SCB-Tech Tutorials

Transforming Precision Medicine

Advanced molecular diagnostics using proprietary magnetic nanoparticle technology to isolate exosomes, DNA, RNA, lncRNA, fusion genes, and biomarkers for early disease detection.

Close-up of a microcentrifuge tube with a magnetic separation column, showing a researcher's gloved hand, clean clinical photography, bright high-key laboratory lighting, sterile white and light-blue tones, macro depth of field, 50mm.
Close-up of a microcentrifuge tube with a magnetic separation column, showing a researcher's gloved hand, clean clinical photography, bright high-key laboratory lighting, sterile white and light-blue tones, macro depth of field, 50mm.
Researcher in cleanroom attire operating a precision pipette over microcentrifuge tubes, clean clinical photography, bright high-key laboratory lighting, sterile white and light-blue tones, macro depth of field, 50mm.
Researcher in cleanroom attire operating a precision pipette over microcentrifuge tubes, clean clinical photography, bright high-key laboratory lighting, sterile white and light-blue tones, macro depth of field, 50mm.
3D render of spherical magnetic nanoparticles binding to lipid-bilayer exosomes, with blue glowing particles, clean clinical photography, bright high-key laboratory lighting, sterile white and light-blue tones, macro depth of field, 50mm.
3D render of spherical magnetic nanoparticles binding to lipid-bilayer exosomes, with blue glowing particles, clean clinical photography, bright high-key laboratory lighting, sterile white and light-blue tones, macro depth of field, 50mm.
Molecular network graphics with blue glowing particles, representing a high-tech biotechnology laboratory atmosphere, clean clinical photography, bright high-key laboratory lighting, sterile white and light-blue tones, macro depth of field, 50mm.
Molecular network graphics with blue glowing particles, representing a high-tech biotechnology laboratory atmosphere, clean clinical photography, bright high-key laboratory lighting, sterile white and light-blue tones, macro depth of field, 50mm.
Laboratory scene with qPCR machine and fluorescent wells, clean clinical photography, bright high-key laboratory lighting, sterile white and light-blue tones, macro depth of field, 50mm.
Laboratory scene with qPCR machine and fluorescent wells, clean clinical photography, bright high-key laboratory lighting, sterile white and light-blue tones, macro depth of field, 50mm.
Western blot gel with protein bands, under laboratory lighting, clean clinical photography, bright high-key laboratory lighting, sterile white and light-blue tones, macro depth of field, 50mm.
Western blot gel with protein bands, under laboratory lighting, clean clinical photography, bright high-key laboratory lighting, sterile white and light-blue tones, macro depth of field, 50mm.
Close-up of a chromatography column for protein purification in a sterile laboratory setting, clean clinical photography, bright high-key laboratory lighting, sterile white and light-blue tones, macro depth of field, 50mm.
Close-up of a chromatography column for protein purification in a sterile laboratory setting, clean clinical photography, bright high-key laboratory lighting, sterile white and light-blue tones, macro depth of field, 50mm.
Viral packaging laboratory setup with bioreactors and sterile containers, clean clinical photography, bright high-key laboratory lighting, sterile white and light-blue tones, macro depth of field, 50mm.
Viral packaging laboratory setup with bioreactors and sterile containers, clean clinical photography, bright high-key laboratory lighting, sterile white and light-blue tones, macro depth of field, 50mm.

Protocol Video Library

Access our comprehensive video tutorials for step-by-step guidance on advanced molecular biology techniques and nanoparticle workflows.

DNA Extraction from Blood

RNA Extraction from Blood

Exosome Isolation

Nanoparticle Workflow

qPCR Tutorial

Western Blot Tutorial

Protein Purification

Virus Packaging Workflow

Rigorous Science

Our protocols are written by researchers who have spent decades at Johns Hopkins and Rochester, designed to work flawlessly on the first run.

SCB-Tech Scientific Team