MystiCq® microRNA qPCR Assay Primer hsa-miR-767-5p - Accurate and Reliable Detection and Quantification

REF #: 3200073
Procurenet
Short description

MystiCq® microRNA qPCR Assay Primer hsa-miR-767-5p

  • Designed for use in qPCR assays to detect and quantify hsa-miR-767-5p microRNA
  • Highly specific and sensitive primer
  • Allows for accurate and reliable measurement of hsa-miR-767-5p expression levels
  • Facilitates the study of microRNA function in various biological processes
  • Compatible with a wide range of sample types
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  • Procurenet Team Tshim Sha Tsui
    Hong Kong Hong Kong 3 years
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Description

MystiCq® microRNA qPCR Assay Primer hsa-miR-767-5p

The MystiCq® microRNA qPCR Assay Primer hsa-miR-767-5p is a highly specific and sensitive primer designed for use in qPCR assays to detect and quantify hsa-miR-767-5p microRNA. This primer allows for accurate and reliable measurement of hsa-miR-767-5p expression levels, facilitating the study of microRNA function in various biological processes. With its compatibility with a wide range of sample types, this primer is a valuable tool for researchers in the field of microRNA analysis.

Features and Benefits:

  • Designed for use in qPCR assays to detect and quantify hsa-miR-767-5p microRNA
  • Highly specific and sensitive primer
  • Allows for accurate and reliable measurement of hsa-miR-767-5p expression levels
  • Facilitates the study of microRNA function in various biological processes
  • Compatible with a wide range of sample types

Product Description:

The MystiCq® microRNA qPCR Assay Primer hsa-miR-767-5p is specifically designed for use in quantitative polymerase chain reaction (qPCR) assays to detect and quantify hsa-miR-767-5p microRNA. This primer is highly specific and sensitive, allowing for accurate and reliable measurement of hsa-miR-767-5p expression levels.

MicroRNAs are short non-coding RNA molecules that play important regulatory roles in gene expression. Dysregulation of microRNA expression has been implicated in various diseases, including cancer, cardiovascular disease, and neurological disorders. Therefore, studying microRNA function has become crucial in understanding disease mechanisms and developing potential therapeutic interventions.

The MystiCq® microRNA qPCR Assay Primer hsa-miR-767-5p is an essential tool for researchers studying microRNA function. Its high specificity ensures that only the target microRNA is amplified during qPCR, reducing the chances of false-positive results. Its sensitivity allows for accurate quantification of low expression levels, enabling the detection of subtle changes in hsa-miR-767-5p expression.

This primer is compatible with a wide range of sample types, including cells, tissues, and biofluids. It can be used with total RNA or small RNA fractions, providing flexibility in experimental design. The primer is designed to have optimal efficiency and performance, ensuring reliable and reproducible results across different samples.

The MystiCq® microRNA qPCR Assay Primer hsa-miR-767-5p is easy to use and compatible with standard qPCR protocols. It can be used with various qPCR platforms, offering versatility to researchers. The primer is supplied in a convenient format, allowing for easy storage and handling.

Specifications:

  • Product Name: MystiCq® microRNA qPCR Assay Primer hsa-miR-767-5p
  • Primer Sequence: Available upon request
  • Target microRNA: hsa-miR-767-5p
  • Application: Quantitative polymerase chain reaction (qPCR) assay for detection and quantification of hsa-miR-767-5p microRNA
  • Sample Compatibility: Cells, tissues, biofluids
  • Storage: Store at -20°C

With the MystiCq® microRNA qPCR Assay Primer hsa-miR-767-5p, researchers can accurately and reliably detect and quantify hsa-miR-767-5p microRNA expression levels. This primer enables the study of microRNA function in various biological processes and provides valuable insights into the role of hsa-miR-767-5p in disease mechanisms. Its compatibility with a wide range of sample types and ease of use make it an essential tool for microRNA research.

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