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  • Circular dichroism (CD) spectroscopy is a fast, simple, and accurate method for studying protein structures in dilute solutions. The structural analysis was performed using the circular dichroism of proteins and the difference in absorption of left and right circularly polarized light by asymmetric molecules. near uv circular dichroism https://www.creative-proteomics.com/pronalyse/circular-dichroism-spectroscopy-near-uv.html
    Circular dichroism (CD) spectroscopy is a fast, simple, and accurate method for studying protein structures in dilute solutions. The structural analysis was performed using the circular dichroism of proteins and the difference in absorption of left and right circularly polarized light by asymmetric molecules. near uv circular dichroism https://www.creative-proteomics.com/pronalyse/circular-dichroism-spectroscopy-near-uv.html
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    Near UV Circular Dichroism Spectroscopy Analysis - Creative Proteomics
    As a reliable partner of biopharmaceutical companies, Creative Proteomics can provide customers with near UV circular dichroism spectroscopy analysis services based on GLP / GMP.
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  • Circular dichroism (CD) spectroscopy is a fast, simple, and accurate method for studying protein structures in dilute solutions. The structural analysis was performed using the circular dichroism of proteins and the difference in absorption of left and right circularly polarized light by asymmetric molecules. circular dichroism spectra analysis https://www.creative-proteomics.com/pronalyse/circular-dichroism-spectroscopy-far-uv.html
    Circular dichroism (CD) spectroscopy is a fast, simple, and accurate method for studying protein structures in dilute solutions. The structural analysis was performed using the circular dichroism of proteins and the difference in absorption of left and right circularly polarized light by asymmetric molecules. circular dichroism spectra analysis https://www.creative-proteomics.com/pronalyse/circular-dichroism-spectroscopy-far-uv.html
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    Far UV Circular Dichroism Spectroscopy Analysis - Creative Proteomics
    Creative Proteomics can provide customers with far UV circular dichroism spectroscopy analysis services based on GLP / GMP.
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  • Nuclear magnetic resonance technology can be used as a conventional structural analysis method to determine the solution structure and dynamics of biological macromolecules and their complexes. It can also be widely used as a standard test method to study the interaction of biomacromolecules with biomacromolecules and biomacromolecules with small molecule ligands. nuclear magnetic resonance nmr spectroscopy https://www.creative-proteomics.com/pronalyse/nuclear-magnetic-resonance-nmr-spectroscopy.html
    Nuclear magnetic resonance technology can be used as a conventional structural analysis method to determine the solution structure and dynamics of biological macromolecules and their complexes. It can also be widely used as a standard test method to study the interaction of biomacromolecules with biomacromolecules and biomacromolecules with small molecule ligands. nuclear magnetic resonance nmr spectroscopy https://www.creative-proteomics.com/pronalyse/nuclear-magnetic-resonance-nmr-spectroscopy.html
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    Nuclear Magnetic Resonance (NMR) Pharmaceutical Analysis - Creative Proteomics
    Creative Proteomics can provide customers with high-quality nuclear magnetic resonance (NMR) drug analysis services, which can be applied to scientific research in life sciences and biopharmaceuticals.
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  • Amino acid analysis is an important biochemical technique at all stages of drug discovery. This method can be used to determine the amino acid composition and content of protein (polypeptide) drugs or other biological agents, to determine the primary or secondary structure of protein (polypeptide), and also to quantify free amino acids. plasma amino acid analysis https://www.creative-proteomics.com/pronalyse/amino-acid-analysis.html
    Amino acid analysis is an important biochemical technique at all stages of drug discovery. This method can be used to determine the amino acid composition and content of protein (polypeptide) drugs or other biological agents, to determine the primary or secondary structure of protein (polypeptide), and also to quantify free amino acids. plasma amino acid analysis https://www.creative-proteomics.com/pronalyse/amino-acid-analysis.html
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    Amino Acid Analysis Service - Creative Proteomics
    Creative Proteomics has advanced instruments and analytical workflow to provide you with reliable, high-quality amino acid analysis and perfect pre-sales and after-sales services.
