Web: https://dx.doi.org/10.17504/protocols.io.yxmvm3r3ol3p/v1
GitHub: https://github.com/Arcadia-Science/arcadia-phenotypeomat-protocol
#DIYbio #lab #instruments #phenotyping #3Dprinted #imaging #LED #Arduino
#Cellphone-based hand-held #MicroPlate reader for point-of-care testing of enzyme-linked immunosorbent assays (#ELISA):
-interesting design
-apparently no #OpenSource building plans
-requires external server
https://doi.org/10.1021/acsnano.5b03203
#DIYbio #lab #instruments #PoC #PlateReader #diagnostics
Low-Cost, 96-well #OpenSource #MicroplateReader with #3Dprinted parts for < 500 USD:
-absorption #spectroscopy
-#ELISA
-cell density mneasurements
-#LabView-based software control
https://doi.org/10.3390/s22093242
#DIYbio #lab #instruments #PlateReader
A 96-well microplate reader for absorption spectroscopy was designed, constructed, and tested at a total cost of ca. 500 USD. The reduced cost of the device represents the major technical contribution of this manuscript, as costs were reduced 7 fold from previous reports. The device was able to achieve 3σ limits of detection of ca. 0.01 absorbance units (AU) over a 60 second measurement for the mid-visible wavelength range. Component parts are either commercially available, or 3D printed from plans. Analysis wavelength can be altered throughout the visible region through use of various photographic or theatrical filters. This feature allows the well plate reader to be used for typical laboratory assays such as cell population estimation by optical density (OD) at 600 nm, or enzyme-linked immunosorbent assays (ELISA) at 450 nm. This manuscript reports on the motivation and process of constructing the device, lists required parts, presents data demonstrating device function, and provides the community of scholars with plans to reproduce the work. The device can be reproduced in laboratories lacking sufficient resources to purchase commercially available options and this outcome contributes towards empowerment of individuals and equity of scientific enquiry.
#optoPlate-96: An #OpenSource #GUI to design high-throughput #optogenetic experiments with the optoPlate-96:
Paper: https://doi.org/10.1038/s41596-020-0349-x
GitHub: https://github.com/WeberSynBioLab/optoConfig-96
#DIYbio #lab #instruments #Python #Arduino #fluorescence #PlateReader #optogenetics
#optoPlate-96: High-throughput multicolor #OpenSource #optogenetics in #microwell #PlateReader format for $600:
Paper: https://doi.org/10.1038/s41596-019-0178-y
Web: https://www.bugajlab.com/optoplate
GitHub: https://github.com/BugajLab/optoPlate-96
#DIYbio #lab #instruments #optics #3Dprinting #fluorescence #PlateReader
#optoPlateReader (#oPR): An #OpenSource #Arduino-controlled #PlateReader that allows #automated #optogenetic stimulation & #spectroscopy in each well of a 96-well plate:
https://doi.org/10.1101/2022.07.13.499906
#DIYbio #biohacking #chemistry #lab #instruments #fluorescence #OD #LED #python #GUI