Miklós Geiszt

About Miklós Geiszt

Miklós Geiszt, With an exceptional h-index of 39 and a recent h-index of 26 (since 2020), a distinguished researcher at Semmelweis Egyetem, specializes in the field of Reactive oxygen species, NADPH oxidases, Peroxidases.

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

A novel monoclonal antibody reveals the enrichment of NADPH oxidase 5 in human splenic endothelial cells

Autotaxin–lysophosphatidic acid receptor 5 axis evokes endothelial dysfunction via reactive oxygen species signaling

NADPH Oxidase 1: At the Interface of the Intestinal Epithelium and Gut Microbiota

Hydrogen peroxide production by epidermal dual oxidase 1 regulates nociceptive sensory signals

Diet-induced obesity worsens allergen-induced type 2/type 17 inflammation in airways by enhancing DUOX1 activation

Identification of brominated extracellular matrix proteins in idiopathic pulmonary fibrosis tissues

Measuring peroxidasin activity in live cells using bromide addition for signal amplification

Disruption of the NOX5 gene aggravates atherosclerosis in rabbits

Miklós Geiszt Information

University

Position

___

Citations(all)

7502

Citations(since 2020)

2119

Cited By

6168

hIndex(all)

39

hIndex(since 2020)

26

i10Index(all)

61

i10Index(since 2020)

48

Email

University Profile Page

Google Scholar

Miklós Geiszt Skills & Research Interests

Reactive oxygen species

NADPH oxidases

Peroxidases

Top articles of Miklós Geiszt

A novel monoclonal antibody reveals the enrichment of NADPH oxidase 5 in human splenic endothelial cells

Scientific Reports

2023/10/11

Imre Kacskovics
Imre Kacskovics

H-Index: 18

Miklós Geiszt
Miklós Geiszt

H-Index: 26

Autotaxin–lysophosphatidic acid receptor 5 axis evokes endothelial dysfunction via reactive oxygen species signaling

Experimental Biology and Medicine

2023/10

Miklós Geiszt
Miklós Geiszt

H-Index: 26

Satoshi Ishii
Satoshi Ishii

H-Index: 35

NADPH Oxidase 1: At the Interface of the Intestinal Epithelium and Gut Microbiota

2023/6/23

Miklós Geiszt
Miklós Geiszt

H-Index: 26

Hydrogen peroxide production by epidermal dual oxidase 1 regulates nociceptive sensory signals

Redox Biology

2023/6/1

Diet-induced obesity worsens allergen-induced type 2/type 17 inflammation in airways by enhancing DUOX1 activation

American Journal of Physiology-Lung Cellular and Molecular Physiology

2023/2/1

Identification of brominated extracellular matrix proteins in idiopathic pulmonary fibrosis tissues

Free Radical Biology & Medicine

2023

Measuring peroxidasin activity in live cells using bromide addition for signal amplification

Redox Biology

2022/8/1

Imre Kacskovics
Imre Kacskovics

H-Index: 18

Miklós Geiszt
Miklós Geiszt

H-Index: 26

Disruption of the NOX5 gene aggravates atherosclerosis in rabbits

Circulation Research

2021/4/30

Imre Kacskovics
Imre Kacskovics

H-Index: 18

Miklós Geiszt
Miklós Geiszt

H-Index: 26

Egy ferencvárosi gyermekkórház

2021

Peroxidasin: structure and function

2021/10/7

Miklós Geiszt
Miklós Geiszt

H-Index: 26

Characterization of the proprotein convertase-mediated processing of peroxidasin and peroxidasin-like protein

Antioxidants

2021/9/30

Miklós Geiszt
Miklós Geiszt

H-Index: 26

Characterization of the intramolecular interactions and regulatory mechanisms of the scaffold protein Tks4

Biophysical Journal

2013/1/29

Ca2+ mobilization-dependent reduction of the endoplasmic reticulum lumen is due to influx of cytosolic glutathione

BMC biology

2020/12

Richard Zimmermann
Richard Zimmermann

H-Index: 3

Miklós Geiszt
Miklós Geiszt

H-Index: 26

The creation of a multiallele knockout genotype in rabbit using crispr/cas9 and its application in translational medicine

Applied Sciences

2020/11/28

Miklós Geiszt
Miklós Geiszt

H-Index: 26

Author Correction: NADPH oxidase subunit NOXO1 is a target for emphysema treatment in COPD

Nature Metabolism

2020/7

NADPH oxidase subunit NOXO1 is a target for emphysema treatment in COPD

Nature Metabolism

2020/6/1

CGD: less is more

Blood, The Journal of the American Society of Hematology

2020/3/19

Miklós Geiszt
Miklós Geiszt

H-Index: 26

Author Correction: Enhanced endothelial motility and multicellular sprouting is mediated by the scaffold protein TKS4 (Scientific Reports,(2019), 9, 1,(14363), 10.1038/s41598 …

2020

Miklós Geiszt
Miklós Geiszt

H-Index: 26

See List of Professors in Miklós Geiszt University(Semmelweis Egyetem)