Higher lifetime estrogen levels tied to 13{cfdf3f5372635aeb15fd3e2aecc7cb5d7150695e02bd72e0a44f1581164ad809} lower risk

Higher lifetime estrogen levels tied to 13{cfdf3f5372635aeb15fd3e2aecc7cb5d7150695e02bd72e0a44f1581164ad809} lower risk

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Higher levels of lifetime estrogen are linked to a lower risk of stroke, new research finds. Image credit: Chen Liu/EyeEm/Getty Images.
  • Researchers investigated the effects of lifetime estrogen exposure on stroke risk.
  • They found that higher levels of lifetime estrogen exposure in women were associated with a lower risk of stroke.
  • Further research is needed to understand how higher estrogen exposure confers protection from stroke.

A stroke occurs when blood is blocked from reaching the brain or a blood vessel in the brain bursts.

Stroke is the second-leading cause of death around the world, and its incidence increased substantially between 1990 and 2019 globally, including a 70{cfdf3f5372635aeb15fd3e2aecc7cb5d7150695e02bd72e0a44f1581164ad809} increase in the number of incident, or first-ever, strokes.

Some studies suggest that higher estrogen levels may protect against stroke. Research shows, for example, that young women have a lower stroke risk than men, and that this risk increases after menopause, when estrogen production reduces.

Understanding more about stroke risk factors could improve preventative care and lead to improved treatment options.

Recently, researchers examined the link between lifetime cumulative estrogen exposure and stroke risk among postmenopausal women in China.

They found that women with the highest lifetime estrogen exposure had the lowest stroke risk.

The study appeared in Neurology.

For the study, researchers examined healthcare data from 122,939 postmenopausal women without prior stroke at baseline from the China Kadoorie Biobank study. Participants were aged between 40 and 79 years and were followed for an average of 8.9 years.

They were asked to provide information about their reproductive history, including the age of puberty onset, the age at which menopause started, and the number of pregnancies they had. They also provided information on their use of contraceptive pills.

The women were then split into four groups according to their reproductive lifespan (RL), or the number of years between puberty onset and menopause. Those in the shortest RL group had up to 31 reproductive years, whereas those in the longest RL group had 36 years or more.

The researchers also collected data on stroke incidence. During the study, they recorded 15,139 cases of new-onset stroke.

The researchers found that 13.2{cfdf3f5372635aeb15fd3e2aecc7cb5d7150695e02bd72e0a44f1581164ad809} of women in the longest RL group had a stroke, compared to 12.6{cfdf3f5372635aeb15fd3e2aecc7cb5d7150695e02bd72e0a44f1581164ad809} of women in the shortest RL group.

However, after adjusting for factors including smoking, age, and physical activity, they found that, in fact, participants in the longest RL group had a 5{cfdf3f5372635aeb15fd3e2aecc7cb5d7150695e02bd72e0a44f1581164ad809} lower risk for all types of stroke than those in the shortest group.

In particular, when they looked at different stroke subtypes, they found that those in the longest RL group had a 13{cfdf3f5372635aeb15fd3e2aecc7cb5d7150695e02bd72e0a44f1581164ad809} lower risk for intracerebral hemorrhage compared to those in the shortest RL group. Intracerebral hemorrhage is the most fatal kind of stroke which occurs when blood vessels burst in the brain.

Women in the longest RL group also had a 5{cfdf3f5372635aeb15fd3e2aecc7cb5d7150695e02bd72e0a44f1581164ad809} lower risk for ischemic stroke — when the blood supply to the brain is interrupted or reduced — compared to the shortest group.

The researchers also found that oral contraceptive pill use duration, which is linked to increased estrogen levels, was associated with a lower risk of stroke.

Those with fewer stillbirths, miscarriages, and terminations were also less likely to develop stroke.

“The link between reproductive lifespan, endogenous/ exogenous estrogens and risk of stroke in women is poorly understood,” Dr. Bharti Manwani, assistant professor of vascular neurology with McGovern Medical School at UTHealth Houston, not involved in the study, told Medical News Today.

“Preclinical studies have shown estrogen to be a profound neuroprotective agent, while clinical trials of estrogen replacement therapy in postmenopausal women failed to show benefit,” she noted.

Dr. Alex Polyakov, associate professor and gynecologist at the University of Melbourne in Australia, also not involved in the study, agreed that the exact mechanisms behind estrogen’s effects on stroke risk are not fully understood.

