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NGIVD isoPwr-S Total Nucleic Acid Isolation Kit Bacterial - Pack of 50 Test

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Brand NGIVD

Description:

The NGIVD isoPwr-S Total Nucleic Acid Isolation Kit Bacterial is specifically designed for the rapid and efficient extraction of total nucleic acids (DNA and RNA) from bacterial samples. Utilizing a streamlined protocol, this kit ensures high yields of intact nucleic acids, making it ideal for various applications in molecular biology, including qPCR, RT-PCR, and next-generation sequencing (NGS). The isoPwr-S kit's robust formulation delivers consistency and reliability, supporting comprehensive genomic and transcriptomic studies.

Key Features:

  • Total Nucleic Acid Extraction: Isolates both DNA and RNA from bacterial cells in a single process, providing versatility for various applications.
  • Quick Protocol: Achieves complete nucleic acid isolation in approximately 30 minutes, facilitating high-throughput workflows.
  • Broad Applicability: Effective for a wide range of bacterial species, ensuring compatibility with diverse research needs.
  • Complete Kit Components: Includes all necessary reagents, buffers, and protocols for seamless nucleic acid extraction.
  • High Quality and Integrity: Isolated nucleic acids are of exceptional purity and integrity, suitable for downstream applications like qPCR and sequencing.
  • Optimized for Performance: Specially formulated reagents enhance the efficiency of nucleic acid extraction while minimizing degradation.

Benefits:

  • Time-Efficient: Reduces hands-on time and enhances laboratory throughput, enabling researchers to focus on analysis and experimentation.
  • Cost-Effective Bulk Packaging: Ideal for laboratories with high-volume sample processing, providing an economical solution for nucleic acid isolation.
  • Comprehensive Compatibility: Isolated total nucleic acids are compatible with various downstream applications, facilitating extensive research capabilities.
  • Reliable and Reproducible Results: Streamlined procedures minimize variability, ensuring consistent outcomes across experiments.
  • Supports Advanced Research: Enables in-depth genomic and transcriptomic analyses, critical for microbiological studies, genetic research, and diagnostics.
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