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Antimicrobial, Stimuli-responsive Polysaccharide


技术优势

Reduced toxicity and similar efficacy in reducing bacterial growth compared to native chitosanCan be selectively returned to native chitosan at low pH to target specific areas


技术应用

· Broad spectrum nanoantibiotics


详细技术说明

State of the art antimicrobials have up to 14 years of efficacy before resistance develops in microbes, after which a new antimicrobial compound must be researched and developed. The process can take years and millions of dollars, which has led many pharmaceutical companies to reduce investment in new antibiotics. Nanoantibiotics have recently gained attention as a therapeutic strategy. They are nanomaterials that have inherent antimicrobial activity or improve efficacy and safety of antibiotics administration. Nanoantibiotics have different attack mechanisms that result in advantages over conventional antibiotics. Chitosan is a natural material derived from the shells of shrimp and other crustaceans which have shown promise as a nanoantibiotic. However, native chitosan has low solubility at biological pH and therefore low therapeutic potential against the microbes. UCI researchers have developed a way to make acid-transforming chitosan (ATC) to enhance solubility and lower toxicity, while sustaining the bioactivity. The researchers believe that the method can create a chitosan that targets various locations in the body.


其他

State Of Development

Various formulations have been made and in vitro and in vivo studies have been performed to understand the appropriate pharmacological doses.


Tech ID/UC Case

28937/2018-062-0


Related Cases

2018-062-0


国家/地区

美国

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