Cell and Gene therapy Internship Task Portal Access (Portal 02 )
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Hi Interns ,
Welcome to the Internship Task Portal
Here you will get all the intimations regarding your tasks , sessions , assignments and any updated briefing .
(The information and content provided in this portal is purely confidential and is under protected surveillance by the technical support team.)
🧬 Cell and Gene Therapy – Internship Update
The Cell and Gene Therapy Internship is designed to help students build strong foundations in modern biotechnology while applying concepts to real-world therapeutic and clinical applications. This program focuses on combining theoretical knowledge with practical understanding of advanced biomedical technologies such as gene editing, stem cell therapy, immunotherapy, molecular biology, and regenerative medicine.
Throughout the internship, participants will:
- Learn the fundamentals of cell and gene therapy
- Understand DNA/RNA technologies and genetic engineering concepts
- Explore stem cell culture, CRISPR, and gene delivery methods
- Study applications of cell therapy in disease treatment and regenerative medicine
- Gain exposure to laboratory workflows, clinical research, and bioinformatics basics
- Build a mini project or case study based on real-world therapeutic applications
Each task includes:
- 📘 Session-based learning
- 📝 Notes preparation
- 💻 Hands-on practical assignments
- 📂 Case study analysis
- 📤 Submission via Google Forms
By the end of the internship, students will gain practical exposure in biotechnology and regenerative medicine while developing skills useful for careers in cell and gene therapy, biomedical research, biotechnology industries, clinical research, and healthcare innovation.
✅ TASK 1: How the Sefia™ Platform Boosts Cell Therapy Manufacturing
🎯 Objective:
Understand how advanced cell therapy manufacturing platforms improve efficiency, scalability, and quality control in the production of cell-based therapeutics.
📺 Session:
👉 Click here to Watch your uploaded session
📝 Task:
Write notes on:
Introduction to Cell Therapy Manufacturing
What is the Sefia™ Platform?
Challenges in Traditional Cell Therapy Manufacturing
How Automated Cell Processing Improves Production Efficiency
Benefits of Closed-System Manufacturing
Quality Control and Regulatory Compliance in Cell Therapy
Importance of Automation in Advanced Therapeutics
🔬 Practice / Research:
Research the role of automation in modern cell therapy manufacturing.
Write a short summary explaining how the Sefia™ Platform supports large-scale cell therapy production.
List 5 advantages of using automated cell processing systems in biotechnology manufacturing.
💻 Practice Activity:
Write a short paragraph explaining:
“How advanced manufacturing platforms like Sefia™ can accelerate the commercialization of cell and gene therapies.”
📂 Internship Task Completion Status Form:
After completing this task, interns must fill out the Internship Task Completion Status Form and upload their notes/practice work.
👉 Form Link:
https://forms.gle/fgUopuDDF6oEjNFw7
✅ TASK 2: Streamlined Cell Therapy Manufacturing Process with Sefia™ Platform
🎯 Objective:
Understand the complete workflow of cell therapy manufacturing and how the Sefia™ Platform streamlines critical processing steps to improve efficiency, consistency, and product quality.
📺 Session:
👉 Click here to Watch your uploaded session
📝 Task:
Write notes on:
Overview of the Cell Therapy Manufacturing Workflow
Key Stages in Cell Processing and Manufacturing
Challenges in Manual Manufacturing Processes
Features of the Sefia™ Platform
Process Standardization and Workflow Optimization
Reducing Contamination Risks through Closed-System Processing
Improving Manufacturing Scalability and Reproducibility
🔬 Practice / Research:
Research the major steps involved in manufacturing CAR-T cell therapies.
Write a short summary on how workflow automation can reduce production time in cell therapy manufacturing.
Compare manual and automated cell therapy manufacturing processes.
List 5 factors that influence the quality of manufactured cell therapy products.
💻 Practice Activity:
Write a short paragraph explaining:
“Why streamlined manufacturing processes are critical for the successful commercialization of cell therapies.”
📂 Internship Task Completion Status Form:
After completing this task, interns must fill out the Internship Task Completion Status Form and upload their notes/practice work.
