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The complete surface structure of epidemic virus COVID-19.Omics represent collective technologies, including genomics, transcriptomics, proteomics, and metabolomics, which can help researchers to study the roles and effects of the different molecules that make up an organism’s cells. The primary importance of multi-omics techniques lies in the detection and validation of all gene products (including transcripts, proteins, and metabolites) in any given biological sample. These techniques have been applied to characterize gene/protein expression profiles and their complex effects on various viruses. Creative Proteomics is a leading custom service provider in the field of viral multi-omics. In addition to providing a range of virus detection and quantification services, we also provide viral metagenomics, transcriptomics, proteomics, and metabolomics experiments and multi-omics joint analysis services.

Service offering in Creative Proteomics

Virus Detection and Quantification Services

Providing fast and accurate information about virus particles is a vital step for many aspects of virology research and biotechnology. We focus on virus detection and quantification, providing a series of improved or proven methods to meet customers' project needs.

Viral Metagenomic Sequencing Service

Genome sequencing is a powerful tool to study the genetic variation of viruses. Based on the genomic platforms, the pathogenesis and molecular evolution of viruses and epidemic investigation can be studied. Using advanced sequencing instruments and data analysis tools, we offer the most developed suite of metagenomic sequencing services.

Viral Proteomics Services

Nowadays, proteomics has been widely used in the research and development of different diseases. Proteomic data can be used not only to identify and quantitate proteins but also to detect post-translational modifications. Based on a range of MS-based methods, we can promote the investigations of viral proteomes and host responses associated with viral infections.

Viral Transcriptome Sequencing Services

Recently, transcriptomics (RNA-Seq) is a widely used method for studying the host response to viral infections. We offer robust technologies to bring new insights into the study of viral transcriptomes, including short-read sequencing and long-read sequencing technologies. We are able to sequence and investigate full-length host and virus transcripts in their native RNA form.

Viral Glycoproteomics Services

In-depth characterization of glycosylation of viral glycoproteins has greatly promoted the understanding of viral pathogenesis as well as the development of vaccines and antivirals. Based on the state-of-the-art facilities and highly experienced staff, we are able to provide information on glycan location, glycosite occupancy, and glycosite heterogeneities assignment for the study of glycosylation of viral glycoproteins.

Viral Metabolomics Services

Metabolomics contributes to the understanding of host-virus interactions by generating immediate information on the ultimate fates of the analytes and the exact downstream effects. Based on LC-MS, GC-MS, 1H NMR, and other advanced technologies, we can provide accurate and sensitive metabolomics analysis for virus research.

Viral Multi-Omics Analysis Services

Multiomics techniques have great potential in understanding the pathophysiological processes of viruses, as well as the diagnosis, screening and prognosis of viral diseases. Based on best-in-class technology and unmatched expertise, we are dedicated to providing the overall solution in the field of virus research from a multi-omics perspective.

Now it's time to use omics techniques to uncover all the molecular secrets this virus is still hiding. For more information on how we can help you, please feel free to contact us.

* For research use only.

Creative Proteomics is committed to providing a range of virus detection and quantification services, as well as viral metagenomics, transcriptomics, proteomics, and metabolomics experiments and multi-omics joint analysis services.

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