Maximilian Hörner

About Maximilian Hörner

Maximilian Hörner, With an exceptional h-index of 17 and a recent h-index of 14 (since 2020), a distinguished researcher at Albert-Ludwigs-Universität Freiburg, specializes in the field of Optogenetics, Biomaterials, Synthetic Biology, Mechanosignaling.

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

Light-controlled viral transduction

OptoREACT: Optogenetic Receptor Activation on Nonengineered Human T Cells

Engineering a material-genetic interface as safety switch for embedded therapeutic cells

A Photoreceptor‐Based Hydrogel with Red Light‐Responsive Reversible Sol‐Gel Transition as Transient Cellular Matrix

Opto-APC: Engineering of cells that display phytochrome B on their surface for optogenetic studies of cell-cell interactions

Reversible Shielding and Immobilization of Liposomes and Viral Vectors by Tailored Antibody‐Ligand Interactions

Signal-processing and adaptive prototissue formation in metabolic DNA protocells

Benchmarking of Cph1 Mutants and DrBphP for Light‐Responsive Phytochrome‐Based Hydrogels with Reversibly Adjustable Mechanical Properties

Maximilian Hörner Information

University

Position

Junior group leader Department of Biochemistry / Synthetic Biology Signalling Research Centres BIOSS and CIBSS Faculty of Biology -

Citations(all)

866

Citations(since 2020)

716

Cited By

362

hIndex(all)

17

hIndex(since 2020)

14

i10Index(all)

25

i10Index(since 2020)

22

Email

University Profile Page

Google Scholar

Maximilian Hörner Skills & Research Interests

Optogenetics

Biomaterials

Synthetic Biology

Mechanosignaling

Top articles of Maximilian Hörner

Light-controlled viral transduction

2024/2/22

OptoREACT: Optogenetic Receptor Activation on Nonengineered Human T Cells

ACS Synthetic Biology

2024/2/9

Engineering a material-genetic interface as safety switch for embedded therapeutic cells

Biomaterials Advances

2023/7/1

A Photoreceptor‐Based Hydrogel with Red Light‐Responsive Reversible Sol‐Gel Transition as Transient Cellular Matrix

Advanced Materials Technologies

2023/4/5

Opto-APC: Engineering of cells that display phytochrome B on their surface for optogenetic studies of cell-cell interactions

Frontiers in Molecular Biosciences

2023/2/20

Reversible Shielding and Immobilization of Liposomes and Viral Vectors by Tailored Antibody‐Ligand Interactions

Small

2022/2

Signal-processing and adaptive prototissue formation in metabolic DNA protocells

Nature Communications

2022/7/8

Benchmarking of Cph1 Mutants and DrBphP for Light‐Responsive Phytochrome‐Based Hydrogels with Reversibly Adjustable Mechanical Properties

Advanced Biology

2022/7

Wilfried Weber
Wilfried Weber

H-Index: 31

Maximilian Hörner
Maximilian Hörner

H-Index: 11

Spatially Defined Gene Delivery into Native Cells with the Red Light‐Controlled OptoAAV Technology

Current Protocols

2022/6

Maximilian Hörner
Maximilian Hörner

H-Index: 11

Wilfried Weber
Wilfried Weber

H-Index: 31

Rotlicht-gesteuerter viraler Gentransfer mit Einzelzellauflösung

2021/10

Maximilian Hörner
Maximilian Hörner

H-Index: 11

Wilfried Weber
Wilfried Weber

H-Index: 31

Spatiotemporally confined red light-controlled gene delivery at single-cell resolution using adeno-associated viral vectors

Science Advances

2021/6/1

Synthetic biology as driver for the biologization of materials sciences

2021/6/1

Liquid-liquid phase separation of light-inducible transcription factors increases transcription activation in mammalian cells and mice

Science Advances

2021/1

A graphical user interface to design high-throughput optogenetic experiments with the optoPlate-96

Nature protocols

2020/9/1

Maximilian Hörner
Maximilian Hörner

H-Index: 11

Wilfried Weber
Wilfried Weber

H-Index: 31

Optogenetic Tuning of Ligand Binding to The Human T cell Receptor Using The opto-ligand-TCR System

Bio-protocol

2020/3/5

Maximilian Hörner
Maximilian Hörner

H-Index: 11

Wilfried Weber
Wilfried Weber

H-Index: 31

Human atrial fibroblast adaptation to heterogeneities in substrate stiffness

Frontiers in physiology

2020/1/10

Wilfried Weber
Wilfried Weber

H-Index: 31

Maximilian Hörner
Maximilian Hörner

H-Index: 11

Synthesis of a light-controlled phytochrome-based extracellular matrix with reversibly adjustable mechanical properties

Photoswitching Proteins: Methods and Protocols

2020

Maximilian Hörner
Maximilian Hörner

H-Index: 11

Wilfried Weber
Wilfried Weber

H-Index: 31

Production, Purification and Characterization of Recombinant Biotinylated Phytochrome B for Extracellular Optogenetics

2020

Maximilian Hörner
Maximilian Hörner

H-Index: 11

Wilfried Weber
Wilfried Weber

H-Index: 31

See List of Professors in Maximilian Hörner University(Albert-Ludwigs-Universität Freiburg)