微流控
抗生素
生物医学工程
纳米技术
细菌
微生物学
炸薯条
材料科学
医学
晶体管
临床实习
生物
选择(遗传算法)
计算机科学
嵌入式系统
硅
作者
Zheqiang Xu,Victoria C. Nolan,Yingtao Yu,Petra Muir,Sanna Koskiniemi,Zhen Zhang
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2026-07-31
卷期号:12 (31): eaeb2880-eaeb2880
标识
DOI:10.1126/sciadv.aeb2880
摘要
Rapid antibiotic susceptibility tests (ASTs) are essential for quick selection of effective drugs to treat infections at an early stage. However, the most widely used phenotypic ASTs in clinical practice often require 24 to 48 hours of pre-culture enrichment and 4 to 20 hours of testing. They are too slow to guide therapy, even with the most rapid protocol. Here, we report a lab-on-a-silicon chip (LOSC) system, which integrates arrays of silicon nanowire field-effect transistor (SiNWFET) sensors with high-throughput cell-collection microfluidics for rapid ASTs. The microfluidics concentrate bacteria into picoliter-scale chambers within minutes, eliminating the need for pre-cultivation. Embedded SiNWFETs sensitively track antibiotic-induced metabolic pH shifts, enabling AST by detecting rapid metabolic inhibition in susceptible bacteria. Using an unbuffered culturing medium, LOSC achieves sample-to-result times within 20 minutes for clinically isolated uropathogenic Escherichia coli strains. With its electrical readout and compact design, LOSC offers a low-cost, rapid, and portable AST solution for point-of-care diagnostics.
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