👉 Form Link:
https://forms.gle/fgUopuDDF6oEjNFw7
✅ TASK 3: Accelerating Innovation in RNA Vaccines and Therapeutics
🎯 Objective:
Understand the fundamentals of RNA-based medicines, vaccine technologies, and their growing role in modern biotechnology and personalized healthcare.
📺 Session:
👉 Click here to Watch your uploaded session
📝 Task:
Write notes on:
Introduction to RNA Biology
What are RNA Vaccines?
Types of RNA Therapeutics
Mechanism of mRNA Vaccines
Applications of RNA Technology in Disease Treatment
Advantages of RNA-Based Therapeutics
Challenges in RNA Drug Development and Delivery
Future Scope of RNA Medicines
🔬 Practice / Research:
Research how mRNA vaccines work inside the human body.
Write a short summary on the role of RNA vaccines during the COVID-19 pandemic.
List 5 diseases that are currently being targeted using RNA-based therapeutics.
Research the importance of lipid nanoparticles (LNPs) in RNA drug delivery.
💻 Practice Activity:
Write a short paragraph explaining:
“How RNA vaccines and therapeutics are transforming the future of medicine and personalized healthcare.”
📊 Case Study Activity:
Choose one approved RNA-based therapy or vaccine and explain:
Its purpose
How it works
Its impact on healthcare
Future potential improvements
📂 Internship Task Completion Status Form:
After completing this task, interns must fill out the Internship Task Completion Status Form and upload their notes/practice work.
👉 Form Link:
https://forms.gle/fgUopuDDF6oEjNFw7
✅ TASK 4: Accelerating UK Innovation to Develop Next-Generation Therapies
🎯 Objective:
Understand how biotechnology innovation, research collaborations, and advanced therapeutic technologies are driving the development of next-generation treatments in the United Kingdom and globally.
📺 Session:
👉 Click here to Watch your uploaded session
📝 Task:
Write notes on:
Introduction to Next-Generation Therapies
The UK’s Role in Biotechnology and Life Sciences Innovation
Cell and Gene Therapy Development Ecosystem
Importance of Research and Clinical Trials
Government and Industry Support for Biotechnology Innovation
Emerging Technologies in Advanced Therapeutics
Challenges in Bringing Innovative Therapies to Market
Future Trends in Personalized and Precision Medicine
🔬 Practice / Research:
Research one major biotechnology innovation developed in the UK.
Write a short summary on the importance of collaboration between academia, healthcare institutions, and biotechnology companies.
List 5 emerging technologies that are shaping the future of cell and gene therapy.
Research how innovation hubs and biotech clusters contribute to healthcare advancements.
💻 Practice Activity:
Write a short paragraph explaining:
“Why innovation and collaboration are essential for developing next-generation therapies and improving patient outcomes.”
📊 Case Study Activity:
Select a recent breakthrough in cell therapy, gene therapy, or regenerative medicine and explain:
The technology involved
The disease it targets
Benefits for patients
Potential future applications
📂 Internship Task Completion Status Form:
After completing this task, interns must fill out the Internship Task Completion Status Form and upload their notes/practice work.
👉 Form Link:
https://forms.gle/fgUopuDDF6oEjNFw7
✅ TASK 5: Sefia Select™ System & MagnetSelect Sefia™ Application Software
🎯 Objective:
Understand the role of automated cell selection technologies and application software in cell therapy manufacturing, including how the Sefia Select™ System and MagnetSelect Sefia™ Software improve process efficiency, cell recovery, and workflow control.
📺 Session:
👉 Click here to Watch your uploaded session
📝 Task:
Write notes on:
Introduction to Cell Selection in Cell Therapy Manufacturing
Overview of the Sefia Select™ System
What is MagnetSelect Sefia™ Application Software?
Importance of Automated Cell Separation and Enrichment
Workflow Automation in Cell Processing
Data Monitoring and Process Control through Software Systems
Benefits of Digitalization in Cell Therapy Manufacturing
Quality Assurance and Regulatory Compliance
🔬 Practice / Research:
Research the importance of cell selection and enrichment in cell therapy production.
