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Polymer-Based Strategies For Therapeutic Delivery To Bacterial Biofilms, Cheng-Hsuan Li
Polymer-Based Strategies For Therapeutic Delivery To Bacterial Biofilms, Cheng-Hsuan Li
Doctoral Dissertations
Bacterial infections are emerging threat to public health. Antibiotics once provided front-line treatments to bacterial infections; however, bacteria adapted to resist antibiotics through drug resistance mechanisms and biofilm formation. In this dissertation, I describe polymer-based strategies for therapeutic delivery as treatments of bacterial biofilm infections. Initially, I developed a functional polymer for delivering hydrophobic carvacrol (the primary constituent of oregano oil) to the bacterial biofilms. This strategy incorporates a cross-linking strategy to fabricate a robust yet biodegradable nanoemulsion, improving antimicrobial activity of carvacrol and overcoming antimicrobial resistance development. Next, I demonstrated that this functional polymer-based emulsion platform provides a general …
The Effect Of Photoactivated Tmp On Burkholderia Cepacia Biofilms, Reyna G. Osorio, Chandra N. Swiech, Tracy L. Collins
The Effect Of Photoactivated Tmp On Burkholderia Cepacia Biofilms, Reyna G. Osorio, Chandra N. Swiech, Tracy L. Collins
The Research and Scholarship Symposium (2013-2019)
Burkholderia cepacia is an opportunistic pathogen that causes infections in immunocompromised individuals such as cystic fibrosis patients. B. cepacia infections are typically characterized by the formation of complex communities of cells known as biofilms. Because B. cepacia biofilms are difficult to eradicate using antibiotics, it is important to pursue alternative treatment methods. Photodynamic therapy (PDT) is a type of therapy that uses light, a photosensitizer, and oxygen to elicit cell death through the production of reactive oxygen species. PDT has been shown in previous studies to be successful in killing both Pseudomonas aeruginosa and Staphylococcus aureus. In this study, we …
E,E-Farnesol Inhibits Swarming Motility In Burkholderia Cepacia Through Rhamnolipid Production, Stephanie E. Nicholls, Alayna N. Sanderson, Andrea P. Schwartz, Lauren E. Ward, Jessica N. Weisensee, Molly Yandrofski, Tracy L. Collins
E,E-Farnesol Inhibits Swarming Motility In Burkholderia Cepacia Through Rhamnolipid Production, Stephanie E. Nicholls, Alayna N. Sanderson, Andrea P. Schwartz, Lauren E. Ward, Jessica N. Weisensee, Molly Yandrofski, Tracy L. Collins
The Research and Scholarship Symposium (2013-2019)
Burkholderia cepacia and Candida albicans both exhibit cell-to-cell communication through the use of quorum-sensing molecules (QSM) known as autoinducers. E,E-farnesol is a QSM produced by C. albicans which regulates its conversion from yeast to mycelium. Because there is a positive correlation between the presence of B. cepacia and C. albicans in the lungs of individuals with cystic fibrosis (CF), we examined whether E,E-farnesol had an effect on swarming motility in B. cepacia. Swarming motility was inhibited when B. cepacia was exposed to 250 µM of E,E-farnesol. In addition, there was a 26.8% decrease in rhamnolipid production when cells were grown …