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Residual DNA Quantification Kit-Hansenula anomala

Cat.No. :  RDQK-13

Method: qPCR

Size: 100Reactions

Price: Inquire

Product Details

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Cat.No.
RDQK-13
Description
This kit is designed for the quantitative analysis of residual DNA in products derived from Hansenula anomala. This kit is a qPCR-based system, specifically amplifying DNA sequence of Hansenula anomala.
Applications
  • Confirm the rationality of the purification process
  • Ensure quality and safety of the final biopharmaceutical products
  • Features
  • User-Friendly Operation: When used in conjunction with Creative Biogene's Sample preparation kits, it is easy to get the result as less as 5 hours.
  • High Sensitivity: With a quantitation limit as low to pg/μL, the kit meets practical detection requirements.
  • Stable Performance: The kit demonstrates consistent performance across repeated experiments, meeting precision standards.
  • Quality Control: The kit undergoes comprehensive performance validation according to the guidance of pharmacopeia and regulatory.
  • Quality Assurance
  • ISO9001 QMS: The quality management system adheres to ISO9001 standards, ensuring robust processes from R&D to production and quality inspection.
  • Sample Type
    DNA
    Storage
    Store at -20°C.
    Size
    100Reactions
    Quick Inquiry

    Background

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    Customer Reviews

    Hansenula anomala, currently known as Wickerhamomyces anomalus, is a yeast belonging to the phylum Ascomycota. Wickerhamomyces anomalus is commonly found in natural environments such as soil, plants, and fruits, contributing to the microbial ecosystem. In the field of biotechnology, Hansenula anomala is used to produce enzymes, biofuels, and other biochemicals. It is well known for its role in the bioconversion of renewable resources into valuable chemicals, thereby supporting sustainable industrial processes. In addition, Hansenula anomala has found applications in the medical and pharmaceutical industries. It can be used to produce recombinant proteins and therapeutics due to its efficient expression system and post-translational modification capabilities. This yeast strain provides a cost-effective and scalable option for the production of complex proteins that are critical for a variety of medical and research applications. In biopharmaceutical manufacturing, the safety and quality of biologics are of paramount importance. A critical quality attribute is the minimization of residual host cell DNA in the final product. Therefore, accurate quantification of residual DNA in Hansenula anomala is critical during the purification and production of biologics. The residual DNA quantification kit designed specifically for Hansenula anomala uses advanced real-time PCR technology. The kit includes highly specific primers and probes that target unique DNA sequences in the Hansenula anomalosa genome. Specificity ensures that only Hansenula anomalosa DNA is amplified, providing accurate quantification without cross-reaction with other DNA sources.
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    Customer Reviews
    Highly accurate and reproducible results

    This kit utilizes a combination of enzymatic digestion, DNA purification, and quantitative PCR (Polymerase Chain Reaction) techniques to achieve highly accurate and reproducible results.

    United States

    05/12/2021

    Identify potential contamination sources

    This Residual DNA Quantification Kit helps us identify potential contamination sources and enables timely corrective actions, ultimately minimizing the risk of adverse events related to residual DNA.

    United States

    08/15/2021

    Reliable tool

    As a biopharmaceutical company, maintaining product purity is paramount. This kit has been indispensable for our quality control, ensuring that residual DNA levels are within acceptable limits.

    Canada

    03/18/2021

    Great product!

    We highly recommend the Creative Biogene's Residual DNA Quantification Kit for Hansenula anomala to fellow researchers. Its precision and ease of use have greatly enhanced our workflow, allowing us to achieve consistent and reproducible results in our experiments without any hassle.

    United Kingdom

    10/11/2022

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