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  • 1
    Electronic Resource
    Electronic Resource
    Springer
    Annals of hematology 45 (1982), S. 131-139 
    ISSN: 1432-0584
    Keywords: Acute lead poisoning ; Urinary δ-aminolevulinic acid, porphobilinogen and porphyrins ; Erythrocyte protoporphyrin ; Hereditary porphobilinogen synthase deficiency
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Summary The second enzyme of the porphyrin and heme synthesis pathway, porphobilinogen synthase (EC 4.2.1.24), can be lowered due to a hereditary defect or toxic damage. Lead is the most common cause for a toxically lowered activity. We report on a 48-year-old patient with an acute abdominal syndrome, anemia and a grave toxic disorder of porphyrin metabolism which was diagnosed as acute lead intoxication. Although the hematologic findings and prophyrins in the blood, as well as porphyrin precursors and porphyrin excretion in the urine, returned to normal within five months after exacerbation of the acute symptoms the activity of porphobilinogen synthase showed only 50% physiologic activity of healthy subjects six years after the acute syndrome with complete normalization of porphyrin metabolites and lead levels in blood and urine. The influence of alcohol was excluded. Enzyme activation by zinc and reactivation by dithiothreitol lies within the normal range and thus contradicts an increased body burden of lead. In connection with findings of a familiar porphobilinogen synthase defect we are most likely dealing with a hereditarily determined enzyme deficiency in this patient which sensitizes him to a lead intoxication.
    Type of Medium: Electronic Resource
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  • 2
    Electronic Resource
    Electronic Resource
    Springer
    Development genes and evolution 195 (1986), S. 513-518 
    ISSN: 1432-041X
    Keywords: Regeneration ; Distal transformation ; Cell ; aggregation ; Cnidaria ; Hydractinia
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Summary Polyps of mature colonies of Hydractinia echinata obey the “rule of distal transformation” by regenerating heads but not stolons. However, this rule is not valid for young polyps as these regenerate stolons from proximal cut ends. Also, small cell aggregates and even small fragments excised from full-grown polyps are capable of stolon formation. Aggregates produced from dissociated cells undergo either distal or proximal transformation depending on their size, speed of head regeneration in the donor used for dissociation and the positional derivation of the cells. The latent capability of stolon formation is released under conditions that cause loss of morphogens and depletion of their sources. However, internal regulative processes can also lead to gradual proximal transformation: regenerating segments of polyps sometimes form heads at both ends and the distal pattern is duplicated. Subsequently, all sets of proximal structures, including stolons, are intercalated. In contrast to distal transformation, proximal transformation is a process the velocity of which declines with the age and size of the cell community.
    Type of Medium: Electronic Resource
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  • 3
    ISSN: 1432-0428
    Keywords: Juvenile type diabetes ; muscular exercise ; blood glucose ; ketosis ; free fatty acids ; amino acids ; insulin ; glucagon ; growth hormone ; cortisol
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Summary Metabolic and hormonal effects of muscular exercise were studied in juvenile-type diabetics in relation to the prevailing degree of metabolic control and compared with those in healthy control subjects. Two groups of diabetic patients, one in moderate metabolic control and one in ketosis due to insulin withdrawal, were subjected to a 3 hour bicycle ergometer test of comparable, mild work intensity. In both groups of diabetics the exercise-induced rise in blood lactate was similar, but was significantly higher than in control subjects. Blood alanine levels showed a transient, significant rise in both diabetic groups, but not in controls. Blood concentrations of branch-chained amino acids remained unchanged. In the moderately controlled diabetics, exercise induced a marked fall of blood glucose and increases in blood levels of free fatty acids (FFA), ketone bodies and glucagon, which were comparable to the exercise effects in normal controls. In ketotic diabetics, however, exercise led to an additional rise in blood glucose concentration and to increases in ketone body, glucagon and cortisol levels. Significant correlations were found between the exercise effect on blood glucose and initial blood levels of glucose, FFA, ketone bodies and branch chained amino acids: pre-exercise values of above 325 mg/dl glucose, 1173 μmol/l FFA, 2.13 mmol/l ketone bodies and 0.74 mmol/l branch chained amino acids led to increased blood glucose levels on exercise, whereas below these limits glucose fell during the exercise test. These findings seem to be, at least in part, explained by the hypothesis of a permissive effect of insulin during stimulation of muscle glucose uptake by exercise. The increased circulating levels of glucagon and cortisol during exercise in ketotic diabetics might represent additional hyperglycaemic and, probably more important, lipolytic and ketogenic stimuli. The results suggest that in moderately controlled, non-ketotic diabetics blood glucose falls during exercise; in ketotic, relatively insulin deficient patients, muscular activity has adverse metabolic and hormonal effects: a further increase in blood glucose, plasma glucagon and cortisol and a rapid aggravation of ketosis.
    Type of Medium: Electronic Resource
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