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3,544 results on '"Pyruvic Acid metabolism"'

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1. Mitochondrial pyruvate transport regulates presynaptic metabolism and neurotransmission.

2. Cell-Free Systems Biology: Characterizing Central Metabolism of Clostridium thermocellum with a Three-Enzyme Cascade Reaction.

3. Hepatitis B Virus and Hepatitis C Virus Affect Mitochondrial Function Through Different Metabolic Pathways, Explaining Virus-Specific Clinical Features of Chronic Hepatitis.

4. Different transcriptomic and metabolomic analysis of Saccharomyces cerevisiae BY4742 and CEN.PK2-1C strains.

5. Structural organization of pyruvate: ferredoxin oxidoreductase from the methanogenic archaeon Methanosarcina acetivorans.

6. Enhanced d-pantothenic acid biosynthesis by plasmid-free Escherichia coli through sodium pyruvate addition combined with glucose and temperature control strategy.

7. Sepsis-induced changes in pyruvate metabolism: insights and potential therapeutic approaches.

8. Tissue derivatization for visualizing lactate and pyruvate in mouse testis tissues using matrix-assisted laser desorption/ionization-mass spectrometry imaging.

9. H-NOX Influences Biofilm Formation, Central Metabolism, and Quorum Sensing in Paracoccus denitrificans .

10. Enzymatic promiscuity and underground reactions accounted for the capability of Escherichia coli to use the non-natural chemical synthon 2,4-dihydroxybutyric acid as a carbon source for growth.

11. Mitochondrial control of hypoxia-induced pathological retinal angiogenesis.

12. The pyruvate-GPR31 axis promotes transepithelial dendrite formation in human intestinal dendritic cells.

13. Yeast Solutions and Hyperpolarization Enable Real-Time Observation of Metabolized Substrates Even at Natural Abundance.

14. In vivo Metabolic Sensing of Hyperpolarized [1- 13 C]Pyruvate in Mice Using a Recyclable Perfluorinated Iridium Signal Amplification by Reversible Exchange Catalyst.

15. Cerebral net uptake of lactate contributes to neurological injury after experimental cardiac arrest in rabbits.

16. Role of Exogenous Pyruvate in Maintaining Adenosine Triphosphate Production under High-Glucose Conditions through PARP-Dependent Glycolysis and PARP-Independent Tricarboxylic Acid Cycle.

17. Spinster homolog 2 (SPNS2) deficiency drives endothelial cell senescence and vascular aging via promoting pyruvate metabolism mediated mitochondrial dysfunction.

18. Parahydrogen-enhanced pH measurements using [1- 13 C]bicarbonate derived from non-enzymatic decarboxylation of [1- 13 C]pyruvate-d 3 .

19. Pyruvate stimulates transamination of leucine into α-ketoisocaproic acid and supports 3-methylbutanal production by Lactococcus lactis.

20. Recombinant lactate-assimilating cyanobacteria reduce high-concentration culture-associated cytotoxicity in mammalian cells.

21. Bioresponsive Nanoparticles Boost Starvation Therapy and Prevent Premetastatic Niche Formation for Pulmonary Metastasis Treatment.

22. Rubisco supplies pyruvate for the 2-C-methyl-D-erythritol-4-phosphate pathway.

23. Perturbations in mitochondrial metabolism associated with defective cardiolipin biosynthesis: An in-organello real-time NMR study.

24. Identification of genes contributing to attenuation of rat model of galactose-induced cataract by pyruvate.

25. Identification of efficient amine transaminase and applicability in dual transaminases cascade for synthesis of L-phosphinothricin.

26. Corynebacterium glutamicum pyruvate:quinone oxidoreductase: an enigmatic metabolic enzyme with unusual structural features.

27. Brain metabolism after therapeutic hypothermia for murine hypoxia-ischemia using hyperpolarized [1- 13 C] pyruvate magnetic resonance spectroscopy.

28. The mitochondrial pyruvate carrier regulates adipose glucose partitioning in female mice.

29. Metabolic modelling identifies mitochondrial Pi uptake and pyruvate efflux as key aspects of daytime metabolism and proton homeostasis in crassulacean acid metabolism leaves.

30. Metabolic cycles: A unifying concept for energy transfer in the heart.

31. A pharmacokinetic model for hyperpolarized 13 C-pyruvate MRI when using metabolite-specific bSSFP sequences.

32. Glucose-1,6-bisphosphate: A new gatekeeper of cerebral mitochondrial pyruvate uptake.

33. A Self-Assembling γPFD-SpyCatcher Hydrogel Scaffold for the Coimmobilization of SpyTag-Enzymes to Facilitate the Catalysis of Regulated Enzymes.

34. Real-Time Metabolic Magnetic Resonance Spectroscopy of Pancreatic and Colon Cancer Tumor-Xenografts with Parahydrogen Hyperpolarized 1- 13 C Pyruvate-d 3 .

35. L-Lactate dehydrogenase from Cyanidioschyzon merolae shows high catalytic efficiency for pyruvate reduction and is inhibited by ATP.

36. The importance of acetate, pyruvate, and citrate feeding times in improving xanthan production by Xanthomonas citri.

37. Longitudinal changes in mitochondrial-associated measures and insulin resistance in youth with perinatally-acquired HIV in the U.S.

38. Thiazolium salt mimics the non-coenzyme effects of vitamin B 1 in rat synaptosomes.

39. Intracellular pyruvate as one of the major bioactive substances of lactic acid bacteria isolated from kimchi.

40. Dietary pyruvate targets cytosolic phospholipase A2 to mitigate inflammation and obesity in mice.

41. Particle-based MR modeling with diffusion, microstructure, and enzymatic reactions.

42. Three-dimensional radial echo-planar spectroscopic imaging for hyperpolarized 13 C MRSI in vivo.

43. Measuring cerebral enzymatic activity, brain pH and extracranial muscle metabolism with hyperpolarized 13 C-pyruvate.

44. Differentiating leukemia subtypes based on metabolic signatures using hyperpolarized 13 C NMR.

45. Metabolic MRI With Hyperpolarized 13 C-Pyruvate for Early Detection of Fibrogenic Kidney Metabolism.

46. Visualizing metabolic regulation using metabolic biosensors during sea urchin embryogenesis.

47. Metabolic specialization drives reduced pathogenicity in Pseudomonas aeruginosa isolates from cystic fibrosis patients.

48. Mitochondrial pyruvate carrier 2 mitigates acute kidney injury via sustaining mitochondrial metabolism.

49. Pyruvate metabolism dictates fibroblast sensitivity to GLS1 inhibition during fibrogenesis.

50. Metabolic and transcriptomic reprogramming during contact inhibition-induced quiescence is mediated by YAP-dependent and YAP-independent mechanisms.

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