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Biotechnology and Pharmaceutical Development
Advanced Automation and Robotics in Drug Screening Training Course
Introduction
The drug discovery landscape is undergoing a rapid, disruptive transformation driven by Industry 4.0 technologies. Traditional high-throughput screening (HTS) methods are being superseded by fully autonomous laboratory systems that leverage AI-driven robotics and advanced automation. This paradigm shift is crucial for accelerating the discovery of novel therapeutics, managing massive compound libraries, and drastically improving the reproducibility and quality of experimental data. Professionals equipped with the skills to design, implement, and manage these sophisticated self-driving labs are now essential for maintaining a competitive edge in the global pharmaceutical and biotech sectors.
Advanced Automation and Robotics in Drug Screening Training Course provides drug discovery scientists, engineers, and laboratory informatics specialists with the practical expertise needed to transition to these modern workflows. It moves beyond basic automation to focus on collaborative robotics (Cobots), real-time data analytics, and the integration of Machine Learning (ML) for intelligent experimental design. Mastering these digital transformation tools is vital for minimizing R&D cycle times, reducing assay variability, and ensuring cGMP/GLP compliance in an era where data fidelity and speed are paramount to clinical success.
Programme Curriculum
Advanced Automation and Robotics in Drug Screening Training Course
Introduction
The drug discovery landscape is undergoing a rapid, disruptive transformation driven by Industry 4.0 technologies. Traditional high-throughput screening (HTS) methods are being superseded by fully autonomous laboratory systems that leverage AI-driven robotics and advanced automation. This paradigm shift is crucial for accelerating the discovery of novel therapeutics, managing massive compound libraries, and drastically improving the reproducibility and quality of experimental data. Professionals equipped with the skills to design, implement, and manage these sophisticated self-driving labs are now essential for maintaining a competitive edge in the global pharmaceutical and biotech sectors.
Advanced Automation and Robotics in Drug Screening Training Course provides drug discovery scientists, engineers, and laboratory informatics specialists with the practical expertise needed to transition to these modern workflows. It moves beyond basic automation to focus on collaborative robotics (Cobots), real-time data analytics, and the integration of Machine Learning (ML) for intelligent experimental design. Mastering these digital transformation tools is vital for minimizing R&D cycle times, reducing assay variability, and ensuring cGMP/GLP compliance in an era where data fidelity and speed are paramount to clinical success.
Course Duration
10 days
Course Objectives
Master the principles of High-Throughput Screening (HTS) and Ultra-HTS (U-HTS) using fully automated platforms.
Design and deploy robust Robotic Workcells for complex, multi-step assay development.
Implement and validate high-precision Automated Liquid Handlers and Microplate Logistics systems.
Integrate Collaborative Robots (Cobots) safely into existing laboratory environments to enhance human-machine synergy.
Utilize Laboratory Information Management Systems (LIMS) and Electronic Lab Notebooks (ELN) for data integrity and regulatory compliance.
Apply Machine Learning (ML) algorithms for Hit-Picking Optimization and predictive ADMET profiling.
Program and troubleshoot robotic sequence logic using industry-standard automation software.
Develop robust Data Pipelines for real-time acquisition and advanced Kinetic Data Analysis.
Evaluate and select appropriate Detection Technologies for automated assays.
Manage and maintain large-scale Automated Compound Libraries and cryogenic storage systems.
Conduct Risk Assessments and ensure adherence to cGMP and GLP standards for validated systems.
Explore the architecture and application of Self-Driving Labs and Autonomous Discovery Platforms.
Optimize laboratory workflows for significant R&D cycle time reduction and cost-efficiency.
Target Audience
Automation & Robotics Engineers
High-Throughput Screening (HTS) Scientists and Managers.
Laboratory Informatics Specialists
Process Development Scientists.
Research Scientists.
Validation and Quality Assurance (QA/QC) Professionals.
R&D Directors and Managers.
Lead Medicinal Chemists.
Course Modules
Module 1: Foundations of Laboratory Digital Transformation
The evolution of drug screening: Manual to Ultra-HTS (U-HTS).
Defining the Lab of the Future (LoF) and its core components.
Introduction to the automation hierarchy: Devices, workcells, and integrated systems.
Key metrics: Throughput, Z'-factor, data quality, and R&D ROI.
Case Study: Transitioning a mid-sized pharma company from 384-well to 1536-well U-HTS for a kinase assay.
Module 2: Advanced Automated Liquid Handling
Principles of nanoliter and picoliter dispensing
Understanding and mitigating sources of error:.
Calibration and validation of high-precision liquid handlers
Advanced techniques: Serial dilutions, combination matrix generation, and kinetic dispensing.
Case Study: Optimizing a challenging low-volume compound transfer to minimize compound use and solvent effects.
Module 3: Robotic Workcell Design & Integration
Architecture of modern High-Throughput Workcells.
System integration concepts.
Principles of gripper design and microplate handling logistics.
Designing protocols for optimal scheduling and minimizing idle time.
Case Study: Designing a multi-process workcell for simultaneous primary and counter-screening assays.
Module 4: Collaborative Robotics (Cobots) in the Lab
Introduction to Cobots.
Human-Robot Interaction (HRI) safety standards and risk assessment
Programming and teaching Cobots for flexible, intermittent tasks
Comparing fixed automation vs. flexible automation for dynamic R&D needs.
Case Study: Implementing a Cobot system for routine microplate sealing/de-sealing and incubator loading in a shared lab space.
Module 5: Laboratory Informatics and Data Integrity
Implementing and configuring a Laboratory Information Management System (LIMS) for automated workflows.
The role of Electronic Lab Notebooks (ELN) in capturing automated data and context.
Ensuring 21 CFR Part 11 compliance and Audit Trails for automated data capture.
Data pipelines.
Case Study: Establishing a digital chain of custody for screened compounds from library to results database.
Upon successful completion of this training, participants will be issued with a globally- recognized certificate.
Tailor-Made Course
We also offer tailor-made courses based on your needs.
Key Notes
a. The participant must be conversant with English.
b. Upon completion of training the participant will be issued with an Authorized Training Certificate
c. Course duration is flexible and the contents can be modified to fit any number of days.
d. The course fee includes facilitation training materials, 2 coffee breaks, buffet lunch and A Certificate upon successful completion of Training.
e. One-year post-training support Consultation and Coaching provided after the course.
f. Payment should be done at least a week before commence of the training, to FINESKILL TRAINING CENTER account, as indicated in the invoice so as to enable us prepare better for you.