Cancer
Gut bacteria linked to heart damage from chemotherapy

A healthy gut microbiome before chemotherapy may help protect breast cancer patients from heart damage caused by treatment, new research suggests.
Scientists found that specific gut bacteria were linked to biomarkers associated with increased risk of cardiotoxicity – damage to the heart muscle as a result of cancer therapies.
The study examined the gut microbiome – the population of bacteria in the digestive tract – in 98 women over the age of 60 with breast cancer, before they began chemotherapy.
Researchers used genetic sequencing to identify the types of bacteria present and compared this with indicators of heart health.
Participants underwent echocardiograms – ultrasound scans to assess heart function – and blood tests to measure biomarkers linked to heart damage.
These included LV-GLS, NTproBNP and Troponin I, which are proteins that signal stress or injury to the heart.
Researchers found that a group of bacteria called Bacteroides were more common in patients whose test results indicated higher susceptibility to cardiotoxicity.
The gut microbiome profile in these women resembled that found in patients with heart failure.
Dr Athos Antoniades is head of research and development at Stremble Ventures, who is leading the multi-omics analysis including gut microbiome DNA sequencing.
Antoniades said: “To allow cancer survivors healthier lives, we need to find new ways to protect them from the long-term side-effects of chemotherapy.
“This study is one of the first to ask whether the microbiome could play a role in how well patients’ hearts fare during chemotherapy.
“We saw a clear association between some specific genus of gut bacteria and cardiac biomarkers that suggest patients are at greater risk of heart damage during chemotherapy.
“While further research is needed, it does give us the tantalising hope that tailored probiotics could play a role in protecting patients against the harmful effects of cancer treatment in future.”
Bacteroidaceae, the bacterial family that includes Bacteroides, are commonly found in the human gut.
While often beneficial, they may contribute to infection and inflammation if their populations become unbalanced.
Cardiotoxicity is a relatively common side-effect of several cancer treatments, including chemotherapy.
As more patients survive breast cancer, growing numbers are living with the long-term consequences of treatment.
Wellness
AstraZeneca drug approved for breast cancer in EU

AstraZeneca’s breast cancer drug Etcamah has been approved in the EU as part of a combination treatment for advanced disease.
The European Commission acted on a positive opinion from the Committee for Medicinal Products for Human Use, the Cambridge, England-based drug maker said.
The decision followed positive results from the Serena-6 phase III trial, which showed a 56 per cent reduction in the risk of disease progression in advanced oestrogen receptor-positive breast cancer.
A phase III trial is a large, late-stage study used to assess a treatment’s safety and effectiveness before wider regulatory approval.
Oestrogen receptor-positive breast cancer is a form of the disease that can grow in response to the hormone oestrogen.
Etcamah, whose generic name is camizestrant, was tested in combination with a cyclin-dependent kinase 4/6 inhibitor.
Known as CDK4/6 inhibitors, these medicines block proteins that help cancer cells grow and divide.
AstraZeneca said the Etcamah combination has also been approved in Japan, the UAE and Saudi Arabia based on the Serena-6 trial results.
The company said breast cancer remains the leading cause of cancer death among women in Europe, with more than 140,000 deaths and more than 540,000 patients diagnosed in 2024.
AstraZeneca shares were down 0.6 per cent at 12,628 pence in London on Thursday.
Wellness
Breast cancer patients face 59% higher stroke risk during first year, study finds