He added that: “Further research is needed to better understand the biological, behavioral, and social factors that may contribute to the link. Some potential mechanisms include the ability of estrogen to influence blood flow and the formation of blood clots, which can play a role in stroke risk.”

“Estrogen may also have protective effects on the brain and cardiovascular system. Estrogen is known to have a number of beneficial effects on the cardiovascular system, such as improving blood lipid levels, decreasing oxidative stress, and promoting blood vessel health. The relationship between estrogen levels and stroke risk is complex and can vary depending on various factors such as age, genetics, lifestyle, and hormone replacement therapy.”

– Dr. Alex Polyakov

In the Neurology paper, the researchers concluded that cumulative estrogen exposure from reproductive factors could be a useful indicator of a woman’s risk of different types of stroke after menopause.

We asked study author Dr. Peige Song of the School of Public Health at Zhejiang University School of Medicine, Hangzhou, China, about the study’s limitations.

She told us that “[s]ome limitations of the study include potential recall bias in the collection of reproductive factor information, and the inability to control for other factors that may impact estrogen exposure and stroke risk, such as genetics, early life experiences, and diet.”

“The major limitation of this study is that estrogen exposure was measured indirectly rather than through direct blood levels,” Dr. Adi Iyer, a neurosurgeon and neurointerventional surgeon at the Pacific Neuroscience Institute at Providence Saint John’s Health Center in Santa Monica, CA, not involved in the study, also told MNT.

Dr. Polyakov added as the study is observational, it can only establish a correlation and not causation. He further noted that the study was conducted only on Chinese patients, and so its findings may not apply to people from other populations.

“The implications of this study for the future of women’s health are very intriguing, and more studies regarding the cerebrovascular protection value of a higher lifetime estrogen exposure is needed,” Dr. George B. Branning, board-certified physician specializing in obstetrics and gynecology, from Biote Medical Faculty, not involved in the study, told MNT.

“Although hormone replacement therapy [HRT] is usually suggested for patients who want relief of their symptoms such as hot flashes, night sweats, weight gain, and mood changes, studies have shown that HRT is essential to lifetime functional bone health, sexual health, and cognitive protection. These new study results indicate we can perhaps add stroke protection to this growing list of benefits,” he added.

Dr. Manwani agreed that it is essential to know that longer cumulative estrogen exposure decreases stroke risk in postmenopausal women. She noted, however, that age at puberty onset or menopause is beyond a woman’s control.

“Therefore, it is important for clinicians to risk-stratify women with decreased estrogen exposure/ lower reproductive lifespan and work on controlling/ treating their other modifiable vascular risk factors aggressively, for example, hypertension, hyperlipidemia, atrial fibrillation, diabetes mellitus, smoking,” she explained.

“[These findings] also open up another debate about the role of estrogen in stroke. Is it good or bad? More studies on estrogen replacement therapy are needed to identify if increasing the estrogen exposure by use of hormone therapy would be beneficial,” she concluded.

Early CVD tied to cognitive issues later in life

Early CVD tied to cognitive issues later in life

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Having cardiovascular problems in one’s 20s or 30s is linked to cognitive decline later in life, a new study shows. Image credit: Pati Gagarin/Stocksy.
  • Cardiovascular disease (CVD) affects around 550 million people worldwide, and its prevalence has doubled since 1990.
  • CVD has been associated with cognitive impairment and dementia in older people.
  • The incidence and mortality of CVD among young and middle-aged adults have been steady or increasing in recent years.
  • New research has found that people with early CVD may be more likely to have memory and thinking problems and worse brain health in middle age.

Cardiovascular diseases (CVD) are a major cause of global mortality and disability. Although the CVD burden is declining in those aged over 50, current rates of CVD below this age have either remained steady or increased.

In high-income countries, lifestyle factors, such as obesity, lack of physical activity, and poor diet, are all increasing the incidence of CVD.

Studies have shown that cardiovascular risk factors may contribute to late-life cognitive decline and dementia but, until now, there has been little evidence that CVD might speed cognitive decline in middle age.

Now, new research, part of the Coronary Artery Risk Development in Young Adults (CARDIA) study, has found that premature CVD — at or below the age of 60 — may affect brain health and increase cognitive decline in midlife.

The research appears in Neurology, the journal of the American Academy of Neurology.

This prospective cohort study enrolled people aged between 18 and 30 years, and followed them for 30 years. Participants had follow-up examinations every 2–5 years during the study.

The participants were from four cities in the United States, just over half were female and just under half were Black.

