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Analytical technologies & facilities

Analytical Technologies & Facilities

The institute's analytical infrastructure brings together separation sciences, molecular detection, mass analysis, quantitative molecular biology and experimental bioanalysis. Instrument selection and methodological configuration are determined by analytical objectives, sample properties, measurement requirements and the scientific question under investigation.

  1. Liquid Chromatography

    High-performance and ultra-high-performance separation methodologies, ultraviolet and diode-array detection, chromatographic purity analysis, gradient separations and method-specific analytical profiling.

    principal componentrelatedimpurityChromatographic profileRetention time (min)Absorbance (mAU)Illustrative
  2. Mass Spectrometry

    Electrospray ionization, time-of-flight mass analysis, quadrupole-assisted analysis, ion-trap fragmentation, tandem mass spectrometry and matrix-assisted laser desorption/ionization, where configured.

    z=4z=3z=2z=1Mass spectrumm/zRelative intensityIllustrative
  3. Molecular Interaction Analysis

    Surface-based or solution-phase binding methodologies, equilibrium affinity analysis, kinetic interaction measurement and ligand competition assays.

    associationdissociationInteraction sensorgramTime (s)Response (RU)Illustrative
  4. Molecular Biology & Gene Expression

    Quantitative polymerase chain reaction, reverse-transcription workflows, nucleic-acid detection, comparative gene-expression analysis and array-based molecular investigation.

    g1g2g3g4g5g6g7g8Relative expressionSelected geneslog2 fold changeIllustrative
  5. Proteomic & Multiplex Bioanalysis

    Multiplex bead-based assays, targeted protein measurement, cytokine and growth-factor profiling, immunochemical analysis and selected protein-characterization workflows.

    Protein abundancelog2 ratio (treated / control)−log10 pIllustrative
  6. Cellular & Functional Assays

    Cell-based pharmacological investigations, receptor-associated signalling, functional response measurements and experimental biological activity assessment.

    three concentrationsSignalling responseTime after addition (min)Response (assay units)Illustrative
  7. Stability & Physicochemical Analysis

    Stability-indicating chromatographic methods, degradation investigations, environmental stress studies, moisture determination and other appropriate physicochemical measurements.

    three storage conditionsIntegrity over timeTime (weeks)Principal component (%)Illustrative

Technology descriptions are method-focused. No equipment manufacturer names, commercial model numbers or purchased-instrument logos appear in the institute's public copy; figures are illustrative.