6 Bio-microelectromechanical Systems (BioMEMS) …
131
Table 6.1
(continued)
BioMEMS platform
Main components
Fabrication strategy
Mechanisms of operation Detected analyte
Specifics
References
Microfluidic CL
immunoassay
• PMMA
• Double-sided adhesive
The production of the
microfluidic chips was
accomplished by a laser
cutting combined with
hot-pressing. First, the
back of the 1 mm and
2 mm PMMA board was
pasted with double-sided
adhesive. Laser cutting
machine was used to cut
the different shape of
microchannels in different
layers of the chip. A
hot-pressing machine was
used to bond the platform
The reagents were
pre-loaded to the liquid
storage chamber of the
chip, and the vacuum
suction cups were used to
move the samples. The
CL immunoassay was
conducted and the signals
were recorded and
processed inside the
instrument
Ferritin
The microfluidic chips
were disposable,
self-contained, and had a
high production volume
Min et al. (2018)
(continued)
131
Table 6.1
(continued)
BioMEMS platform
Main components
Fabrication strategy
Mechanisms of operation Detected analyte
Specifics
References
Microfluidic CL
immunoassay
• PMMA
• Double-sided adhesive
The production of the
microfluidic chips was
accomplished by a laser
cutting combined with
hot-pressing. First, the
back of the 1 mm and
2 mm PMMA board was
pasted with double-sided
adhesive. Laser cutting
machine was used to cut
the different shape of
microchannels in different
layers of the chip. A
hot-pressing machine was
used to bond the platform
The reagents were
pre-loaded to the liquid
storage chamber of the
chip, and the vacuum
suction cups were used to
move the samples. The
CL immunoassay was
conducted and the signals
were recorded and
processed inside the
instrument
Ferritin
The microfluidic chips
were disposable,
self-contained, and had a
high production volume
Min et al. (2018)
(continued)