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  • Based on the LC-MS/MS platform, Creative Proteomics use analytical standard detection methods to perform accurate qualitative and quantitative analysis on the pre-screened and validated or identified potential biomarkers (chlorophyll). chlorophyll content analysis https://metabolomics.creative-proteomics.com/chlorophyll-analysis-service.htm
    Based on the LC-MS/MS platform, Creative Proteomics use analytical standard detection methods to perform accurate qualitative and quantitative analysis on the pre-screened and validated or identified potential biomarkers (chlorophyll). chlorophyll content analysis https://metabolomics.creative-proteomics.com/chlorophyll-analysis-service.htm
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    Chlorophyll Analysis Service - Creative Proteomics
    We provide highly sensitive and accurate targeted metabolome analysis services for chlorophyl b through the LC-MS/MS platform.
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  • Pyruvate locates an intersection of key pathways of energy metabolism. It is the end product of glycolysis and the starting point for gluconeogenesis, and can be generated by transamination of alanine. It can be converted by the pyruvate dehydrogenase complex to acetyl CoA, which can enter the TCA cycle or serve as the starting point for the syntheses of long chain fatty acids, steroids, and ketone bodies depending on the tissue and metabolic state in which it is formed. It also has a critical role in balancing the energy needs of various tissues in the body. Abnormalities in pyruvate metabolism are associated with various diseases, such as pyruvate dehydrogenase complex deficiency and pyruvate carboxylase deficiency. Pyruvate metabolism analysis with the help of highly sensitive analytical tools is a powerful way to diagnose and gain new insights into disease mechanisms and treatments. pyruvate metabolism https://metabolomics.creative-proteomics.com/pyruvate-metabolism-service.htm
    Pyruvate locates an intersection of key pathways of energy metabolism. It is the end product of glycolysis and the starting point for gluconeogenesis, and can be generated by transamination of alanine. It can be converted by the pyruvate dehydrogenase complex to acetyl CoA, which can enter the TCA cycle or serve as the starting point for the syntheses of long chain fatty acids, steroids, and ketone bodies depending on the tissue and metabolic state in which it is formed. It also has a critical role in balancing the energy needs of various tissues in the body. Abnormalities in pyruvate metabolism are associated with various diseases, such as pyruvate dehydrogenase complex deficiency and pyruvate carboxylase deficiency. Pyruvate metabolism analysis with the help of highly sensitive analytical tools is a powerful way to diagnose and gain new insights into disease mechanisms and treatments. pyruvate metabolism https://metabolomics.creative-proteomics.com/pyruvate-metabolism-service.htm
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    Pyruvate Analysis Service - Creative Proteomics
    Creative Proteomics has the expertise, experience and technology to provide qualitative and quantitative analysis of pyruvate and pyruvate -related products to advance your scientific research.
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  • Sucrose and starch are both carbohydrates, which are important energy carriers in plants and important raw materials for human food processing. Research in the fields of physiology, biochemistry and molecular biology of sucrose and starch metabolism. Creative Proteomics has the expertise, experience and technology to provide absolute quantitative analysis services for sucrose and starch and qualitative and quantitative analysis of metabolites or proteins in the metabolism of sucrose and starch to facilitate your scientific research. sucrose hplc https://metabolomics.creative-proteomics.com/starch-and-sucrose-metabolism-service.htm
    Sucrose and starch are both carbohydrates, which are important energy carriers in plants and important raw materials for human food processing. Research in the fields of physiology, biochemistry and molecular biology of sucrose and starch metabolism. Creative Proteomics has the expertise, experience and technology to provide absolute quantitative analysis services for sucrose and starch and qualitative and quantitative analysis of metabolites or proteins in the metabolism of sucrose and starch to facilitate your scientific research. sucrose hplc https://metabolomics.creative-proteomics.com/starch-and-sucrose-metabolism-service.htm
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    Starch and Sucrose Metabolism Service - Creative Proteomics
    Creative Proteomics has the expertise, experience and technology to provide absolute quantitative analysis services for sucrose and starch and qualitative and quantitative analysis of metabolites or proteins in the metabolism of sucrose and starch to facilitate your scientific research.
