Nicholas R Sandoval

Affiliations: 
Tulane University, New Orleans, LA, United States 
Area:
Chemical Engineering
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"Nicholas Sandoval"
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Parents

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Ryan T. Gill grad student 2011 CU Boulder
 (Genome Engineering to Improve Acetate and Cellulosic Hydrolysate Tolerance in E. coli for Improved Cellulosic Biofuel Production.)
Eleftherios T. Papoutsakis post-doc University of Delaware (E-Tree)
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Publications

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Brooks R, Morici L, Sandoval N. (2023) Cell Free Bacteriophage Synthesis from Engineered Strains Improves Yield. Acs Synthetic Biology. 12: 2418-2431
Kim NM, Sinnott RW, Rothschild LN, et al. (2022) Elucidation of Sequence-Function Relationships for an Improved Biobutanol Biosensor in . Frontiers in Bioengineering and Biotechnology. 10: 821152
McGraw CE, Peng D, Sandoval NR. (2020) Synthetic biology approaches: the next tools for improved protein production from CHO cells Current Opinion in Chemical Engineering. 30: 26-33
Kim NM, Sinnott RW, Sandoval NR. (2019) Transcription factor-based biosensors and inducible systems in non-model bacteria: current progress and future directions. Current Opinion in Biotechnology. 64: 39-46
Joseph RC, Kim NM, Sandoval NR. (2018) Recent Developments of the Synthetic Biology Toolkit for. Frontiers in Microbiology. 9: 154
Rohlhill J, Sandoval NR, Papoutsakis ET. (2017) Sort-Seq Approach to Engineering a Formaldehyde-Inducible Promoter for Dynamically Regulated Escherichia coli Growth on Methanol. Acs Synthetic Biology
Long CP, Au J, Sandoval NR, et al. (2017) Enzyme I facilitates reverse flux from pyruvate to phosphoenolpyruvate in Escherichia coli. Nature Communications. 8: 14316
Sandoval NR, Papoutsakis ET. (2016) Engineering membrane and cell-wall programs for tolerance to toxic chemicals: Beyond solo genes. Current Opinion in Microbiology. 33: 56-66
Long CP, Gonzalez JE, Sandoval NR, et al. (2016) Characterization of physiological responses to 22 gene knockouts in Escherichia coli central carbon metabolism. Metabolic Engineering
Cordova LT, Lu J, Cipolla RM, et al. (2016) Co-utilization of glucose and xylose by evolved Thermus thermophilus LC113 strain elucidated by (13)C metabolic flux analysis and whole genome sequencing. Metabolic Engineering
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