Search results for "carbohydrate"

showing 10 items of 882 documents

Addition of reducing agent dithiothreitol improves 4-decanolide synthesis by the genus Sporidiobolus.

2000

Two species of the genus Sporidiobolus, S. johnsonii and S. ruinenii, were used to study the effect of the reducing agent, dithiothreitol (DTT), on 4-decanolide production using ricinoleic acid as the substrate. The results indicate that the addition of DTT into the cultures significantly enhanced 4-decanolide biosynthesis by the two species.

chemistry.chemical_classificationbiologyChemistryReducing agentStereochemistryRicinoleic acidfood and beveragesSubstrate (chemistry)BioengineeringSporidiobolusbiology.organism_classificationApplied Microbiology and BiotechnologyDithiothreitolcarbohydrates (lipids)chemistry.chemical_compoundBiochemistryBiosynthesisGenusLactoneBiotechnologyJournal of bioscience and bioengineering
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Chitin: A Structural Biopolysaccharide with Multiple Applications

2014

Chitin is a naturally occurring fibre-forming polymer that plays a protective role in many lower eukaryotes similar to that of cellulose in plants. Chemically it is a long-chain unbranched polysaccharide made of N-acetylglucosamine residues linked through β-1,4 covalent bonds; it is the second most abundant organic compound in nature, after cellulose. Taking into account the role played by chitin in different biological structures (i.e. fungal cell walls, insect peritrophic matrix, insect and crustacean cuticles, eggshells from nematodes, cyst wall of protozoa), its metabolism (biosynthesis and degradation) is essential for different morphogenetic events. Absent in vertebrates and plants, c…

chemistry.chemical_classificationbiologyfungimacromolecular substancesChitin synthasePolysaccharidecarbohydrates (lipids)Cell wallChitosanchemistry.chemical_compoundChitinchemistryBiochemistryChitinasebiology.proteinChitin nanofibrilPeritrophic matrixeLS
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ChemInform Abstract: Synthesis of Glycopeptides Containing Carbohydrate and Peptide Recognition Motifs

2001

chemistry.chemical_classificationchemistryBiochemistryPeptideGeneral MedicineCarbohydrateGlycopeptideChemInform
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Carbohydrates as Polyfunctional Scaffolds in Combinatorial Synthesis

2006

Carbohydrates are inexpensive, polyfunctional molecules which contain a high density of stereogenic centers. Taking advantage of these particular properties monosaccharides like glucose or mannose have been used for the construction of peptidomimetics which simulate recognition sites of somatostatin or RGD ligands of integrins. Due to their poly functionality, carbohydrates are considered promising scaffolds for combinatorial syntheses either in solution or on solid phase. The application of carbohydrate scaffolds, however, requires sets of orthogonally stable, selectively removable protecting groups, and the challenge in this combinatorial strategy increases with increasing number of hydro…

chemistry.chemical_classificationchemistry.chemical_compoundSolid-phase synthesischemistryPeptidomimeticMonosaccharideMannoseSequence (biology)General MedicineCarbohydrateCombinatorial chemistryLinkerStereocenterChemInform
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Effect of protein/essential amino acids and resistance training on skeletal muscle hypertrophy: A case for whey protein

2010

Abstract Regardless of age or gender, resistance training or provision of adequate amounts of dietary protein (PRO) or essential amino acids (EAA) can increase muscle protein synthesis (MPS) in healthy adults. Combined PRO or EAA ingestion proximal to resistance training, however, can augment the post-exercise MPS response and has been shown to elicit a greater anabolic effect than exercise plus carbohydrate. Unfortunately, chronic/adaptive response data comparing the effects of different protein sources is limited. A growing body of evidence does, however, suggest that dairy PRO, and whey in particular may: 1) stimulate the greatest rise in MPS, 2) result in greater muscle cross-sectional …

chemistry.chemical_classificationmedicine.medical_specialtyWhey proteinNutrition and Dieteticsbusiness.industryEndocrinology Diabetes and MetabolismResistance trainingMedicine (miscellaneous)Skeletal musclelcsh:TX341-641ReviewClinical nutritionAdaptive responseCarbohydrateAmino acidlcsh:Nutritional diseases. Deficiency diseasesEndocrinologymedicine.anatomical_structurechemistryInternal medicinemedicineIngestionbusinesslcsh:Nutrition. Foods and food supplylcsh:RC620-627Nutrition & Metabolism
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Metabolic integration in locust flight: the effect of octopamine on fructose 2,6-bisphosphate content of flight muscle in vivo

