred normally even without P4 exposure or nocturnal LH slowing.
Conclusions:
- Rising P4 levels in late puberty may contribute to slower LH pulse frequency during sleep.
- Normal FSH rise and follicle growth can happen without P4-associated LH slowing.
- Immature LH secretory patterns during sleep are unlikely to cause menstrual irregularity in early postmenarchal years.
Context:
During puberty, LH pulse frequency increases during sleep; in women, LH pulse frequency slows during sleep in the early/middle follicular phase (FP) of the menstrual cycle. The origin and significance of this developmental transition are unknown.
Objective:
To determine the relationship between progesterone (P4) exposure, sleep-related slowing of LH pulses in the FP, and the intercycle FSH rise, which promotes folliculogenesis, in early postmenarchal girls.
Methods:
23 girls (gynecologic age 0.4 to 3.5 years) underwent hormone measurements and pelvic ultrasounds during two consecutive cycles and one frequent blood sampling study with concurrent polysomnography during the FP.
Results:
Subjects demonstrated one of four patterns during cycle 1 that represent a continuum of P4 exposure: ovulatory cycles with normal or short luteal phase lengths or anovulatory cycles ± follicle luteinization. Peak serum P4 and urine pregnanediol (Pd) in cycle 1 were inversely correlated with LH pulse frequency during sleep in the FP of cycle 2 (r = -0.5; P = 0.02 for both). The intercycle FSH rise and folliculogenesis in cycle 2 were maintained after anovulatory cycles without P4 or Pd exposure or nocturnal slowing of LH pulse frequency in the FP.
Conclusions:
During late puberty, rising P4 levels from follicle luteinization and ovulation may promote a slower LH pulse frequency during sleep in the FP. However, a normal FSH rise and follicle growth can occur in the absence of P4-associated slowing. These studies therefore suggest that an immature LH secretory pattern during sleep is unlikely to contribute to menstrual irregularity in the early postmenarchal years.
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