Epigenomics Sequencing
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Epigenomics Sequencing

Provide comprehensive and reliable genome-wide information regarding DNA methylation.

Epigenomics Sequencing
About Epigenomics Sequencing

Explore Gene Regulation Beyond DNA Sequence

 

Epigenomics is the study of heritable molecular modifications that influence gene activity without changing the underlying DNA sequence. These regulatory mechanisms determine when, where, and how genes are expressed, playing essential roles in development, cellular differentiation, aging, environmental adaptation, and disease progression.

 

At N2Jenomics Lab, we provide comprehensive epigenomics services using advanced sequencing technologies and robust bioinformatics pipelines to help researchers investigate genome-wide epigenetic modifications. Our end-to-end solutions support projects in cancer biology, developmental biology, neuroscience, immunology, plant sciences, precision medicine, and translational research. We combine cutting-edge laboratory workflows with computational expertise to deliver high-quality, publication-ready epigenomic datasets. 

 

Our Epigenomics Services

 

We offer a complete portfolio of epigenetic analysis solutions, including:

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  • โœ” Whole Genome Bisulfite Sequencing (WGBS) 

  • โœ” Reduced Representation Bisulfite Sequencing (RRBS) 

  • โœ” Targeted DNA Methylation Sequencing 

  • โœ” ChIP-Seq (Chromatin Immunoprecipitation Sequencing) 

  • โœ” ATAC-Seq (Chromatin Accessibility Analysis) 

  • โœ” CUT&RUN Sequencing 

  • โœ” Histone Modification Profiling 

  • โœ” DNA Methylation Analysis 

  • โœ” Chromatin Accessibility Analysis 

  • โœ” Epigenomic Bioinformatics Analysis 

  • โœ” Customized Epigenomics Research Solutions 

 

Advanced Epigenomics Technologies

 

Our laboratory employs industry-leading sequencing platforms and optimized protocols to generate highly accurate epigenetic profiles.

 

DNA Methylation Profiling

 

Genome-wide and targeted methylation analyses enable researchers to identify epigenetic signatures associated with development, environmental responses, aging, and disease.

 

Chromatin Accessibility Analysis

 

Techniques such as ATAC-Seq reveal open chromatin regions and regulatory elements that influence gene transcription.

 

Histone Modification Mapping

 

Chromatin immunoprecipitation-based methods identify histone modifications associated with gene activation or repression, providing insights into transcriptional regulation.

 

Integrated Multi-Omics Analysis

 

Combining epigenomic data with genomics and transcriptomics enables a more comprehensive understanding of cellular regulation and biological pathways. 

 

Comprehensive Bioinformatics Analysis

 

High-quality sequencing data is transformed into biologically meaningful insights using advanced computational workflows.

 

Our bioinformatics capabilities include:

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  • โœ” Raw data quality assessment 

  • โœ” Read alignment 

  • โœ” Peak calling 

  • โœ” Differential methylation analysis 

  • โœ” Differential peak analysis 

  • โœ” Motif enrichment analysis 

  • โœ” Functional annotation 

  • โœ” Pathway enrichment 

  • โœ” Chromatin accessibility profiling 

  • โœ” Histone modification analysis 

  • โœ” Multi-omics integration 

  • โœ” Data visualization and publication-ready reports 

 

Our customized analysis pipelines are designed to address both standard and complex epigenomics research objectives. 

 

Applications of Epigenomics

 

Epigenetic research provides valuable insights across numerous biological and medical disciplines.

 

Cancer Research

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  • โœ” Tumor epigenetic profiling 

  • โœ” Biomarker discovery 

  • โœ” Cancer progression studies 

  • โœ” Therapeutic target identification 

 

Developmental Biology

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  • โœ” Cell differentiation 

  • โœ” Embryonic development 

  • โœ” Stem cell research 

  • โœ” Developmental gene regulation 

 

Neuroscience

  •  

  • โœ” Neurodevelopment 

  • โœ” Neurodegenerative disorders 

  • โœ” Brain epigenetics 

  • โœ” Cognitive function studies 

 

Precision Medicine

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  • โœ” Disease-associated epigenetic biomarkers 

  • โœ” Personalized therapeutic strategies 

  • โœ” Drug response prediction 

  • โœ” Clinical research 

 

Agriculture & Plant Sciences

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  • โœ” Stress response mechanisms 

  • โœ” Crop improvement 

  • โœ” Plant development 

  • โœ” Epigenetic breeding research 

 

Environmental Biology

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  • โœ” Environmental adaptation 

  • โœ” Toxicology studies 

  • โœ” Climate response research 

  • โœ” Ecological epigenetics 

 

Why Choose N2Jenomics Lab?

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  • โœ” Advanced Illumina-based epigenomic sequencing workflows  

  • โœ” Comprehensive DNA methylation and chromatin profiling services 

  • โœ” Experienced molecular biology and bioinformatics experts 

  • โœ” Customized project design for diverse research applications 

  • โœ” Integrated sequencing and computational analysis 

  • โœ” Fast turnaround with rigorous quality control 

  • โœ” Secure data management and confidential project handling 

  • โœ” Publication-ready reports with scientific interpretation  

 

Partner with N2Jenomics Lab

 

Understanding the epigenome is essential for uncovering the regulatory mechanisms that drive complex biological processes and disease development. Whether your research focuses on cancer, developmental biology, agriculture, neuroscience, or precision medicine, N2Jenomics Lab provides reliable, high-resolution epigenomics solutions tailored to your scientific objectives.

 

Our team supports researchers from experimental planning through sequencing, bioinformatics analysis, and biological interpretation, ensuring high-quality results that accelerate discovery and innovation.

Address: Registered Office: 138, Patparganj Industrial Area, New Delhi โ€“ 110092, India
Email: info@n2jenomicslab.com
Phone: +91-8287121443 +91-9870548477
Operational Address: National Institute of Plant Genome Research (BRIC - NGGF) Lab No. 206 and 207, Aruna Asaf Ali Marg, P.O. Box No. 10531, New Delhi โ€“ 110067, India
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