About Workshop
Aim
What Participants Will Learn
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Understand the role of nanobiotechnology and AI in cancer theranostics.
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Learn to design AI-driven nanoparticles for targeted cancer therapy and diagnosis.
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Gain hands-on experience in developing models for nanoparticle optimization using AI.
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Understand the integration of smart nanomaterials in personalized cancer treatment.
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Explore real-world applications of AI in cancer imaging, diagnostics, and therapy.
Structure
- Concept of theranostics (therapy + diagnostics)
- Role of nanotechnology in targeted drug delivery & imaging
- AI-assisted cancer diagnosis from nano-enabled imaging modalities
- Case study: AI in nanoparticle-based photothermal therapy
- Predictive models for tumor targeting efficiency
- AI-based image analysis for treatment planning
- Demo: Using AI to classify tumor imaging data
- Integrating patient-specific parameters into nanoparticle design
- Regulatory and clinical trial landscape for AI-nanotheranostics
- Investment and commercialization opportunities
- Capstone Discussion: Drafting a research-to-clinic roadmap for AI-cancer nanotherapy
Important Dates
Registration Ends
Workshop Dates
What You Will Gain

Outcomes
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Ability to design AI-assisted nanomaterials for targeted cancer therapy.
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Understanding of how AI can optimize the efficacy of nanoparticles in oncology.
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Knowledge of how to apply nanobiotechnology in the early detection and treatment of cancer.
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Hands-on experience with AI models for designing nanoparticles and optimizing drug delivery.
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Understanding of the integration of nanotechnology and AI in personalized cancer therapy.
Who Should Attend
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Undergraduate/postgraduate degree in Nanotechnology, Biotechnology, Bioinformatics, Molecular Biology, or related fields.
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Professionals in healthcare, pharma, diagnostics, and medical research sectors.
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Data scientists and AI/ML engineers with an interest in applying their skills to nanobiotechnology and oncology.
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Individuals passionate about cancer research, precision medicine, and innovative drug delivery systems.
