(257a) Phage Probes Couple to DNA Relaxation Dynamics to Reveal Universal Behavior across Scales and Regimes | AIChE

(257a) Phage Probes Couple to DNA Relaxation Dynamics to Reveal Universal Behavior across Scales and Regimes

Authors 

Conrad, J. C. - Presenter, University of Houston
Robertson-Anderson, R., University of San Diego
Samghabadi, F., University of Houston
Marfai, J., University of San Diego
Aporvari, M., University of San Diego
Neill, P., University of San Diego
Chabi, M., University of Houston
Microrheology has become an indispensable tool for measuring the dynamics of macromolecular systems. Yet its ability to characterize polymer dynamics across spatiotemporal scales which vary among polymers and concentration regimes is limited by the selection of probe morphologies and sizes. Here we introduce semiflexible M13 phage as a powerful microrheological probe able to circumvent these constraints to robustly capture the dynamics of polymeric solutions across decades of concentrations sizes and ionic conditions. We show that phage mobility directly couples to the relaxation dynamics of DNA solutions spanning from semidilute to entangled regimes at ionic strengths varying by four orders of magnitude. Phage mobility metrics across a broad range of timescales collapse onto universal master curves that are unexpectedly insensitive to ionic strength and exhibit sharp crossovers from semidilute to entangled regime scaling not captured by current theoretical models. Our results open the door to the use of phage probes to elucidate the complex dynamics of systems exhibiting a spectrum of thermal and active relaxation processes.

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