
Australia: Deployable mobile laboratory for remote COVID-19 diagnosis
Open-platform mobile laboratory for remote COVID-19 diagnosis using MYRA for sample processing and MIC for RT-qPCR

Canada & India: P125 residue reduces Si permeability in tobacco plants
Gene expression analysis on the P125F substitution in NsLsi1 indicate that this unique reside reduces Si permeability in tobacco

Poland: Down regulation of PARP1 transcription in monocytes is controlled by cell cycle
Gene expression performed on the Mic qPCR Cycler shows down regulation of PARP1 transcription leads to repression of pluripotent transcription factors in human monocytes.

Serbia: Real-time PCR detection of R. solani AG-2-2
A rapid real-time PCR detection of R. solani AG-2-2, the causal agent of root rot in sugar beet. The Mic qPCR Cycler performs the same protocol as a conventional PCR in 1/4 of the time.

France: On-site screening of archaeological samples for DNA analysis.
The light-weight and portable size of the Mic qPCR Cycler allows on-site real time PCR analysis of the mitochondrial DNA of six animal species in archaeological samples

Israel & Singapore: Dual-targeted fumarase evolved before its dual location in eukaryotes
Gene expression analysis using Mic qPCR Cycler on fumarase activity demonstrates that it plays a role in DNA damage response as well as metabolism and aerobic respiration of cells.

Germany: Stem cells in cholesteatoma are cellular mediators of its highly pro-inflammatory environment
Gene expression analysis was performed on Mic qPCR Cycler to determine the cellular mediators of the cholesteatoma cells and its highly pro-inflammatory environment

Germany & UK: Novel molecular approach for identification of toxicity in microbial community compositions during algal blooms in water reservoirs
qPCR and next generation using used to identify potential microcystin-producing species present during algal blooms in water reservoirs

Switzerland & France: Transcript profiling of arbuscular mycorrhiza in Petunia hybrida
Transcript profiling shows that RAM1 plays a role in late stages of transcriptional reprogramming of arbuscular mycorrhiza in Petunia hybrida
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