GAMP 5 is the guideline for ensuring the quality and compliance of automated systems in the pharmaceutical industry.
Computer system validation is a documented process that consistently and reproducibly ensures that a computer system does exactly what it was designed to do. In English, it is referred to as computer system validation.
Computer system validation plays an important role for the pharmaceutical and medical technology sectors as GxP-regulated industries. It ensures that computerized systems function properly in production, research and quality assurance. This includes, for example:
Pharmaceutical and medical device companies must ensure that drugs and medical devices are safe and have the desired effect. Software validation ensures that software used in the manufacture, analysis and documentation of products functions correctly.
Medical devices and pharmaceuticals are sensitive, strictly regulated industries. Computer system validation helps companies in these sectors to reliably meet the strict requirements.
By checking correct processes, computer system validation prevents serious consequences such as production downtime, regulatory penalties or false effects.
The regulation 21 CFR Part 11 is defined by the Food and Drug Administration, FDA, and specifies the requirements that apply to electronic records and electronic signatures. This includes computer system validation, as it is responsible for the creation, processing and storage of electronic records.
The EU GMP guideline defines standards according to which medicinal products are manufactured in the European Union. Annex 11 of the guideline defines the requirements for computer system validation.
ISO 13485 defines the requirements that a quality management system for the production of medical devices and pharmaceuticals must fulfill. This also includes computer system validation.
ISO/IEC 27001 specifies requirements for information security systems. It is important for data security in computer systems.
The main objectives of computer system validation are:
Qualification provides documented proof that systems, production facilities and premises are suitable for fulfilling the defined purpose.
Process validation, on the other hand, is responsible for proving that processes and procedures are suitable for this purpose. It is therefore a process validation.
Comprehensive risk management plays an essential role in computer system validation. It identifies and assesses potential risks that may affect patient safety and product quality via computerized systems. By identifying and mitigating risks, an acceptable level of risk is established.
Risk management generally involves the following steps:
The life cycle approach assumes that computer system validation is a continuous process that extends over the entire life cycle of a computer system. It consists of the following phases:
Computer system validation is complex and presents numerous challenges. Some examples are:
More on the challenges and stumbling blocks in the process validation of computer systems
To meet these challenges, companies are turning to best practices, such as
Yaveon covers all these areas with validation consulting. Experience and know-how accompany customers through the entire process of computer system validation right up to the secure system. In doing so, we rely on the principles of the proven V-model. Our solutions are also developed in accordance with GAMP 5.
GAMP 5 is the guideline for ensuring the quality and compliance of automated systems in the pharmaceutical industry.
Software validation checks that software meets the requirements and is suitable for the intended purpose.
This article shows you how to master challenges and stumbling blocks in the process validation of computer systems with confidence.