Robotics applications in the pharmaceutical industry

Robotics applications in the pharmaceutical industry

Automation has become an indispensable part of pharmaceutical companies to make work less complex. For example, a Recombinant Protein Expression Company Or a pharmaceutical packaging organization can use automation to get repetitive tasks done more quickly.

Android Benefits:

The first question that needs to be answered is “Why is human labor being replaced by robots and automation?” To answer this question, let’s take a look at some of the benefits of robots

  • Robots can increase productivity by getting things done faster.
  • Robots perform the task in the same way ensuring product consistency.
  • Robots can work 24 hours a day, 7 days a week.
  • Robots are easy to program.
  • Robots can help with experiments that make R&D work better and more efficient.
source: Forbes

Robotics applications:

Robots can be used in the following pharmaceutical fields.

  1. Packaging:

Robotic technology is used to fill bottles. It includes moving components from one station to another before and after packaging. Another ideal application of robotics is the automated assembly, inspection and filling of syringes. The feature of automatic checking is that it allows checking one hundred parts. Vision sensing technology is used to verify product serial numbers to ensure tracking and tracing regulations. advanced vision sensors It can differentiate the colors which allows the machines to distinguish between the colors of different bottle caps.

  1. Customized Medicines:

Automation company Invetech has partnered with a biopharmaceutical company to program automated systems for personalized immunotherapies. It is based on Argos Arcelis technology that uses two robotic arms to produce mRNA from a patient’s tumor which is then used to create personalized medicine. Dendritic cells are developed from white blood cells by automated manipulation. Dendritic cells express the desired antigen used in the treatment.

Clinical operations are skill-based and time-consuming which makes it difficult to operate on a commercial scale with cost-effectiveness. However, the use of robotics and automation makes it easy to develop treatments on a commercial scale efficiently.

source: Boston Review
  1. Cleanroom robots:

The best use of robots is aseptic packaging and other aseptic processes because they eliminate the risk of contamination by humans. The robots ensure an ISO 5 environment to prevent bacterial contamination as well. The Fanuc . bots It can also withstand hydrogen peroxide sterilization and is waterproof. Robots used in cleanrooms must be programmed to reduce particle generation. The robot must be resistant to all disinfectants and cleaning materials used in the laboratory. It is also important to control the speed of the robots to ensure the optimum maintenance environment in the laboratory.

  1. Lab robots:

In laboratories, robots are used to load instruments. For example, transfer microtiter plates between instruments. Although this can be done manually, the programmed programs that do the job reduce human error, maintain the quality of the experiment, and allow scientists to focus on the content rather than the execution.

Robots are also handling flasks in laboratories. For example, the Fanuc robot is designed to include a handling hand that can hold approximately ten vials at the same time. Other tools such as an index table for handling piles, a thermostatically controlled water bath, a flask retrieval system, and a preservative spray station are included in the robot.


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