Daily Archives: 28 April 2024

Global team investigates the potential of selenium in combating ovarian cancer

Selenium, a critical micronutrient for human health, exhibits toxic properties at elevated concentrations. Nonetheless, recent advancements in biomedical research have highlighted its potential anti-cancer benefits when administered in high dosages.

Under the leadership of renowned experts, Professor Steve Conlan from Swansea University and Professor Laurent Charlet at Université Grenoble Alpes, a team embarked on exploring the feasibility of developing selenium nanoparticles as a viable cancer treatment option, addressing the challenge posed by selenium’s toxicity.

Their research, conducted in a unique 3D environment that closely mimics the natural tumour setting, showcased the efficacy of selenium nanoparticles in eradicating ovarian cancer cells.

A groundbreaking discovery emerged from their investigation, revealing a novel biological process through which selenium likely exerts its anti-cancer effects. The team identified that selenium alters the activity of histone methyltransferases, enzymes pivotal in regulating epigenetic modifications—changes influenced by environmental factors that affect gene expression without altering the DNA sequence. These reversible epigenetic modifications affect how DNA sequences are interpreted rather than their composition.

Dr Benoit Toubans conducted this study as part of his joint PhD project under the auspices of the strategic partnership between Swansea and Grenoble and Dr Noor Al Kafri, a CARA fellow in Professor Conlan’s lab. They collaborated with specialists at the synchrotron facility in Grenoble and the University of Stuttgart.

The findings of their research were published in the esteemed journal Redox Biology.

Professor Conlan, who leads the Reproductive Biology and Gynaecological Oncology group at Swansea University Medical School, lauded the project as an exceptional scientific endeavour.

He remarked on the significance of the discovery and praised Noor and Benoit’s remarkable talent and commitment, which were instrumental in achieving this breakthrough. Professor Conlan also emphasized how the Swansea-Grenoble partnership exemplifies the impact of international and interdisciplinary collaborations in pioneering scientific discoveries.

The discovery of selenium nanoparticles’ mode of action opens new avenues in understanding their potential. It underscores the importance of considering both their antioxidant properties and novel impacts on histone methylation in the development of cancer therapies.

More information: Benoit Toubhans et al, Selenium nanoparticles modulate histone methylation via lysine methyltransferase activity and S-adenosylhomocysteine depletion, Redox Biology. DOI: 10.1016/j.redox.2023.102641

Journal information: Redox Biology Provided by Swansea University

How does climate change impact eczema?

In a comprehensive analysis of all pertinent studies that examined the relationship between atopic dermatitis (also known as eczema) and climate-related hazards stemming from greenhouse gas emissions, researchers identified both direct and indirect impacts on the condition. Direct effects, such as inflammation triggered by particulate matter from wildfires, and indirect effects, including stress from drought-induced food shortages, were noted.

The findings, published in the journal Allergy, included maps crafted by the researchers depicting the historical, current, and predicted future burdens of eczema related to climate-related hazards. The study highlighted a significant shortage of data, particularly from areas expected to face increased frequency of these events due to climate change.

Katrina Abuabara, MD, MA, MSCE, from the University of California, San Francisco, the study’s corresponding author, commented on the sensitivity of atopic dermatitis to climatic factors such as air pollution. She noted that until now, the impacts of more frequent climate-related hazards such as warming, heatwaves, drought, wildfires, and floods were less understood. “Our findings suggest that most climatic hazards negatively affect atopic dermatitis,” Abuabara stated. “Future research needs to incorporate data on how various climate factors cumulatively affect the incidence, prevalence, and long-term activity of atopic dermatitis in a broader range of environments to fill these gaps in research.”

More information: Sheng-Pei Wang et al, Impact of climate change on atopic dermatitis: A review by the International Eczema Council, Allergy. DOI: 10.1111/all.16007

Journal information: Allergy Provided by Wiley