5 Bio-microelectromechanical Systems (BioMEMS) in Bio-sensing …
121
Comina G, Suska A, Filippini D (2015b) 3D printed unibody lab-on-a-chip: features survey and
check-valves integration. Micromachines 6(4):437–451. https://doi.org/10.3390/mi6040437
Comina G, Suska A, Filippini D (2015a) Autonomous chemical sensing interface for universal
cell phone readout. Angew Chemie Int Ed 54(30):8708–8712. https://doi.org/10.1002/anie.201
503727
Dong T, Zhao X (2015) Rapid identification and susceptibility testing of uropathogenic microbes via
immunosorbent ATP-bioluminescence assay on a microfluidic simulator for antibiotic therapy.
Anal Chem 87(4):2410–2418. https://doi.org/10.1021/ac504428t
Drami´ canin M (2018) Luminescence thermometry: methods, materials, and applications
Erzinger GS et al (2017) Bioluminescence systems in environmental biosensors. In Bioassays:
advanced methods and applications. Elsevier pp 242–262
Honrado C, Dong T (2014) A Capacitive touch screen sensor for detection of urinary tract infections
in portable biomedical devices. Sensors 14(8):13851–13862. https://doi.org/10.3390/s140813851
Lee W et al (2015) 3D-Printed micro fluidic device for the detection of pathogenic bacteria using
size-based separation in helical channel with trapezoid cross-section. Sci Rep 5. https://doi.org/
10.1038/srep07717
Osamu S (2006) Bioluminescence: chemical principles and methods
Santangelo MF, Libertino S, Turner APF, Filippini D, Mak WC (2018) Integrating printed microfluidics with silicon photomultipliers for miniaturised and highly sensitive ATP bioluminescence
detection. Biosens Bioelectron 99:464–470. https://doi.org/10.1016/j.bios.2017.07.055
Wilson T, Hastings JW (1998) Bioluminescence CA130:120952. 14:197–230. https://doi.org/10.
1146/annurev.cellbio.14.1.197
Yeh H-W, Ai H-W (2019) Development and Applications of Bioluminescent and Chemiluminescent
Reporters and Biosensors. Annu Rev Anal Chem 12(1):129–150. https://doi.org/10.1146/ann
urev-anchem-061318-115027
121
Comina G, Suska A, Filippini D (2015b) 3D printed unibody lab-on-a-chip: features survey and
check-valves integration. Micromachines 6(4):437–451. https://doi.org/10.3390/mi6040437
Comina G, Suska A, Filippini D (2015a) Autonomous chemical sensing interface for universal
cell phone readout. Angew Chemie Int Ed 54(30):8708–8712. https://doi.org/10.1002/anie.201
503727
Dong T, Zhao X (2015) Rapid identification and susceptibility testing of uropathogenic microbes via
immunosorbent ATP-bioluminescence assay on a microfluidic simulator for antibiotic therapy.
Anal Chem 87(4):2410–2418. https://doi.org/10.1021/ac504428t
Drami´ canin M (2018) Luminescence thermometry: methods, materials, and applications
Erzinger GS et al (2017) Bioluminescence systems in environmental biosensors. In Bioassays:
advanced methods and applications. Elsevier pp 242–262
Honrado C, Dong T (2014) A Capacitive touch screen sensor for detection of urinary tract infections
in portable biomedical devices. Sensors 14(8):13851–13862. https://doi.org/10.3390/s140813851
Lee W et al (2015) 3D-Printed micro fluidic device for the detection of pathogenic bacteria using
size-based separation in helical channel with trapezoid cross-section. Sci Rep 5. https://doi.org/
10.1038/srep07717
Osamu S (2006) Bioluminescence: chemical principles and methods
Santangelo MF, Libertino S, Turner APF, Filippini D, Mak WC (2018) Integrating printed microfluidics with silicon photomultipliers for miniaturised and highly sensitive ATP bioluminescence
detection. Biosens Bioelectron 99:464–470. https://doi.org/10.1016/j.bios.2017.07.055
Wilson T, Hastings JW (1998) Bioluminescence CA130:120952. 14:197–230. https://doi.org/10.
1146/annurev.cellbio.14.1.197
Yeh H-W, Ai H-W (2019) Development and Applications of Bioluminescent and Chemiluminescent
Reporters and Biosensors. Annu Rev Anal Chem 12(1):129–150. https://doi.org/10.1146/ann
urev-anchem-061318-115027
