Novel compounds kill biofilms, may eliminate persistent bacterial infections

Опубликовано: 02 Ноябрь 2015
на канале: UF Health
19,258
301

GAINESVILLE, Fla. — Researchers at the University of Florida have developed potent new compounds with aquatic origins that may offer relief for the 17 million American affected by biofilm-associated bacterial infections annually.
The series of compounds known as the halogenated phenazines, or HPs, can kill dangerous bacterial biofilms present in recurring and chronic bacterial infections such as methicillin-resistant Staphylococcus aureus, or MRSA. The discovery may one day offer a cure for persistent bacterial infections that are largely resistant to conventional antibiotic treatments.
“Using synthetic chemistry, we have developed a series of marine antibiotic-inspired molecules that target a problem conventional antibiotics are unable to address because cells housed within bacterial biofilms are tolerant of them,” said Robert Huigens, Ph.D., an assistant professor medicinal chemistry at the UF College of Pharmacy, a part of UF Health, and lead investigator of a study published in the Angewandte Chemie journal’s online edition. “We have been aware that biofilms greatly contribute to infections over the past 20 years, but there are no biofilm-eradicating therapeutic agents available. Discovering and developing potent biofilm-killing agents is the first step toward eradicating biofilms in patients.”
Biofilms are bacterial communities that accumulate and attach to surfaces, including live tissues in humans. The bacterial cluster is often slow or non-growing, encased in a protective layer of diverse biological molecules that form a ‘slime,’ and displays tolerance to every known class of antibiotic treatments available. Biofilm infections affect almost every tissue in the body, and without a way to eliminate the biofilm, chronic and sometimes fatal infections develop over time. Common biofilm infections include pneumonia in cystic fibrosis patients, chronic wounds and implant- and catheter-associated infections.


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