Miguel A. Castanho researcher
Castanho, Miguel A.R.B.
Castanho, Miguel
Castanho, Miguel Augusto Rico Botas
VIAF ID: 171025532 (Personal)
Permalink: http://viaf.org/viaf/171025532
Preferred Forms
- 100 1 _ ‡a Castanho, Miguel
- 100 1 _ ‡a Castanho, Miguel
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- 100 1 _ ‡a Castanho, Miguel A. R. B.
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- 100 1 _ ‡a Castanho, Miguel A. R. B.
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- 100 1 _ ‡a Castanho, Miguel A.R.B.
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- 100 0 _ ‡a Miguel A. Castanho ‡c researcher
4xx's: Alternate Name Forms (6)
Works
Title | Sources |
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Computational and experimental strategies for assessing the conformational and dynamic propertied of proteins and peptides | |
Current research insights into HIV/AIDS and related diseases | |
Departamento de Química e Bioquímica guia de laboratório | |
Fluorescence quenching data interpretation in biological systems. The use of microscopic models for data analysis and interpretation of complex systems | |
Fusing simulation and experiment: The effect of mutations on the structure and activity of the influenza fusion peptide | |
Guar gum as a new antimicrobial peptide delivery system against diabetic foot ulcers Staphylococcus aureus isolates. | |
How to address CPP and AMP translocation? Methods to detect and quantify peptide internalization in vitro and in vivo (Review). | |
The influence of cholesterol on the interaction of HIV gp41 membrane proximal region-derived peptides with lipid bilayers | |
Inhibition of nociceptive responses after systemic administration of amidated kyotorphin | |
Integrative Human Biochemistry : A Textbook for Medical Biochemistry | |
Interaction between dengue virus fusion peptide and lipid bilayers depends on peptide clustering | |
Interaction of antimicrobial peptides, BP100 and pepR, with model membrane systems as explored by Brownian dynamics simulations on a coarse-grained model | |
Interaction of the Dengue virus fusion peptide with membranes assessed by NMR: The essential role of the envelope protein Trp101 for membrane fusion | |
interplay between HIV-1 gp41, membranes and pre-fusion antiviral agents | |
Is PrP | |
Joint determination by Brownian dynamics and fluorescence quenching of the in-depth location profile of biomolecules in membranes. | |
Lipid membrane-induced optimization for ligand-receptor docking: recent tools and insights for the "membrane catalysis" model. | |
Lipidic membranes are potential "catalysts" in the ligand activity of the multifunctional pentapeptide neokyotorphin. | |
The Mechanism of Action of Antimicrobial Peptides: Lipid Vesicles vs. Bacteria | |
The mechanism of action of pepR, a viral-derived peptide, against Staphylococcus aureus biofilms | |
The mechanisms and quantification of the selective permeability in transport across biological barriers: the example of kyotorphin. | |
Mechanisms of Vesicular Stomatitis Virus Inactivation by Protoporphyrin IX, Zinc-Protoporphyrin IX, and Mesoporphyrin IX. | |
Meeting Report â Biochemical Education at the University Level, Lisbon, Portugal, October 30â 31, 1999 | |
The membranes' role in the HIV-1 neutralizing monoclonal antibody 2F5 mode of action needs re-evaluation. | |
Modelo da acção bioquímica do antibiótico filipina aplicação de espectroscopias ópticas | |
Molecular interaction studies of peptides using steady-state fluorescence intensity. Static (de)quenching revisited. | |
Monitoring antibacterial permeabilization in real time using time-resolved flow cytometry | |
N-terminal AH2 segment of protein NS4B from hepatitis C virus. Binding to and interaction with model biomembranes. | |
Neuropeptide Kyotorphin Impacts on Lipopolysaccharide-Induced Glucocorticoid-Mediated Inflammatory Response. A Molecular Link to Nociception, Neuroprotection, and Anti-Inflammatory Action. | |
New Potent Membrane-Targeting Antibacterial Peptides from Viral Capsid Proteins | |
Novas perspectivas sobre a infecção VIH/SIDA e doenças relacionadas | |
Nucleic acid delivery by cell penetrating peptides derived from dengue virus capsid protein: design and mechanism of action | |
Obtenção de parâmetros estruturais de orientação de sondas de membrana e moléculas clinicamente relevantes inseridas em sistemas modelo de membranas biológicas | |
Omiganan interaction with bacterial membranes and cell wall models. Assigning a biological role to saturation. | |
Optical coherence tomography angiography study of the retinal vascular plexuses in type 1 diabetes without retinopathy | |
