University of Maryland College Park

Maryland NanoCenter


MRSEC


AVS


Nano-Bio Science & Technology  nanobio

  • A Chitosan Functionalized Carbon Nanotube Electrode for a Direct-read Biosensor
  • Bio-Barcodes Based on Segmented Silica Nanotubes
  • Designing Efficient Donors for Excess Electron Transfer in DNA
  • Direct control of energy landscape of protein folding by mechanical force
  • Effect of the Functionalization Compound in the Interaction and Response of an Organic Molecule (Liquid Crystal) to a Nanometer Particle
  • Enhanced Fluorescence from Ag Nanogrooves over Ground plane: Oscillatory Polarization Dependence on Spacer Layer Thickness
  • Enzyme Assembly and Catalytic Activity in a Reusable BioMEMS Platform for Metabolic Engineering
  • Etched FBG Biosensor: Biolayer Detection
  • Etched FBG Biosensor: Monolayer Detection
  • Gating of MscS Explored by the ‘Extrapolated Motion’ Technique and Symmetry-Driven Simulated Annealing
  • Genetically Engineered Silk-Elastinlike Polymers (SELPs) for Controlled Adenoviral Gene Delivery
  • Integrated Transduction, Actuation, and Control
  • Measuring Atto-moles in Nano-liters
  • Mechanics of Microtubule Buckling in Living Cells
  • Nanofactories: tuning cellular response via localized synthesis and delivery
  • Nanomechanics: The response of biopolymer networks to local laser tweezer forcing
  • Role of membrane bending in ASAP1 protein activity
  • SAXS Studies of RNA Folding Show a Dependence on Counterion Charge Density
  • Straightening and sequential buckling of the pore-lining helices define the gating cycle of the stretch-activated channel MscS
  • Synthesis and characterization of magnetic nanotubes as drug carrier and MRI contrast agent
  • Ultrastructural remodeling facilitates delivery of nano-objects to cellular subdomains of ventricular cardiomyocytes
Labs
  1. Orthopaedic Mechanobiology Lab

Poster Layout




A. James Clark School of Engineering  |  Computer, Mathematical, and Physical Sciences  |  College of Chemical & Life Sciences

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