Women newly diagnosed with breast cancer have a 59 per cent higher risk of ischaemic stroke in the first year after diagnosis, research suggests.
Researchers also said survivors who develop sudden stroke symptoms, including one-sided weakness, facial drooping, speech difficulties or vision loss, should seek immediate medical attention.
The multicentre study analysed National Health Insurance Service data from 107,606 women who underwent surgery for newly diagnosed breast cancer and compared them with 322,818 age-matched women with no history of cancer.
The research was conducted by professor Shin Dong-wook of Samsung Medical Center, professor Han Kyung-do of Soongsil University, professor Yong-Moon Mark Park of the University of Arkansas for Medical Sciences and professor Wonyoung Jung of the University of Pennsylvania.
Professor Yong-Moon Mark Park said: “The study demonstrates a time-dependent pattern in which the risk of ischaemic stroke rises sharply immediately after breast cancer diagnosis and treatment before gradually declining.
“The key finding is that we evaluated stroke risk according to different stages following diagnosis and treatment. This suggests that clinicians should consider not only how much the risk increases, but also when it is greatest.”
The study included women aged 18 or older who were newly diagnosed with breast cancer between 2010 and 2016, underwent surgery and had no previous stroke.
Each patient was matched with three women of the same birth year who did not have cancer. Participants were followed for an average of 7.2 years.
The main outcome was ischaemic stroke, also known as cerebral infarction. It occurs when a blocked blood vessel cuts off blood flow to the brain and is a leading cause of death and long-term disability.
During follow-up, ischaemic stroke occurred in 1,155 breast cancer patients, or 1.07 per cent, and 3,698 women in the control group, or 1.15 per cent.
Overall, breast cancer surgery was not linked to a significantly higher long-term risk of ischaemic stroke, and researchers recorded a slight fall in risk over time.
However, a different pattern emerged immediately after diagnosis.
Within one year of diagnosis, patients had a 59 per cent higher risk of ischaemic stroke than women without cancer.
The risk was highest during the first three months, at 2.90 times that of the control group.
It remained elevated within six months, at 2.27 times the control group’s risk, before gradually declining.
The risk was still 17 per cent higher three years after diagnosis.
Researchers said the temporary increase may be linked to cancer-related hypercoagulability, inflammatory responses to surgery and treatment, and cardiovascular stress caused by anticancer therapies.
Hypercoagulability means the blood is more likely than usual to form clots. Cardiovascular refers to the heart and blood vessels.
The increased risk was particularly pronounced among patients with hypertension, type 2 diabetes or a history of current smoking.
Hypertension means high blood pressure. Type 2 diabetes is a long-term condition affecting how the body controls blood sugar.
Breast cancer patients who smoked had a 2.26-fold higher risk of ischaemic stroke than comparable women without cancer.
Principal researcher professor Shin Dong-wook stressed the importance of vigilant care for patients with cardiovascular risk factors, especially during the early phase of breast cancer treatment.
Shin said: “Patients with hypertension, diabetes, or other cardiovascular risk factors, as well as those who smoke, require particularly careful management during the early phase of breast cancer treatment.
“If patients who have undergone breast cancer treatment suddenly develop weakness in one arm or leg, facial drooping, slurred or abnormal speech, or vision loss on one side, ischaemic stroke should be suspected, and they should seek immediate medical evaluation.”
Researchers said survivorship care should include strategies to monitor and manage cardiovascular and cerebrovascular disease risk throughout treatment as advances in breast cancer care continue to improve survival.
Cerebrovascular disease refers to conditions affecting blood flow and blood vessels in the brain.
Insight
Cancer cells secretly hijacking fertility protein to survive chemo, research finds

Cancer cells may hijack a fertility protein to repair damaged DNA and survive chemotherapy, research suggests.
The findings could point to a way of making existing cancer treatments more effective.
SYCP1 is a protein normally involved in producing sperm and eggs.
Researchers at the University of Liverpool found that the protein, previously thought to work only in reproduction, can be reactivated in cancer cells, where it helps tumours survive and grow.
SYCP1 usually helps chromosomes pair during meiosis, the form of cell division that produces reproductive cells.
In cancer cells, however, the protein appears to take on another role. It enters the nucleus, the cell’s control centre, binds directly to DNA and regulates genes involved in cell division and DNA repair.
DNA repair is how cells fix damage to their genetic code. In cancer, this process can help tumour cells survive treatment.
The researchers found that removing SYCP1 made cancer cells much more sensitive to chemotherapy drugs that damage DNA.
The findings suggest cancers may use SYCP1 to repair damage caused by treatment and continue growing.
Dr Urszula McClurg, lecturer in biochemistry, cell and systems biology at the University of Liverpool, said: “Our findings show that cancer cells can hijack proteins that normally exist only in reproductive tissues and give them completely new jobs.
“Understanding these unexpected functions opens up exciting opportunities to develop new treatments that make existing cancer therapies more effective.”
The work challenges the long-held belief that proteins active only in fertility have no biological relevance outside the reproductive system.
Researchers say these specialised proteins could provide new treatment targets across many types of cancer.
The study also offers a new view of how cancers evolve by repurposing developmental and reproductive processes.
The findings highlight SYCP1 as a candidate for future precision cancer therapies, which are treatments based on the specific biology of a patient’s cancer.
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