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Direct Cell One-Step Probe RT-qPCR Kit

Cat.No: NATR-HMM-0205 Datasheet

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Product Name Direct Cell One-Step Probe RT-qPCR Kit
Catalog No. NATR-HMM-0205
Description An extraction-free one-step probe RT-qPCR system that combines direct cell lysis, genomic-DNA removal, reverse transcription and probe amplification.
Intended Use Rapid high-throughput gene-expression analysis and cell-based drug screening.
Principle / Technology RNA-containing cell lysate is prepared directly in culture plates and analyzed in a single reverse-transcription and probe-qPCR reaction.
Detection Method Fluorescent probe-based one-step RT-qPCR.
Sample Type 10 to 10⁶ cultured adherent or suspension cells.
Performance Range / Specifications Complete cell-to-result workflow in approximately 37 minutes; compatible with 384-, 96-, 24-, 12- and 6-well cell-culture plates.
Sensitivity / LOD Optimized one-step chemistry supports sensitive detection and reduces missed low-expression targets.
Specificity Probe detection and hot-start amplification support specific quantification and multiplex target analysis.
Reaction Conditions / Protocol Perform 7–9 minute in-plate lysis and genomic-DNA removal, then add lysate directly to the one-step probe RT-qPCR reaction.
Components / Formulation Cell-lysis/genomic-DNA removal module and one-step probe RT-qPCR master mix.
Storage Conditions Store at −30 to −15°C.
Package Specifications 100 reactions; 500 reactions.
Product Form Complete direct-cell one-step probe RT-qPCR kit.
Quality Control Cell-input range, lysis compatibility, one-step amplification sensitivity and probe-detection performance are evaluated.
Key Features Approximately 37-minute workflow; no RNA extraction; broad cell compatibility; high-throughput format; multiplex probe compatibility.
Shipping Conditions Ship at or below 0°C.
Compatibility Compatible with common probe-based real-time PCR instruments and multiple cell-culture plate formats.
Application Notes / Precautions Use the recommended cell-input range and mix lysis and stop reagents thoroughly to avoid incomplete lysis, genomic-DNA carryover or amplification inhibition.

For research use only, not for clinical use.

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