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Pharma Tech Outlook | Wednesday, May 24, 2023
Many labs still need to pay more attention to automating, fearing they are on their own in a risky undertaking.
FREMONT, CA: Laboratories around the globe are teeming with highly trained scientists eager to make groundbreaking discoveries. Even tedious duties and insufficient data prevent them from utilizing their knowledge to its fullest extent.
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Below are the biggest trends in lab automation this year:
Optimizing complete workflows: Labs frequently invest in a single piece of equipment, which can be a cumbersome piece of hardware that automates a single portion of a larger workflow, and consider themselves to have 'automated.'
This is only sometimes closely aligned with the objective of the laboratory. Or, the tool may be an excellent solution for a single task, but it risks occupying a significant quantity of space without maximizing its role across the entire workflow. Adapting to the ever-changing workflows of a research environment can also be challenging.
Automating end-to-end workflows can maximize automation's benefits. Lab technicians can transform cumbersome, step-by-step systems into a continuous flow that improves scale and precision by decomposing a workflow into smaller component processes and linking them with robotics. Continuous flow prevents bottlenecks when only a portion of a system is automated and maximizes the capacity of the equipment to produce high-quality results without human intervention.
Accelerating automation in cell culture laboratories
Cell culture laboratories have numerous labor-intensive and repetitive duties, such as plating, feeding, and dividing cells, making them an ideal candidate for automation. This has been the objective of the industry for many years. Still, numerous obstacles have impeded the transition, including the belief that cell culture research is too difficult to automate and the lack of readily available technology. Recent developments, however, indicate that the industry is beginning to supplant slower, more cumbersome tools with automation in larger workflows.
As a result, scientists can expedite previously time-consuming duties, such as media exchange, and obtain more precise results in less time. Scientists can ensure that their cell culture operates at peak efficiency with automata that can determine the optimal time to feed cells outside the 9 to 5 workday.
Consider the increased emphasis on commercial applications for cell culture laboratories, such as lab-grown flesh and leather. These new products necessitate accelerated turnover times and scalability, as well as high levels of precision.
Modular automation to optimize laboratory space and creativity: Lab space is precious, and laboratory equipment is frequently large and expensive. An interoperable and modular model is the solution for maximizing the footprint of a lab and creating an efficient workspace.
Historically, when robotics have been integrated into workflows, laboratories have been designed in an inward-facing manner that does not permit human and robot interaction. By expanding the space and allowing scientists to utilize the robots to their fullest potential, laboratories can be adaptable to growth and change while maximizing their processes.
Using a modular system, in which components can be added or removed based on need, increases the innovation potential and allows scientists to alter their working methods without dismantling an entire workflow.
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