Search results for "Glycolysis"

showing 4 items of 154 documents

Metabolic adaptation and neuroprotection differ in the retina and choroid in a piglet model of acute postnatal hypoxia.

2013

Hypoxic-ischemic insults to the neonatal brain may cause neurodevelopmental disorders. Vulnerability of different areas of the neural tissue to hypoxic-ischemic stress might be explained by either heterogeneous sensitivity to oxygen or neuroprotective capability. Our understanding of regional heterogeneity is still incomplete in terms of metabolic reconfiguration and/or activation of neuroprotective mechanisms.We studied, by western blotting, reverse-transcriptase PCR, and tandem mass spectrometry, the response of retina and choroid at protein, gene, and metabolic levels during hypoxia in a piglet model of acute postnatal hypoxia.We evidenced a metabolic shift towards glycolysis in choroid …

medicine.medical_specialtySwineanimal diseasesBlotting WesternMetabolic adaptationNeuroprotectionRetinafluids and secretionsStress PhysiologicalTandem Mass SpectrometryInternal medicinemedicineAnimalsHypoxiaRetinaintegumentary systembusiness.industryChoroidReverse Transcriptase Polymerase Chain ReactionHypoxia (medical)Hypoxia-Inducible Factor 1 alpha Subuniteye diseasesBlotmedicine.anatomical_structureEndocrinologyAnimals NewbornAnesthesiaPediatrics Perinatology and Child Healthsense organsChoroidmedicine.symptombusinessEnergy MetabolismGlycolysisSignal TransductionPediatric research
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Swelling, Intracellular Acidosis, and Damage of Glial Cells

1996

Cerebral ischemia and severe head injury among others are associated with a limited availability of oxygen, leading to cell catabolism as well as anaerobic glycolysis. Resulting metabolites, such as arachidonic- and lactic acid, can be expected to leak into perifocal brain areas, contributing there to cytotoxic swelling and damage of neurons and glia. Since elucidation of mechanisms underlying cell swelling and damage in the brain is difficult in vivo, respective investigations were carried out in vitro using suspended glial cells. Thereby, effects of arachidonic acid (AA) and of lactacidosis on glial cell volume, intracellular pH (pHi), and cell damage were analyzed utilizing flow cytometr…

medicine.medical_specialtybusiness.industryIntracellular pHmedicine.diseaseAmilorideSurgeryAnaerobic glycolysismedicineBiophysicsExtracellularViability assaymedicine.symptomSwellingbusinessCell damageAcidosismedicine.drug
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Value of Combined PET Imaging with [18F]FDG and [68Ga]Ga-PSMA-11 in mCRPC Patients with Worsening Disease during [177Lu]Lu-PSMA-617 RLT

2021

Despite the promising results of prostate-specific membrane antigen (PSMA)-targeted radioligand therapy (RLT) in metastatic castration-resistant prostate cancer (mCRPC), some patients show worsening disease during PSMA-RLT. We investigated the value of combined [18F]FDG and [68Ga]Ga-PSMA-11 PET imaging in this setting. In n = 29 mCRPC patients with worsening disease after a median of four cycles of [177Lu]Lu-PSMA-617 RLT, combined [18F]FDG and [68Ga]Ga-PSMA-11 PET imaging was performed to detect [18F]FDG-avid lesions with low or no PSMA expression (mismatch lesions). To evaluate prognostic implication of mismatch, survival analyses regarding presence, location, and [18F]FDG PET-derived para…

radioligand therapy; PSMA; FDG; PET/CT; mismatch; metastatic castration-resistant prostate cancerCancer Researchmedicine.medical_specialtyFDGPET/CTUrology610Diseaseurologic and male genital diseasesMetastasisProstate cancerPSMAmedicineRC254-282Membrane antigenPET-CTbusiness.industryNeoplasms. Tumors. Oncology. Including cancer and carcinogensPet imagingMetabolic tumor volumemedicine.diseaseradioligand therapyTotal lesion glycolysismetastatic castration-resistant prostate cancerOncologybusinessmismatchCancers
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Metabolic Reprogramming of Innate Immune Cells as a Possible Source of New Therapeutic Approaches in Autoimmunity.

2022

Immune cells undergo different metabolic pathways or immunometabolisms to interact with various antigens. Immunometabolism links immunological and metabolic processes and is critical for innate and adaptive immunity. Although metabolic reprogramming is necessary for cell differentiation and proliferation, it may mediate the imbalance of immune homeostasis, leading to the pathogenesis and development of some diseases, such as autoimmune diseases. Here, we discuss the effects of metabolic changes in autoimmune diseases, exerted by the leading actors of innate immunity, and their role in autoimmunity pathogenesis, suggesting many immunotherapeutic approaches.

therapyoxidative phosphorylationchronic inflammatory diseaseAutoimmunityGeneral MedicineglycolysisAdaptive Immunityimmune responseImmunity InnateAutoimmune Diseasesmetabolic pathwaysHumansinnate immunityMetabolic Networks and PathwaysCells
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