"You can spend all kinds of money developing a vaccine, but if it is deactivated by high temperature an hour before you can give it to someone, it doesn't matter," says co-author Ali Ashkar, a professor of Pathology and Molecular Medicine specializing in immunology.
The cold-chain challenge is so great, the researchers say, that in some regions, vaccines must be transported by camels bearing solar-powered mini-refrigerators. There are some populations that never receive vaccines.
"If you can't get vaccines to the places where people need them, there's no point in having them," says co-author Matthew Miller, an assistant professor in the Department of Biochemistry and Biomedical Sciences whose laboratory specializes viral pathogens.
Not being able to get vaccines to isolated areas makes it impossible to eradicate deadly viruses. Unchecked, such viruses can devastate local populations and reach exposed pockets in more populated countries where religious, cultural or other concerns have diminished the proportion of vaccinated individuals. Such a scenario has recently been playing out in in a measles outbreak in the US northwest and Vancouver, BC.
The new vaccine-storage method suspends the active components of a vaccine in a tiny one-dose container filled with a sugar-gel combination that dries to seal in the vaccine. Later, clinicians reconstitute the vaccine with water and administer it to patients as they ordinarily would.
"Often, complex problems have simple solutions. It just takes the right team," says Miller. "The best research comes from merging fields, when you do something with someone else that you couldn't do alone."
The researchers have proven the method to be viable using two sample vaccines - influenza virus and herpes simplex virus - to inoculate and test mice by exposing them to the viruses because the immune response of mice is similar to that of humans. The materials in the storage medium are already approved by the US Food and Drug Administration, simplifying the path to commercialization.
"All the pieces are ready to go," says co-author Carlos Filipe, chair of Chemical Engineering at McMaster. "It's actually quite simple compared to the technology required to create a vaccine itself."
The researchers are working with a commercial partner to get the technology to market.
COMPAMED-tradefair.com; Source: McMaster University