Skip to: Curated Story Group 1
lifesciencesreview

Advertise

with us

    • US
    • EUROPE
    • APAC
    • CANADA
    • LATAM
  • Home
  • Topics
    Biomanufacturing
    Biomanufacturing
    Biomanufacturing
    Biomanufacturing
    Biomanufacturing
    Business Services
    Business Services
    Business Services
    Business Services
    Business Services
    Drug Discovery
    Drug Discovery
    Drug Discovery
    Drug Discovery
    Drug Discovery
    Pharmacy Management
    Regulatory Services
  • CXO Insights
  • Vendor Viewpoint
  • News
  • Conferences
  • Newsletter
  • Whitepapers
  • Magazine
  • CXO Awards
NOVEMBER 2023LIFE SCIENCES REVIEW 19for IDs, and each method has a number of commercial systems. Information in the cell is inherently stored within the DNA, which is then transcribed into mRNA, which is translated into protein by the ribosome. Those proteins are then expressed in a variety of ways. At each point, there is an available identification method. Genotypic IDs are done through DNA sequencing, proteotypic IDs look at protein distribution within the cells, and phenotypic IDs look at protein expression through metabolism and biochemical characteristics. As you move away from where information is stored in the cell's DNA, out through protein expression, there is a reduction in accuracy and reproducibility for those ID methods.DNA sequencing is the gold standard for microbial identifications, but what happens when the sample isn't compatible with Sanger sequencing? Traditional sequencing methods can be limited in what they can offer if samples are not pure or if they cannot be cultured, if they fail to generate usable data, or if the target DNA is large (multiple kilobases or genome-sized) making the traditional methods complex, expensive, and time consuming. In these cases, and in many other scenarios, manufacturers turn to next generation sequencing (NGS). Next Generation Sequencing for bacterial and fungal identification simultaneously sequences millions of individual DNA fragments from a sample and provides a snapshot of the microbiome at that point in time. When investigating mixed species environments, it provides an understanding of microbial populations without the need for any culturing. Additionally, when studying pure isolates and/or sequencing of mixed species environments, NGS provides a deeper resolution of organism genes and variants at a level never before possible.There are many applications of NGS for pharmaceutical and consumer care manufacturers. NGS can be used for microbiome analysis of environmental or water system monitoring, microbial cell line characterization or authentication, toxin or virulence gene family detection, contamination detection, plasmid sequencing, resistance gene detection, and probiotic profiling.Given the importance of clean and effective products, the utmost care must be given to manufacturing and operational excellence. Every tool must be utilized to protect the product and the patient. This includes robust environmental monitoring, high quality and accurate microbial identifications, and the adoption of tools like next generation sequencing. Trending your environmental monitoring data is not just a helpful tool, but it's also a regulatory expectation
< Page 9 | Page 11 >