News
Breast cancer treatments speed up aging process – study

Common breast cancer treatments, including chemotherapy, radiation, and surgery, may accelerate the biological aging process in breast cancer survivors, a study suggests.
The findings show that markers of cellular aging—such as DNA damage response, cellular senescence, and inflammatory pathways—significantly increased in all breast cancer survivors, regardless of the type of treatment received. This suggests that the impact of breast cancer treatments on the body is more extensive than previously thought.
“For the first time, we’re showing that the signals we once thought were driven by chemotherapy are also present in women undergoing radiation and surgery,” said study lead author Judith Carroll of UCLA.
“While we expected to see increased gene expression linked to biological aging in women who received chemotherapy, we were surprised to find similar changes in those who only underwent radiation or surgery.”
Advances in cancer therapies have greatly improved survival rates. However, breast cancer is linked to accelerated aging, impacting physical abilities, independence, and lifespan.
Biological aging processes, which drive conditions like fatigue, cognitive decline, frailty, and cardiovascular disease, appear to be a major factor.
Evidence suggests that cancer treatments, like chemotherapy, can increase the risk of earlier onset of these aging-related conditions, making it crucial to understand the specific pathways involved to better target and manage them.
To examine how gene expression related to aging changes over time in women diagnosed with breast cancer, researchers tracked women undergoing breast cancer treatment for two years.
The team tracked the gene expression in their blood cells using RNA sequencing, focusing on markers that signal biological ageing — including a process known as cellular senescence, which is when cells stop dividing but don’t die. These so-called “zombie cells” accumulate over time and can release harmful substances that damage nearby healthy cells, contributing to aging and inflammation.
The data was then analyzed using statistical models to help identify aging-related changes.
The team found that regardless of treatment type there was an increase in expression of genes that track cellular processes involved in biological aging. Specifically, genes that capture cellular senescence and the inflammatory signal from these cells, indicating that their immune cells were aging faster than normal.
They also saw increases in DNA damage response genes, which are genes that are expressed when there is DNA damage. Although chemotherapy did have a slightly different pattern, similar to what others have shown, they also noted changes in women who did not receive chemotherapy.
Senior author Julienne Bower, also of UCLA, said: “The results suggest women who receive treatment for breast cancer have a pattern of gene expression that indicates increased DNA damage and inflammation, which could be important targets for recovering from cancer and having a better quality of life in survivorship.
The researchers are now exploring a new biomarker that measures a woman’s biological age and the pace at which she is aging. This could help determine whether the aging signals detected during cancer treatment have a long-term effect on biological age. The team plans to investigate factors that may influence this, with a focus on protective behaviors such as exercise, stress management and healthy sleep patterns.
Cancer
Study could explain why obesity is a breast cancer risk factor

Obesity may reduce a fat-cell process that helps kill breast cancer cells, offering a possible explanation for its link to the disease, a study found.
The findings come from preclinical models, including breast tissue from donors.
The research team at Huntsman Cancer Institute at the University of Utah focused on adipocytes, the fat cells that make up much of breast tissue.
Adipocytes are larger in obesity than in lean tissue and create different environments around cancer cells.
Researchers found that lean adipocytes produced much more of a fatty acid called 9S-HODE than obese adipocytes.
9S-HODE promotes ferroptosis, a form of cell death that helps the body remove old and damaged cells, including cells that could be cancerous.
Cancerous cells died more readily in lean tissue, where levels of 9S-HODE were higher.
Meghan Curtin, first author and a doctoral candidate in molecular biology, said: “We found that the lean adipocytes produce much more 9S-HODE than obese ones. This means that cancerous cells die more readily in lean tissue.
“By producing more 9S-HODE, our bodies are actively protecting us, under lean circumstances, in a way it cannot with obesity.”
In preclinical mouse models, increasing levels of 9S-HODE in obese adipocytes suppressed breast cancer tumour growth.
The researchers believe this understanding could lead to better therapies.
Keren Hilgendorf, senior author of the study and an investigator at Huntsman Cancer Institute, said: “From a clinical perspective, this discovery is incredibly empowering. Because 9S-HODE is naturally present in the body but is lost with obesity, we may be able to restore this protection by putting it back.”
“That could become a very feasible therapeutic approach to slow breast cancer growth.
The researchers stressed that obesity is only one factor that contributes to breast cancer and that the disease can develop for other reasons.
They also said 9S-HODE appears to be produced mainly by fat cells in the breast, although fat cells elsewhere in the body may have a similar protective function that requires further research.
Menopause
Menopause may not explain rising heart condition in women – study

