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Niccolò Taddei

Niccolò Taddei

D-Index & Metrics

Biology and Biochemistry

D-Index
54
Citations
13703
World Ranking
15453
National Ranking
485

Overview

Niccolò Taddei is affiliated with the University of Florence in Italy and focuses their research primarily in the field of Medicine. Their work spans several subfields including Pulmonary and Respiratory Medicine, Hematology, Molecular Biology, Immunology, and Health, Toxicology and Mutagenesis.

The scientist's main research topics cover diverse areas related to human health and disease mechanisms. These include Blood properties and coagulation, Inflammasome and immune disorders, Heavy Metal Exposure and Toxicity, Trace Elements in Health, Diabetes, Cardiovascular Risks, and Lipoproteins, Ocular Diseases and Behçet's Syndrome, and Atherosclerosis and Cardiovascular Diseases.

Niccolò Taddei has contributed to multiple recent papers, some of which are:

  • Cadmium-Induced Oxidative Stress: Focus on the Central Nervous System (2020), published in Antioxidants
  • Cadmium-Induced Cytotoxicity: Effects on Mitochondrial Electron Transport Chain (2020), published in Frontiers in Cell and Developmental Biology
  • Butyrate-Rich Diets Improve Redox Status and Fibrin Lysis in Behçet's Syndrome (2020), published in Circulation Research
  • Neutrophil-mediated mechanisms of damage and in-vitro protective effect of colchicine in non-vascular Behçet's syndrome (2021), published in Clinical & Experimental Immunology
  • Super-Resolution Microscopy Reveals an Altered Fibrin Network in Cirrhosis: The Key Role of Oxidative Stress in Fibrinogen Structural Modifications (2020), published in Antioxidants

The scientist frequently publishes in several venues, with the most publications found in:

  • Antioxidants (7 publications)
  • International Journal of Molecular Sciences (2 publications)
  • Thrombosis Research (2 publications)
  • Frontiers in Cell and Developmental Biology (1 publication)
  • Molecular Biomedicine (1 publication)

Taddei's frequent collaborators include Claudia Fiorillo, Matteo Becatti, Serena Borghi, Flavia Rita Argento, and Francesca Nencini. These coauthors appear repeatedly in their body of work, contributing to the multidisciplinary nature of the research.

Best Publications

  • Inherent toxicity of aggregates implies a common mechanism for protein misfolding diseases.

    Monica Bucciantini;Elisa Giannoni;Fabrizio Chiti;Fabrizio Chiti;Fabiana Baroni

  • Designing conditions for in vitro formation of amyloid protofilaments and fibrils

    Fabrizio Chiti;Paul Webster;Niccolò Taddei;Anne Clark

  • Rationalization of the effects of mutations on peptide and protein aggregation rates.

    Fabrizio Chiti;Massimo Stefani;Niccolò Taddei;Giampietro Ramponi

  • Kinetic partitioning of protein folding and aggregation.

    Fabrizio Chiti;Niccolò Taddei;Fabiana Baroni;Cristina Capanni

  • Mutational analysis of acylphosphatase suggests the importance of topology and contact order in protein folding.

    Fabrizio Chiti;Niccolò Taddei;Paul M. White;Monica Bucciantini

  • Studies of the aggregation of mutant proteins in vitro provide insights into the genetics of amyloid diseases

    Fabrizio Chiti;Martino Calamai;Niccolò Taddei;Massimo Stefani

  • Prefibrillar amyloid aggregates could be generic toxins in higher organisms

    Serena Baglioni;Fiorella Casamenti;Monica Bucciantini;Leila M. Luheshi

  • Mutational analysis of the propensity for amyloid formation by a globular protein.

    Fabrizio Chiti;Niccolò Taddei;Monica Bucciantini;Paul White

  • The crystal structure of a low-molecular-weight phosphotyrosine protein phosphatase

    Xiao-Dong Su;Niccolo' Taddei;Massimo Stefani;Giampietro Ramponi

  • Cadmium-Induced Oxidative Stress: Focus on the Central Nervous System

    Jacopo Junio Valerio Branca;Claudia Fiorillo;Donatello Carrino;Ferdinando Paternostro

  • Solution conditions can promote formation of either amyloid protofilaments or mature fibrils from the HypF N-terminal domain

    Fabrizio Chiti;Monica Bucciantini;Cristina Capanni;Niccolò Taddei

  • Detection of two partially structured species in the folding process of the amyloidogenic protein beta 2-microglobulin.

    Fabrizio Chiti;Palma Mangione;Alessia Andreola;Sofia Giorgetti

  • Evidence for a mechanism of amyloid formation involving molecular reorganisation within native-like precursor aggregates.

    Georgia Plakoutsi;Francesco Bemporad;Martino Calamai;Niccolò Taddei

  • Nature and Significance of the Interactions between Amyloid Fibrils and Biological Polyelectrolytes

    Martino Calamai;Janet R. Kumita;John Mifsud;Claudia Parrini

  • Relative influence of hydrophobicity and net charge in the aggregation of two homologous proteins.

    Martino Calamai;Niccolo Taddei;Massimo Stefani;Giampietro Ramponi

  • Neutrophil Activation Promotes Fibrinogen Oxidation and Thrombus Formation in Behçet Disease

    Matteo Becatti;Giacomo Emmi;Elena Silvestri;Giulia Bruschi

  • SIRT1 modulates MAPK pathways in ischemic-reperfused cardiomyocytes.

    Matteo Becatti;Niccolò Taddei;Cristina Cecchi;Niccolò Nassi

  • Assessing the role of aromatic residues in the amyloid aggregation of human muscle acylphosphatase.

    Francesco Bemporad;Niccolò Taddei;Massimo Stefani;Fabrizio Chiti

  • Slow folding of muscle acylphosphatase in the absence of intermediates.

    N. A. J. Van Nuland;F. Chiti;N. Taddei;G. Raugei

  • Protein aggregation and amyloid fibril formation by an SH3 domain probed by limited proteolysis.

    Patrizia Polverino de Laureto;Niccolò Taddei;Erica Frare;Cristina Capanni

Frequent Co-Authors

Fabrizio Chiti
Fabrizio Chiti University of Florence
Giampietro Ramponi
Giampietro Ramponi University of Florence
Massimo Stefani
Massimo Stefani University of Florence
Christopher M. Dobson
Christopher M. Dobson University of Cambridge
Pär Nordlund
Pär Nordlund Karolinska Institute
Ada Fort
Ada Fort University of Siena
Rosanna Abbate
Rosanna Abbate University of Florence
Betti Giusti
Betti Giusti University of Florence
Sandro Sorbi
Sandro Sorbi University of Florence
Elisa Giannoni
Elisa Giannoni University of Florence

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