Cancer
Racial disparities seen in care after abnormal mammograms

Despite similar availability of diagnostic technologies to women of different racial and ethnic groups, significant disparities were seen in who actually received same-day diagnostic services and biopsies after abnormal mammogram findings, new research shows.
Even when breast-care facilities had the necessary technology and capabilities, minority groups were less likely than white women to receive diagnostic imaging on the same day as an abnormal screening result.
Black women in particular were less likely to receive same-day biopsies, compared with white women.
“We’re looking at how the diagnostic workup process might contribute to the population disparities we see with breast-cancer outcomes,” said Dr. Marissa Lawson, assistant professor of radiology at the University of Washington School of Medicine.
“It was surprising to find similar availability (of technologies) across racial and ethnic groups. But we still saw big differences in who was getting those same-day services.”
The retrospective study spanned nearly 11 years, from January 2010 to December 2020. The data represented more than 1.1 million female patients ages 40-89 and more than 3.5 million screening mammograms. The patients were seen in six U.S. states at 136 screening facilities that, as members of the Breast Cancer Surveillance Consortium, make data available for study.
With the multilevel analysis, the researchers hoped to shed light on how factors such as race and ethnicity, household income and neighbourhood educational attainment affected access to, and use of, breast-cancer diagnostics.
In the study, they first identified which consortium facilities offered onsite access to both standard-care and advanced diagnostics and biopsy. They then measured patients’ access to these capabilities, discerned which screening mammograms yielded an abnormal result, and evaluated those patients’ receipt of diagnostic imaging and biopsy on the same day and within 90 days at facilities that had the technology and capability onsite.
The researchers adjusted for several potentially influential factors such as patient breast density, biopsy history, personal and family history of breast cancer.
Asian, Black and Hispanic/Latinx patients received fewer same-day diagnostic services after undergoing a screening mammography with abnormal results at facilities offering any diagnostic or biopsy services. Patients who lived in the lowest-income neighbourhoods were 58 per cent less likely to have same-day diagnostic evaluations than those living in the highest-income neighbourhoods.
Notably, Lawson said, rural-resident patients were more likely to receive same-day diagnostic services than were urban residents.
Black patients and those who lived in a relatively lower median income were less likely than white patients to receive same-day biopsy at a capable facility. However, Hispanic/Latinx patients were more likely than white patients to receive same-day biopsy.
“Getting a screening mammogram is an anxiety-inducing experience for a lot of people, and most patients I encounter want their results as soon as possible,” Lawson said.
“If you’re able to do a diagnostic workup on the same day, instead of making them wait to schedule a follow-up visit — which might create a headache with work or transportation — that’s better for the patient. And if treatment is advised based on imaging and biopsy, we should do all we can to shorten the time between screening and treatment (for those diagnosed with breast cancer).”
The authors acknowledged several limitations, including a study population that might not be nationally representative of women’s education and rural residency. Variables that might affect patients’ ability to take advantage to clinic services, such as employment, insurance status, transportation barriers and childcare needs, were not included in the analyses.
It also is unknown whether individual patients declined the opportunity for same-day services or were not offered such services.
Insight
Drug turns off ‘master switch’ in aggressive breast cancer

A drug targeting a key regulator in triple-negative breast cancer reduced tumour growth and cancer stem cell viability in laboratory models.
Triple-negative breast cancer is an aggressive subtype that disproportionately affects women under 40 and accounts for about 15 to 20 per cent of breast cancers.
The disease lacks receptors for oestrogen, progesterone and the HER2 protein, which are targeted by several cancer drugs, making it particularly difficult to treat.
Researchers from the National University of Singapore’s Yong Loo Lin School of Medicine investigated mechanisms that allow triple-negative breast cancer cells to spread and resist treatment.
They examined regulators of Wnt signalling, a pathway involved in processes including cell growth and movement, and identified a master regulator called DP103.
DP103 is a gene that controls a major biological process. The researchers found it creates a cycle in which cancer cells continue to grow and spread while resisting treatment and maintaining cancer stem cells linked to disease recurrence.
The team then investigated whether a targeted drug known as Supinoxin, or RX-5902, could block DP103 and its effects in triple-negative breast cancer.
Analysis of 21 samples, including patient tumour tissue, laboratory-grown breast cancer cells and organoids derived from local cancer patients, found that the drug reduced cancer stem cell viability by 40 to 60 per cent.
Tumour growth in laboratory-grown tumour models fell by about 50 per cent.
In laboratory models, treatment also reduced tumour size by around 90 per cent while largely sparing healthy cells.
It also extended survival, with half of the treated laboratory models reaching 70 days and beyond, compared with none in the untreated group.
DP103 had previously been identified as a biomarker for triple-negative breast cancer by a team led by Alan Prem Kumar, an assistant professor with the NUS Centre for Cancer Research and principal investigator for the new study.
RX-5902 is already being studied as a treatment for breast cancer, and Kumar said the findings could help identify patients who may be more likely to benefit.
“Our findings suggest that DP103 could potentially serve as a diagnostic biomarker to identify the patients most likely to benefit from RX-5902 treatment, paving the way for a more precise, personalised approach to treating triple-negative breast cancer,” he said.
“Instead of treating all patients the same, future clinical trials could focus on those whose tumours have high levels of DP103, where the therapy is expected to have the greatest impact,” said Kumar.
First author Cai Wanpei said RX-5902 could prevent beta-catenin, a protein whose mutation is associated with various cancers, from entering the nucleus of human cells and switching off genes that drive cancer growth and spread.
“This slows tumour progression and triggers apoptosis – the natural death of cancer cells,” said Cai, who was a PhD student at the NUS Centre for Cancer Research and NUS Medicine’s pharmacology department during the research.
Study co-author Celestial T. Yap said triple-negative breast cancer remains particularly difficult to treat because conventional treatments such as surgery, chemotherapy and immunotherapy may not work for all patients.
She said DP103 could represent a “biological vulnerability” in the disease.
“This discovery offers new insights that could support more precise patient selection and open the door to better targeted strategies for durable disease control and improved clinical outcomes,” said Yap, an associate professor with the NUS Centre for Cancer Research and NUS Medicine’s physiology department.
The researchers said abnormal Wnt signalling also drives several other cancers, meaning the findings could offer avenues for treating other aggressive cancers.
Their next steps include validating DP103 as a predictive biomarker in larger patient groups and further developing therapies targeting the regulator for clinical testing.
The team will also investigate combining RX-5902 with existing therapies to further improve treatment outcomes.
Cancer
Federal gov should fund drug to treat breast cancer and endometriosis, Aus committee says

