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Unveiling the Secrets of Cellular Genetic Code
Master Molecular Analysis & Multi-Omics Protocols

From pure total RNA extraction to quantification of relative quantitative gene expression using Real-Time PCR (RT-qPCR). Perfect your bioinformatics computational skills and biomolecular wet-lab skills under the ecosystem OMICverse


Unveiling the Secrets of Cellular Genetic Code
Master Molecular Analysis & Multi-Omics Protocols

From pure total RNA extraction to quantification of relative quantitative gene expression using Real-Time PCR (RT-qPCR). Perfect your bioinformatics computational skills and biomolecular wet-lab skills under the ecosystem OMICverse


Explore Molecular Study Classes

Molecular Studies

In the era of precision medicine and modern biotechnology, proving the efficacy of an active compound is no longer sufficient to be seen only from the external physical changes of the organism. The global pharmaceutical industry and high-reputation scientific journals demand proof down to the deepest molecular level: "How does the active compound affect DNA strand transcription, regulate target gene expression, and map cellular metabolite fingerprints?"

However, working with invisible genetic material demands extraordinarily high motor precision and valid computational understanding. Many analysts and students face critical barriers in the laboratory:

  • Results of total RNA extraction that are dirty and degraded due to environmental RNase enzyme contamination.

  • Biased PCR primer sequence design that amplifies non-specific areas (high noise).

  • Inability to translate threshold cycle values (threshold cycle / Ct) becomes valid quantitative gene expression data using statistical calculations.

EBM Institute serves as a bridge to your biomolecular competencies. Through the integration of bioinformatics class modules (dry-lab) and certified wet-lab we train you to master the entire gene expression analysis workflow independently. Using our modern laboratory facilities, each participant is directly guided until they are completely confident in executing global standard biomolecular protocols.





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