A Self-Driven Microfluidic Chip for Ricin and Abrin Detection
Автономный микрофлюидный чип для обнаружения рицина и абрина
2022-05-02
SCID: 54.1/pq9cd63r
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MEMS techniquedouble-antibody sandwich immunoassayricin and abrin detectionself-driven microfluidic chipsilicon nanoforest microstructure
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Abstract (AI)
Ricin and abrin are phytotoxins that can be easily used as biowarfare and bioterrorism agents. Therefore, developing a rapid detection method for both toxins is of great significance in the field of biosecurity. In this study, a novel nanoforest silicon microstructure was prepared by the micro-electro-mechanical systems (MEMS) technique; particularly, a novel microfluidic sensor chip with a capillary self-driven function and large surface area was designed. Through binding with the double antibodies sandwich immunoassay, the proposed sensor chip is confirmed to be a candidate for sensing the aforementioned toxins. Compared with conventional immunochromatographic test strips, the proposed sensor demonstrates significantly enhanced sensitivity (≤10 pg/mL for both toxins) and high specificity against the interference derived from juice or milk, while maintaining good linearity in the range of 10-6250 pg/mL. Owing to the silicon nanoforest microstructure and improved homogeneity of the color signal, short detection time (within 15 min) is evidenced for the sensor chip, which would be helpful for the rapid tracking of ricin and abrin for the field of biosecurity.
Key Findings
1
A MEMS-fabricated silicon nanoforest microstructure enables a capillary self-driven microfluidic sensor chip with a large surface area.
2
Detection remains highly specific despite interference from juice or milk and is linear from 10 to 6250 pg/mL.
3
Improved color-signal homogeneity enables detection within 15 minutes, supporting rapid field biosecurity applications.
4
The chip detects both ricin and abrin using a double-antibody sandwich immunoassay format.
5
The sensor achieves sensitivity of ≤10 pg/mL for both toxins, outperforming conventional immunochromatographic test strips.
Research Object
Ricin and abrin toxins detected using a self-driven silicon-nanoforest microfluidic sensor chip
Research Subject
Rapid, sensitive, specific, and linear detection of ricin and abrin using capillary self-driven flow and a double-antibody sandwich immunoassay
Publication Details
Publication Date
2022-05-02
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