Aim
This course covers the cutting-edge advances in bio-nanotechnology, exploring the interdisciplinary applications of nanomaterials in biotechnology, medicine, and environmental protection. Participants will gain an in-depth understanding of how bio-nanotechnology is transforming fields such as drug delivery, gene therapy, diagnostics, and bioengineering.
Program Objectives
- Explore the fundamentals of bio-nanotechnology and its integration with modern biotechnology.
- Understand how nanomaterials are being used for targeted drug delivery, gene therapy, and diagnostics.
- Investigate the role of bio-nanotechnology in medical applications, including tissue engineering and regenerative medicine.
- Examine the challenges in scaling up bio-nanotechnology and its potential future directions in medical treatments.
- Gain practical experience through hands-on projects in bio-nanotechnology applications.
Program Structure
Module 1: Introduction to Bio-Nanotechnology
- Overview of bio-nanotechnology and its role in the biotechnology and pharmaceutical industries.
- Key concepts in nanomaterials, including nanoparticles, nanocarriers, and biomolecular interactions.
- Understanding the significance of bio-nanotechnology in drug delivery, diagnostics, and therapy.
Module 2: Nanoparticles in Drug Delivery and Gene Therapy
- Design and synthesis of nanoparticles for efficient drug delivery to target cells and tissues.
- Exploring the principles behind targeted drug delivery: passive vs active targeting.
- Utilizing nanocarriers for gene therapy and gene editing applications such as CRISPR.
Module 3: Bio-Nanotechnology in Medical Diagnostics
- Exploring how nanotechnology is revolutionizing diagnostic tools and equipment.
- Case studies on nanobiosensors for early disease detection and monitoring.
- Innovative applications of nanoparticles in imaging technologies and lab-on-a-chip devices.
Module 4: Nanobiomaterials in Tissue Engineering
- Using nanomaterials to create scaffolds for tissue regeneration and engineering.
- How nanotechnology is improving biocompatibility and tissue integration in implants.
- Case studies on the use of nanostructures in bone, skin, and cartilage regeneration.
Module 5: Bio-Nanotechnology in Environmental Applications
- Exploring the use of bio-nanotechnology for environmental protection and pollution control.
- Applications in water purification, waste management, and renewable energy.
- Case studies on nanomaterial-based solutions for detecting and removing environmental pollutants.
Module 6: Regulatory Challenges in Bio-Nanotechnology
- Understanding the regulatory landscape for bio-nanotechnology in medical and environmental applications.
- Exploring the challenges in ensuring safety, biocompatibility, and toxicity testing for nanomaterials.
- Case studies on the approval processes and clinical trials for bio-nanotechnology-based products.
Module 7: Ethical, Environmental, and Social Implications of Bio-Nanotechnology
- Exploring the ethical issues surrounding the use of nanotechnology in human health and the environment.
- Addressing the social implications of widespread use of nanomaterials in everyday life.
- Environmental risks and the lifecycle of bio-nanotechnologies: sustainability concerns.
Module 8: Future Trends in Bio-Nanotechnology
- Emerging trends in nanomedicine and bioengineering: multi-functional nanomaterials and smart systems.









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