Keyword search (4,163 papers available)

"Findlay BL" Authored Publications:

Title Authors PubMed ID
1 Sequential antibiotic exposure restores antibiotic susceptibility Chowdhury FR; Findlay BL; 41060280
BIOLOGY
2 Luminescent Electro-Spun Nanofibers Crosslinked with Boronic Esters Exhibiting Controlled Release of Carbon Dots for Detection of Wound pHs and Enhanced Antimicrobial Lokuge ND; Casillas-Popova SN; Singh P; Clermont-Paquette A; Skinner CD; Findlay BL; Naccache R; Oh JK; 40920389
BIOLOGY
3 Large scale laboratory evolution uncovers clinically relevant collateral antibiotic sensitivity Chowdhury FR; Banari V; Lesnic V; Zhanel GG; Findlay BL; 40615056
BIOLOGY
4 Multi-stimuli-responsive degradable boronic ester-crosslinked e-spun nanofiber wound dressings Casillas-Popova SN; Lokuge ND; Singh P; Cirillo A; Thinphang-Nga A; Skinner CD; Vuckovic D; Findlay BL; Oh JK; 40557709
BIOLOGY
5 Tripartite loops reverse antibiotic resistance Chowdhury FR; Findlay BL; 40478208
BIOLOGY
6 De novo evolution of antibiotic resistance to Oct-TriA1 Chowdhury FR; Mercado LD; Kharitonov K; Findlay BL; 39832423
BIOLOGY
7 pH-Responsive Degradable Electro-Spun Nanofibers Crosslinked via Boronic Ester Chemistry for Smart Wound Dressings Casillas-Popova SN; Lokuge ND; Andrade-Gagnon B; Chowdhury FR; Skinner CD; Findlay BL; Oh JK; 38989606
BIOLOGY
8 Discovery of an adjuvant that resensitizes polymyxin B-resistant bacteria Mahdavi M; Findlay BL; 38096681
BIOLOGY
9 Fitness Costs of Antibiotic Resistance Impede the Evolution of Resistance to Other Antibiotics Chowdhury FR; Findlay BL; 37726252
BIOLOGY
10 Roles of inter- and intramolecular tryptophan interactions in membrane-active proteins revealed by racemic protein crystallography Lander AJ; Mercado LD; Li X; Taily IM; Findlay BL; Jin Y; Luk LYP; 37464011
CHEMBIOCHEM
11 Opposites Attract: Electrostatically Driven Loading of Antimicrobial Peptides into Phytoglycogen Nanocarriers Ali DA; Domínguez Mercado L; Findlay BL; Badia A; DeWolf C; 36525622
CHEMBIOCHEM
12 Electrospun Upconverting Nanofibrous Hybrids with Smart NIR-Light-Controlled Drug Release for Wound Dressing Huang HY; Skripka A; Zaroubi L; Findlay BL; Vetrone F; Skinner C; Oh JK; Cuccia LA; 35019380
CHEMBIOCHEM
13 The Chemical Ecology of Predatory Soil Bacteria. Findlay BL 27035738
CHEMISTRY
14 Access to high-impact mutations constrains the evolution of antibiotic resistance in soft agar. Ghaddar N, Hashemidahaj M, Findlay BL 30451932
CHEMBIOCHEM

 

Title:Opposites Attract: Electrostatically Driven Loading of Antimicrobial Peptides into Phytoglycogen Nanocarriers
Authors:Ali DADomínguez Mercado LFindlay BLBadia ADeWolf C
Link:https://pubmed.ncbi.nlm.nih.gov/36525622/
DOI:10.1021/acs.langmuir.2c01794
Publication:Langmuir : the ACS journal of surfaces and colloids
Keywords:
PMID:36525622 Category: Date Added:2022-12-16
Dept Affiliation: CHEMBIOCHEM
1 Department of Chemistry and Biochemistry, Concordia University, Montreal, QuebecH4B 1R6, Canada.
2 Centre for NanoScience Research, Concordia University, Montreal, QuebecH4B 1R6, Canada.
3 FRQNT Centre Québécois sur les Matériaux Fonctionnels-Quebec Centre for Advanced Materials, McGill University, 845 Sherbrooke Street West, Montréal, QuebecH3A 0G4, Canada.
4 Faculty of Pharmacy, Alexandria University, Alexandria5424041, Egypt.
5 Département de Chimie, Université de Montréal, Complexe des sciences, C.P. 6128, succursale Centre-ville, Montréal, QuebecH3C 3J7, Canada.

Description:

Antimicrobial peptides, such as GL13K, have a high binding selectivity toward bacterial membranes, while not affecting healthy mammalian cells at therapeutic concentrations. However, delivery of these peptides is challenging since they are susceptible to proteolytic hydrolysis and exhibit poor cellular uptake. A protective nanocarrier is thus proposed to overcome these obstacles. We investigate the potential to employ biodegradable phytoglycogen nanoparticles as carriers for GL13K using a simple loading protocol based on electrostatic association rather than chemical conjugation, eliminating the need for control of chemical cleavage for release of the peptide in situ. Both the native (quasi-neutral) and carboxymethylated (anionic) phytoglycogen were evaluated for their colloidal stability, loading capacity, and release characteristics. We show that the anionic nanophytoglycogen carries a greater cationic GL13K load and exhibits slower release kinetics than native nanophytoglycogen. Isotope exchange measurements demonstrate that the antimicrobial peptide is entrapped in the pores of the dendritic-like macromolecule, which should provide the necessary protection for delivery. Importantly, the nanoformulations are active against a Pseudomonas aeruginosa clinical isolate at concentrations comparable to those of the free peptide and representative, small molecule antibiotics. The colloidal nanocarrier preserves peptide stability and antimicrobial activity, even after long periods of storage (at least 8 months).





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