Write a short summary on how automation software improves manufacturing consistency.
List 5 benefits of integrating software-driven systems into biotechnology manufacturing processes.
Research the role of magnetic cell separation technologies in therapeutic development.
💻 Practice Activity:
Write a short paragraph explaining:
“How automated cell selection systems and application software can improve the quality, efficiency, and scalability of cell therapy manufacturing.”
📊 Case Study Activity:
Analyze an example of an automated biotechnology manufacturing platform and explain:
Its primary function
Technologies used
Benefits compared to manual processes
Impact on product quality and manufacturing efficiency
📂 Internship Task Completion Status Form:
After completing this task, interns must fill out the Internship Task Completion Status Form and upload their notes/practice work.
👉 Form Link:
https://forms.gle/fgUopuDDF6oEjNFw7
✅ TASK 6: VIA Thaw™ Automated Dry Thawer 360P
🎯 Objective:
Understand the importance of controlled cell thawing in cell and gene therapy manufacturing and how automated dry thawing systems improve cell viability, safety, and process consistency.
📺 Session:
👉 Click here to Watch your uploaded session
📝 Task:
Write notes on:
Introduction to Cryopreservation in Cell Therapy
Importance of Cell Thawing Before Clinical Use
What is the VIA Thaw™ 360P System?
Automated vs Manual Thawing Methods
Impact of Thawing on Cell Viability and Quality
Temperature Control During Cell Processing
Benefits of Dry Thawing Technologies
Good Manufacturing Practices (GMP) in Cell Therapy Processing
🔬 Practice / Research:
Research the role of cryopreservation in cell and gene therapy.
Write a short summary on why controlled thawing is critical for maintaining cell viability.
List 5 risks associated with improper thawing of therapeutic cells.
Research how automated thawing systems improve manufacturing consistency.
💻 Practice Activity:
Write a short paragraph explaining:
“How automated dry thawing systems help improve the safety and effectiveness of cell-based therapies.”
📊 Case Study Activity:
Analyze the VIA Thaw™ 360P system and explain:
Its primary purpose
Key features
Advantages over manual thawing
Impact on cell therapy manufacturing workflows
📂 Internship Task Completion Status Form:
After completing this task, interns must fill out the Internship Task Completion Status Form and upload their notes/practice work.
👉 Form Link:
https://forms.gle/fgUopuDDF6oEjNFw7
✅ TASK 7: VIA Thaw™ L1000 Demonstration & Large-Volume Cell Therapy Processing
🎯 Objective:
Learn how large-volume automated thawing systems support clinical and commercial-scale cell therapy manufacturing while maintaining product quality and regulatory compliance.
📺 Session:
👉 Click here to Watch your uploaded session
📝 Task:
Write notes on:
Introduction to Large-Scale Cell Therapy Manufacturing
Overview of the VIA Thaw™ L1000 System
Challenges in Thawing Large-Volume Cell Therapy Products
Automated Thawing Technologies in Bioprocessing
Maintaining Cell Integrity During Thawing
Role of Standardization in Advanced Therapeutics
Quality Assurance and Process Validation
Future of Automated Cell Processing Systems
🔬 Practice / Research:
Research the importance of scalability in cell and gene therapy manufacturing.
Write a short summary on how automated thawing systems support commercial production.
List 5 benefits of standardized cell processing workflows.
Research how biotechnology companies ensure product consistency during large-scale manufacturing.
💻 Practice Activity:
Write a short paragraph explaining:
“Why automation and standardization are essential for large-scale cell therapy manufacturing.”
📊 Final Case Study Activity:
Prepare a report covering:
Cryopreservation and thawing technologies
Automated cell processing systems
Importance of product quality and viability
Manufacturing challenges in advanced therapies
Future trends in cell and gene therapy manufacturing
📂 Internship Task Completion Status Form:
After completing this task, interns must fill out the Internship Task Completion Status Form and upload their notes/practice work.
👉 Form Link:
https://forms.gle/fgUopuDDF6oEjNFw7
