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ACS Synthetic Biology|November 16, 2022
A Logically Reversible Double Feynman Gate with Molecular Engineered Bacteria Arranged in an Artificial Neural Network-Type ArchitectureRajkamal Srivastava, Sangram BaghMicrobial Biotechnology|November 23, 2024
Living Engineered Bacterial Therapeutics: Emerging Affordable Precision InterventionsRajkamal Srivastava, Cammie F LesserACS Synthetic Biology|February 18, 2022
Synthetic Genetic Reversible Feynman Gate in a Single <i>E. coli</i> Cell and Its Application in Bacterial to Mammalian Cell Information TransferRajkamal Srivastava, Kathakali Sarkar, Deepro Bonnerjee, et al.Chemical Science|January 13, 2022
A single layer artificial neural network type architecture with molecular engineered bacteria for reversible and irreversible computingKathakali Sarkar, Deepro Bonnerjee, Rajkamal Srivastava, et al.Journal of Biological Engineering|March 15, 2019
A frame-shifted gene, which rescued its function by non-natural start codons and its application in constructing synthetic gene circuitsKathakali Sarkar, Sayak Mukhopadhyay, Deepro Bonnerjee, et al.Biotechnology and Bioengineering|January 26, 2020
Processing two environmental chemical signals with a synthetic genetic IMPLY gate, a 2-input-2-output integrated logic circuit, and a process pipeline to optimize its systems chemistry in Escherichia coliSayak Mukhopadhyay, Kathakali Sarkar, Rajkamal Srivastava, et al.Biorxiv : the Preprint Server for Biology|August 12, 2024
<i>In situ</i> deposition of nanobodies by an engineered commensal microbe promotes survival in a mouse model of enterohemorrhagic <i>E. coli</i>Rajkamal Srivastava, Coral González-Prieto, Jason P Lynch, et al.PNAS Nexus|September 12, 2024
<i>In situ</i> deposition of nanobodies by an engineered commensal microbe promotes survival in a mouse model of enterohemorrhagic <i>E. coli</i>Rajkamal Srivastava, Coral González-Prieto, Jason P Lynch, et al.Annals of the New York Academy of Sciences|November 17, 2021
Synthetic biology: at the crossroads of genetic engineering and human therapeutics-a Keystone Symposia reportJennifer Cable, Joshua N Leonard, Timothy K Lu, et al.Pageof 1