Author

Christopher W. Reid

Professor of Chemistry and Biochemistry, Bryant University - Cited by 722 - Glycobiology - Analytical Biochemistry - Enzymology - Chemical Biology

Biography

Christopher W. Reid is working as an Assistant Professor at Bryant University, USA. His international experience includes various programs, contributions and participation in different countries for diverse fields of study. His research interests reflect his wide range of publications in various national and international journals. 
Title
Cited by
Year
Motility and Flagellar Glycosylation in Clostridium difficile
SM Twine, CW Reid, A Aubry, DR McMullin, KM Fulton, J Austin, ...Journal of bacteriology 191 (22), 7050-7062, 2009200
182
2009
Inhibition of membrane-bound lytic transglycosylase B by NAG-thiazoline
CW Reid, NT Blackburn, BA Legaree, FI Auzanneau, AJ ClarkeFEBS letters 574 (1-3), -79, 2004200
73
2004
Structural characterization of surface glycans from Clostridium difficile
CW Reid, E Vinogradov, J Li, HC Jarrell, SM Logan, JR BrissonCarbohydrate research 354, 65-, 2012201
73
2012
Polyisoprenol Specificity in the Campylobacter jejuni N-Linked Glycosylation Pathway
MM Chen, E Weerapana, E Ciepichal, J Stupak, CW Reid, E Swiezewska, ...Biochemistry 46 (50), 14342-14348, 2007200
54
2007
Functional analysis of SleC from Clostridium difficile: an essential lytic transglycosylase involved in spore germination
D Gutelius, K Hokeness, SM Logan, CW ReidMicrobiology 160 (Pt 1), 209, 2014201
47
2014
Small-molecule inhibitors of the pseudaminic acid biosynthetic pathway: targeting motility as a key bacterial virulence factor
R Ménard, IC Schoenhofen, L Tao, A Aubry, P Bouchard, CW Reid, ...Antimicrobial agents and chemotherapy 58 (12), 7430-7440, 2014201
38
2014
Never take candy from a stranger: the role of the bacterial glycome in host–pathogen interactions
CW Reid, KM Fulton, SM TwineFuture microbiology 5 (2), 267-288, 2010201
34
2010
The effect of NAG–thiazoline on morphology and surface hydrophobicity of Escherichia coli
CW Reid, NT Blackburn, AJ ClarkeFEMS microbiology letters 234 (2), 343-348, 2006200
27
2006
Affinity-capture tandem mass spectrometric characterization of polyprenyl-linked oligosaccharides: tool to study protein N-glycosylation pathways
CW Reid, J Stupak, MM Chen, B Imperiali, J Li, CM SzymanskiAnalytical chemistry 80 (14), 5468-5475, 2008200
25
2008
Diamide Inhibitors of the Bacillus subtilis N-Acetylglucosaminidase LytG That Exhibit Antibacterial Activity
S Nayyab, M O’Connor, J Brewster, J Gravier, M Jamieson, E Magno, ...ACS infectious diseases 3 (6), 421-427, 2017201
18
2017
Anti-bacterial glycosyl triazoles–identification of an N-acetylglucosamine derivative with bacteriostatic activity against Bacillus
H Kuhn, D Gutelius, E Black, C Nadolny, A Basu, C ReidMedChemComm 5 (8), 1213-1217, 202
14
2014
The effects of fungal volatile organic compounds on bone marrow stromal cells
K Hokeness, J Kratch, C Nadolny, K Aicardi, CW ReidCanadian journal of microbiology 60 (1), 1-4, 2014201
13
2014
Characterization of lipid-linked oligosaccharides by mass spectrometry
CW Reid, J Stupak, CM SzymanskiFunctional Glycomics: Methods and Protocols, 187-197, 2010201
6
2010
Bacterial glycomics: current research, technology and applications
CW Reid, SM Twine, AN Reid(No Title), 2012201
5
2012
Medical Mycology and the Chemistry Classroom: Germinating Student Interest in Organic Chemistry
JM Bliss, CW ReidJournal of Chemical Education 90 (10), 130-134, 01301
2
2013