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Next Generation Sequencing Articles & Analysis

76 articles found

A Comprehensive Guide to sgRNA Design and Confirmation

A Comprehensive Guide to sgRNA Design and Confirmation

Target Selection: The initial step is identifying the genomic sequence to be edited. This involves analyzing the target gene’s sequence and selecting a region that is critical for the desired modification. ...

ByCreative Biogene


What is the Role of tRNA Methylation Modification in the Cell Cycle?

What is the Role of tRNA Methylation Modification in the Cell Cycle?

Post-transcriptional modifications of RNA molecules include methylation, acetylation deamination, isomerization, glycosylation, thiolation and pseudouracil modification among other types. Methylation represents the predominant post-transcriptional modification found within transfer RNA (tRNA) molecules. tRNA methylation has maintained its evolutionary conservation while also exhibiting dynamic ...

ByCreative Diagnostics


Optimizing HindII Digestion Protocols for Challenging DNA Templates in Advanced Molecular Biology Applications   

Optimizing HindII Digestion Protocols for Challenging DNA Templates in Advanced Molecular Biology Applications  

For metagenomic analysis, the moderate cutting frequency of HindII often produces fragment sizes ideally suited for next-generation sequencing library preparation, typically ranging from 2-10kb depending on GC content. ...

ByCreative Enzymes


Optimizing HindII Digestion Protocols for Challenging DNA Templates in Advanced Molecular Biology Applications   

Optimizing HindII Digestion Protocols for Challenging DNA Templates in Advanced Molecular Biology Applications  

For metagenomic analysis, the moderate cutting frequency of HindII often produces fragment sizes ideally suited for next-generation sequencing library preparation, typically ranging from 2-10kb depending on GC content. ...

ByCreative Enzymes


Best Practices for Bioinformatics Analysis of 16S rRNA Sequencing via NGS

Best Practices for Bioinformatics Analysis of 16S rRNA Sequencing via NGS

The advent of next-generation sequencing (NGS) has revolutionized the field of microbiome research, particularly through the analysis of 16S rRNA gene sequencing. ...

ByCD Genomics


Decoding the Conversation in Host-Pathogen Dynamics

Decoding the Conversation in Host-Pathogen Dynamics

In the quest to unravel the complexities of infectious diseases, understanding the intricate interplay between pathogens and their hosts is paramount. This requires a comprehensive analysis of gene expression and the regulatory mechanisms at play during infection. Traditional RNA sequencing (RNA-seq) has long been employed to investigate the gene expression profiles of microbial pathogens. ...

ByCD Genomics


NGS Library Preparation Kits: A Key Component in Next-Generation Sequencing

NGS Library Preparation Kits: A Key Component in Next-Generation Sequencing

Next-Generation Sequencing (NGS) has revolutionized genomics, providing unprecedented insights into the structure and function of genomes, transcriptomes, and epigenomes. ...

ByCreative Biogene


Utilizing Zebrafish Genome Editing Services: Shaping the Future of Genomic Research

Utilizing Zebrafish Genome Editing Services: Shaping the Future of Genomic Research

These tools, with their capacity for targeted genome editing, serve as invaluable conduits for generating customized zebrafish models that elucidate complex gene functions and interactions. ...

ByCreative Biogene


How to Submit Sequence Data to GenBank   

How to Submit Sequence Data to GenBank  

Submission of sequence data to NCBI archives Next-generation sequencing, PacBio SMRT sequencing, and Nanopore sequencing, can generate numerous sequence data in a single run. ...

ByCD Genomics


Advancements in Sequencing Technologies: Transforming Pathogen Detection and Clinical Diagnostic   

Advancements in Sequencing Technologies: Transforming Pathogen Detection and Clinical Diagnostic  

Unleashing the Power of NGS The evolution of sequencing technologies from first-generation methods to the sophisticated realm of next-generation sequencing technologies, also commonly known as NGS or high-throughput sequencing, has effectively mitigated the low-throughput challenges that plagued ...

