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Women's healthDetected by blood test

Polyendocrine disorder affecting ovaries (previously polycystic ovary syndrome)

A polyhormonal disorder causing irregular periods, excess androgens, and enlarged ovaries with many small follicles. Blood testing measures hormones such as FSH, LH, and testosterone to support the diagnosis.

Early detection matters

Our comprehensive check-up screens for polyendocrine disorder affecting ovaries (previously polycystic ovary syndrome) and hundreds of other conditions.

Related biomarkers we test

Triglyceride-glucose (TyG) index

The TyG index combines fasting triglycerides and glucose to estimate insulin resistance.

Fasting insulin

Fasting insulin measures baseline insulin levels necessary to maintain normal blood sugar.

HOMA-index

The HOMA index estimates insulin resistance using fasting glucose and insulin values.

Progesterone

Progesterone is a hormone produced after ovulation and during pregnancy. It plays a key role in regulating the menstrual cycle, preparing the uterus for pregnancy, and supporting early pregnancy. In non-pregnant women, progesterone drops trigger menstruation.

LH/FSH ratio

The LH/FSH ratio compares levels of luteinizing hormone to follicle-stimulating hormone, both produced by the pituitary gland. While FSH stimulates egg follicle development in the ovaries, LH triggers ovulation and supports progesterone production. The ratio between these hormones provides crucial insights into ovarian function and reproductive health that neither hormone alone can reveal.

Luteinizing hormone (Lutropin)

Luteinizing hormone (LH) is produced by the pituitary gland in the brain. In women, it triggers ovulation and supports estrogen and progesterone production, while in men it stimulates the testes to produce testosterone.

FSH, follitropin

FSH (Follicle Stimulating Hormone) is a pituitary hormone that stimulates egg development in ovaries and sperm production in testes. FSH levels vary throughout the menstrual cycle, surge during ovulation, and rise drastically after menopause when ovaries stop responding.

Testosterone / estradiol (T:E2) ratio

Testosterone and estradiol work in balance. In men, a small share of testosterone is continuously converted into estradiol, the main estrogen, by the enzyme aromatase, which is most active in fat tissue. The T:E2 ratio compares the two hormones and shows how strongly this conversion is running. A low ratio means relatively more estradiol. Common drivers are excess body fat, regular alcohol use, reduced liver clearance and low testosterone production itself. In men this pattern can contribute to reduced libido, difficulty building muscle, fatigue, mood changes and breast tissue growth. A high ratio points to too little estradiol relative to testosterone, which matters for bone strength, joints and sexual function even when testosterone itself looks fine. Body fat, alcohol, sleep and training all influence the ratio, so it often improves with the same habits that support healthy testosterone. We calculate it from testosterone and estradiol measured in the same molar unit (pmol/l). Ranges quoted in US units (ng/dL divided by pg/mL) are roughly 9 times lower than values on this scale.

Free androgen index (FAI)

FAI estimates the amount of active testosterone in the blood relative to binding proteins.

Testosterone, total

The primary male sex hormone responsible for sexual development, sperm production, muscle mass maintenance, bone density, and overall energy levels. Low levels can cause fatigue, reduced libido, erectile dysfunction, decreased muscle mass, and mood changes. Age-related decline is normal, but significant deficiency may warrant supplementation.

Sex hormone-binding globulin (SHBG)

A glycoprotein that regulates hormone bioavailability by binding to sex hormones in circulation. SHBG levels influence the amount of active hormones available to tissues and can reflect metabolic and endocrine health.

Free testosterone

The unbound, biologically active fraction of total testosterone that can interact with cellular receptors. This measurement provides insight into androgenic activity affecting metabolism, body composition, and various physiological functions. In this panel it is a calculated value: rather than being measured directly, it is derived from total testosterone, SHBG and albumin using the Vermeulen equation (the laboratory reference method is equilibrium dialysis). Because the calculation corrects for SHBG, free testosterone is the guideline-preferred measure of androgen status when SHBG is abnormal or total testosterone sits near the lower limit of normal, and it is more sensitive than total testosterone for detecting male hypogonadism and female androgen excess such as PCOS.

Estradiol (E2)

The primary active estrogen in the body. Estradiol is produced in the gonads (ovaries and testes) and in adipose tissue. It plays a central role in bone metabolism, cardiovascular protection, brain function, mood regulation, and reproductive health. Levels vary with the menstrual cycle and decline significantly during menopause. Low levels are associated with reduced bone density, mood disturbances, and impaired fertility. Elevated levels may indicate hormonal imbalance or increased aromatase activity.

DHEA-sulfate

A hormone produced primarily by the adrenal glands that serves as a precursor for testosterone and estrogen. Levels naturally peak in early adulthood and decline with age. Some research suggests maintaining healthy DHEA-S levels may support energy, immune function, and stress resilience, though evidence for supplementation remains mixed.

HDL cholesterol

Often called "good cholesterol," it helps remove excess cholesterol from your arteries and transports it to the liver for processing, offering protection against atherosclerosis and heart disease.

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