News
Research project of the year shortlist revealed

The Femtech World Awards is proud to reveal the shortlist for Research Project of the Year as part of the third annual global celebration of innovation, impact and leadership across women’s health.
From fertility science and perimenopause research to regional ecosystem analysis, the shortlisted projects reflect the breadth and growing influence of femtech research worldwide.
The category is sponsored by OncoGenomX, with the winner to be selected by a representative from the organisation.
OncoGenomX is dedicated to offering solutions and providing comprehensive support services that empower Drug Developers, Clinical Researchers, Oncologists,NextGenSeq Diagnostics Laboratories, NextGenSeq Service Organisations, Cancer Diagnostics and Therapeutics Companies to achieve their ambitious goals
The shortlisted entries for Research Project of the Year are:

Women’s health remains significantly underserved in South-East Asia, with persistent gaps in access, awareness, and quality of care carrying substantial social and economic costs.
This report examines the femtech landscape in Indonesia, the Philippines, Singapore, Thailand, and Vietnam, highlighting market trends, emerging technologies including artificial intelligence, and the evolving support ecosystem.
It identifies key challenges facing femtech founders, including limited access to finance, low awareness and persistent stigma, marketing constraints linked to content moderation, and gaps in tailored ecosystem support.

Led by Stephanie Willson, MD, of the IVI RMA Global Research Alliance, the study explored whether embryos that show certain chromosome abnormalities during genetic testing may still have the potential to result in a healthy pregnancy and live birth.
The research analysed more than 7,600 frozen embryo transfers and found that some embryos previously considered unlikely to succeed were still capable of leading to successful pregnancies, although at lower rates than embryos without abnormalities.
The findings could help fertility clinics and patients make more informed decisions during IVF treatment, particularly in cases where there are limited embryos available.
Rather than automatically discarding these embryos, the research supports a more evidence-based and personalised approach to fertility care.

For many women, perimenopause can feel confusing and unpredictable, with limited research explaining what is happening in their bodies.
Natural Cycles set out to change that by leading one of the largest studies ever conducted on menstrual and ovulatory patterns, uncovering new insights into how ovulation behaves as women approach menopause.
Conducted in collaboration with researchers from George Washington University, Seattle Clinical Research Center, Gennev and the University of California San Diego, the study analysed nearly one million menstrual cycles from more than 197,000 women aged 18–52 across more than 140 countries.
The scale of this dataset made it possible to explore menstrual patterns and ovulation in far greater detail than has traditionally been possible in women’s health research.
The Femtech World Awards celebrates the innovators, researchers and organisations driving meaningful progress in women’s health.
What happens next
Winners across all categories will be revealed during the virtual ceremony on June 11, with winners receiving a trophy and an interview with a Femtech World journalist.
Mental health
Endometriosis linked to higher use of mental health meds, study finds

Women later diagnosed with endometriosis used more antidepressant and anxiety medication than other women, with the pattern emerging years before diagnosis.
The difference was evident up to 10 years before diagnosis and continued for a decade afterwards, according to a large Danish registry-based study involving 136,842 women.
Women with the condition also had substantially more contact with psychiatric hospital departments than those without it.
Researchers at Aarhus University found that women with endometriosis redeemed 29 per cent more prescriptions for antidepressants and 16 per cent more for anxiety medication in the years before diagnosis.
After diagnosis, the differences rose to 40 per cent for antidepressants and 46 per cent for anxiety medication.
Marie Josiasen, PhD student at the department of public health and one of the researchers behind the study, said: “What surprised us was how clear and persistent the pattern was, and that the difference did not diminish over time. On the contrary. Women with endometriosis consistently redeemed more prescriptions for antidepressant medication than women without the disease throughout the entire period, from ten years before to ten years after diagnosis.”
The study does not provide an answer as to what causes the mental strain.
Josiasen said prolonged pain, uncertainty about the cause of symptoms and fertility problems could be among the factors contributing to psychological strain.
She said: “It’s possible that prolonged pain, uncertainty about the cause of the symptoms, and frustration over not being able to live the life one wants may be among the reasons. For some women, fertility problems can also be a major psychological burden.”
Researchers also found that the gap compared with women without endometriosis did not narrow after diagnosis. Instead, it became more pronounced in the years that followed.
Josiasen said: “A diagnosis can be a relief, but it also involves coming to terms with having a chronic illness.”
The study does not indicate whether diagnosing endometriosis earlier could reduce psychological strain.
As part of her PhD project, Josiasen will investigate the role hormonal contraception may play in the mental health of women with endometriosis.
She said: “We can see that many receive medication and are in contact with psychiatric services. But we still lack an understanding of what actually helps these women. That’s what I want to help find out.”
Hormonal health
Calla Lily joins US$50m antibiotics programme

