Showing posts with label July 05. Show all posts
Showing posts with label July 05. Show all posts

Saturday, July 05, 2014

Detection and quantification of bacterial biofilms combining high-frequency acoustic microscopy and targeted lipid microparticles

Background: Immuno-compromised patients such as those undergoing cancer chemotherapy are susceptible to bacterial infections leading to biofilm matrix formation. This surrounding biofilm matrix acts as a diffusion barrier that binds up antibiotics and antibodies, promoting resistance to treatment. Developing non-invasive imaging methods that detect biofilm matrix in the clinic are needed. The use of ultrasound in conjunction with targeted ultrasound contrast agents (UCAs) may provide detection of early stage biofilm matrix formation and facilitate optimal treatment. Results: Ligand-targeted UCAs were investigated as a novel method for pre-clinical non-invasive molecular imaging of early and late stage biofilms. These agents were used to target, image and detect Staphylococcus aureus biofilm matrix in vitro. Binding efficacy was assessed on biofilm matrices with respect to their increasing biomass ranging from 3.126 x 103 +/- 427 UCAs per mm2 of biofilm surface area within 12 h to 21.985 x 103 +/- 855 per mm2 of biofilm matrix surface area at 96 h. High-frequency acoustic microscopy was used to ultrasonically detect targeted UCAs bound to a biofilm matrix and to assess biofilm matrix mechanoelastic physical properties. Acoustic impedance data demonstrated that biofilm matrices exhibit impedance values (1.9 MRayl) close to human tissue (1.35 - 1.85 MRayl for soft tissues). Moreover, the acoustic signature of mature biofilm matrices were evaluated in terms of integrated backscatter (0.0278 - 0.0848 mm-1 x sr-1) and acoustic attenuation (3.9 Np/mm for bound UCAs; 6.58 Np/mm for biofilm alone). Conclusions: Early diagnosis of biofilm matrix formation is a challenge in treating cancer patients with infection-associated biofilms. We report for the first time a combined optical and acoustic evaluation of infectious biofilm matrices. We demonstrate that acoustic impedance of biofilms is similar to the impedance of human tissues, making in vivo imaging and detection of biofilm matrices difficult. The combination of ultrasound and targeted UCAs can be used to enhance biofilm imaging and early detection. Our findings suggest that the combination of targeted UCAs and ultrasound is a novel molecular imaging technique for the detection of biofilms. We show that high-frequency acoustic microscopy provides sufficient spatial resolution for quantification of biofilm mechanoelastic properties.

Pavlos Anastasiadis

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Friday, July 05, 2013

Photothermoelectric p–n Junction Photodetector with Intrinsic Broadband Polarimetry Based on Macroscopic Carbon Nanotube Films

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ACS Nano

DOI: 10.1021/nn402679u




Xiaowei He, Xuan Wang, Sébastien Nanot, Kankan Cong, Qijia Jiang, Alexander A. Kane, John E. M. Goldsmith, Robert H. Hauge, François Léonard and Junichiro Kono

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Large-Area 3D Chiral Plasmonic Structures

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ACS Nano

DOI: 10.1021/nn402370x




Bettina Frank, Xinghui Yin, Martin Schäferling, Jun Zhao, Sven M. Hein, Paul V. Braun and Harald Giessen

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Au Nanotip as Luminescent Near-Field Probe

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Nano Letters

DOI: 10.1021/nl401173g




Sebastian Jäger, Andreas M. Kern, Mario Hentschel, Regina Jäger, Kai Braun, Dai Zhang, Harald Giessen and Alfred J. Meixner

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Origins of CH4/CO2 Adsorption Selectivity in Zeolitic Imidazolate Frameworks: A van der Waals Density Functional Study

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The Journal of Physical Chemistry C

DOI: 10.1021/jp404251m




Keith G. Ray, David L. Olmsted, Yao Houndonougbo, Brian B. Laird and Mark Asta

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Deep-Subwavelength Plasmonic Nanoresonators Exploiting Extreme Coupling

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Nano Letters

DOI: 10.1021/nl4007694




Rasoul Alaee, Christoph Menzel, Uwe Huebner, Ekaterina Pshenay-Severin, Shakeeb Bin Hasan, Thomas Pertsch, Carsten Rockstuhl and Falk Lederer

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Carbon Nanotube Nanoelectromechanical Systems as Magnetometers for Single-Molecule Magnets

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ACS Nano

DOI: 10.1021/nn402968k




Marc Ganzhorn, Svetlana Klyatskaya, Mario Ruben and Wolfgang Wernsdorfer

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Nucleation of Graphene Precursors on Transition Metal Surfaces: Insights from Theoretical Simulations

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The Journal of Physical Chemistry C

DOI: 10.1021/jp404326d




Alister J. Page, Ying Wang, Hai-Bei Li, Stephan Irle and Keiji Morokuma

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Interaction of Small Gases with the Unsaturated Metal Centers of the HKUST-1 Metal Organic Framework

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The Journal of Physical Chemistry C

DOI: 10.1021/jp4018037




Barbara Supronowicz, Andreas Mavrandonakis and Thomas Heine

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Cooperative Carbon Capture Capabilities in Multivariate MOFs Decorated with Amino Acid Side Chains: A Computational Study

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The Journal of Physical Chemistry C

DOI: 10.1021/jp4053538




Michael L. Drummond, Thomas R. Cundari and Angela K. Wilson

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Tetrapod Nanocrystals as Fluorescent Stress Probes of Electrospun Nanocomposites

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Nano Letters

DOI: 10.1021/nl401999t




Shilpa N. Raja, Andrew C. K. Olson, Kari Thorkelsson, Andrew J. Luong, Lillian Hsueh, Guoqing Chang, Bernd Gludovatz, Liwei Lin, Ting Xu, Robert O. Ritchie and A. Paul Alivisatos

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Focused-ion-beam Assisted Growth, Patterning, and Narrowing the Size Distributions of ZnO Nanowires for Variable Optical Properties and Enhanced Nonmechanical Energy Conversion

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Chemistry of Materials

DOI: 10.1021/cm401195v




Xianying Wang, Shufang Xie, Jian Liu, Sergei O. Kucheyev and Y. Morris Wang

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Periodic Nanowire Array at the Crystal Interface

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ACS Nano

DOI: 10.1021/nn4023334




Atsutomo Nakamura, Teruyasu Mizoguchi, Katsuyuki Matsunaga, Takahisa Yamamoto, Naoya Shibata and Yuichi Ikuhara

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