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Associate Professor

Parag D Pawar

A-704
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PhD: Ph.D, Johns Hopkins University
Research Interests: Multispecies biofilms, Quorum sensing, Cellular automata

“As bacteria band together to form biofilm communities, the threat of antibiotic resistance poses a formidable threat to the efficacy of our medical interventions.”

Research Overview

We develop computational frameworks to investigate biophysical responses of multispecies bacterial biofilms to environmental stresses, particularly antimicrobial agents and nutrient starvation.

Research Highlights

Biofilms offer protection against environmental stresses and immune responses. Their high antibiotic resistance poses treatment challenges. Our research aims to uncover the biophysical mechanisms behind this resistance.

Heterogeneous architecture: The inherent heterogeneity of biofilms, characterized by the presence of distinct microcolonies, plays a pivotal role in eliciting diverse responses to treatment modalities. Our research aims to investigate antibiotic resistance and the emergence of safeguarded microcolonies within developing biofilms.

Polymicrobial biofilms: A vast majority of infections involve polymicrobial biofilms. We focus on delineating synergistic and antagonistic interspecies-interactions within these biofilms in the context of nutrient competition, quorum-sensing, and phenotypic switching.