The transition into menopause is a complex biological journey driven by significant shifts in the body’s endocrine system. These changes are not instantaneous but occur over several years as the communication between the brain and the ovaries evolves. Understanding the specific hormones involved helps in making sense of the wide array of symptoms experienced during this time.
In this article, we will examine the primary hormones that define the perimenopausal and menopausal stages. We will discuss how their levels fluctuate, why these changes occur, and the impact they have on physical and mental wellbeing according to UK clinical standards.
What We’ll Discuss in This Article
- The role of oestrogen and progesterone during the reproductive years.
- How fluctuating hormone levels define the perimenopausal phase.
- The increase in Follicle Stimulating Hormone (FSH) as a clinical marker.
- The permanent shift to low hormone levels in menopause.
- How hormonal changes impact the brain, bones, and heart.
- External factors that can influence how your body reacts to these shifts.
The Role of Oestrogen and Progesterone in Transition
‘The primary hormone changes during the menopausal transition involve a gradual decline and eventual cessation of oestrogen and progesterone production by the ovaries. During perimenopause, these levels do not drop smoothly; they fluctuate unpredictably. Once menopause is reached, these hormones remain at consistently low levels, which leads to the permanent end of menstrual cycles.’
Oestrogen is responsible for regulating the menstrual cycle and supporting various bodily functions, including bone density and heart health. Progesterone works alongside oestrogen to prepare the lining of the womb for pregnancy. As the number of viable eggs in the ovaries decreases with age, the production of these two hormones becomes erratic. This instability is the root cause of irregular periods and early symptoms like mood swings or breast tenderness.
Understanding Follicle Stimulating Hormone (FSH) and LH
‘As the ovaries produce less oestrogen, the pituitary gland in the brain attempts to compensate by releasing higher levels of Follicle Stimulating Hormone (FSH) and Luteinising Hormone (LH). These hormones are responsible for signalling the ovaries to release an egg. High levels of FSH are a classic clinical indicator that the body is moving through the menopausal transition.’
In the early stages of perimenopause, your brain sends out more FSH to try and stimulate the ovaries into action. Because the ovaries are becoming less responsive, the brain continues to increase the signal. While blood tests for FSH are not always required for diagnosis in those over 45, they are sometimes used in younger individuals to help confirm if the transition has begun.
The Feedback Loop
The relationship between the brain (hypothalamus and pituitary gland) and the ovaries is a feedback loop. When oestrogen is high, FSH stays low. When oestrogen drops, FSH rises. During perimenopause, this loop becomes uncoordinated, leading to the unpredictable spikes and crashes that cause many individuals to feel like they are on a hormonal rollercoaster.
Key Hormonal Differences Between Stages
‘The main difference between the stages is the stability of hormone levels. Perimenopause is defined by high variability (extremely high oestrogen one month and very low the next). Menopause is defined by stability at a low baseline. While perimenopause is a time of hormonal chaos, menopause represents a new, lower hormonal equilibrium for the body.’
Comparison of Hormone Profiles
| Hormone | Perimenopause Profile | Menopause Profile |
| Oestrogen | Fluctuating (Highs and Lows) | Consistently Low |
| Progesterone | Declining/Erratic | Very Low to Absent |
| FSH | Rising/High | Consistently High |
| Testosterone | Gradual Decline | Stable Low Level |
Causes of Hormonal Shifts
‘The fundamental cause of these hormonal changes is the natural ageing of the ovaries and the depletion of the ovarian reserve. Every person is born with a finite number of follicles (eggs). As these follicles are used up or age, the ovaries lose their primary source of oestrogen and progesterone. This is a normal biological process, though it can be accelerated by surgery or medical treatments.’
For most people, this is a natural progression. However, in cases of surgical menopause (removal of the ovaries), the hormonal shift is immediate rather than gradual. This lack of a transition period often results in more sudden and intense symptoms because the body has not had years to adapt to the lower levels of oestrogen.
Triggers for Hormonal Symptoms
‘While the underlying shifts are biological, certain triggers can make the body more sensitive to these changes. Stress is a significant factor because the adrenal glands also produce small amounts of hormones; when the body is under high stress, the adrenal response can interfere with this delicate balance. Additionally, lifestyle factors like diet and temperature can trigger the symptoms caused by low oestrogen.’
External Influences
- Stress Levels: High cortisol can worsen the psychological symptoms of hormonal decline, such as anxiety and low mood.
- Dietary Triggers: Alcohol and caffeine can affect the way the brain’s temperature regulation centre (the hypothalamus) reacts to lower oestrogen, leading to more frequent flushes.
- Physical Activity: Regular exercise can help the body manage the metabolic changes that occur when oestrogen levels drop.
Conclusion
The transition through perimenopause and into menopause is defined by the decline of oestrogen and progesterone and the subsequent rise of FSH. While perimenopause is a period of intense fluctuation and unpredictability, menopause brings a stable but lower level of these essential hormones. Understanding these shifts helps to explain why symptoms can be so varied and why they often change over time. Being aware of these biological changes is the first step in managing your health during this transition.
‘If you experience severe, sudden, or worsening symptoms, call 999 immediately.’
Why do my hormones fluctuate so much in perimenopause?
The brain is working harder to stimulate the ovaries, causing them to release erratic amounts of oestrogen before they eventually stop.
Does progesterone affect my mood?
Yes, progesterone has a calming effect on the brain. As levels drop or fluctuate, many people experience increased irritability or anxiety.
Will my hormone levels ever go back up?
No, after menopause, hormone levels remain naturally low. However, Hormone Replacement Therapy (HRT) can be used to top them up if needed.
Is testosterone involved in menopause?
Yes, testosterone levels also decline gradually, which can impact libido, energy levels, and muscle mass.
Can a blood test tell me exactly where I am in the transition?
Not always. Because levels change daily during perimenopause, a single test might not be accurate. Diagnosis is usually based on symptoms.
Does oestrogen affect my bones?
Yes, oestrogen is vital for bone strength. The drop in oestrogen after menopause increases the risk of bone thinning (osteoporosis).
Authority Snapshot
This article was written by the MyPatientAdvice medical team and reviewed by Dr. Rebecca Fernandez. Dr. Fernandez is a UK trained physician with an MBBS and extensive experience in gynaecology, cardiology, and internal medicine. Her background in both physical medicine and psychiatry (including CBT and mindfulness) allows for a holistic and evidence based view of how hormonal changes affect both the body and the mind. This guide is designed to provide clear and safe information for the public.



