New Year Offer End Date: 30th April 2024
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Program

AI in Precision Medicine: Optimizing Nanomedicine for Targeted Therapy

Advancing Targeted Therapy with AI-Optimized Nanomedicine for Precision Healthcare

Skills you will gain:

About Program:

The integration of AI with nanomedicine is revolutionizing precision medicine by allowing for the design of nanomaterials that can target specific disease cells with high precision. This workshop covers the principles of AI in drug design, particularly in the development of nanomaterials that can be tailored for individual patients. AI algorithms, such as machine learning and deep learning, are now used to predict how nanomedicines interact with cells, tissues, and organs.
The workshop will cover a range of topics, including the role of AI in designing nanoparticles for targeted drug delivery, improving drug efficacy, minimizing side effects, and personalizing treatment regimens. Participants will also gain hands-on experience with AI-based tools for optimizing nanomedicine, including case studies in cancer, cardiovascular diseases, and neurological disorders.

Aim: This workshop aims to explore the intersection of AI and precision medicine in optimizing nanomedicine for targeted therapy. Participants will learn how AI can be used to design and personalize nanomaterials for specific therapeutic targets, improving the effectiveness and safety of treatments. The focus will be on how AI can enhance the development of precision therapies using nanotechnology for improved patient outcomes.

Program Objectives:

  • Understand the role of AI in optimizing nanomedicine for precision therapy.
  • Learn how AI algorithms are used to design personalized nanomaterials for drug delivery.
  • Gain practical experience in using AI tools for nanomedicine development.
  • Understand the challenges and opportunities of AI in personalized medicine.
  • Explore case studies in cancer therapy, cardiovascular diseases, and neurological treatments.

What you will learn?

Day 1 – AI for Personalized Nanomedicine Development

  • Overview of personalized medicine and the role of nanotechnology in targeted therapy
  • AI algorithms for patient-specific nanomedicine optimization
  • Case study: AI in optimizing nanoparticle biodistribution in personalized cancer therapy
  • Data sources for AI in precision medicine

Day 2 – AI for Tumor-Specific Nanomedicine Design

  • AI techniques for predicting tumor microenvironment interaction with nanoparticles
  • Machine learning models for biomarker-driven therapy selection
  • Demonstration: Using AI to optimize drug delivery for specific cancer types
  • Personalized medicine and nanomedicine clinical translation

Day 3 – Clinical Applications & Ethical Considerations in AI-Nanomedicine

  • Future applications in gene therapy and immunotherapy using AI-nanomedicine
  • Ethical considerations in AI-driven personalized nanomedicine
  • Regulatory challenges in commercializing AI-powered personalized therapies
  • Capstone Discussion: Design a clinical trial plan for AI-nanomedicine therapy

Mentor Profile

Prof. Kumud Malhotra Professor & Dean Others
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Fee Plan

INR 1999 /- OR USD 50

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Intended For :

  • Undergraduate/postgraduate degree in Nanotechnology, Biotechnology, Bioinformatics, Pharmaceutical Sciences, or related fields.
  • Professionals in healthcare, pharma, diagnostics, oncology, and personalized medicine sectors.
  • Data scientists and AI/ML engineers interested in applying AI in medical nanotechnology.
  • Individuals with an interest in the application of AI in precision medicine and nanomedicine development.

Career Supporting Skills

Program Outcomes

  • Ability to design and optimize nanomedicines for targeted therapy using AI tools.
  • Practical understanding of how AI can personalize treatments based on patient-specific data.
  • Knowledge of AI-based algorithms for improving the efficacy and safety of nanomedicines.
  • Familiarity with the regulatory and clinical challenges of applying AI in precision medicine.
  • Insights into the future of nanomedicine and AI in personalized healthcare