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Meeting 2018 TMS Annual Meeting & Exhibition
Symposium Bio-nano Interfaces and Engineering Applications Symposium
Presentation Title Nanoscale Structure and Properties of Biomaterials
Author(s) Federico Rosei
On-Site Speaker (Planned) Federico Rosei
Abstract Scope Nanostructuring materials allows to optimize their properties. We created nanopatterns that act as surface cues [2,3], affecting cell behavior. Chemical oxidation creates nanotopographies [4], that allow to improve biocompatibility. Our treatment selectively inhibits fibroblast proliferation while promoting osteoblast growth [5] in vitro. Enhancing mechano-biocompatibility may occur by coating with spider silk [6,7]. Improving antibacterial properties using laser/plasma strategies will also be discussed [8-10]. [1]F Variola et al, Small 5, 996 (2009) [2]F Variola et al, Biomaterials 29, 1285 (2008) [3]F Vetrone et al, Nanolett 9, 659 (2009) [4]L Richert et al, Adv Mater 20, 1488 (2008) [5]C Brown et al, Nanoscale 3, 3805 (2011) [6]C Brown et al, ACS Nano 6, 1961 (2012) [7]O Seddiki et al, Appl Surf Sci 308, 275 (2014) [8]M Cloutier et al, Diam Rel Mater 48, 65 (2014) [9]L Cardenas et al, Nanoscale 6, 8664 (2014) [10]M Cloutier et al, Trends Biotechnol 33, 637 (2015)
Proceedings Inclusion? Planned: Publication Outside of TMS (Indicate publication title and publisher if known.)


Bioconjugated Nanoparticle Imaging Probes for Molecular Imaging with Computed Tomography
Biofilm Formation Behavior on Polymer Brush Surfaces by E. Coli and S. Epidermidis
Biomolecular Design of Soft Interfaces for Technology and Medicine
Chemically Functionalised Graphene FET with Double Conductance Minima for the Label-free Sensing of Exosomes
Connecting Biology and Electronics with Protons: From Ion Channels to Cells
Discovery of Biomaterials by Simulation and Experiment: Catalysts, Composites, and Therapeutics
Effects of Hydration and Mineralization on the Mechanical Behavior of Collagen Fibrils
Investigating the Interaction of Amyloidogenic Proteins with Inorganic Surfaces, Nanoparticles and Biomolecules by Atomistic Simulations
Modeling the Mechanics of Cancer Cells on Tissue Engineering Substrates
Nanoclay Based Tissue Engineering Scaffolds for Mimicking Biointerfaces in Mesenchymal to Epithelial Transision of Prostate and Breast Cancer Metastasis to Bone
Nanoscale Structure and Properties of Biomaterials
New Antimicrobial Peptides Generated through Genetic Algorithm Approach Using Chemical Property Based Cross-over
Oligopeptides and Recombinamers at Surfaces and Interfaces to Address Oral Infections
Revealing the Full Hierarchical Structure of Spider Silks across All Length Scales
Revealing the Multi-functional Surface and Material Property of Venus Flytrap (Dionaea Muscipula)
Single Molecular Imaging of Fluorescent-tagged Peptides Diffusing on a Surface of Boron Nitride
Surface Modification of Ti6Al4V to Confer Antibacterial Properties against Listeria Monocytogenes
Synthesis and Characterization of Superomniphobic Surfaces Inspired by Springtails
Transmission Synchrotron X-ray Tomography and Nano-indentation Measurements for the Investigation of the Teeth Microstructure of Dinosaurs
Use of Nanostructured Diamond in Medical Device Applications

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