Breaking 11:11 Zelensky in Washington for crucial talks with Trump amid escalating war in Ukraine 11:10 PayPal boosts 2026 outlook as turnaround strategy gains momentum amid takeover speculation 10:47 HF Sinclair beats market expectations as stronger refining margins boost quarterly results 10:43 Apple reclaims the world’s most valuable company title as Nvidia shares slide 10:30 X expands into digital finance with paid accounts and peer-to-peer payments 10:05 Meta and BlackRock launch $14 billion Texas data center project to boost AI infrastructure 09:19 Trump says frozen Iranian assets could be used to compensate vessels damaged in the Strait of Hormuz 08:47 Washington reaffirms deep ties with Rabat as Moroccan-American friendship dates back to 1777 08:00 Trump says there are “good chances” for successful talks with Iran 19:09 SpaceX shares continue to slide ahead of quarterly results 18:37 Amazon expands its space ambitions with plans for more than 5,000 satellites 18:18 Trump calls for end to Senate filibuster to secure Republican future 17:17 Washington faces three difficult choices over Iran 16:16 Morocco and Washington deepen defense ties with potential US drone center 15:59 Trump praises King Mohammed VI of Morocco and his “great highway” vision 13:05 Nvidia weighs $250 billion guarantee for SoftBank-led AI data center project 12:15 Infantino responds to 2026 World Cup critics with a controversial message 11:49 Tech giants urge Trump to avoid restricting open-source artificial intelligence 11:45 Stevie Wonder announces first studio album in more than two decades for 2027

Gut bacteria patterns predict melanoma relapse with high accuracy

Saturday 18 April 2026 - 13:16
By: Dakir Madiha
Gut bacteria patterns predict melanoma relapse with high accuracy

Researchers have identified a strong link between gut bacteria composition and the risk of melanoma returning after treatment, offering a new tool to guide clinical decisions before therapy begins. The findings show that specific microbial profiles in the intestine can predict cancer recurrence with accuracy ranging from 83 to 94 percent, depending on patient location.

The study analyzed stool samples from 674 patients enrolled in a large international clinical trial focused on high-risk melanoma cases treated with surgery and immunotherapy. Scientists identified bacterial groups such as Eubacterium, Ruminococcus, Firmicutes, and Clostridium as closely associated with recurrence risk. These microbial markers allowed researchers to distinguish between patients likely to remain cancer-free and those at higher risk of relapse.

Differences across regions initially limited the predictive power of these markers. Bacterial signatures identified in one geographic population did not always apply directly to others. To address this, the research team developed a computational method based on full DNA sequencing of gut bacteria. Instead of grouping patients by geography, they clustered them by microbiome similarity. This approach enabled a microbial signature derived from one region to accurately predict outcomes in patients from other regions, provided their microbiome profiles matched.

The analysis also showed that the gut microbiome remained stable throughout a year of immunotherapy. This stability suggests that a single test conducted before treatment could provide a reliable risk assessment. Such a test could help oncologists tailor therapies more precisely, identifying patients who may need more aggressive or alternative treatment strategies from the outset.

The clinical trial that supplied the data originally compared different immunotherapy combinations in advanced melanoma but did not show improved relapse-free survival with combined drugs. However, its large and diverse patient population created a valuable dataset for microbiome research. These new findings build on earlier evidence linking gut bacteria to immunotherapy outcomes, including studies showing that certain microbes can enhance immune response against tumors.

Future work will focus on validating this microbiome-based prediction model across other cancer types and expanding global databases to support clinical use. Researchers aim to develop a system where a patient’s microbiome is analyzed before treatment, compared against international data, and used to generate a precise prognosis that informs therapy decisions.


  • Fajr
  • Sunrise
  • Dhuhr
  • Asr
  • Maghrib
  • Isha

This website, walaw.press, uses cookies to provide you with a good browsing experience and to continuously improve our services. By continuing to browse this site, you agree to the use of these cookies.