Sebastian J. Maerkl

About Sebastian J. Maerkl

Sebastian J. Maerkl, With an exceptional h-index of 37 and a recent h-index of 26 (since 2020), a distinguished researcher at École Polytechnique Fédérale de Lausanne, specializes in the field of Microfluidics, Systems Biology, Synthetic Biology, Cell-Free Synthetic Biology, Diagnostics.

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

Towards self-regeneration: exploring the limits of protein synthesis in the PURE cell-free transcription-translation system

Targeting protein-ligand neosurfaces using a generalizable deep learning approach

A field‐capable rapid plant DNA extraction protocol using microneedle patches for botanical surveying and monitoring

Clinical sensitivity and specificity of a high-throughput microfluidic nano-immunoassay combined with capillary blood microsampling for the identification of anti-SARS-CoV-2 …

Perfect adaptation achieved by transport limitations governs the inorganic phosphate response in S. cerevisiae

System for automated and dynamic cell culture

C2CAplus: a one-pot isothermal circle-to-circle DNA amplification system

On biochemical constructors and synthetic cells

Sebastian J. Maerkl Information

University

Position

Associate Professor Institute of Bioengineering

Citations(all)

8695

Citations(since 2020)

3018

Cited By

6854

hIndex(all)

37

hIndex(since 2020)

26

i10Index(all)

55

i10Index(since 2020)

47

Email

University Profile Page

Google Scholar

Sebastian J. Maerkl Skills & Research Interests

Microfluidics

Systems Biology

Synthetic Biology

Cell-Free Synthetic Biology

Diagnostics

Top articles of Sebastian J. Maerkl

Towards self-regeneration: exploring the limits of protein synthesis in the PURE cell-free transcription-translation system

bioRxiv

2024

A field‐capable rapid plant DNA extraction protocol using microneedle patches for botanical surveying and monitoring

Applications in Plant Sciences

2023/5

Clinical sensitivity and specificity of a high-throughput microfluidic nano-immunoassay combined with capillary blood microsampling for the identification of anti-SARS-CoV-2 …

Plos one

2023/3/23

Perfect adaptation achieved by transport limitations governs the inorganic phosphate response in S. cerevisiae

Proceedings of the National Academy of Sciences

2023/1/10

System for automated and dynamic cell culture

2023

C2CAplus: a one-pot isothermal circle-to-circle DNA amplification system

ACS Synthetic Biology

2023/9/20

On biochemical constructors and synthetic cells

Interface Focus

2023/8/11

Direct encapsulation of biomolecules in semi-permeable microcapsules produced with double-emulsions

Scientific Reports

2022/12/10

Improved cell-free transcription–translation reactions in microfluidic chemostats augmented with hydrogel membranes for continuous small molecule dialysis

ACS Synthetic Biology

2022/12/7

Systematic analysis of low-affinity transcription factor binding site clusters in vitro and in vivo establishes their functional relevance

Nature Communications

2022/9/7

Epidemiological, virological and serological investigation of a SARS-CoV-2 outbreak (Alpha variant) in a primary school: A prospective longitudinal study

PloS one

2022/8/17

An automated do-it-yourself system for dynamic stem cell and organoid culture in standard multi-well plates

Cell reports methods

2022/7/18

Biochemistry of Aminoacyl tRNA Synthetase and tRNAs and Their Engineering for Cell-Free and Synthetic Cell Applications

2022/7/1

A SARS-CoV-2 omicron (B. 1.1. 529) variant outbreak in a primary school in Geneva, Switzerland

The Lancet Infectious Diseases

2022/6/1

High-Throughput Single-Cell TCR–pMHC Dissociation Rate Measurements Performed by an Autonomous Microfluidic Cellular Processing Unit

ACS sensors

2022/1/10

Nature‐inspired circular‐economy recycling for proteins: proof of concept

Advanced Materials

2021/11

OnePot PURE cell-free system

JoVE (Journal of Visualized Experiments)

2021/6/23

A high-throughput microfluidic nanoimmunoassay for detecting anti–SARS-CoV-2 antibodies in serum or ultralow-volume blood samples

Proceedings of the National Academy of Sciences

2021/5/4

CFPU: a cell-free processing unit for high-throughput, automated in vitro circuit characterization in steady-state conditions

BioDesign Research

2021/3/17

See List of Professors in Sebastian J. Maerkl University(École Polytechnique Fédérale de Lausanne)

Co-Authors

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