Saniconcentrate™ proven to reduce coronavirus on surfaces by up to 99% without harmful toxins

17 Mar 2021
Edward Carter
Publishing / Media

Industry news

New test results demonstrate Saniconcentrate™, an additive technology patented by Parx Materials, reduces Covid-19 virus on surfaces by up to 99 percent in 24 hours. Unlike other antimicrobial options, it promises to achieve this without biocides, leaching, or harmful side effects, creating a breakthrough option for applications like touch surfaces in public areas, medical devices, or food contact applications.

With Saniconcentrate™, Parx Materials has created a way to make plastic intrinsically resistant to bacteria and viruses. The additive is homogenously incorporated into plastics to create an ’immune system’ inherent to the material.

Antimicrobial technologies have historically used biocides, such as silver or copper, to destroy microorganisms. While this method may effectively destroy bacteria and viruses, it can lead to toxic substances leaching out of the material, contaminating the products or surfaces it is trying to protect, as well as contaminating the environment and making recycling a more challenging task. In addition to relying on finite resources to work, bacteria and viruses tend to become resistant to biocides over time, reducing the biocides’ efficacy. Making bacteria viruses stronger so they become more difficult to battle and cause a bigger threat in the future.

Typically, bacteria and viruses attach to surfaces in order to sustain themselves over a long period of time. Inspired by the defence mechanisms of the human body, the technology of Parx Materials works by mimicking the physical characteristics of the human skin.

Saniconcentrate™ uses a trace element abundantly found in the body to prevent bacteria and viruses from adhering to surfaces, causing them to run through their usual lifecycle and die within hours. This ecological approach of dealing with germs can be seen as a natural way to keep bacteria and viruses at bay, instead of just killing them and inducing resistance.

As Saniconcentrate™ uses materials already found in the human body, it is biocompatible, safe and its applications are limitless. The technology is currently in use in major supermarkets and has shown outstanding results in medical trials.

A new study, carried out by an authorised laboratory, identifies the development of the amount of Covid-19 virus on plastic surfaces made with the Saniconcentrate™ additive. The test was carried out in accordance with ISO 21702:2019 “measurement of antiviral activity on plastics and other non-porous surfaces”. After 24 hours, the treated sample saw a 99 per cent reduction in the virus.

A second test on a different material made with Saniconcentrate™, found a 53.23 per cent reduction in Covid-19 virus after just six hours and a 93.24 per cent reduction after 24 hours. This proves definitively that Saniconcentrate™ protects surfaces against coronavirus and therefore its spread. Here, Covid-19 and coronavirus refer to the SARS-CoV-2 virus; the tests were carried out using the COV2019 Italy/INMI1 strain.

“Today’s struggles against the Covid-19 pandemic and antibiotic-resistant superbugs show that innovation is needed when it comes to antimicrobial materials,” commented Michaël van der Jagt, CEO of Parx Materials. “The test results showing a 99 per cent reduction in coronavirus on Saniconcentrate™ treated surfaces confirms its ability to help us return to normal life using a safe and ecological approach.”

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MicrobiologyMicrobiology is the study of microorganisms including protists, prokaryotes, fungi, and, often, viruses. Microorganisms are a useful research tool as genetic vectors and, in immunology, for antibiotic susceptibility testing, cellular biology and genetics. Microorganisms commonly grow readily in incubators with microbial culture media; this can contain chromogenic supplements to differentiate between cell lines. Estimate your culture’s density of microorganisms with colony counters, or screen and select colonies for desirable clones with automated colony pickers. Additionally, equipment is available to monitor environments for the presence of microbes and identify with microbial identification instruments. Find the best microbiology products in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.Particle CharacterizationParticle characterization instruments are used to determine particle size distribution, shape, surface area, zeta potential, density and porosity of particles and materials. Multiple tecchniques are available for determining particle size, shape and count including dynamic light scattering (DLS), laser diffraction, electrozone (Coulter technique), imaging particle analysis and single particle optical sensing. Determine the density of your material with a gas pycnometer or examine its surface area and porosity with gas adsorption analyzers and mercury porosimeters. Find the best particle characterization instruments in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.Polymeric MaterialsPolymeric materials are widely used in industries ranging from biomedical devices to packaging and electronics. Research into these materials focuses on their properties, including strength, flexibility, and degradation. Advances in polymer science have enabled the development of more sustainable and high-performance materials. Explore the best polymeric material products in our peer-reviewed product directory; compare products, check reviews, and get pricing directly from manufacturers.AntimicrobialsPolymersPolymers are large molecules made up of many repeat units. Natural polymers such as DNA and proteins are essential to life, whereas synthetic polymers such as polystyrene and polyethylene are used widely due to their functionality. Typical techniques for analysis include GPC, SEC, DSC, FT-IR and NMR.Covid-19COVID-19, caused by the SARS-CoV-2 virus, has led to a global health crisis with profound impacts on societies and economies. Research into diagnostics, vaccines, treatments, and understanding viral mechanisms continues to evolve. The pandemic has accelerated innovations in healthcare and biopharmaceuticals, including novel vaccine platforms and rapid testing technologies. Browse our peer-reviewed product directory to find top COVID-19 testing kits, research tools, vaccines, and treatments, compare products, read reviews, and receive direct pricing from manufacturers.