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Showing posts from November, 2023

Good Manufacturing Practice (GMP) in Cell Culture: Ensuring Quality and Safety

  Cell culture is a fundamental technique in biotechnology and pharmaceutical industries, utilized for the production of a wide range of products, from monoclonal antibodies to vaccines and gene therapies. In such critical applications, the quality and safety of the cultured cells are of utmost importance. This is where Good Manufacturing Practice (GMP) comes into play. GMP in cell culture ensures that the processes and products meet stringent quality standards, making them suitable for use in human medicine and other highly regulated industries. The Basics of GMP GMP is a set of quality assurance guidelines and standards that govern the manufacturing, testing, and control of products in various industries, particularly pharmaceuticals, biotechnology, and food production. In cell culture, GMP aims to ensure that cells, cell-based products, and the processes involved in their production are consistent, safe, and reliable. Here are some of the key principles of GMP in cell culture:

Immobilized Cell Culture: A Revolutionary Advancement in Biotechnology

  Introduction Immobilized cell culture, also known as cell immobilization, is a revolutionary technique in biotechnology that has transformed the way we harness the power of living cells for various applications. This innovative approach allows cells to be confined or anchored within a matrix, such as beads, fibers, or gels, while still maintaining their viability and functionality. Immobilized cell culture offers numerous advantages over traditional suspended cell cultures and has found applications in various industries, including biopharmaceuticals, wastewater treatment, biofuel production, and more. In this article, we will explore the principles, applications, and potential benefits of immobilized cell culture. Principles of Immobilized Cell Culture The fundamental principle behind immobilized cell culture is to provide a supportive environment for cells to grow and function while preventing them from floating freely in a liquid medium. This is achieved by entrapping or att