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Sex Hormones

LH Biomarker Test

Measure your LH to spot your fertile window, assess pituitary-gonadal signaling, and clarify PCOS, irregular cycles, or low testosterone.

With Superpower, you have access to a comprehensive range of biomarker tests.

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Sample type:
Blood
HSA/FSA:
Accepted
Collection method:
In-person at the lab, or at-home

Key Benefits

  • See how your brain signals ovaries or testes to ovulate and make hormones.
  • Spot your fertile window by detecting the LH surge before ovulation.
  • Clarify causes of irregular periods or anovulation, supporting PCOS evaluation.
  • Guide fertility treatment choices by distinguishing low- versus high-LH ovulatory problems.
  • Flag pituitary or testicular causes when investigating low testosterone or infertility.
  • Detect primary ovarian insufficiency or earlier menopause when LH stays persistently high.
  • Explain early or delayed puberty by evaluating LH relative to age norms.
  • Interpret results with FSH, estradiol/testosterone, prolactin, TSH, hCG, and symptoms.

What is LH?

Luteinizing hormone (LH) is a signaling protein made by the anterior pituitary gland, the small hormone factory at the base of the brain. It is one of the two gonadotropins, produced by specialized gonadotroph cells under stimulation from gonadotropin‑releasing hormone (GnRH) from the hypothalamus. LH is released into the bloodstream in pulses and travels to the gonads—ovaries in women and testes in men—where it binds specific receptors on steroid‑producing cells.

In females, a rapid, mid‑cycle rise in LH (the “LH surge”) triggers ovulation and then supports the corpus luteum to make progesterone. In males, LH drives Leydig cells to produce testosterone. Together with follicle‑stimulating hormone (FSH), LH orchestrates sex steroid production and the development and function of eggs and sperm (steroidogenesis and gametogenesis). Because its release is tightly linked to brain–gonad signaling, LH serves as a window into the health of the hypothalamic‑pituitary‑gonadal axis and the timing of reproductive physiology.

Why is LH important?

LH (luteinizing hormone) is the pituitary’s timing signal for reproduction. In ovaries it triggers ovulation and supports progesterone production; in testes it drives testosterone synthesis. Because sex steroids shape bone, muscle, metabolism, mood, and fertility, LH indirectly influences multiple body systems far beyond reproduction.

Typical values depend on sex and life stage. In adult men, LH sits in a steady low-to-middle range. In cycling women, levels are low-to-middle most of the month with a sharp mid‑cycle surge that prompts ovulation; during pregnancy, LH is naturally suppressed. For most non‑pregnant adults, “optimal” means appropriate-for-context: stable low–middle outside the ovulatory surge.

When LH runs below expected for context, it usually signals reduced pituitary or hypothalamic drive. In women this can mean missed or irregular periods, low estradiol, infertility, vaginal dryness, hot flashes, and gradual bone loss. In men it points to low testosterone with fatigue, low libido, erectile difficulties, reduced muscle mass, anemia risk, and decreased bone density. In children and teens, low LH delays pubertal development.

When LH is high, it often reflects the pituitary pushing against underperforming gonads. In women, very high LH with low estrogen is typical of menopause or primary ovarian insufficiency; LH can also be elevated relative to FSH in polycystic ovary syndrome, contributing to anovulation and androgen excess (irregular cycles, acne, hirsutism). In men, high LH with low testosterone indicates primary testicular failure. In children, elevated LH suggests early activation of puberty.

Big picture: LH sits at the heart of the hypothalamic–pituitary–gonadal axis and must be interpreted alongside FSH, estradiol or testosterone, prolactin, and thyroid status. Persistent imbalance affects fertility, bone strength, body composition, and long‑term cardiometabolic health.

What Insights Will I Get?

Luteinizing hormone (LH) is a pituitary signal to the gonads: it triggers ovulation and supports progesterone in women, and stimulates testosterone and supports spermatogenesis in men. Via these steroids, LH shapes energy, muscle and bone, mood, glucose balance, and cardiovascular health.