ByCD Genomics


Exploring How RNC-RNA Sequencing Illuminates Translational Dynamics and Molecular Mechanisms   

Exploring How RNC-RNA Sequencing Illuminates Translational Dynamics and Molecular Mechanisms  

The mRNA molecule being translated will create polysomes with numerous ribosomes, which will normally suspend in a high-density sucrose solution layer where the ongoing translating mRNAs can be segregated. The next step is very similar to RNA-Seq. RNC sequencing is a method for profiling the Ribosome Nascent-chain Complex using ...

ByCD Genomics


Clonality Analysis Service: A Paradigm Shift in Disease Diagnosis and Treatment

Clonality Analysis Service: A Paradigm Shift in Disease Diagnosis and Treatment

The backbone of clonality analysis is DNA and RNA sequencing, the most precise methods of determining the genetic makeup of cells. Through techniques such as next-generation sequencing (NGS), researchers can analyze huge volumes of genetic data, enabling the detection of even slight genetic variations among clones. ...

ByCreative Bioarray


Screening Antibodies by Single Cell Sequencing

Screening Antibodies by Single Cell Sequencing

Researchers have long been striving to identify antibodies that can combat pathogenic microorganisms. However, traditional methods of antibody discovery require substantial time and effort and often fail to identify the most effective antibodies. In recent years, the advancement of single-cell sequencing technologies has offered a new possibility for the screening of antibodies.What is ...

ByMtoZ Biolabs


Protein-Protein Interaction Sequencing

Protein-Protein Interaction Sequencing

In-depth research on protein interaction plays a crucial role in life science research. Proteins are the main bearers of life activities, and their interactions form a complex molecular network within biological cells. Protein-Protein Interaction Sequencing (PPI-Seq) is an emerging technology. Based on high-throughput sequencing, it allows researchers to explore protein interactions at the whole ...

ByMtoZ Biolabs


Guidelines Spotlight: ESMO urge NGS testing for additional advanced cancers

Guidelines Spotlight: ESMO urge NGS testing for additional advanced cancers

The ESMO Precision Medicine Working Group (PMWG) first published its recommendations for when to use next-generation sequencing (NGS) in routine practice for patients with metastatic cancers in 20201. ...

BySOPHiA Genetics


Sequencing of Proteins, Peptides, and Antibodies in Biomedicine

Sequencing of Proteins, Peptides, and Antibodies in Biomedicine

Next-Generation Sequencing (NGS) Technology for ProteomicsHigh-throughput protein sequencing technology can comprehensively analyze proteomics, helping to discover biological markers and disease monitoring. ...

ByMtoZ Biolabs


Antibody Sequencing: Insights for Drug Design

Antibody Sequencing: Insights for Drug Design

Against this backdrop, Next-Generation Sequencing (NGS) was born. NGS sequencing technology has greatly reduced sequencing costs and significantly increased sequencing speed while maintaining high accuracy, but the sequence read length is generally low. In ...

ByMtoZ Biolabs


Q&A: The evolving role of antibody-drug conjugates in oncology

Q&A: The evolving role of antibody-drug conjugates in oncology

Dr. Kate Sasser from Tempus led a discussion on the potential of antibody-drug conjugates (ADCs), their challenges in targeting tumor antigens, and the future of cancer treatment with Dr. Daniel Johnson, Dr. Funda Meric-Bernstam, and Dr. Kellogg Parsons. The oncology field is rapidly advancing with the development of antibody-drug conjugates (ADCs), offering new hope for ...

ByTempus


Variant Analysis Workflow in Bioinformatics   

Variant Analysis Workflow in Bioinformatics  

The research of genomic variation between species and individual organisms has been revolutionized by next-generation sequencing (NGS) technologies. Variant detection and analysis refer to the sequencing and difference analysis of a genome from an individual or a population of a species using high-throughput ...

ByCD Genomics


Rare Disease Research: from Diagnostic Development to Small Molecule Drug Development

Rare Disease Research: from Diagnostic Development to Small Molecule Drug Development

To improve the diagnostic efficiency and accuracy of rare diseases, a variety of cutting-edge technologies led by high throughput next-generation sequencing technology have been introduced into the diagnosis of rare diseases, which not only deeply explore the genetic pathogenesis, but also provide new ideas and directions for treatment and ...

ByProtheragen

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