about
A high-throughput bioimaging study to assess the impact of chitosan-based nanoparticle degradation on DNA delivery performance.BDNF gene delivery mediated by neuron-targeted nanoparticles is neuroprotective in peripheral nerve injury.In vivo targeted gene delivery to peripheral neurons mediated by neurotropic poly(ethylene imine)-based nanoparticles.Atomic Force Microscopy as a Tool to Assess the Specificity of Targeted Nanoparticles in Biological Models of High Complexity.Ibuprofen-loaded fibrous patches-taming inhibition at the spinal cord injury site.Microfluidic-based platform to mimic the in vivo peripheral administration of neurotropic nanoparticles.Seeing is believing but quantifying is deciding.Dendrimers as Powerful Building Blocks in Central Nervous System Disease: Headed for Successful NanomedicineEndothelialization of chitosan porous conduits via immobilization of a recombinant fibronectin fragment (rhFNIII7–10)µSpikeHunter: An advanced computational tool for the analysis of neuronal communication and action potential propagation in microfluidic platformsThe membrane periodic skeleton is an actomyosin network that regulates axonal diameter and conductionInterfacing Microfluidics with Microelectrode Arrays for Studying Neuronal Communication and Axonal Signal PropagationImproved in vitro electrophysiology using 3D-structured microelectrode arrays with a micro-mushrooms islets architecture capable of promoting topotaxis
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P50
description
researcher ORCID ID = 0000-0002-7467-6498
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wetenschapper
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name
Cátia D. F. Lopes
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Cátia D. F. Lopes
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Cátia D. F. Lopes
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Cátia D. F. Lopes
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type
label
Cátia D. F. Lopes
@ast
Cátia D. F. Lopes
@en
Cátia D. F. Lopes
@es
Cátia D. F. Lopes
@nl
prefLabel
Cátia D. F. Lopes
@ast
Cátia D. F. Lopes
@en
Cátia D. F. Lopes
@es
Cátia D. F. Lopes
@nl
P106
P21
P31
P496
0000-0002-7467-6498