Sample Report

qPCR-Based Relative Telomere Length Measurement – Sample Report

Telomeres are repetitive DNA sequences located at the ends of chromosomes and are widely used as biomarkers in aging and aging-related disease studies. Relative telomere length can be measured using a quantitative PCR (qPCR) approach by comparing the amplification of telomeric repeat sequences (T) with that of a single-copy reference gene (S), expressed as the T/S ratio.

This sample report illustrates the format and data generated from our qPCR-based relative telomere length measurement service, including:

  • Genomic DNA quality assessment
  • qPCR assay setup
  • Calculation of relative telomere length
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Telomere Length Measurement by Q-FISH – Sample Report

Quantitative fluorescence in situ hybridization (Q-FISH) is a fluorescence imaging-based method that enables telomere length measurement through hybridization of telomere-specific PNA probes and quantitative analysis of fluorescence intensity.

This sample report illustrates the format and data generated from our Q-FISH-based telomere length measurement service, including:

  • Cell recovery, counting, and viability assessment
  • Sample preparation and Q-FISH probe hybridization
  • Image acquisition and fluorescence signal quantification
  • Telomere length analysis results, including median telomere length, telomere length distribution, and percentage of short telomeres
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DNAmAge Analysis Service Report – Sample Report

DNA methylation-based epigenetic clocks estimate biological age by analyzing methylation patterns at specific CpG sites across the genome. These approaches are widely used in aging research to evaluate biological aging processes and to assess the effects of anti-aging therapeutics on biomarkers of aging.

This sample report illustrates the format and data generated from our DNAmAge analysis service, including:

  • Sample processing and DNA quality control
  • Bisulfite conversion and DNA methylation measurement using the EPIC array platform
  • Data acquisition and methylation data processing
  • Biological age estimation using pan-tissue and blood & skin epigenetic clock models
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