Automated robots will change the pharmaceutical industry step by step from five major aspects

[ China Pharmaceutical Network Technology News ] Economists believe that technological substitution can create more employment opportunities for non-labor-intensive jobs, such as the Internet industry and the automotive industry have produced many new ways of making a living. In the future, robots will inevitably replace some of the human jobs of pharmaceutical companies. Some experts predict that robots will soon be used in pharmaceutical companies to reduce costs and improve overall efficiency.

(Automated robots will change the pharmaceutical industry step by step from five major aspects)

Compared with other industries, pharmaceutical companies have significantly fallen behind other industries. The main reasons include: First, the initial cost of purchasing and using robots is too high; secondly, the pharmaceutical industry is complicated and requires very detailed and complex programming of the robot system. However, the functionality and flexibility of current robot systems are greatly enhanced.

A research report released by the Association for Packaging and Processing Technologies (PMMI) recently showed that in the next five years, the application rate of robots in the packaging industry of the pharmaceutical industry will increase by 13%, by 2018. The application rate of robots in packaging plants in the pharmaceutical industry will reach 34%. In addition, the packaging workshop is not the only area where robots change drug production, and many automated processes will be extended to drug development.

All in all, Automation & Robotics will change the pharmaceutical industry step by step in five major ways.

(1) Efficiency and precision

The biggest highlight of the use of robots in the pharmaceutical industry is "speed." Compared with humans, robots can not only perform about three to four times faster than the former, but also work 24 hours. This allows the robot to produce a large number of products in a relatively short period of time. In addition, the robot can achieve an accuracy of less than one sheet of paper, which far exceeds the precision that any human can achieve.

So far, Merck has successfully used robots to automatically dispense allergy medications on the bottling line. The robot can run on the operating line at a rate of 10 bottles per second at a rate of 10 per second. The only requirement for human workers in this project is to be able to operate the robot itself proficiently and correctly.

It's worth noting that today's "classic" robotic systems have fewer parts, faster conversion processes and no maintenance than traditional machines. Therefore, the overall cost of using a robot is much lower than that of a conventional machine. In addition, a robot can perform the functions of multiple devices, reducing the space required to build a factory. Compared to the single mode of operation of traditional equipment, the robot can also rewrite the corresponding application in order to complete different projects.

(2) Improving laboratory work

In the research, discovery and development of drugs, a large amount of laboratory testing is usually required, which involves many repetitive tasks such as pipetting, placing tubes, and the like. In this case, robots with automated functions are an ideal job choice to ensure a high level of accuracy and consistency.

In the lab, the use of robots allows researchers to bypass some humble and time-consuming tasks, allowing more time to focus on more valuable things, such as real drug development and research. So far, more and more companies have been able to make robots that automatically prepare DNA samples. Therefore, laboratory technicians can use robots that are simple to operate even without the background of engineering technology.

Nowadays, the precision of the robot is very high, and it is possible to embed 40,000 dot DNA on the microfluidic chip. This feat is beyond human reach.

(3) Identifying drugs

Robots can be used to assist pharmacies and pharmaceutical companies in identifying counterfeit drugs or drugs that are clinically fraudulent. With the increasing popularity of online pharmacies, substandard drugs are not only reflected in the packaging – some drugs contain active ingredients (ingredients) that are even harmful to users. As a result, the pharmaceutical industry is increasingly emphasizing the full tracking of pharmaceuticals from production to sales to distribution. In this process, robots become especially important because during the consumer's purchase of a drug, the barcode scanner can quickly determine if the drug is legally sold.

(4) Robotic pharmacy

Currently, there are already some large hospitals and clinics that use robots to dispense different drugs. Analysts expect that only the “robot pharmacy” demand will increase, and its benefits will increase significantly. However, many industry insiders predict that in the future, "robot pharmacies" will be able to distribute drugs on their own without a pharmacist. The benefits of robotic dispensing include: reducing drug delivery errors and reducing the delay in individual employee delays resulting in drug delivery. It takes years to complete such a huge change in the pharmaceutical retail world, but these technologies are already being prepared for use.

It is worth mentioning that large pharmaceutical companies have the highest "return on investment" for robots as early as possible, followed by small pharmaceutical companies and retail pharmacies.

(5) Enhancing the sustainability of the industry

Like other industries, the pharmaceutical industry is also in need of “sustainable development”, for which drug manufacturers have to reduce waste, reduce pollution and save energy. In the past, the use of robots such as motors, drives and gearboxes saved the society 95% of its energy. The high efficiency and reliability of robots means less material wastage and creating more products.

In addition, each robot is made up of disposable components that reduce cleaning costs, water and chemical consumption, and thus reduce carbon footprints.

Looking to the future

In summary, the changes and benefits that robots bring to the pharmaceutical industry seem to be endless. From creating huge benefits, improving efficiency and safety, the speed, precision, reliability and flexibility of robots will be “favored” by the pharmaceutical industry. Rather than how do robots change the pharmaceutical industry, are we ready to embrace these changes?

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