Keyword search (4,163 papers available)

"Skinner CD" Authored Publications:

Title Authors PubMed ID
1 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
2 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
3 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
4 A threshold LC-MS/MS method for 92 analytes in oral fluid collected with the Quantisal® device Desharnais B; Lajoie MJ; Laquerre J; Mireault P; Skinner CD; 33035929
CHEMBIOCHEM
5 The Key Role of Intrinsic Lifetime Dynamics from Upconverting Nanosystems in Multiemission Particle Velocimetry Tessitore G; Maurizio SL; Sabri T; Skinner CD; Capobianco JA; 32924221
CNSR
6 Qualitative threshold method validation and uncertainty evaluation: A theoretical framework and application to a 40 analytes liquid chromatography-tandem mass spectrometry method Camirand Lemyre F; Desharnais B; Laquerre J; Morel MA; Côté C; Mireault P; Skinner CD; 32476284
CHEMBIOCHEM
7 Capillary electrochromatography of peptides and proteins. Bandilla D, Skinner CD 15354432
CHEMBIOCHEM
8 Design and optimization of porous polymer enzymatic digestors for proteomics. Lin W, Skinner CD 19575382
CHEMBIOCHEM
9 Increased oxidative modifications of amniotic fluid albumin in pregnancies associated with gestational diabetes mellitus. Boisvert MR, Koski KG, Skinner CD 20063865
CHEMBIOCHEM
10 A case of fatal idiosyncratic reaction to the designer drug 3,4-methylenedioxypyrovalerone (MDPV) and review of the literature. Desharnais B, Dazé Y, Huppertz LM, Mireault P, Skinner CD 28668987
CHEMBIOCHEM
11 A Tool for Automatic Correction of Endogenous Concentrations: Application to BHB Analysis by LC-MS-MS and GC-MS Desharnais B; Lajoie MJ; Laquerre J; Savard S; Mireault P; Skinner CD; 31141151
CHEMBIOCHEM

 

Title:Luminescent Electro-Spun Nanofibers Crosslinked with Boronic Esters Exhibiting Controlled Release of Carbon Dots for Detection of Wound pHs and Enhanced Antimicrobial
Authors:Lokuge NDCasillas-Popova SNSingh PClermont-Paquette ASkinner CDFindlay BLNaccache ROh JK
Link:https://pubmed.ncbi.nlm.nih.gov/40920389/
DOI:10.1002/mabi.202500352
Publication:Macromolecular bioscience
Keywords:CNDsE‐spun nanofibersboronic estercontrolled releasewound dressing
PMID:40920389 Category: Date Added:2025-09-08
Dept Affiliation: BIOLOGY
1 Department of Chemistry and Biochemistry, Concordia University, Montreal, Quebec, Canada.
2 Department of Biology, Concordia University, Montreal, Quebec, Canada.

Description:

Timely and accurate assessment of wounds during the healing process is crucial for proper diagnosis and treatment. Conventional wound dressings lack both real-time monitoring capabilities and active therapeutic functionalities, limiting their effectiveness in dynamic wound environments. Herein, we report our proof-of-concept approach exploring the unique emission properties and antimicrobial activities of carbon nanodots (CNDs) for simultaneous detection and treatment of bacteria. This approach centers on the fabrication of well-defined CND-embedded poly(vinyl alcohol) (PVA) e-spun nanofibrous mats, which are crosslinked with degradable boronic ester (BE) crosslinks. The BE-CND/PVA mats exhibit stimuli-responsive degradation to pHs and hydrogen peroxide as well as pH-responsive release of CNDs. Promisingly, the mats turn out to be hemocompatible with blood and biocompatible with skin cells. Furthermore, they exhibit notable antimicrobial activity against Gram-negative bacteria and demonstrate great potential for real-time monitoring of wound pH to assess the wound status. These results suggest that BE-CND/PVA mats could significantly enhance wound healing by providing localized therapeutic action, reducing the risk of bacterial infections, and enabling non-invasive monitoring of wound progress.





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