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Related Concept Videos

Genomics02:02

Genomics

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Genomics is the science of genomes: it is the study of all the genetic material of an organism. In humans, the genome consists of information carried in 23 pairs of chromosomes in the nucleus, as well as mitochondrial DNA. In genomics, both coding and non-coding DNA is sequenced and analyzed. Genomics allows a better understanding of all living things, their evolution, and their diversity. It has a myriad of uses: for example, to build phylogenetic trees, to improve productivity and...
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Next-generation Sequencing03:00

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The first human genome sequencing project cost $2.7 billion and was declared complete in 2003, after 15 years of international cooperation and collaboration between several research teams and funding agencies. Today, with the advent of next-generation sequencing technologies, the cost and time of sequencing a human genome have dropped over 100 fold.
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Issues And Trends In Healthcare Delivery System01:29

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The issues and trends in healthcare delivery are constantly changing. The COVID-19 pandemic is one recent issue that wreaked havoc on healthcare systems, causing a shortage of healthcare workers, high demand for medicines and supplies, and increased medical expenditure due to a lack of insurance. Other issues include rising healthcare costs and care fragmentation.
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Proteomics01:33

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A proteome is the entire set of proteins that a cell type produces. We can study proteomes using the knowledge of genomes because genes code for mRNAs, and the mRNAs encode proteins. Although mRNA analysis is a step in the right direction, not all mRNAs are translated into proteins.
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MALDI-TOF Mass Spectrometry01:19

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Mass spectrometry is a powerful characterization technique that can identify and separate a wide variety of compounds ranging from chemical to biological entities, based on their mass-to-charge ratio (m/z). The instruments that allow this detection, known as mass spectrometers, have three components: an ion source, a mass analyzer, and a detector. These spectrometers differ based on the nature of their ion source and analyzers.
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Sanger Sequencing01:57

Sanger Sequencing

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DNA sequencing is a fundamental technique that is routinely used in the biological sciences. This method can be applied to a range of questions at different scales - from the sequencing of a cloned DNA fragment or the study of a mutation in a gene up to whole-genome sequencing. However, despite the widespread use of sequencing today, it was not until 1977 that Fredrick Sanger and his collaborators developed the chain-termination method to decode DNA sequences. It relies on the separation of a...
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Related Experiment Video

Updated: Aug 23, 2025

Author Spotlight: Integrated Multi-Omics Analysis for Unveiling Multicellular Immune Signatures in Clinical Heart Attack Cohorts
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[Preface for special issue on multi-omics frontier technologies].

Yuanming Luo1, Fuquan Yang2,3

  • 1Institute of Microbiology, Chinese Academy of Sciences, Beijing 100101, China.

Sheng Wu Gong Cheng Xue Bao = Chinese Journal of Biotechnology
|October 28, 2022
PubMed
Summary

Life science research increasingly uses multi-omics data integration for functional explanations. This special issue compiles 28 papers on recent advances and applications in multi-omics analysis.

Keywords:
genomicsmetabolomicsmulti-omicsproteomicstranscriptomics

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Area of Science:

  • Genomics
  • Transcriptomics
  • Proteomics
  • Metabolomics
  • Multi-omics

Context:

  • The post-genome era necessitates advanced methods for biological mechanism elucidation.
  • Functional explanation is a central task in contemporary life science research.
  • Integrative analysis of multi-omics data is crucial for uncovering complex biological insights.

Purpose:

  • To introduce research advances and applications in multi-omics data analysis.
  • To provide a reference for researchers in the field of multi-omics.
  • To highlight the importance of integrating diverse biological datasets.

Summary:

  • This special issue features 28 collected papers from domestic experts.
  • It covers recent research and applications in the integrative analysis of multi-omics data.
  • The collection serves as a valuable resource for the scientific community.

Impact:

  • Facilitates deeper understanding of biological mechanisms through data integration.
  • Advances the field of multi-omics research and its applications.
  • Supports researchers in leveraging multi-omics strategies for discovery.