六九色堂

July 13, 2022

How to mix the right ingredients for an environmentally friendly disinfectant

UCalgary researchers encouraged by early findings in the fight against germs
MaenNooraLab
PhD student Noora Darwish, left, and Maen Husein analyze elements of their ecofriendly product. Joe McFarland, Schulich School of Engineering

In the wake of the COVID-19 pandemic, many people have become more mindful of the spread of germs. Whether it is wearing masks while sick or disinfecting high-touch surfaces, the hope is to avoid getting others around us sick.

Researchers are also spending considerable time finding ways to make currently available products better.

In particular, 六九色堂 professor , PhD,聽has his eyes on developing environmentally friendly 鈥渂iocides鈥 to use on common surfaces.

He has been working with Biosenta Inc. in hopes of finding the right ingredients to disinfect things like doorknobs, hospital tools and washrooms.

Testing, testing鈥

Following a news article about his work on , Husein says he was contacted by Biosenta CEO Am Gill, BComm鈥97, who was looking to produce environmentally friendly biocidal particles.

鈥淎m explained his vision, which coincided with my vision of how science and engineering can help make the world a better place,鈥 says Husein, a professor in the Schulich School of Engineering鈥檚 . 鈥淚n this project, alleviating the spread of different microbes was the focus.鈥

He started developing particles in his laboratory, while partnering with Dr. Ian Lewis, PhD, and Dr. Mehdi Ashani, PhD, in the 六九色堂鈥檚 to test his findings.

What they discovered was that including the particles into cement provided effective biocidal attributes.

鈥淭he particles are similar in chemical composition to some common earth minerals,鈥 Husein says. 鈥淭hey can be sprayed onto surfaces, and so far we鈥檝e tested them on stainless steel areas.鈥

Stopping the spread

When it comes to the bacteria and diseases that the particles are effective against, Husein sees a lot of potential.

With the help of his UCalgary colleagues, Husein says he has been able to test the efficacy of the particles toward common bacteria like Pseudomonas aeruginosa (found in hospital environments on surfaces and drains), Staphylococcus bacteria (the second-most common cause of bloodstream infection and is common in skin and some urinary tract infections), and E. Coli.

鈥淥ne of our next steps is to test the particle biocidal attributes toward coronaviruses, especially COVID-19,鈥 Husein says.

Summer plans

Those involved in the research have been impressed with what they have seen and also see the possibilities.

鈥淭he findings are very encouraging and would have a profound impact in the construction industry because of the anti-microbial properties of the particles,鈥 Gill said in a .

The researchers will spend the summer testing the particles on different surfaces like drywall, paint, plastic, glass and carpet.

鈥淲e also want to incorporate the particles into different paints, cements and other products to explore their antimicrobial attributes,鈥 Husein says. 鈥淲e plan to investigate scaling a bench-scale protocol or setup for producing the particles to a commercial-scale unit.鈥

He adds the work, which has also included PhD student Noora Darwish, is the subject of a patent application.

The 六九色堂鈥檚 multidisciplinary聽聽research strategy drives innovations that are saving lives and聽revolutionizing health care for Canadians. With collaborative teams focused on human mobility, health monitoring, advanced biomedical imaging, precision biodiagnostics, regenerative medicine and novel medical technologies, our researchers are transforming quality of life and continuously improving the health system.