Low values usually reflect reduced hypothalamic–pituitary drive (hypogonadotropic hypogonadism). In women, this suppresses ovulation and lowers estrogen, causing irregular or absent periods, lower bone formation, and infertility; pregnancy and hormonal contraception physiologically suppress LH. In men, low LH means low testosterone with fatigue, low libido, less muscle, and anemia. Illness, stress, high prolactin, and certain drugs can blunt LH.

Being in range suggests an intact reproductive axis with appropriate feedback from ovarian or testicular hormones. In cycling women, values are lower outside the brief mid‑cycle surge; mid‑range levels for age and sex typically align with regular cycles or normal spermatogenesis.

High values usually reflect reduced gonadal feedback (primary gonadal dysfunction). In women, menopause and premature ovarian insufficiency raise LH; outside the ovulatory surge, persistently high LH can also occur in some with polycystic ovary syndrome. In men, primary testicular failure elevates LH and often coexists with low testosterone. Pubertal ascent of LH is physiologic.

Interpretation depends on sex, age, cycle timing, and pregnancy. LH is pulsatile, so single values vary; pairing with FSH and sex steroids clarifies source. Exogenous estrogens, progestins, and androgens suppress LH; obesity and acute illness can lower it; rare pituitary tumors alter results.

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Supported by the world’s top longevity clinicians and MDs.

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Superpower Chief Longevity Officer, Harvard MD & MBA

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Clinician & Founder of The Centre for New Medicine

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Founder & Medical Director of Concierge MD

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UCLA Medical Professor, NYT Bestselling Author

membership

$17

/month
Billed annually at $199
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Your membership includes one comprehensive blood draw each year, covering 100+ biomarkers in a single collection
One appointment, one draw for your annual panel.
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Frequently Asked Questions

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How it works
What should I expect during a blood draw?
  • A trained phlebotomist will guide you through the process.
  • A tourniquet is placed on your arm, the site is cleaned, and a small needle is used to collect blood into one or more tubes.
  • Results are usually ready in about a week.
  • Most people feel only a quick pinch.
  • The needle is removed, gentle pressure is applied, and a bandage is placed.
How do I prepare for a blood draw?
  • Drink plenty of water beforehand — hydration makes veins easier to find.
  • Wear loose sleeves so your arm is easy to access.
  • Follow any fasting instructions you’ve been given.
  • Let us know if you’re on medications, have fainted before, or have needle anxiety.
What should I do after my blood draw?
  • Press gently on the site for a few minutes.
  • Keep the bandage on for 4-6 hours.
  • Skip heavy lifting or strenuous exercise for the rest of the day.
  • Drink extra water to rehydrate.
  • Monitor the site for redness, swelling, or pain.
How do I book a blood draw with Superpower?

Your membership includes:

  • An annual full body test and report across 100+ biomarkers
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Many concierge clinics charge $10k – $100k for their services, we’ve built technology to make the world’s best healthcare as accessible as possible via an all-in-one membership.

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Superpower is currently available in the following US states:

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Our testing
Does Superpower replace my primary care provider?

Superpower specializes in prevention-based testing and treatments and is not intended for emergency or immediate health issues.

While you will have a Superpower care team, your annual membership is designed to complement a primary care doctor if you have one, not replace them.

We are happy to help you share any test results with an outside provider to ensure you receive well-rounded medical care.

How fast are blood test results and how do I read them?

Your annual lab test panel takes about 10 days to process. We will text you as soon as they become available in your dashboard. Other types of tests may have different testing windows. The Superpower concierge is your own health assistant who helps answer your questions on your results, ensure smooth scheduling, coordination of any office-based tests, specialist referrals as needed, and navigating you to interface with your care team.

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Superpower membership and products are all eligible for HSA/FSA funding.

We see Superpower like a gym membership for those committed to prevention and performance. Superpower is a bridge between wellness and healthcare. Health insurance traditionally focuses on reactive care whereas, at Superpower, we believe it’s never too early to start looking out for your long-term health.

What if I want more than 1 blood test per year?

Absolutely — you're not limited to just one. Your membership includes one comprehensive 100+ biomarker blood test each year, but if you'd like to track your progress more closely, you can add extra tests at any time. Each additional full-panel test costs $179. You can order as many as you'd like throughout the year.

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Frequently Asked Questions about LH

What is luteinizing hormone (LH) and what does it do in the body?

