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Homologous passive cutaneous anaphylaxis (PCA) in mice and heterologous PCA induced in rats with mouse IgE.

A study was made of the effect of anit-histamine, antiserotonin and of different anti-anaphylactic drugs on PCA reactions induced in mice with IgG1 or IgE. Further, using the ability of mouse IgE to sensitize rat mast cells, a comparative study was also made of PCA reactions induced in mice and rats with mouse IgE. Antihistamines produced a partial inhibition of PCA reactions induced in mice with mouse IgG1 or IgE and in rats with mouse IgE whereas antiserotonin inhibited PCA reactions induced in rats with mouse IgE, but had no effect on PCA reactions induced in mice with mouse IgG1 or IgE. The simultaneous use of antihistamine and antiserotonin resulted in a total inhibition of PCA reactions induced in mice with IgG1 and in a marked but not total inhibition of PCA reaction due to IgE; PCA reactions induced in rats with mouse IgE were totally inhibited. Compounds known to change the intracellular level of cyclic AMP were found to have little or no effect on PCA reactions induced in mice with either IgG1 or IgE in spite of producing a complete marked inhibition of PCA reactions induced with mouse IgE in rats. Diethylcarbamazine or disodium cromoglycate were also very effective inhibitors of rat PCA reactions induced with mouse IgE although having no effect on PCA reaction induced in mice with this same antibody or with IgG1. Thus, in spite of sharing common mediators released from the same type of target cell sensitized with the same type of antibody, PCA reactions induced in mice and rats with mouse IgE reacted very differently to the pharmacological effect of most of the drugs tested. This fact seems to indicate that the physiological mechanism operating in mouse mast cells are different from those operating in rat mast cells.

Animals

Immediate hypersensitivity in the guinea pig conjunctiva. II. Effect of treatment with antihistamines, steroids and disodium cromoglycate.

The effects of antihistamines, steroids and disodium cromoglycate on an immediate hypersensitivity reaction in the guinea pig eye are described in terms of clinical observations, histological examinations of sections of eyes and cytological studies of material from the conjunctival surface. The use of brushes to sample the cells on the conjunctival surface is described. The effect of repeated daily challenges on the reaction is also reported.

Animals

Cardiorespiratory assessment of decongestant-antihistamine effects on altitude, +Gz, and fatigue tolerances.

Decongestants and antihistamines are known to produce effects capable of adversely modifying physiological function and psychomotor task performance. Because of relevance to safe pilot performance, the effects of single doses of two decongestant-antihistamine preparations (Compound A and Compound B), or a placebo on cardiorespiratory responses to two equally spaced +2 Gz tests during separate 2-h exposures at 388 m (1,274 ft MSL) ground level (GL) and 3,810 m (12,500 ft) chamber altitude were assessed. Post-altitude fatigue was assessed by cardiorespiratory responses to submaximal bicycle ergometry. Compound A and Compound B appeared to exert no significant detrimental effects on short-duration post-altitude ergometric fatigue-ability. With two exceptions, all combinations of medication, altitude, and +Gz were well tolerated. Two subjects were clearly incapacitated during the first +2 Gz test under Compound A at 3,810 m (12,500 ft) altitude. It is felt that the +Gz-intolerance resulted mainly from an adverse interactive effect of Compound A and altitude on vasomotor and/or chronotropic mechanisms.

Adult

Effects of altitude and two decongestant-antihistamine preparations on physiological functions and performance.

Fourteen men were studied to determine the combined effects of two altitudes--388 and 3,810 m or 1,274 and 12,500 ft--and three preparations--lactose placebo, Compound A (Actified, and Compound B (Dristan). Subjects reported least attentiveness with A and greatest with placebo. Fatigue increased significantly with time while energy, interest, and attentiveness decreased. The Multiple Task Performance Battery (MTPB) showed no effects of altitude, drugs, or time on overall performance; however, performance declined with time in several tasks, while problem solving improved. Subjects enjoyed the problem-solving tasks and may have given them preference as levels of interest declined. Though the MTPB overall composite scores did not change significantly, physiological parameters and subjective evaluations indicate that type of compound and time after ingestion are important. Declines in energy and attentiveness 2.5 h after ingestion could result in neglect of important--although routine--tasks. Hypoxia might enhance this effect and consequences might be worse in subjects whose medical conditions require these drugs.

17-Ketosteroids