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Biomedical subjects

J F Kühl

Publications and source records attributed to J F Kühl.

10 recordsLinked to original sources

Close reproduction by different laboratories of characteristics of circadian rhythm in 1-beta-D-arabinofuranosylcytosine tolerance by mice.

The tolerance of BALB/c X DBA/2 F1 mice to the popular cytostatic drug 1-beta-D-arabinofuranosylcytosine (ara-C) was tested in two laboratories about 1000 km apart. According to the same plan and on the same days in Little Rock, Ark., and Minneapolis, Minn., nine groups of 20 mice each received four courses of ara-C treatment, with 4-day intervals between them beginning February 7, 1973. In each course, a total dose of 240 mg/kg was divided among eight separate injections administered at 3-hr intervals. One group of mice received equal doses of ara-C every 3 hr (the homeostatic schedule). The eight other groups in each location received the same total dose per course but in gradually increasing and decreasing doses (the sinusoidal schedule). The timing of the highest doses on the latter schedule differed among the eight groups (by integer multiples of 3 hr). As predicted from earlier work, survival times after treatment with ara-C on different sinusoidal schedules differed drastically. However, the timing of the sinusoidal schedules yielding the longest survival was similar in the two locations. The survival times from all sinusoidal treatments from a given location were fitted by a 24-hr cosine curve. The timing of the rhythm in tolerance as a whole as thereby computed as the lag from local midnight of the peak in the cosine curve best fitting all data. The timing of this tolerance rhythm (briefly, circadian chronotolerance), computed separately for data from Arkansas and Minnesota, agreed within 1 hr. There also was close agreement in the results obtained by the 2 laboratories in mean survival time; the percentage of survivors when mice were treated according to certain of the selected sinusoidal schedules was much greater than for mice treated on the homeostatic schedule. This large and reproducible difference in tolerance and the similar timing of the overall fitted function describing chronotolerance in the hands of different investigators underlines the urgency of testing potential benefits from timed clinical treatment.

Animals

Increased tolerance of leukemic mice to arabinosyl cytosine with schedule adjusted to circadian system.

Mice (BDF(1)) inoculated with L1210 leukemia survive for a statistically significantly longer span when four courses of arabinosyl cytosine are administered at 4-day intervals-not in courses consisting of eight equal doses at 3-hour intervals, but in sinusoidally increasing and decreasing 24-hour courses, the largest amount being given at previously mapped circadian and circannual times of peak host resistance to the drug. This finding relates to the many therapeutic situations involving rhythmic, and thus predictable, cycles in the host's tolerance of undesired effects from the agent used.

Animals

Circadian susceptibility rhythm of the rat to alloxan.

The susceptibility of rats to alloxan undergoes a circadin rhythm. The toxicity rhythm, presumably involving injury to liver, kidney and other sites, pancreatic beta-cells in particular, is demonstrated in pooled data from 370 mature inbred Fischer or Minnesota Sprague-Dawley rats of both sexes kept in light from 06(00) to 18(00) alternating with darkness, some with free access to Purina laboratory chow with tap water at all times and some other rats subjected to one of three starvation schedules: 1) a 28-h fast before an intravenous alloxan injection; 2) a 28-h fast, except for a 4-h ad libitum feeding before injection; 3) a 28-h fast, except for a 4-h pre-injection tube-feeding of Nutrament (Mead and Johnson, Evansville, Indiana), 1.5 ml/100 g body weight. Survival time data on an additional 200 inbred Fischer rats reveal, next, that susceptibility to alloxan increases as the starvation span is lengthened from 24 to 84 h. The shortening in survival time indicative of this susceptibility increase is nonlinear; a circadian rhythmic change in susceptibility to alloxan is seen as a statistically significant wave-form indicative of the basic (persisting) rhythm, of applied interest as well to students of experimental diabetes.

Alloxan