David Nielsen

David Nielsen

Arizona State University

H-index: 31

North America-United States

About David Nielsen

David Nielsen, With an exceptional h-index of 31 and a recent h-index of 22 (since 2020), a distinguished researcher at Arizona State University, specializes in the field of Biotechnology, Metabolic Engineering, Biofuels, Biochemicals.

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

Synergistic co‐utilization of biomass‐derived sugars enhances aromatic amino acid production by engineered Escherichia coli

‘Dark’ CO2 fixation in succinate fermentations enabled by direct CO2 delivery via hollow fiber membrane carbonation

Soluble and stable cyanophycin synthetase expression enhances heterologous cyanophycin production in Escherichia coli

Heterologous production of cyanophycin with Tatumella morbirosei cyanophycin synthetase

Multi-omic based production strain improvement (MOBpsi) for bio-manufacturing of toxic chemicals

Consolidated bioprocessing of hemicellulose to fuels and chemicals through an engineered Bacillus subtilis-Escherichia coli consortium

A coculture-coproduction system designed for enhanced carbon conservation through inter-strain CO2 recycling

Exploiting polyploidy for markerless and plasmid-free genome engineering in cyanobacteria

David Nielsen Information

University

Position

___

Citations(all)

3584

Citations(since 2020)

1484

Cited By

2751

hIndex(all)

31

hIndex(since 2020)

22

i10Index(all)

54

i10Index(since 2020)

39

Email

University Profile Page

Arizona State University

Google Scholar

View Google Scholar Profile

David Nielsen Skills & Research Interests

Biotechnology

Metabolic Engineering

Biofuels

Biochemicals

Top articles of David Nielsen

Title

Journal

Author(s)

Publication Date

Synergistic co‐utilization of biomass‐derived sugars enhances aromatic amino acid production by engineered Escherichia coli

Biotechnology and bioengineering

Arren Liu

Michael Machas

Apurv Mhatre

Nima Hajinajaf

Aditya Sarnaik

...

2024/2

‘Dark’ CO2 fixation in succinate fermentations enabled by direct CO2 delivery via hollow fiber membrane carbonation

Bioprocess and biosystems engineering

Amanda G Godar

Timothy Chase

Dalton Conway

Dharneedar Ravichandran

Isaiah Woodson

...

2024/2

Soluble and stable cyanophycin synthetase expression enhances heterologous cyanophycin production in Escherichia coli

Biochemical Engineering Journal

Kyle Swain

Itai Sharon

Wyatt Blackson

Sydney Parrish

Stefan Tekel

...

2023/6/1

Heterologous production of cyanophycin with Tatumella morbirosei cyanophycin synthetase

bioRxiv

Kyle Swain

Itai Sharon

Wyatt Blackson

Stefan Tekel

T Martin Schmeing

...

2023/1/10

Multi-omic based production strain improvement (MOBpsi) for bio-manufacturing of toxic chemicals

Metabolic engineering

Joseph P Webb

Ana Carolina Paiva

Luca Rossoni

Amias Alstrom-Moore

Vicki Springthorpe

...

2022/7/1

Consolidated bioprocessing of hemicellulose to fuels and chemicals through an engineered Bacillus subtilis-Escherichia coli consortium

Renewable Energy

Apurv Mhatre

Bethany Kalscheur

Haley Mckeown

Karan Bhakta

Aditya P Sarnaik

...

2022/6/1

A coculture-coproduction system designed for enhanced carbon conservation through inter-strain CO2 recycling

Metabolic Engineering

Andrew D Flores

Steven C Holland

Apurv Mhatre

Aditya P Sarnaik

Amanda Godar

...

2021/9/1

Exploiting polyploidy for markerless and plasmid-free genome engineering in cyanobacteria

ACS Synthetic Biology

Christopher M Jones

Sydney Parrish

David R Nielsen

2021/8/17

Systematic Engineering of Synechococcus elongatus UTEX 2973 for Photosynthetic Production of l-Lysine, Cadaverine, and Glutarate

ACS Synthetic Biology

Zachary A Dookeran

David R Nielsen

2021/12/1

Optimization of a T7-RNA polymerase system in Synechococcus sp. PCC 7002 mirrors the protein overproduction phenotype from E. coli BL21(DE3)

Applied microbiology and biotechnology

Christopher M Jones

Travis C Korosh

David R Nielsen

Brian F Pfleger

2021/2

Synthetic biology strategies to address waste CO2 loss during biofuel production

Amanda Godar

Cody Kamoku

David Nielsen

Xuan Wang

2021/12/1

Characterizing Escherichia coli’s transcriptional response to different styrene exposure modes reveals novel toxicity and tolerance insights

Journal of Industrial Microbiology and Biotechnology

Michael Machas

Gavin Kurgan

Omar A Abed

Alyssa Shapiro

Xuan Wang

...

2021/2

A probabilistic economic and environmental impact assessment of a cyanobacteria-based biorefinery

Algal Research

Audrey Beattie

Wim Vermaas

Al Darzins

Steven C Holland

Shuqin Li

...

2021/11/1

Applying a ‘Metabolic Funnel’ for Phenol Production in Escherichia coli

Fermentation

Brian Thompson

Michael Machas

Omar Abed

David R Nielsen

2021/10/5

High-throughput screening for efficient microbial biotechnology

Aditya Sarnaik

Arren Liu

David Nielsen

Arul M Varman

2020/8/1

Catabolic Division of Labor Enhances Production of D-Lactate and Succinate From Glucose-Xylose Mixtures in Engineered Escherichia coli Co-culture Systems

Frontiers in Bioengineering and Biotechnology

Andrew Flores

Hyun Choi

Rodrigo Martinez

Moses Onyeabor

E Zeynep Ayla

...

2020

Tetragonal crystal form of the cyanobacterial bicarbonate-transporter regulator SbtB from Synechocystis sp. PCC 6803

Acta Crystallographica Section F: Structural Biology Communications

Guanhong Bu

Chad R Simmons

David R Nielsen

Brent L Nannenga

2020/9/1

See List of Professors in David Nielsen University(Arizona State University)

Co-Authors

H-index: 64
Wim Vermaas

Wim Vermaas

Arizona State University

H-index: 58
Andrew J Daugulis

Andrew J Daugulis

Queen's University

H-index: 50
Bryan D. Vogt

Bryan D. Vogt

Penn State University

H-index: 45
Jacqueline Shanks

Jacqueline Shanks

Iowa State University

H-index: 33
Laura Jarboe

Laura Jarboe

Iowa State University

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