Luteinizing hormone (LH) is a signaling protein produced by the anterior pituitary gland at the base of the brain. In women, LH triggers ovulation and supports the corpus luteum to produce progesterone, which is essential for fertility and menstrual cycle regulation. In men, LH stimulates Leydig cells in the testes to produce testosterone, which is crucial for sperm production, muscle mass, bone health, and libido. LH is a key part of the hypothalamic–pituitary–gonadal axis, orchestrating sex steroid production and reproductive function in both sexes.

How does LH help detect the fertile window and ovulation in women?

LH levels in women are typically low to moderate throughout most of the menstrual cycle, but a rapid, mid-cycle surge in LH triggers ovulation. Detecting this LH surge, often through ovulation predictor kits, helps identify the fertile window—the days when conception is most likely. Monitoring LH can clarify the timing of ovulation, support fertility planning, and help diagnose ovulatory disorders or irregular cycles.

What causes high LH levels in women and what do they indicate?

High LH levels in women, outside the normal mid-cycle surge, often indicate reduced ovarian feedback to the pituitary. Persistently elevated LH can signal menopause, primary ovarian insufficiency, or polycystic ovary syndrome (PCOS). In PCOS, LH may be high relative to FSH, contributing to anovulation, irregular periods, and symptoms like acne or excess hair growth. High LH with low estrogen is typical of menopause or ovarian failure.

What does low LH mean in men and how does it affect health?

Low LH in men usually reflects reduced hypothalamic or pituitary drive, known as hypogonadotropic hypogonadism. This leads to low testosterone production, resulting in symptoms such as fatigue, low libido, erectile dysfunction, reduced muscle mass, anemia, and decreased bone density. Causes can include illness, stress, high prolactin, certain medications, or pituitary disorders. Persistent low LH should be evaluated alongside testosterone and other hormones.

How is LH used to evaluate infertility in both men and women?

LH testing is a key part of infertility workups. In women, abnormal LH patterns can indicate anovulation, PCOS, or ovarian insufficiency. In men, high LH with low testosterone suggests primary testicular failure, while low LH points to pituitary or hypothalamic dysfunction. Interpreting LH alongside FSH, estradiol or testosterone, and other hormones helps pinpoint the cause of infertility and guide treatment options.

What is the relationship between LH and other hormones like FSH, estradiol, and testosterone?

LH works closely with follicle-stimulating hormone (FSH) to regulate reproductive function. In women, both hormones coordinate ovulation and sex steroid production (estradiol and progesterone). In men, LH stimulates testosterone production, while FSH supports sperm development. Interpreting LH results alongside FSH, estradiol (in women), or testosterone (in men) provides a clearer picture of reproductive health and helps diagnose hormonal imbalances.

How do life stages and sex affect normal LH levels?

Normal LH levels vary by sex and life stage. In adult men, LH remains in a steady low-to-middle range. In cycling women, LH is low-to-moderate most of the month, with a sharp mid-cycle surge at ovulation. During pregnancy, LH is naturally suppressed. In children and teens, LH levels rise during puberty. Reference ranges must be interpreted in the context of age, sex, and reproductive status.

Can medications or health conditions affect LH levels?

Yes, several factors can alter LH levels. Exogenous hormones (estrogens, progestins, androgens) suppress LH production. Obesity, acute illness, stress, and high prolactin can lower LH. Certain drugs and rare pituitary tumors may also affect LH secretion. It’s important to consider these factors when interpreting LH test results, as they can mask or mimic underlying reproductive disorders.

How is LH measured and why can results vary?

LH is measured through blood tests, often as part of a broader hormone panel. Because LH is released in pulses, single measurements can vary. Timing the test according to menstrual cycle phase (in women) or pairing it with FSH and sex steroids improves accuracy. Repeated or timed testing may be needed to capture the LH surge or assess persistent abnormalities.

What are common misconceptions about LH and its role in reproductive health?

A common misconception is that LH only matters for ovulation in women. In reality, LH is crucial for both male and female reproductive health, influencing testosterone production, bone strength, metabolism, and mood. Another myth is that a single LH value is always diagnostic; in fact, interpretation depends on context, timing, and other hormone levels. Persistent imbalances, not just isolated results, are most clinically significant.

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