David B. Konrad

About David B. Konrad

David B. Konrad, With an exceptional h-index of 16 and a recent h-index of 15 (since 2020), a distinguished researcher at Ludwig-Maximilians-Universität München, specializes in the field of Chemoproteomics, Catalysis, Chemical Biology, Organic Synthesis.

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

Assessing the activity of benzodioxol, phenol and aniline derivatives as radical trapping antioxidants that inhibit ferroptosis

7-Dehydrocholesterol is an endogenous suppressor of ferroptosis

Enabling late-stage drug diversification by high-throughput experimentation with geometric deep learning

Chemical tools to expand the ligandable proteome: diversity-oriented synthesis-based photoreactive stereoprobes

Identifying opportunities for late-stage CH alkylation with high-throughput experimentation and in silico reaction screening

Simple User-Friendly Reaction Format

DNA mimic foldamers affect chromatin composition and disturb cell cycle progression

Photoswitchable Inhibitors of the Sarco (endo) plasmic Calcium Pump

David B. Konrad Information

University

Position

Department of Pharmacy

Citations(all)

1036

Citations(since 2020)

902

Cited By

301

hIndex(all)

16

hIndex(since 2020)

15

i10Index(all)

19

i10Index(since 2020)

19

Email

University Profile Page

Google Scholar

David B. Konrad Skills & Research Interests

Chemoproteomics

Catalysis

Chemical Biology

Organic Synthesis

Top articles of David B. Konrad

Assessing the activity of benzodioxol, phenol and aniline derivatives as radical trapping antioxidants that inhibit ferroptosis

2024/3/28

Enabling late-stage drug diversification by high-throughput experimentation with geometric deep learning

Nature Chemistry

2024/2

Chemical tools to expand the ligandable proteome: diversity-oriented synthesis-based photoreactive stereoprobes

bioRxiv

2024

Identifying opportunities for late-stage CH alkylation with high-throughput experimentation and in silico reaction screening

Communications Chemistry

2023/11/20

Simple User-Friendly Reaction Format

2023/11/8

DNA mimic foldamers affect chromatin composition and disturb cell cycle progression

Nucleic Acids Research

2023/10/13

Photoswitchable Inhibitors of the Sarco (endo) plasmic Calcium Pump

2023/9/29

Graph transformer neural network for chemical reactivity prediction

2023/5/16

Postsynthetic photocontrol of giant liposomes via fusion-based photolipid doping

Langmuir

2022/9/21

A concise synthesis of tetrodotoxin

Science

2022/7/22

Late-stage functionalization and its impact on modern drug discovery: medicinal chemistry and chemical biology highlights

Chimia

2022/3/30

Epithelial-mesenchymal transition and H2O2 signaling – a driver of disease progression and a vulnerability in cancers

2022/3/28

BS MATSUURA*, D. TRAUNER*(NEW YORK UNIVERSITY AND UNIVERSITY OF PENNSYLVANIA, PHILADELPHIA, USA)

Science

2022

Optical membrane control with red light enabled by red-shifted photolipids

Langmuir

2021/12/31

An Efficient Synthesis of Tetrodotoxin

2021/9/30

Selective photoswitchable allosteric agonist of a G protein-coupled receptor

Journal of the American Chemical Society

2021/6/11

Photolipid bilayer permeability is controlled by transient pore formation

Langmuir

2020/11/4

Light-induced lipid mixing implies a causal role of lipid splay in membrane fusion

Biochimica et Biophysica Acta (BBA)-Biomembranes

2020/11/1

In Vivo Photopharmacology Enabled by Multifunctional Fibers

ACS Chemical Neuroscience

2020/10/27

See List of Professors in David B. Konrad University(Ludwig-Maximilians-Universität München)