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  • Ascorbate and aldarate metabolism is one of important carbohydrate metabolic pathways and can protect cells against oxidative damage resulting from aerobic metabolism and a range of pollutants. Ascorbate and aldarate metabolism likely affect the oxidative stress response which is closely involved in transformation of L-urobilinogen from L-Urobilin, both of which is related to the oxidative stress. The oxidative stress stimulates the generation of reactive oxygen species, which is closely associated to a lot of pathologies of diseases and disorders such as cardiovascular disease, cancer, aging, and various neurodegenerative diseases. ascorbic acid metabolism https://metabolomics.creative-proteomics.com/ascorbate-and-aldarate-metabolism-service.htm
    Ascorbate and aldarate metabolism is one of important carbohydrate metabolic pathways and can protect cells against oxidative damage resulting from aerobic metabolism and a range of pollutants. Ascorbate and aldarate metabolism likely affect the oxidative stress response which is closely involved in transformation of L-urobilinogen from L-Urobilin, both of which is related to the oxidative stress. The oxidative stress stimulates the generation of reactive oxygen species, which is closely associated to a lot of pathologies of diseases and disorders such as cardiovascular disease, cancer, aging, and various neurodegenerative diseases. ascorbic acid metabolism https://metabolomics.creative-proteomics.com/ascorbate-and-aldarate-metabolism-service.htm
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    Ascorbate and Aldarate Metabolism Service - Creative Proteomics
    Creative Proteomics provide a wide spectrum of ascorbate and aldarate metabolism services for animal, covering all ascorbate and aldarate metabolism related metabolites
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  • Compared with mammals lipidomics research, microorganisms lipidomics research has the following advantages, (1) The lipidomics are relatively simple (The types of fatty acids in microbial cells are less than those in mammals, and there are no polyunsaturated fatty acids); (2) The microbial culture time is short and the culture process is relatively simple; (3) A large number of mutants are produced by gene knockout technology, which can be further analyzed by studying the effect of the gene at the molecular and cellular levels; microbial lipidomics https://lipidomics.creative-proteomics.com/microorganisms-untargeted-lipidomics.htm
    Compared with mammals lipidomics research, microorganisms lipidomics research has the following advantages, (1) The lipidomics are relatively simple (The types of fatty acids in microbial cells are less than those in mammals, and there are no polyunsaturated fatty acids); (2) The microbial culture time is short and the culture process is relatively simple; (3) A large number of mutants are produced by gene knockout technology, which can be further analyzed by studying the effect of the gene at the molecular and cellular levels; microbial lipidomics https://lipidomics.creative-proteomics.com/microorganisms-untargeted-lipidomics.htm
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    Microbial Untargeted Lipidomics Service - Lipidomics|Creative Proteomics
    The lipids found in microorganisms can be substantially different from those in eukaryotic systems, but they are equally important. Creative Proteomics provides reliable, rapid and cost-effective microorganisms untargeted lipidomics based on LC-MS or shot-gun methods for our customers.
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  • Nevertheless, mitochondria contribute a small fraction to cellular contents, profiling of whole cell is probably unsuitable for monitoring alterations in mitochondria. Therefore, lipidomics analyses specially for mitochondria are necessary to understand lipid pathways induced by environment and diseases. Creative Proteomics provides one-step mitochondrial untargeted lipidomics services from mitochondrial isolation, lipid extraction, lipid detection and data analysis. mitochondrial lipid peroxidation https://lipidomics.creative-proteomics.com/mitochondrial-untargeted-lipidomics.htm
    Nevertheless, mitochondria contribute a small fraction to cellular contents, profiling of whole cell is probably unsuitable for monitoring alterations in mitochondria. Therefore, lipidomics analyses specially for mitochondria are necessary to understand lipid pathways induced by environment and diseases. Creative Proteomics provides one-step mitochondrial untargeted lipidomics services from mitochondrial isolation, lipid extraction, lipid detection and data analysis. mitochondrial lipid peroxidation https://lipidomics.creative-proteomics.com/mitochondrial-untargeted-lipidomics.htm
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    Mitochondrial Lipidomics Service - Lipidomics|Creative Proteomics
    Creative Proteomics provides one-step mitochondrial untargeted lipidomics services from mitochondrial isolation, lipid extraction, lipid detection and data analysis for biomedical research institutions, biotechnology and pharmaceutical companies.
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