Cullen Buie

Cullen Buie

Massachusetts Institute of Technology

H-index: 25

North America-United States

About Cullen Buie

Cullen Buie, With an exceptional h-index of 25 and a recent h-index of 20 (since 2020), a distinguished researcher at Massachusetts Institute of Technology, specializes in the field of Microfluidics, Microbiology, Electrokinetics.

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

Randomly barcoded transposon mutant libraries for gut commensals I: Strategies for efficient library construction

Zeta potential characterization using commercial microfluidic chips

A mutant fitness compendium in Bifidobacteria reveals molecular determinants of colonization and host-microbe interactions

Leveraging Commercial Microfluidic Chips for Zeta Potential Characterization

Self-supervised Multidimensional Scaling with -ratio: Improving Microbiome Visualization

Recent advancements in electroporation technologies: from bench to clinic

Fabrication-Free Microfluidic Device for Scalable, High-Volume Bacterial Electroporation

Leveraging microfluidic dielectrophoresis to distinguish compositional variations of lipopolysaccharide in E. coli

Cullen Buie Information

University

Position

Associate Professor

Citations(all)

2604

Citations(since 2020)

1427

Cited By

1803

hIndex(all)

25

hIndex(since 2020)

20

i10Index(all)

42

i10Index(since 2020)

28

Email

University Profile Page

Google Scholar

Cullen Buie Skills & Research Interests

Microfluidics

Microbiology

Electrokinetics

Top articles of Cullen Buie

Randomly barcoded transposon mutant libraries for gut commensals I: Strategies for efficient library construction

2024/1/23

Zeta potential characterization using commercial microfluidic chips

Lab on a Chip

2024

A mutant fitness compendium in Bifidobacteria reveals molecular determinants of colonization and host-microbe interactions

bioRxiv

2023/8/29

Leveraging Commercial Microfluidic Chips for Zeta Potential Characterization

Electrochemical Society Meeting Abstracts 243

2023/8/28

Self-supervised Multidimensional Scaling with -ratio: Improving Microbiome Visualization

arXiv preprint arXiv:2308.00354

2023/8/1

Recent advancements in electroporation technologies: from bench to clinic

2023/6/8

Fabrication-Free Microfluidic Device for Scalable, High-Volume Bacterial Electroporation

2023/4/6

Leveraging microfluidic dielectrophoresis to distinguish compositional variations of lipopolysaccharide in E. coli

Frontiers in Bioengineering and Biotechnology

2023/2/16

Methods for electro-mechanical transfection

2022/11/3

M-TUBE enables large-volume bacterial gene delivery using a high-throughput microfluidic electroporation platform

PLoS Biology

2022/9/6

Devices, systems, and kits for electro-mechanical delivery and methods of use thereof

2022/8/4

Bacterial response to spatial gradients of algal-derived nutrients in a porous microplate

The ISME Journal

2022/4

High-Throughput Electroporation Assembly

2022/3/31

Characterizing chemical signaling between engineered “microbial sentinels” in porous microplates

Molecular Systems Biology

2022/3

In situ continuous electrochemical quantification of bacterial adhesion to electrically polarized metallic surfaces under shear

Biointerphases

2022/3/1

M-TUBE: a fabrication-free microfluidic device for large-volume bacterial electroporation requiring minimal assembly

bioRxiv

2022/1/17

Electro-mechanical transfection for non-viral primary immune cell engineering

BioRxiv

2021/10/28

Anti-Black racism in academia and what you can do about it

2021/9

Microfluidic assay for rapid optimization of cell electroporation

2021/3/16

See List of Professors in Cullen Buie University(Massachusetts Institute of Technology)

Co-Authors

academic-engine