Orally Active Peptide Vector Allows Using Cannabis to Fight Pain While Avoiding Side Effects | |
The pentaene macrolide antibiotic filipin prefers more rigid DPPC bilayers: a fluorescence pressure dependence study | |
Peptibodies: An elegant solution for a long-standing problem. | |
Peptide drug discovery and development : translational research in academia and industry | |
Peptides as models for the structure and function of viral capsid proteins: Insights on dengue virus capsid | |
Pharmacological Potential of the Endogenous Dipeptide Kyotorphin and Selected Derivatives. | |
Phosphatidylethanolamine binding is a conserved feature of cyclotide-membrane interactions | |
Plant defensin PvD1 modulates the membrane composition of breast tumour-derived exosomes | |
Preface: The invitation of the CERC3 to organize a "Young Chemists' Workshop" | |
PrP(106-126) does not interact with membranes under physiological conditions | |
Quantifying molecular partition of cell-penetrating peptide-cargo supramolecular complexes into lipid membranes: optimizing peptide-based drug delivery systems | |
Quantitative analysis of molecular partition towards lipid membranes using surface plasmon resonance | |
Quantitative assessment of peptide-lipid interactions. Ubiquitous fluorescence methodologies. | |
R. B. Membrane-active peptides, c2009: | |
rBPI | |
rBPI(21) promotes lipopolysaccharide aggregation and exerts its antimicrobial effects by (hemi)fusion of PG-containing membranes | |
rBPI21 interacts with negative membranes endothermically promoting the formation of rigid multilamellar structures. | |
Receptors and routes of dengue virus entry into the host cells | |
The Researching, Teaching, and Learning Triangle | |
Rethinking the capsid proteins of enveloped viruses: multifunctionality from genome packaging to genome transfection | |
Rod-like cholesterol micelles in aqueous solution studied using polarized and depolarized dynamic light scattering | |
role of lipid membranes in the mechanism of action of sifuvirtide and other HIV-1 fusion inhibitors | |
Shifting gear in antimicrobial and anticancer peptides biophysical studies: from vesicles to cells | |
Shiga toxin B-subunit sequential binding to its natural receptor in lipid membranes. | |
Sifuvirtide screens rigid membrane surfaces. establishment of a correlation between efficacy and membrane domain selectivity among HIV fusion inhibitor peptides. | |
Simulation of the distribution and diffusion of a rigid amphipathic particle embedded in a model membrane | |
siRNA-cell-penetrating peptides complexes as a combinatorial therapy against chronic myeloid leukemia using BV173 cell line as model. | |
Structural characterization of organized systems of polysaccharides and phospholipids by light scattering spectroscopy and electron microscopy | |
Structural proteins of enveloped virus from biochemistry to molecular medicine focus on dengue virus | |
Structural Studies of a Lipid-Binding Peptide from Tunicate Hemocytes with Anti-Biofilm Activity | |
Structure-Stability-Function Mechanistic Links in the Anti-Measles Virus Action of Tocopherol-Derivatized Peptide Nanoparticles | |
Study of the molecular mechanism used by the peptidic vector pep-1 to introduce proteins inside cells | |
study on the mode of action of clinically relevant antimicrobial peptides | |
Synergistic effects of the membrane actions of cecropin-melittin antimicrobial hybrid peptide BP100 | |
Synthesis and Characterization of Peptide-Chitosan Conjugates (PepChis) with Lipid Bilayer Affinity and Antibacterial Activity | |
Targeting Zika Virus with New Brain- and Placenta-Crossing Peptide–Porphyrin Conjugates | |
Teaching light scattering spectroscopy: the dimension and shape of tobacco mosaic virus | |
The toxicity of prion protein fragment PrP(106-126) is not mediated by membrane permeabilization as shown by a M112W substitution | |
Translocating the blood-brain barrier using electrostatics | |
Translocation or membrane disintegration? Implication of peptide-membrane interactions in pep-1 activity | |
The transverse location of the fluorescent probe trans-parinaric acid in lipid bilayers | |
Understanding dengue virus capsid protein disordered N-Terminus and pep14-23-based inhibition | |
The Use of Visual Analog Scales to Compare Pain Between Patients With Alzheimer's Disease and Patients Without Any Known Neurodegenerative Disease and Their Caregivers. | |
Using zeta-potential measurements to quantify peptide partition to lipid membranes | |
Why are HIV-1 fusion inhibitors not effective against SARS-CoV? Biophysical evaluation of molecular interactions. |