An Allee-based distributed algorithm for microbial whole-cell sensors

被引:0
|
作者
Cravo, Fabricio [1 ,2 ]
Fugger, Matthias [1 ]
Nowak, Thomas [1 ,3 ]
机构
[1] Univ Paris Saclay, LMF, CNRS, ENS Paris Saclay, Gif Sur Yvette, France
[2] Univ Paris Saclay, LISN, CNRS, Gif Sur Yvette, France
[3] Inst Univ France, Paris, France
关键词
IN-VIVO; QUORUM; PREDATION; CANCER;
D O I
10.1038/s41540-024-00363-3
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Reliable detection of substances present at potentially low concentrations is a problem common to many biomedical applications. Complementary to well-established enzyme-, antibody-antigen-, and sequencing-based approaches, so-called microbial whole-cell sensors, i.e., synthetically engineered microbial cells that sense and report substances, have been proposed as alternatives. Typically these cells operate independently: a cell reports an analyte upon local detection.In this work, we analyze a distributed algorithm for microbial whole-cell sensors, where cells communicate to coordinate if an analyte has been detected. The algorithm, inspired by the Allee effect in biological populations, causes cells to alternate between a logical 0 and 1 state in response to reacting with the particle of interest. When the cells in the logical 1 state exceed a threshold, the algorithm converts the remaining cells to the logical 1 state, representing an easily-detectable output signal. We validate the algorithm through mathematical analysis and simulations, demonstrating that it works correctly even in noisy cellular environments.
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页数:9
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