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Nathalie Q. Balaban

Tsinghua University · IL
Area of research
Genetics · Molecular Biology
Research interest
Research interests include Evolution and Genetic Dynamics, Gene Regulatory Network Analysis, Bacterial Genetics and Biotechnology, and Antibiotic Resistance in Bacteria.
h-index
37
citations
18,135
works
87
NIH funding
primary concept
Biology
email

Recent publications

Differentiation between regulated and disrupted growth arrests allows tailoring of effective treatments for antibiotic persistence
Science Advances 2026cited by 1position: lastdoi
Uncovering phenotypic inheritance from single cells with Microcolony-seq
Cell 2025cited by 7position: lastdoi
Early tolerance and late persistence as alternative drug responses in cancer
Nature Communications 2025cited by 7position: middledoi
Cancer drug-tolerant persister cells: from biological questions to clinical opportunities
Nature reviews. Cancer 2024cited by 136position: middledoi
Prevalence of Antibiotic Tolerance and Risk for Reinfection Among <i>Escherichia coli</i> Bloodstream Isolates: A Prospective Cohort Study
Clinical Infectious Diseases 2022cited by 25position: middledoi
Bacteria grow swiftly and live thriftily
Current Biology 2022cited by 18position: middledoi
Interaction Tolerance Detection Test for Understanding the Killing Efficacy of Directional Antibiotic Combinations
mBio 2022cited by 12position: lastdoi
Detecting chaos in lineage-trees: A deep learning approach
Physical Review Research 2022cited by 7position: lastdoi
Slow relaxation and aging in the model of randomly connected cycles network
Physical Review Research 2022cited by 3position: middledoi
Observation of universal ageing dynamics in antibiotic persistence
Nature 2021cited by 114position: lastdoi
Quantitative biology of survival under antibiotic treatments
Current Opinion in Microbiology 2021cited by 20position: lastdoi
Effect of tolerance on the evolution of antibiotic resistance under drug combinations
Science 2020cited by 505position: lastdoi
Antibiotic resistance: turning evolutionary principles into clinical reality
FEMS Microbiology Reviews 2020cited by 248position: middledoi
Impact of Population Mask Wearing on COVID-19 Post Lockdown
Infectious Microbes & Diseases 2020cited by 9position: lastdoi
Definitions and guidelines for research on antibiotic persistence
Nature Reviews Microbiology 2019cited by 1,238position: firstdoi
Epistasis between antibiotic tolerance, persistence, and resistance mutations
Proceedings of the National Academy of Sciences 2019cited by 215position: lastdoi
Publisher Correction: Definitions and guidelines for research on antibiotic persistence
Nature Reviews Microbiology 2019cited by 185position: firstdoi
Evolution Under Antibiotic Treatments: Interplay Between Antibiotic Persistence, Tolerance, and Resistance
2019cited by 11position: firstdoi
Inheritance of Cell-Cycle Duration in the Presence of Periodic Forcing
Physical Review X 2018cited by 39position: lastdoi
Learning from Noise: How Observing Stochasticity May Aid Microbiology
Trends in Microbiology 2018cited by 22position: lastdoi
TDtest: easy detection of bacterial tolerance and persistence in clinical isolates by a modified disk-diffusion assay
Scientific Reports 2017cited by 142position: lastdoi
An Experimental Framework for Quantifying Bacterial Tolerance
Biophysical Journal 2017cited by 125position: lastdoi
A long-term epigenetic memory switch controls bacterial virulence bimodality
eLife 2017cited by 71position: lastdoi
Distinguishing between resistance, tolerance and persistence to antibiotic treatment
Nature Reviews Microbiology 2016cited by 1,599position: lastdoi
Persistence to anti-cancer treatments in the stationary to proliferating transition
Cell Cycle 2016cited by 37position: lastdoi
Lineage correlations of single cell division time as a probe of cell-cycle dynamics
Nature 2015cited by 158position: lastdoi
Quantitative Measurements of Type I and Type II Persisters Using ScanLag
Methods in molecular biology 2015cited by 28position: lastdoi
Distinguishing between stochasticity and determinism: Examples from cell cycle duration variability
BioEssays 2015cited by 13position: middledoi
Optimization of lag time underlies antibiotic tolerance in evolved bacterial populations
Nature 2014cited by 639position: lastdoi
ScanLag: High-throughput Quantification of Colony Growth and Lag Time
Journal of Visualized Experiments 2014cited by 63position: lastdoi

Grants

No grants ingested yet.

Frequent collaborators

Irine Ronin · Hebrew University of Jerusalem11 papers (2013–2026)Orit Gefen · Hebrew University of Jerusalem10 papers (2013–2026)Irit Levin-Reisman · Hebrew University of Jerusalem7 papers (2014–2022)Ofer Fridman · Hebrew University of Jerusalem7 papers (2012–2017)Asher Brauner · Hebrew University of Jerusalem4 papers (2016–2021)Oded Agam · Hebrew University of Jerusalem4 papers (2015–2026)Sivan Pearl Mizrahi · Hebrew University of Jerusalem4 papers (2015–2018)Hagai Rappeport · Hebrew University of Jerusalem3 papers (2022–2026)Maskit Bar‐Meir · Shaare Zedek Medical Center3 papers (2020–2025)Jiafeng Liu · Shenyang University of Technology3 papers (2019–2022)Yoav Kaplan · Hebrew University of Jerusalem3 papers (2021–2026)Itamar Simon · Hebrew University of Jerusalem3 papers (2015–2016)Dan I. Andersson · Science for Life Laboratory2 papers (2019–2020)Raya Faigenbaum-Romm · Hebrew University of Jerusalem2 papers (2025–2026)Ilan Rosenshine · Hebrew University of Jerusalem2 papers (2017–2025)Noga Weiss · Hebrew University of Jerusalem2 papers (2013–2015)Kim Lewis · Northeastern University2 papers (2013–2019)Shaked Reich · Hebrew University of Jerusalem2 papers (2021–2022)Noam Shoresh · Broad Institute2 papers (2014–2017)Oded Sandler · Hebrew University of Jerusalem2 papers (2015–2015)