Workshop Registration End Date :15 Oct 2026

Virtual Workshop

AI-Guided CRISPR/Cas9 Delivery: Nanoparticles for Non-Viral Gene Editing

From Guide RNA Design to Smart Nanoparticle Delivery — Use AI to Optimize Non-Viral CRISPR/Cas9 Gene-Editing Systems.

Skills you will gain:

About Workshop:

This 3-day virtual hands-on workshop introduces participants to the integration of CRISPR/Cas9 gene editing, non-viral nanoparticle delivery, and AI-based formulation optimization. Participants will learn how to design and evaluate guide RNAs, explore nanoparticle and molecular properties, build AI-ready delivery datasets, and use machine learning to predict gene-delivery performance and interpret key formulation parameters.

Aim:

The aim of this workshop is to equip participants with practical knowledge of CRISPR/Cas9 target design, nanoparticle-based non-viral delivery, and AI-assisted delivery optimization for gene-editing applications.

Workshop Objectives:

  • Understand CRISPR/Cas9 editing principles and major non-viral delivery strategies.
  • Design and evaluate guide RNAs using computational CRISPR tools.
  • Explore nanoparticle composition, physicochemical properties, and cargo-delivery mechanisms.
  • Build machine-learning models for predicting CRISPR delivery performance.
  • Apply explainable AI to identify formulation parameters influencing efficiency and safety.

What you will learn?

📅 Day 1: CRISPR/Cas9 Target Design, Guide RNA Selection & Off-Target Analysis

  • CRISPR/Cas9 mechanism, sgRNA design, PAM recognition, and gene-editing applications
  • Principles of guide-RNA selection and on-target efficiency
  • GC content, specificity, and guide-quality metrics
  • Off-target prediction and genome-editing safety
  • Comparative use of CRISPOR and CHOPCHOP
  • Selection of high-quality guides for therapeutic delivery

🛠️ Hands-on:

  • Select a target gene
  • Design guide RNAs using CRISPOR
  • Compare guide candidates using CHOPCHOP
  • Evaluate on-target and off-target scores
  • Rank guide RNAs for nanoparticle delivery

🧰 Tools Covered:

CRISPOR, CHOPCHOP, genomic sequence resources, and guide-ranking templates


📅 Day 2: Nanoparticle Design for Non-Viral CRISPR Delivery

  • Viral versus non-viral CRISPR delivery
  • Delivery of DNA, mRNA, sgRNA, and Cas9 RNPs
  • Lipid, polymeric, hybrid, and inorganic nanoparticle systems
  • Particle size, surface charge, composition, stability, and cargo loading
  • Cellular uptake, endosomal escape, and targeted delivery
  • Cytotoxicity, immune response, and biocompatibility
  • Structure–property relationships for CRISPR nanocarriers
  • Preparation of formulation data for AI modelling

🛠️ Hands-on:

  • Retrieve nanoparticle-related molecular data from PubChem
  • Generate descriptors and fingerprints using RDKit
  • Combine molecular and formulation properties
  • Visualise structure–property relationships
  • Prepare an AI-ready nanoparticle formulation dataset

🧰 Tools Covered:

PubChem, RDKit, Google Colab, Python, pandas, NumPy, Matplotlib, and formulation datasets


📅 Day 3: AI Prediction, Explainable Optimization & CRISPR Delivery Prioritization

  • Machine learning for nanoparticle formulation screening
  • Delivery-efficiency and safety prediction
  • Feature engineering for molecular and formulation parameters
  • Random Forest and XGBoost modelling
  • Model validation and performance evaluation
  • Explainable AI using SHAP
  • Identification of key drivers of delivery efficiency and toxicity
  • Multi-parameter formulation prioritization
  • Translational considerations in non-viral CRISPR delivery

🛠️ Hands-on:

  • Train an XGBoost model for delivery-performance prediction
  • Evaluate predictive accuracy
  • Interpret important features using SHAP
  • Compare nanoparticle candidates by predicted efficiency and safety
  • Integrate guide-RNA quality with formulation performance
  • Rank CRISPR delivery candidates for further validation

🧰 Tools Covered:

Google Colab, Python, RDKit, XGBoost, SHAP, pandas, scikit-learn, Matplotlib, and formulation-ranking templates

Mentor Profile

Fee Plan

StudentINR 2199/- OR USD 59
Ph.D. Scholar / ResearcherINR 3199/- OR USD 74
Academician / FacultyINR 4499/- OR USD 89
Industry ProfessionalINR 5999/- OR USD 109

Important Dates

Registration Ends
15 Oct 2026 Indian Standard Timing 4: 30 PM
Workshop Dates
15 Oct 2026 to
17 Oct 2026  Indian Standard Timing 5:30 PM

Get an e-Certificate of Participation!

Intended For :

  • Graduate and Postgraduate Students in Biotechnology, Nanotechnology, Genetics, Molecular Biology, Bioinformatics, Biomedical Sciences, Pharmaceutical Sciences, and related disciplines
  • PhD Scholars and Researchers working in CRISPR/Cas systems, gene therapy, nanomedicine, drug/gene delivery, biomaterials, or computational biology
  • Academicians and Faculty Members interested in genome engineering, nanobiotechnology, translational research, and AI-assisted therapeutic development
  • Industry Professionals from biotechnology, pharmaceutical, gene-therapy, nanomedicine, formulation, preclinical R&D, and AI/ML drug-development teams
  • Basic knowledge of molecular biology or biotechnology is recommended; prior experience with CRISPR, Python, or machine learning is helpful but not mandatory

Career Supporting Skills

Workshop Outcomes

  • Explain the CRISPR/Cas9 editing mechanism and major delivery challenges.
  • Design and compare guide RNAs using CRISPOR and CHOPCHOP.
  • Assess on-target efficiency and predicted off-target effects.
  • Understand major nanoparticle systems used for non-viral CRISPR delivery.
  • Evaluate formulation properties influencing cellular uptake and cargo delivery.
  • Retrieve molecular information from PubChem.
  • Generate molecular descriptors using RDKit.
  • Prepare AI-ready nanoparticle formulation datasets.
  • Train XGBoost models for delivery-performance prediction.
  • Evaluate predictive models using appropriate performance metrics.

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FREEDOM TO LEARN • 10% OFF All Courses & Workshops • Use Code: NANOINDIA10 • ⏳ Offer Ends In: Loading... • Learn Today. Lead Tomorrow. • Explore Programs →
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