Mag Methyl C Methyl DNA Extraction Magnetic Beads

Mag Methyl C Methyl DNA Extraction Magnetic Beads

Catalog Number:
NAEA554818REB
Mfr. No.:
NBM103
Price:
$423
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      • Overview
        • Our Methyl DNA extraction magnetic beads are specially surface-modified, superparamagnetic, nano-scale microspheres. Their core design principle is based on 5-methylcytosine antibodies or methylated DNA-binding domain proteins, enabling them to specifically recognize and bind methylated fragments within genomic DNA (i.e., fragments where a methyl group is added to the 5th carbon atom of the cytosine in CpG dinucleotides).
          Unlike traditional genomic DNA extraction beads (which primarily rely on the non-specific binding of silanol groups to the DNA backbone), methylated DNA extraction magnetic beads are designed to "enrich" methylated fragments from complex whole-genome DNA for subsequent in-depth analysis.


          Product Features:
          · High Specificity and Affinity: Efficiently enriches methylated DNA, minimizing background interference from unmethylated DNA to the greatest extent.
          · ​High Sensitivity: Suitable for methylation analysis of trace samples (e.g., cell biopsies, circulating cell-free DNA).
          · No Bisulfite Treatment Required: Compared to methods requiring chemical conversion like whole-genome bisulfite sequencing, MeDIP (Methylated DNA Immunoprecipitation) does not alter the DNA sequence, avoiding associated DNA degradation and biases.
          · Simple and Rapid Operation: Features standardized protocols, is easy to use, and suitable for high-throughput sample processing.
          · Excellent Compatibility: The enriched DNA can be directly used for various downstream analysis techniques.

          Please contact us at for specific academic pricing.

      • Properties
        • Appearance
          Dark Brown To Black Liquid, Slight Odor.
          Concentration
          50 mg/mL
          Other Properties
          Grain Size: 50-100 Nm
          Magnetic Reaction Time: ﹤30 S
          Sediment Time: >5 Min
          Package: 50/100/500/1000 ML
          Shelf Life: 24 Months
          Application: Methylated DNA Extraction
          Highlight: Methyl DNA extraction magnetic beads, Mag Methyl C, 1000mL Package DNA extraction magnetic beads
          Storage: Ultra pure water
          Matrix: Silica Magnetic Beads
          Storage
          2-8°C, Protected From Light. Do Not Freeze.
          Certifications
          ISO 9001, ISO 13485

          * For research use only. Not for human or veterinary use.

      • Applications
        • Application
          Methylated DNA/RNA extraction, suitable for various samples of Methylated DNA/RNA
          Application Description
          Methylated DNA extraction magnetic beads are a powerful tool for epigenetic research, with main applications including:
          · Basic Scientific Research
          Genomic Imprinting: Studying parent-of-origin-specific methylation patterns.
          X Chromosome Inactivation: Exploring the epigenetic mechanism behind the silencing of one X chromosome in female cells.​
          Embryonic Development and Cell Differentiation: Tracking dynamic changes in whole-genome methylation patterns during development.​
          Tumorigenesis Mechanisms: Investigating the roles of oncogene hypomethylation and tumor suppressor gene hypermethylation in cancer development and progression.
          · Biomarker Development and Precision Medicine
          Early Cancer Screening and Diagnosis: Enables non-invasive early diagnosis of cancers like lung cancer, colorectal cancer, and liver cancer by
          detecting specific methylation markers in circulating tumor DNA from blood (liquid biopsy).​
          Disease Subtyping and Prognosis Assessment: Specific methylation profiles are closely related to tumor malignancy, treatment efficacy, and patient survival.​
          Medication Guidance: The efficacy of certain drugs is related to the methylation status of specific genes.​
          · Agriculture and Biotechnology
          Crop Breeding: Researching epigenetic variations induced by environmental stresses (e.g., drought, salinity) to aid in selecting superior traits.​
          Livestock Breeding: Studying methylation markers associated with economic traits (e.g., meat yield, milk production).

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