Australia’s drug advisory committee has recommended wider funding of triptorelin for women with breast cancer or endometriosis.
The recommendation comes after AstraZeneca announced plans to remove Zoladex from the market, risking leaving more than 7,500 women with breast cancer without an alternative treatment.
Both medicines block the release of oestrogen and testosterone and can be used as part of treatment, or for fertility preservation, in some forms of cancer.
The Pharmaceutical Benefits Advisory Committee met urgently in July and recommended making triptorelin unrestricted under the Pharmaceutical Benefits Scheme (PBS), which would mean it was funded for all uses.
The drug has been listed on the PBS for prostate cancer since 2006.
Triptorelin and Zoladex can also be used to treat endometriosis and to block puberty for either precocious puberty or gender-affirming care.
Vicki Durston, director of policy and advocacy at Breast Cancer Network Australia, described the recommendation as “a significant step forward” and said access to the medicine could mean the difference between life and death for some patients.
She said some women had already chosen to have their ovaries removed because of uncertainty over Zoladex supplies.
Marilla Druitt, Victorian state chair of the Royal Australian and New Zealand College of Obstetricians and Gynaecologists, said it remained unclear whether triptorelin would work exactly the same way as Zoladex, but the recommendation was likely to be positive for patients with endometriosis and pelvic pain.
She said: “I’m glad we’ve got an alternative.”
“That’s fantastic, and it remains to be seen whether or not it will be as good, but pain is so complex, pain is a really hard thing to study because it’s got so many contributors.”
Druitt said further research would be needed after the medicine was introduced.
If accepted by the federal government, the recommendation would also allow PBS funding of triptorelin for puberty suppression in precocious puberty and gender-affirming care.
This would make gender-affirming care federally funded through the PBS for the first time and would remove a financial barrier for transgender children in Queensland and the Northern Territory.
Stuart Aitken, medical director of Gender Health Australia, said the recommendation had sparked “absolute joy” among his patients.
He said: “It takes away a huge barrier to accessing evidence-based care.”
“It means that the ban has a very limited effect.”
Cancer
AI tool can predict breast cancer progression

An AI tool has identified microscopic breast cancer patterns that could help medical professionals better forecast disease progression.
The tool, called CenSegNet, was developed to analyse hundreds of thousands of cells in tumour samples and detect abnormalities in structures known as centrosomes.
Centrosomes are small structures inside cells that ensure DNA is divided equally during cell replication. Researchers say abnormalities in these structures have been considered a hallmark of cancer for more than a century.
In cancerous tissue, centrosomes can replicate excessively, driving the progression of the disease.
Scientists at the University of Southampton used the system to study tissue from 127 breast cancer patients being treated at University Hospital Southampton.
More than 330,000 centrosomes were analysed, revealing two distinct abnormalities that had previously been considered part of the same process.
One involved cells developing too many centrosomes, while the other involved centrosomes becoming abnormally enlarged.
Researchers found the two defects behaved independently and could occur in different areas of the same tumour.
Dr Salah Elias, of the University of Southampton’s school of biological sciences and institute for life sciences, said: “For more than a century, centrosome abnormalities have been recognised as a hallmark of cancer, but studying them in patient tissues has been extremely challenging.
“CenSegNet allows us to analyse these defects at single-cell resolution across entire tumours and uncover patterns that were previously impossible to see.
“Rather than viewing centrosome abnormalities as a single phenomenon, our study shows that they have distinct biological states with different spatial distributions and clinical associations.”
The platform also helped uncover a link between different centrosome abnormalities and features of cancer.
Tumours with high levels of enlarged centrosomes were more aggressive, while patients whose cells had lower levels had a better chance of survival.
Dr Elias said: “Specific combinations of defects may influence how a tumour grows, invades surrounding tissues and responds to treatment.
This opens the door to developing new biomarkers and, ultimately, more personalised treatment strategies.”
Researchers hope AI could eventually be used to track disease by analysing the behaviour of cell structures.
The team also plans to combine CenSegNet with more data to explore whether it could help guide treatment decisions.
Entrepreneur2 weeks agoApplications close August 18 for Women’s Health Innovation Summit 2026 Innovation Showcase
Mental health2 weeks agoThird of women unaware of perimenopause mental health impact
Wellness7 days agoChelsea FC Women to launch first-of-its-kind player fertility fund
Entrepreneur2 weeks agoWomen’s Health Week Europe 2026 releases fully populated agenda ahead of October summit
Menopause2 weeks agoMenopausal hormone therapy may lower dementia risk, study suggests
Hormonal health2 weeks agoWe are wrapping our children in plastic and calling it care
Opinion7 days agoanna perimenopause app launches across 39 markets
Pregnancy2 weeks agoChemicals in plastics may be linked to high blood pressure during pregnancy













