Creative Proteomics
Creative Proteomics, Inc.[1] is a CRO that specializes in proteomics[2], metabolomics[3], glycomics[4], and other related life science solutions. It has gained recognition as a contributor to the omics research sector, offering services to academic institutions, pharmaceutical companies, biotechnology firms, and research laboratories on a global scale.
Services
Creative Proteomics[5] offers analysis solutions, including:
- Proteomics Analysis: In-depth proteomics analysis[6] encompassing protein identification, quantification, post-translational modification analysis, and structural characterization.
- Metabolomics Analysis[7]: Metabolomics analysis is a scientific investigation of small molecules integral to biological processes, providing valuable insights into the intricate web of metabolic pathways and the underlying mechanisms of diseases. As the platform construction and project accumulation progressed, Creative Proteomics established a metabolite library of nearly 4,000 standard compounds on its metabolomics platform.
- Glycomics Analysis: Glycomics analysis[8] is a comprehensive exploration of the intricate world of sugar molecules, often referred to as glycans or glycoconjugates, within biological systems. Its primary objective is to unveil the pivotal roles these molecules play in the realms of biology and disease. The field of glycomics employs a diverse array of techniques and methodologies aimed at scrutinizing sugars from various angles, including deciphering sugar diversity and structure, exploring glycosylation sites, quantitative sugar analysis, unveiling glyco-transcriptomics, glycoprotein insight, and reconstruction of sugar metabolic pathways.
- Lipidomics Solution: Lipidomic analysis constitutes a systematic investigation and characterization of lipids within organisms, tissues, or cells, along with the molecules they interact with. Furthermore, it facilitates an in-depth exploration of lipid structures and functions, thus unveiling the intricate interplay between lipid metabolism and physiological as well as pathological processes spanning cells, organs, and the entire organism. The primary focus areas within lipidomics[9] research encompass the analysis and identification of lipids and their metabolites, the functional roles of lipids, regulatory mechanisms governing lipid metabolism, and the intricate networks and pathways that underlie lipid metabolism.
- Bioinformatics: Employs advanced tools and expertise to analyze large-scale omics data, providing valuable insights into complex biological systems.
Collaborations and Impact
Creative Proteomics has cultivated collaborations with leading academic institutions and pharmaceutical companies, contributing to the advancement of scientific knowledge and drug development. The company's work has been cited in numerous research publications, underscoring its significant impact on the field, including but not limited to the following:
- Universidad de Chile[10]
- Institute of Molecular and Cellular Biology (A*STAR), Singapore
- Carnegie Mellon University[11]
- Precision Biologics, Inc[12]
- University of California[13]
- and more.
This article "Creative Proteomics" is from Wikipedia. The list of its authors can be seen in its historical and/or the page Edithistory:Creative Proteomics. Articles copied from Draft Namespace on Wikipedia could be seen on the Draft Namespace of Wikipedia and not main one.
- ↑ "Creative Proteomics". News-Medical.net. Retrieved 2023-09-09.
- ↑ Zhang, Hong; Wu, Jiang; Lyu, Zhihui; Ling, Jiqiang (2021-09-09). "Impact of alanyl-tRNA synthetase editing deficiency in yeast". Nucleic Acids Research. 49 (17): 9953–9964. doi:10.1093/nar/gkab766. ISSN 0305-1048. PMC 8464055 Check
|pmc=value (help). PMID 34500470 Check|pmid=value (help). - ↑ Menden, Ariane; Hall, Davane; Hahn-Townsend, Coral; Broedlow, Courtney A.; Joshi, Utsav; Pearson, Andrew; Crawford, Fiona; Evans, James E.; Klatt, Nichole; Crynen, Stefan; Mullan, Michael; Ait-Ghezala, Ghania (2022-03-21). "Exogenous lipase administration alters gut microbiota composition and ameliorates Alzheimer's disease-like pathology in APP/PS1 mice". Scientific Reports. 12 (1): 4797. Bibcode:2022NatSR..12.4797M. doi:10.1038/s41598-022-08840-7. ISSN 2045-2322. PMC 8938460 Check
|pmc=value (help). PMID 35314754 Check|pmid=value (help). - ↑ Uribe, Victoria; Wills, Paul S.; Shenker, Jon M.; Adams, Aaron J.; Mejri, Sahar (December 2021). "A comprehensive biochemical characterization of settlement stage leptocephalus larvae of bonefish ( Albula vulpes )". Journal of Fish Biology. 99 (6): 1778–1785. doi:10.1111/jfb.14846. ISSN 0022-1112. PMID 34254307 Check
|pmid=value (help). Unknown parameter|s2cid=ignored (help) - ↑ "Creative Proteomics - PubChem Data Source". pubchem.ncbi.nlm.nih.gov. Retrieved 2023-09-09.
- ↑ "Creative Proteomics Accelerates Protein Research with Top-Down Proteomics Services". BioSpace. Retrieved 2023-09-09.
- ↑ "Creative Proteomics Announces the Launch of Its New Metabolomics Division | Medical XPRT". www.medical-xprt.com. Retrieved 2023-09-09.
- ↑ Glycomics Analysis by Mass Spectrometry, retrieved 2023-09-09
- ↑ Administrator, Exosome RNA (2021-08-24). "Creative Proteomics Announces Exosomes Lipidomics Service to Identify Lipid-based Biomarkers | Exosome RNA". Retrieved 2023-09-09.
- ↑ Maldonado, Edio; Rojas, Diego A.; Urbina, Fabiola; Valenzuela-Pérez, Lucía; Castillo, Christian; Solari, Aldo (January 2022). "Trypanosoma cruzi DNA Polymerase β Is Phosphorylated In Vivo and In Vitro by Protein Kinase C (PKC) and Casein Kinase 2 (CK2)". Cells. 11 (22): 3693. doi:10.3390/cells11223693. ISSN 2073-4409. PMC 9688435 Check
|pmc=value (help). PMID 36429121 Check|pmid=value (help). - ↑ Song, Liqing; Oseid, Daniel E.; Wells, Evan A.; Robinson, Anne Skaja (January 2022). "The Interplay between GSK3β and Tau Ser262 Phosphorylation during the Progression of Tau Pathology". International Journal of Molecular Sciences. 23 (19): 11610. doi:10.3390/ijms231911610. ISSN 1422-0067. PMC 9569960 Check
|pmc=value (help). PMID 36232909 Check|pmid=value (help). - ↑ Tsang, Kwong Y.; Fantini, Massimo; Zaki, Anjum; Mavroukakis, Sharon A.; Morelli, Maria Pia; Annunziata, Christina M.; Arlen, Philip M. (January 2022). "Identification of the O-Glycan Epitope Targeted by the Anti-Human Carcinoma Monoclonal Antibody (mAb) NEO-201". Cancers. 14 (20): 4999. doi:10.3390/cancers14204999. ISSN 2072-6694. PMC 9599200 Check
|pmc=value (help). PMID 36291783 Check|pmid=value (help). - ↑ Jiang, Xuan; Prabhakar, Amit; Van der Voorn, Stephanie M.; Ghatpande, Prajakta; Celona, Barbara; Venkataramanan, Srivats; Calviello, Lorenzo; Lin, Chuwen; Wang, Wanpeng; Black, Brian L.; Floor, Stephen N.; Lagna, Giorgio; Hata, Akiko (2021-02-23). "Control of ribosomal protein synthesis by the Microprocessor complex". Science Signaling. 14 (671). doi:10.1126/scisignal.abd2639. ISSN 1945-0877. PMC 8012103 Check
|pmc=value (help). PMID 33622983 Check|pmid=value (help).
