August 31, 2026

Registration closes August 31, 2026

Mentor Based

iPSC, Organoids, Microphysiology & Organ-on-Chip: Experimental Design, Validation & Drug Testing

From Stem Cells to Human-Relevant Models: Design, Validate and Interpret iPSC, Organoid & Organ-on-Chip Experiments

  • Mode: Virtual / Online
  • Type: Mentor Based
  • Level: Moderate
  • Duration: 3 Days
  • Starts: 31 August 2026
  • Time: 5:00 PM IST

About This Course

This 3-day live virtual workshop introduces advanced human-relevant in-vitro models used in disease modeling, drug discovery, toxicology and translational research.

Participants will learn how iPSC-derived models progress from 2D cell systems to spheroids, organoids and dynamic microphysiological/organ-on-chip platforms. Guided hands-on cases will help participants evaluate model quality, analyze experimental data and design reliable follow-up experiments.

Aim

To provide participants with a practical understanding of iPSC, spheroid, organoid, microphysiology and organ-on-chip experimental workflows, with emphasis on experimental design, quality control, validation, troubleshooting and drug-response interpretation.

Workshop Objectives

  • Understand iPSC culture, differentiation and quality-control workflows
  • Design healthy, disease and isogenic experimental groups
  • Understand spheroid and organoid development and maturation
  • Evaluate morphology, viability and molecular-marker data
  • Understand tissue microphysiology, barriers, gradients and mechanical forces
  • Design MPS and organ-on-chip experiments
  • Interpret TEER, permeability, viability and biomarker readouts
  • Identify experimental failures, variability and technical artefacts
  • Compare 2D, organoid and MPS models for different research applications
  • Apply reproducibility and validation principles to experimental studies

Workshop Structure

Day 1: iPSC Experimental Design & Quality Control

  • iPSC workflow and research applications
  • Culture systems, matrices and passaging
  • Morphology, pluripotency and genomic QC
  • Healthy, disease and isogenic controls
  • Replicates, batch effects and experimental endpoints
  • Common culture failures and troubleshooting

Hands-On: Evaluate iPSC morphology and marker data; design an iPSC disease-model experiment.

Tools: Google Colab, microscopy images, iPSC QC dataset

Day 2: Spheroid & Organoid Development and Validation

  • 2D vs spheroid vs organoid models
  • Spheroid generation and culture parameters
  • Organoid differentiation, organization and maturation
  • Tissue-specific organoid models
  • Morphology, viability and marker-based validation
  • Variability, reproducibility and experimental failure

Hands-On: Analyze spheroid/organoid images and validation data; classify successful and failed conditions.

Tools: Fiji/ImageJ, microscopy dataset, organoid QC data

Day 3: Microphysiology, MPS & Organ-on-Chip Drug Testing

  • Fundamentals of human tissue microphysiology
  • Cell–cell, tissue–tissue and microenvironment interactions
  • Physiological gradients, barriers, mechanical forces and fluid flow
  • Microphysiological Systems (MPS) and organ-on-chip principles
  • Chip configuration, perfusion and shear-stress parameters
  • TEER, permeability, viability and biomarker readouts
  • Drug efficacy, toxicity and translational applications
  • MPS validation, troubleshooting and reproducibility

Hands-On: Analyze a virtual MPS/organ-on-chip drug-response experiment and design an optimized study.

Tools: Google Colab, Python, pandas, Matplotlib

Who Should Enrol?

  • Undergraduate & Postgraduate Students — Biotechnology, Life Sciences, Biomedical Sciences, Bioengineering, Pharmacy and related disciplines
  • PhD Scholars & Researchers — Stem cells, tissue engineering, organoids, toxicology, pharmacology and disease modeling
  • Faculty & Academicians — Teaching or conducting research in advanced cell and tissue models
  • Pharma & Biotechnology Professionals — Drug discovery, preclinical research, assay development and translational biology
  • CRO & R&D Professionals — Human-relevant models, toxicology and preclinical testing

Important Dates

Registration Ends

August 31, 2026
IST 4:30 PM

Workshop Dates

August 31, 2026 – September 2, 2026
IST 5:00 PM

Workshop Outcomes

  • Design an iPSC-based disease-model experiment
  • Evaluate iPSC quality and experimental suitability
  • Assess spheroid and organoid development and validation
  • Interpret microscopy, viability and marker-expression results
  • Explain key principles of human tissue microphysiology
  • Understand flow, shear stress and barrier functions in MPS
  • Analyze organ-on-chip drug-response datasets
  • Distinguish biological effects from technical problems
  • Select appropriate controls, replicates and experimental endpoints
  • Decide whether an experiment should proceed, be optimized or be repeated
  • Design an improved follow-up experiment based on the results

Fee Structure

Student Fee

₹1999 | $65

Ph.D. Scholar / Researcher Fee

₹2999 | $75

Academician / Faculty Fee

₹3999 | $85

Industry Professional Fee

₹5999 | $105

What You’ll Gain

  • Live & recorded sessions
  • e-Certificate upon completion
  • Post-workshop query support
  • Hands-on learning experience

Need Help?

We’re here for you!


(+91) 120-4781-217

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