1994

The biogenic amine octopamine was injected into the haemolymph of 20-days old male locusts,Locusta migratoria, and the content of fructose 2,6-bisphosphate, a potent activator of glycolysis, was measured in the flight muscle after various time. Octopamine brought about a transient increase in fructose 2,6-bisphosphate. After the injection of 10 μl of 10 mmol·l-1 d, l-octopamine fructose 2,6-bisphosphate was increased by 61% within 2 min. Ten minutes after the injection fructose 2,6-bisphosphate was increased to 6.71±0.89 nmol·g-1 flight muscle, almost 300% over the control value. Flight caused fructose 2,6-bisphosphate in flight muscle to decrease, but this decrease was counteracted by octo…

chemistry.chemical_classificationmedicine.medical_specialtybiologyPhysiologyFructoseMetabolismCarbohydratebiology.organism_classificationBiochemistrychemistry.chemical_compoundEndocrinologyEndocrinologyBiochemistryFructose 26-bisphosphatechemistryInternal medicineBiogenic amineHemolymphmedicineAnimal Science and ZoologyGlycolysisEcology Evolution Behavior and SystematicsLocustJournal of Comparative Physiology B
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Lactatbildung aus Zuckern und Zuckeralkoholen in Erythrocyten

1965

Erythrocyten konnen Lactat bilden aus Glucose, Fructose, Sorbit, Xylit und Ribit. Mannit wird nicht umgesetzt. Die Kombinationen Xylit + Glucose, Xylit + Fructose und Sorbit + Glucose ergeben additive Lactatbildung. Bei den Kombinationen Xylit + Sorbit, Xylit + Ribit und Glucose + Fructose addiert sich die Lactatbildung nicht. Uber Konsequenzen dieser Befunde fur die parenterale Therapie wird diskutiert.

chemistry.chemical_compoundBiochemistryChemistryDrug DiscoveryMolecular MedicineFructoseSorbitolGeneral MedicineCarbohydrate metabolismXylitolGenetics (clinical)Klinische Wochenschrift
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Visible Light Enables Aerobic Iodine Catalyzed Glycosylation

2019

chemistry.chemical_compoundGlycosylationCarbohydrate chemistryChemistryOrganic Chemistrychemistry.chemical_elementPhysical and Theoretical ChemistryPhotochemistryIodineCatalysisVisible spectrumEuropean Journal of Organic Chemistry
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Involvement of Peroxynitrite on the Early Loss of P450 in Short-Term Hepatocyte Cultures

2001

The biological chemistry of nitric oxide (NO) in the oxygenated cellular environment is extremely complex. It involves the direct interaction of NO with specific biomolecules and the so-called indirect effects, due to secondary more potent oxidant species derived from NO which are also able to react with DNA, lipids, thiols and transition metals (Wink et al. 1996; Nathan, 1992). In addition to its regulatory role as a signalling molecule (Nathan, 1992; Moncada and Palmer, 1991) it has become evident that NO (or NO-derived species) is a critical factor involved in various toxicological mechanisms (Wink et al. 1996; Wang et al. 1998; Estevez et al. 1999; Wink et al. 1999). Some controversy ex…

chemistry.chemical_compoundPeroxynitrous acidmedicine.anatomical_structureChemistryHepatocyteCellmedicineCarbohydrate metabolismPhenotypeFunction (biology)PeroxynitriteNitric oxideCell biology
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ChemInform Abstract: Desymmetrization Reactions on 4-Pyridone Using Carbohydrate Templates.

2010

chemistry.chemical_compoundTemplatechemistryOrganic chemistryGeneral MedicineCarbohydrate4-PyridoneDesymmetrizationChemInform
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