Dr. Sandra Narayanan, board-certified vascular neurologist and neurointerventional surgeon at Pacific Stroke & Neurovascular Center at Pacific Neuroscience Institute in Santa Monica, CA, who was not involved in the study, commented for Medical News Today:

“The longitudinal, prospective study design over 30 years limits bias. The number and forms of cognitive assessments applied to this large cohort during this period also enabled a thorough evaluation of brain health in multiple domains such as executive functioning, processing speed, and verbal learning and memory.”

At the 30-year point, 3,146 participants, with a mean age of 55 years, underwent a range of cognitive assessments. In total, 147 (4.7{cfdf3f5372635aeb15fd3e2aecc7cb5d7150695e02bd72e0a44f1581164ad809}) had developed one or more premature CVD events, 126 of which were coronary heart disease or stroke. The mean age of the first CVD event was 48.4 years.

Those who had premature CVD were more likely to be male, older, Black, have had access to less education, have lower household income, and have more risk factors for CVD, such as poor diet and low levels of physical activity.

Researchers tested participants in verbal fluency, global cognition, verbal memory, processing speed, and executive function.

They adjusted for demographics, education, literacy, household income, depressive symptoms, physical activity, diet, and APOE — a gene that is linked to an increased risk of dementia — when analyzing their findings.

In addition, they assessed 5-year cognitive decline in 2,722 people who underwent testing at both the 25- and 30-year points.

At the end of the study, 663 participants also underwent MRI brain scans to assess white matter hyperintensities (WMH), which are associated with cognitive impairment. The researchers also used diffusion tensor imaging to assess participants’ brain health.

Only a small proportion of those undergoing MRI scans had early CVD, as lead author Dr. Xiaqing Jiang, a postdoctoral scholar in the Department of Psychiatry and Behavioural Sciences at the University of California, San Francisco, told MNT.

“Among those with MRI, 16 participants had premature CVD. More people will develop premature CVD events as they age as most participants were still under 60,” she said.

People who had premature CVD performed worse on all cognitive tests, except verbal fluency. The association was strongest for processing speed and executive function.

However, in women, premature CVD was significantly associated with lower verbal fluency — an association that did not occur in men. Black men with premature CVD had a greater decrease in executive function than what occurred in others with premature CVD.

Those with early CVD were almost three times as likely to show accelerated cognitive decline. Researchers detected it in 13{cfdf3f5372635aeb15fd3e2aecc7cb5d7150695e02bd72e0a44f1581164ad809} of those with premature CVD, compared with 5{cfdf3f5372635aeb15fd3e2aecc7cb5d7150695e02bd72e0a44f1581164ad809} of those without premature CVD.

Dr. Giovanni Schifitto, professor of neurology at the University of Rochester Medical Center, not involved in this study, explained why early CVD might have these effects.

“Early CVD risk factors also affect cerebral perfusion (brain vessel disease) which can lead to neuronal dysfunction and death,” he told us.

“Cardiovascular disease is closely linked to [the] progression of cerebrovascular disease due to alteration of cerebral blood flow, increased cerebral inflammation and microvascular stress, shared vascular risk factors, and in many cases, shared pathophysiology,” explained Dr. Narayanan.

“Clinically silent white matter lesions, mild cognitive impairment, and overt vascular dementia are linked to increasing burden of these vascular risk factors,” she added.

The researchers also found a significant association between early CVD and changes in brain white matter. Changes in white matter often occur in dementia patients.

“In this biracial cohort of middle-aged adults, we found that having premature CVD was associated with worse cognitive performance on most domains, accelerated cognitive decline over 5 years, and worse white matter health, which was not entirely driven by stroke/ TIA [transient ischaemic attack] and even independent of cardiovascular risk factors.”

– Dr. Xiaqing Jiang

This study highlights the importance of minimizing risk factors for CVD early in adulthood.

The Centers for Disease Control and Prevention (CDC) recommend increasing physical activity, following a healthy diet, not smoking, and maintaining a healthy weight to keep the heart healthy.

And, as Dr. Schifitto pointed out, “[t]here is emergent literature that CVD risk factors should be aggressively treated even at a young age to protect the brain.”

Dr. Jiang agreed, saying that “CVD prevention and intervention, including preventing cardiovascular and other risk factors, may start as early as young adulthood, which may be critical to prevent early divergences of cognitive function and brain health.”

“More research is needed to understand why premature CVD is independently associated with cognition and how these associations evolve over the life course as people get older,” she added.