0000000000415160

AUTHOR

Lars Pilström

showing 5 related works from this author

Studies on vinblastine-induced autophagocytosis in mouse liver. III. A quantitative study.

1982

The microtubule inhibitor vinblastine (25 mg/kg, i.p.) induces autophagocytosis in mouse hepatocytes. The formation of autophagic vacuoles, their contents, and other cellular changes after vinblastine injection in hepatocytes, were studied by light and electron microscopic morphometric analysis. The volume density of autophagic vacuoles increased significantly during the experimental period (24 h). This increase was due to the significant increase in their number, which was approximately 5-fold 4 h, 12 h and 24 h after vinblastine injection. The mean volume of the autophagic vacuoles increased significantly 1 h after vinblastine injection, at which time the formation of new autophagic vacuo…

Malemedicine.medical_specialtyTime FactorsLiver cytologymedicine.medical_treatmentIntraperitoneal injectionVacuoleBiologyVinblastinesymbols.namesakeMicePhagocytosisInternal medicinemedicineAutophagyAnimalsLobules of liverEndoplasmic reticulumAcid phosphataseGolgi apparatusVinblastineEndocrinologyBiochemistryLiverbiology.proteinsymbolsmedicine.drugVirchows Archiv. B, Cell pathology including molecular pathology
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Effect of endurance training on the capacity of red and white skeletal muscle of mouse to oxidize carboxyl-14C-labelled palmitate.

1977

Three groups of mice were trained for 1, 4 and 5 months according to different running programs on a motor driven treadmill and the fatty acid oxidation capacity (FAO) and the activities of some enzymes of energy metabolism (cytochrome c oxidase, malate dehydrogenase, triosephosphate dehydrogenase, and lactate dehydrogenase) were determined from m. quadriceps femoris (MQF). Endurance training increased the FAO [5-month training 4 days/week, 30 min/day 22% (p less than 0.05); 1-month training, 7 days/week, 150 min/day 37% (p less than 0.001); 4-month training, 5 days/week, 60 min/day 24% (p less than 0.05)]. The activities of cytochrome c oxidase and malate dehydrogenase increased approx. 30…

Malemedicine.medical_specialtyTime FactorsPhysiologyPhysical ExertionPalmitatesPalmitic AcidsBiologyMalate dehydrogenaseElectron Transport Complex IVchemistry.chemical_compoundMiceEndurance trainingMalate DehydrogenaseLactate dehydrogenaseInternal medicineOxidative enzymemedicineCytochrome c oxidaseAnimalsCarbon RadioisotopesBeta oxidationchemistry.chemical_classificationL-Lactate DehydrogenaseMusclesSkeletal muscleGlyceraldehyde-3-Phosphate DehydrogenasesEnzymeEndocrinologymedicine.anatomical_structurechemistrybiology.proteinOxidation-ReductionActa physiologica Scandinavica
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Different genomic organization and expression of immunoglobulin light-chain isotypes in the rainbow trout.

2000

cDNA studies have distinguished two isotypes of the rainbow trout (Oncorhynchus mykiss) immunoglobulin (Ig) light chain (designated L1 and L2). This study characterized genomic clones of these isotypes. L1 genes are arranged in clusters with single copies of variable (V), joining (J), and constant (C) segments. The transcriptional orientation of the V genes is opposite to that of the J and C segments, indicating that the V genes must be rearranged by inversion. L2 is also organized in clusters, consisting of two or three V, one J, and one C exon, all in the same transcriptional orientation. L1 and L2 of rainbow trout are similar to the previously identified cod and catfish clusters. Repeat …

DNA ComplementaryTATA boxImmunologyMolecular Sequence DataImmunoglobulin Variable RegionGene ExpressionBiologyImmunoglobulin light chainComplementary DNASequence Homology Nucleic AcidGeneticsAnimalsAmino Acid SequenceRNA MessengerEnhancerPromoter Regions GeneticGeneGenomic organizationGeneticsBase SequenceSequence Homology Amino AcidMolecular biologyImmunoglobulin IsotypesRegulatory sequenceOncorhynchus mykissImmunoglobulin Joining RegionImmunoglobulin Light ChainsSequence motifImmunoglobulin Constant RegionsImmunogenetics
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Activity of acid hydrolases in skeletal muscle of untrained, trained and detrained mice of different ages.

1978

The activities of p-nitrophenylphosphatase, beta-glucuronidase and beta-N-acetylglucosaminidase from crude skeletal muscle homogenates of 4 and 7 months old mice were assayed after short-term intensive and long-term moderate training and after terminated training. In the older untrained mice the activity of the hydrolases was higher than in the younger mice. The level increased with training and this increase was far more pronounced in the older animals. Cessation of training for 7 and 21 days decreased this activity in the older animals but it was again increased 42 days later and close to the level observed in the trained mice. In young mice 3 days' terminated training increased the activ…

medicine.medical_specialty4-NitrophenylphosphatasePhysiologyCatabolismMuscleseducationPhysical ExertionAge FactorsSkeletal musclePhysiologyMetabolismBiologyPhosphoric Monoester HydrolasesMicemedicine.anatomical_structureHexosaminidasesAcetylglucosaminidasePhysical therapymedicineAnimalsGlucuronidaseActa physiologica Scandinavica
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Morphometry of myocardial apex in endurance-trained mice of different ages

1979

Mitochondrial volume density, surface density of the outer mitochondrial membrane, the mean number and size of mitochondria, and the mean surface density of crista membranes together with the volume densities of myofibrils and sarcoplasmic space were morpho-metrically analyzed in cardiac muscle of two groups of sedentary control mice aged 3 and 7 months, and in two groups of mice trained either 1 month rather intensely or 4 months moderately. Of the calculated mitochondrial variables only the surface density of the outer mitochondrial membrane differed between the older controls and the older trained animals, the density being slightly smaller in the trained group. The myofibrillar volume d…

medicine.medical_specialtyPhysical Education and TrainingTime FactorsPhysiologyMyocardiumSarcoplasmAge FactorsCardiac muscleStereologyOrgan SizeBiologyMitochondria HeartMiceCristamedicine.anatomical_structureCardiac muscle hypertrophyEndocrinologyEndurance trainingInternal medicinePhysical EndurancemedicineAnimalsMyocyteMyofibrilActa Physiologica Scandinavica
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