Next-Generation Sequencing Technology: Current Trends and Advancements

Author:

Satam Heena1,Joshi Kandarp1ORCID,Mangrolia Upasana1ORCID,Waghoo Sanober1,Zaidi Gulnaz1ORCID,Rawool Shravani1,Thakare Ritesh P.2ORCID,Banday Shahid2,Mishra Alok K.2ORCID,Das Gautam1,Malonia Sunil K.2ORCID

Affiliation:

1. miBiome Therapeutics, Mumbai 400102, India

2. Department of Molecular Cell and Cancer Biology, UMass Chan Medical School, Worcester, MA 01605, USA

Abstract

The advent of next-generation sequencing (NGS) has brought about a paradigm shift in genomics research, offering unparalleled capabilities for analyzing DNA and RNA molecules in a high-throughput and cost-effective manner. This transformative technology has swiftly propelled genomics advancements across diverse domains. NGS allows for the rapid sequencing of millions of DNA fragments simultaneously, providing comprehensive insights into genome structure, genetic variations, gene expression profiles, and epigenetic modifications. The versatility of NGS platforms has expanded the scope of genomics research, facilitating studies on rare genetic diseases, cancer genomics, microbiome analysis, infectious diseases, and population genetics. Moreover, NGS has enabled the development of targeted therapies, precision medicine approaches, and improved diagnostic methods. This review provides an insightful overview of the current trends and recent advancements in NGS technology, highlighting its potential impact on diverse areas of genomic research. Moreover, the review delves into the challenges encountered and future directions of NGS technology, including endeavors to enhance the accuracy and sensitivity of sequencing data, the development of novel algorithms for data analysis, and the pursuit of more efficient, scalable, and cost-effective solutions that lie ahead.

Publisher

MDPI AG

Subject

General Agricultural and Biological Sciences,General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology

Reference211 articles.

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