Norbert Hofstätter

About Norbert Hofstätter

Norbert Hofstätter, With an exceptional h-index of 7 and a recent h-index of 7 (since 2020), a distinguished researcher at Universität Salzburg, specializes in the field of bio-nanoparticle-interactions, lung epithelia, particle dosimetry, aerosol deposition, particokinetics.

His recent articles reflect a diverse array of research interests and contributions to the field:

(Re) Conceptualizing decision-making tools in a risk governance framework for emerging technologies—the case of nanomaterials

Mechanistic insights into silica nanoparticle–allergen interactions on antigen presenting cell function in the context of allergic reactions

Immunotoxicity of nanomaterials in health and disease: Current challenges and emerging approaches for identifying immune modifiers in susceptible populations

framework for emerging technologies—the case of nanomaterials

Structural alterations of antigens at the material interface: An early decision toolbox facilitating safe-by-design nanovaccine development

Children’s Privilege in COVID-19: The Protective Role of the Juvenile Lung Morphometry and Ventilatory Pattern on Airborne SARS-CoV-2 Transmission to Respiratory Epithelial …

In vitro immuno-nanotoxicological methods that take pre-existing conditions into account

SARS-CoV-2-laden respiratory aerosol deposition in the lung alveolar-interstitial region is a potential risk factor for severe disease: a modeling study

Norbert Hofstätter Information

University

Position

Research Associate Division of Allergy and Immunology

Citations(all)

181

Citations(since 2020)

143

Cited By

18

hIndex(all)

7

hIndex(since 2020)

7

i10Index(all)

7

i10Index(since 2020)

6

Email

University Profile Page

Google Scholar

Norbert Hofstätter Skills & Research Interests

bio-nanoparticle-interactions

lung epithelia

particle dosimetry

aerosol deposition

particokinetics

Top articles of Norbert Hofstätter

(Re) Conceptualizing decision-making tools in a risk governance framework for emerging technologies—the case of nanomaterials

2023/3

Mechanistic insights into silica nanoparticle–allergen interactions on antigen presenting cell function in the context of allergic reactions

Nanoscale

2023

Immunotoxicity of nanomaterials in health and disease: Current challenges and emerging approaches for identifying immune modifiers in susceptible populations

2022/11

framework for emerging technologies—the case of nanomaterials

2022

Structural alterations of antigens at the material interface: An early decision toolbox facilitating safe-by-design nanovaccine development

International Journal of Molecular Sciences

2021/10/8

Children’s Privilege in COVID-19: The Protective Role of the Juvenile Lung Morphometry and Ventilatory Pattern on Airborne SARS-CoV-2 Transmission to Respiratory Epithelial …

Biomedicines

2021/10/8

In vitro immuno-nanotoxicological methods that take pre-existing conditions into account

Toxicology Letters

2021/9

SARS-CoV-2-laden respiratory aerosol deposition in the lung alveolar-interstitial region is a potential risk factor for severe disease: a modeling study

Journal of Personalized Medicine

2021/5/19

The impact of nanoparticles on innate immune activation by live bacteria

2020/12/18

Studying the stages of immune activation/modulation by silica nanoparticle-allergen conjugates: applying the AOP concept to immunotherapy development

2020/11/18

Metadata stewardship in nanosafety research: Community-driven organisation of metadata schemas to support FAIR nanoscience data

Nanomaterials

2020/10

When would immunologists consider a nanomaterial to be safe? Recommendations for planning studies on nanosafety

2020/5

Raw data and heat maps of ARAP deposition modeling

2020

Biological effects of allergen–nanoparticle conjugates: uptake and immune effects determined on hAELVi cells under submerged vs. air–liquid interface conditions

Environmental Science: Nano

2020

See List of Professors in Norbert Hofstätter University(Universität Salzburg)

Co-Authors

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