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Pharma Tech Outlook | Wednesday, February 03, 2021
Robotics technology has more than remained aware of the compound flow, so automation vendors are currently distinct based on availability assay breadth (instrument and method flexibility) and software.
FREMONT, CA: The increasing cost of finding new biopharmaceutical treatments is a significant and long-standing issue. The fundamental evolution of costs, the reasons for inflation, and the extreme precision of the total price tag for a new molecular entity are the subjects of recent conversations and debates. Still, how direct costs continue to grow is commonly recognized as a fact.
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Less generally known and recognized is that the vast number of biopharmaceutical institutions developing new treatments are the most advanced and progressive robotics and automation technology users.
Robotics technology has more than remained aware of the compound flow, so automation vendors are currently distinct based on availability assay breadth (instrument and method flexibility) and software. In contrast, library vendors work on making assortments of unique chemical scaffolds. Then, utterly separate industry chips away from automating, and perhaps more significantly, standardization of optical readings, liquid handling and dispensing, and background tasks such as cell culture and preparation.
Laboratory robotics and automation drive value in a few critical ways, but not regularly in the ways most individuals first envision. Despite normal perception, robots are not usually faster than individuals on some random task. However, they are constant. They are not stopping to pick up a phone, take a bio-break, or think about what they are doing all weekend.
In this capacity, although they are not fundamentally faster than humans, their unit yield per time frame is regularly higher due to the disposal of idle time. This aspect is the primary source of enhanced robotics productivity. Despite being persistent, robotic frameworks are also equipped for parallel processing far beyond anything that a human scientist could coordinate. Think of expecting to precisely monitor the extent the plate was in the incubator while also tracking the plates in the liquid handler, the centrifuge, and thermocycler.
One organization is spearheading approaches for producing higher test yields and accuracy through laboratory automation. Using flexible, modular, and collaborative robotics, the systems developed can test up to 300,000 compounds daily. It is difficult to imagine how many people would be required to achieve this level of yield. Yet, it would be a vast number of individuals subject to significant data errors.
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