Menopause may not drive rising pulse pressure after midlife, with changes beginning up to two decades before the final menstrual period, a study found.
Pulse pressure, the gap between the upper and lower numbers in a blood pressure reading, is influenced by the stiffness and width of the aorta, the body’s largest blood vessel.
The analysis found that women’s pulse pressure reached its lowest point and began rising in their late 30s, around a decade earlier than in men, regardless of when menopause occurred.
Researchers analysed data from the Framingham Heart Study, a long-running study of cardiovascular risk factors involving three generations of families in Massachusetts.
The study included 6,760 adult women assessed at three health visits over 14 years. Women were grouped according to whether they were premenopausal or experienced early, average or late menopause.
Women whose menopause was induced by surgery or medication were excluded. Researchers also analysed data from 3,248 adult men to examine differences between the sexes.
Pulse pressure typically falls between early adulthood and midlife as the internal space within the aorta increases in diameter, allowing blood to flow more easily.
After midlife, pulse pressure tends to rise as the aorta stops widening and its walls become stiffer. A wider pulse pressure means the heart has to work harder and can contribute to damage in small blood vessels in organs including the brain and kidneys.
The researchers found that the age at which women’s pulse pressure changed from falling to rising was not affected by whether their final menstrual period occurred early, late or at a typical age.
After midlife, pulse pressure increased with age in both women and men, although it rose faster among women. Average pulse pressure was higher in women than men after the age of 60.
Gary F. Mitchell, senior author of the study, said: “To our huge surprise, our results suggest that factors other than the timing of the final menstrual period were likely involved in the accelerated increase in pulse pressure in women after midlife.”
The findings challenge the assumption that hormonal changes associated with menopause contribute to the increase in aortic stiffness seen among women later in life.
However, the observational study could not establish cause and effect. It also relied on participants reporting their age at menopause rather than researchers measuring oestrogen levels.
Most participants were of white European descent, meaning the findings may not apply to people from other racial or ethnic groups.
Wide pulse pressure is an independent risk factor for cardiovascular disease, dementia and kidney disease, according to the researchers, although pulse pressure is not currently included in clinical guidelines for managing blood pressure.
Mitchell said healthcare professionals should consider pulse pressure when assessing middle-aged and older people with high blood pressure, particularly women.
Samar R. El Khoudary, who was not involved in the study, said the findings did not mean menopause had no role in women’s cardiovascular health.
“Vascular aging may begin years before menopause, but that doesn’t mean menopause is irrelevant. The trajectory may accelerate as women enter perimenopause.
“We shouldn’t wait until menopause to start thinking about cardiovascular health.
“By the time a woman reaches her final menstrual period, vascular changes may already have been underway for years. Midlife is an opportunity to identify cardiovascular risk early and intervene before disease develops.”
Insight
Women with birth trauma face 2.5x higher healthcare costs – study

Women with childbirth-related PTSD had healthcare costs 2.5 times higher than women without PTSD from six to 12 months after birth, a report found.
The analysis estimated that early prevention of traumatic births and childbirth-related post-traumatic stress disorder (PTSD) could save the NHS around £26m each year.
Women with PTSD were also less likely to have returned to work by 12 months after giving birth, suggesting potential longer-term employment and economic effects.
The report from City St George’s, University of London was launched at an All-Party Parliamentary Group (APPG) on Birth Trauma event on 10 September 2026.
Researchers calculated the potential NHS savings using the number of births reported in NHS hospitals in 2024-25 and the UK prevalence of childbirth-related PTSD.
Around one in 20 women in the UK develop PTSD following childbirth, while recent research has shown that the condition remains underdiagnosed.
The findings draw on research that tracked more than 2,000 women in England and Scotland from pregnancy to two years after birth. Researchers assessed mental health, use of health services and employment outcomes.
The research included assessments of childbirth-related PTSD and PTSD arising from other traumatic experiences. It also included a separate Birth Trauma Association survey examining women’s experiences of birth trauma.
Between six and 12 months after birth, healthcare and support service costs for women with childbirth-related PTSD were 2.5 times those of women without PTSD.
Women with low or moderate symptoms, including those reporting one or two PTSD symptoms, also had higher healthcare service costs than women without PTSD.
Just over half, 53 per cent, of women with PTSD had returned to work by 12 months after giving birth, compared with 68 per cent of women without symptoms.
Women with PTSD were more likely to be referred for mental health support, but more than half received no referral.
Those whose PTSD followed a traumatic birth also had slightly higher healthcare costs than women whose PTSD resulted from other traumatic experiences.
The researchers called for routine PTSD assessment and treatment during pregnancy and after childbirth, alongside greater access to specialist perinatal mental health services.
They also recommended training healthcare staff in perinatal trauma, trauma-informed care and identifying women at risk of PTSD.
The report said further research was needed to establish whether screening, treatments and trauma-informed care pathways are effective and evidence based.
The work follows the APPG’s 2024 Birth Trauma Inquiry, which highlighted the effects of birth trauma on women and families and called for evidence on its wider public health and societal costs.
The report focused primarily on healthcare use and did not attempt to calculate all costs associated with birth trauma and postnatal PTSD, including wider employment, family and societal effects.
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