Calla Lily Clinical Care has joined a US$50m antibiotics programme to assess vaginal delivery of UTI treatments through its Callavid platform.
The women’s health medical technology company will evaluate whether antibiotics can be delivered directly through the vaginal wall to treat urinary tract infections (UTIs).
The project will use Callavid, the company’s intravaginal drug delivery platform, aiming to deliver treatment to the site of infection while limiting systemic exposure.
Calla Lily has been selected for Wellcome Leap’s Focused Antibiotics programme, which is exploring ways to reformulate existing antibiotics so they reach infections while sparing the gut microbiome without loss of efficacy.

Dr Serena de Gelidi, Principal Investigator and R&D Manager, Calla Lily Clinical Care
The programme is backed by US$50m and aims to investigate technologies that could reduce the unintended effects of antibiotic treatment.
UTIs are among the most common bacterial infections in women. According to the source material, women are prescribed almost 40 per cent more antibiotics than men between the ages of 16 and 54.
Calla Lily will assess whether Callavid can deliver antibiotics through the vaginal wall while bypassing gastrointestinal transit and first-pass metabolism.
The company expects the approach could keep systemic exposure below 5 per cent.
There is currently no first-line UTI antibiotic available in a mass-manufactured vaginal formulation, according to Calla Lily.
The company said a successful project could contribute to the wider programme’s goal of reducing antibiotic-driven resistant infections by up to 40 per cent a year.
Callavid has a patented, leak-free, tampon-like design intended to deliver medicines and hormones through the vagina.
The platform is already being assessed in the NIHR-funded FREEDOM trial, which is studying vaginal progesterone delivery using Callavid.
That study began in April 2026 and is examining safety, user acceptability and drug absorption. According to the company, it has passed its safety stopping rule and 90 per cent of patients have completed their first round of dosing.
Dr Lara Zibners, co-founder and chair of Calla Lily Clinical Care, said: “Women are disproportionately impacted by urinary tract infections, yet the consequences of that repeated systemic exposure have been largely overlooked. Organisations such as Wellcome Leap play a vital role in tackling major healthcare challenges through bold innovation. We are honoured to be part of the Focused Antibiotics programme and to explore the potential of Callavid in a foundational antibiotic application, demonstrating how women’s health innovations can deliver benefits far beyond fertility and reproductive care.
Thang Vo-Ta, co-founder and chief executive of Calla Lily Clinical Care, said: “Being selected by Wellcome Leap, one of the world’s most ambitious health innovation funders, is a significant validation of what we are building at Calla Lily Clinical Care. Our ambition has always been for Callavid to become the defining platform for intravaginal drug delivery across a wide range of indications. The Focused Antibiotics programme gives us the ideal partner to pursue one of the most consequential of those indications: treating the world’s most common bacterial infection in women while helping to address a global resistance crisis that, left unchecked, could claim eight million lives annually by 2050. This marks a pivotal moment in demonstrating that when you solve for women, you solve for everyone.”
The project will be led by Dr Serena de Gelidi, principal investigator and R&D manager at Calla Lily Clinical Care.
She will be supported by Professor Andrew Lewis, principal scientist at the company and an international authority on drug-eluting systems, with 58 patents and more than 260 peer-reviewed publications.
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.
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