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K HABEL

Publications and source records attributed to K HABEL.

54 records · Page 3Linked to original sources

The nutritional requirements for the propagation of poliomyelitis virus by the HeLa cell.

Only minimal amounts of poliomyelitis virus were formed by HeLa cells placed in a medium free from glucose and glutamine, even if the medium contained an otherwise full complement of essential and non-essential amino acids, purines, pyrimidines, NB(4) (+), and serum protein. Conversely, within one log of the optimal yield of virus was formed by HeLa cells in a medium containing only glucose, glutamine, and salts, even if the cells had been starved in this medium for 12 hours prior to their inoculation. The presence of glucose alone caused an average 170-fold increase in viral output beyond the amounts formed by the glucose- and glutamine-depleted cells. The addition of glutamine alone caused an average 2000-fold increase; and the addition of both increased the viral formation 40,000-fold. Qualitatively similar results were obtained with unstarved cells, not previously depleted of glucose and glutamine. It follows that only a small proportion of HeLa cells are capable of forming virus unless either glucose or glutamine, or both, are present in the medium. The elaboration of virus was significantly delayed in media containing glucose but no glutamine. The absence of glucose and glutamine did not prevent the fixation of poliomyelitis virus by the cell. When these compounds were added to previously depleted cells even 6 hours after inoculation, and after the excess free virus had been removed by washing and by the addition of specific antiserum, normal amounts of virus were formed despite the degenerative changes caused by the previous glucose and glutamine deprivation. Possible functions of glucose and glutamine in the elaboration of virus are discussed in the text. Such factors other than glucose, glutamine, or salts (e.g. amino acids, purines, pyrimidines, vitamins, protein, or NH(4) (+)) as may be needed by HeLa cells for the propagation of poliomyelitis virus, need not be present in the medium and cannot be easily washed out of the cell. Even 12 hours' total deprivation of the cells in salt solution prior to inoculation only slightly decreased their virus-synthesizing capacity in a similarly deficient medium, provided only that adequate amounts of glucose and glutamine were retained.

Amino Acids↗

Rabies neutralizing antibody response to different schedules of serum and vaccine inoculations in non-exposed persons.

Groups of adult humans, previously unexposed to rabies and with no history of rabies vaccination, were inoculated with different schedules of phenolized inactivated vaccine and Flury strain chicken-embryo vaccine, with or without one inoculation of hyperimmune serum. Serum specimens of the inoculated individuals were studied for antibody up to the 28th day following the first inoculation of the vaccines and serum. The results can be summarized as follows:1. Passive antibody appeared in the blood-stream within one day following inoculation of hyperimmune serum. The antibody persisted at a good level for at least 10 days, but dropped slightly by the 14th day and was present in most individuals at the 21st day.2. There was a tendency for the antibody levels at 21 and 28 days to be lower in the phenolized vaccine plus antiserum groups than in those groups which received phenolized vaccine alone.3. Seven or 12 daily inoculations of phenolized vaccine alone produced antibody in most instances by the 10th day and persisted generally through the 28th day.4. Daily inoculations of phenolized vaccine produced a superior antibody response to that derived from the same total amount of vaccine given as a single inoculation.5. A single inoculation intramuscularly of Flury strain chicken-embryo vaccine of high egg-passage did not produce detectable antibody.6. The group which received hyperimmune serum followed by 12 daily inoculations of phenolized vaccine showed early and persistent antibody throughout the entire period of test. The antibody levels were comparable to those recently observed in man treated effectively with antiserum-vaccine combination after severe exposure to rabies.(9)

Adult↗

Effect on immunity to challenge and antibody response of variation in dosage schedule of rabies vaccine in mice.

Groups of mice were immunized with the same total quantity of an ultraviolet irradiated killed virus vaccine given in varying numbers of divided doses spaced at varying time intervals. All mice were bled just before being challenged by intracerebral inoculation of fixed virus and the sera tested for level of neutralizing antibodies. All dosage schedules produced immunity and good antibody levels. Twelve daily doses of vaccine gave no better results than the same amount of vaccine divided into 3 or 4 doses. A dose of vaccine at or after the 10th day from the start of immunization seemed to act as a "booster" to the primary response to the earlier doses.

Animals↗

Laboratory data supporting the clinical trial of anti-rabies serum in persons bitten by a rabid wolf.

Five individuals severely exposed to rabies by wolf bite and treated with a course of phenolized vaccine alone showed no demonstrable antibodies in their sera until the nineteenth day following the start of treatment. Three of these five individuals died of rabies.On the other hand, twelve individuals similarly exposed, who received antirabies serum plus a course of phenolized vaccine, had demonstrable antibodies early in and throughout the period of observation. One individual who received one dose of serum plus a course of vaccine died of rabies.In view of these results, it is apparent that antibody demonstrable early in and throughout the treatment period, and obtained by the combined use of serum and vaccine, is more effective in preventing rabies after severe exposure than is a course of vaccine alone.

Animals↗

Antiserum in the prophylaxis of rabies.

This paper reviews recent experimental evidence in support of inoculation with antirabies serum, the value of which, as a prophylactic measure, is compared with that of vaccine treatment alone. The author concludes that the chief advantages of combined antiserum-vaccine prophylaxis lie in the rapid treatment of cases who have suffered severe exposure, and in the possibility of reducing the incidence of post-vaccinal complications.

Humans↗