DR
Dijendra Nath Roy
National Institute of Technology Raipur, National Institute of Technology Agartala, National University of Singapore
Employment
-
National Institute of Technology Raipur Assistant Professor (Senior Grade)2021 - Present
-
National Institute of Technology Agartala Assistant Professor2013 - 2021
Education
-
National University of Singapore Post Doctoral Research2011 - 2012
Projects & Funding
Projects & funding information is unavailable.
Publications (53)
- Advancing experimental models of catheters associated urinary tract infection research: from traditional to microfluidic platforms Save
- Aloin of Aloe vera disrupts pseudomonas aeruginosa biofilm formation: exploring nutritional therapeutics Save
- Zirconia nanoparticle in dentistry: An update report and further prospect Save
- Papain: an antimicrobial enzyme of Papaya latex inhibits the production of biofilm and disrupts pre-formed biofilm matrix of Pseudomonas aeruginosa Save
- Andrographiside acts as a novel biofilm inhibitor of Pseudomonas aeruginosa PAO1 by modulating quorum-sensing proteins (LasR and RhlI), Pseudomonas quinolone signal regulator (PqsR) and Pellicle B of PEL Operon: An in silico and in vitro approach Save
- Bioflavonoid quercetin upregulates biofilm-degrading genes pslG and pelA in Pseudomonas aeruginosa and also alleviates pathogenicity through cytokine modulation in infected macrophages Save
- Carvacrol, a monoterpenoid, binds quorum sensing proteins (LasI and LasR) and swarming motility protein BswR of Pseudomonas aeruginosa, resulting in loss of pathogenicity: an in silico approach Save
- Antibacterial and antibiofilm activities of extract and bioactive compounds from Bergenia ciliata (Haw.) Sternb. flowers against Streptococcus mutans through cell membrane damage Save
- FORMATION OF NANOCONES AND GENERATION OF NEGATIVE POTENTIAL ON STAINLESS STEEL SURFACES BY ELECTROCHEMICAL ETCHING SYNERGISTICALLY REDUCE PSEUDOMONAS AERUGINOSA'S BIOFILM Save
- Marine-Derived Cytosine Arabinoside (Ara-C) Inhibits Biofilm Formation by Inhibiting PEL Operon Proteins (Pel A and Pel B) of Pseudomonas aeruginosa: An In Silico Approach Save