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Biomedical subjects

K C Lasseter

Publications and source records attributed to K C Lasseter.

At least 37 records · Page 2Linked to original sources

Effect of MK-386, a novel inhibitor of type 1 5 alpha-reductase, alone and in combination with finasteride, on serum dihydrotestosterone concentrations in men.

Two isozymes (types 1 and 2) of 5 alpha-reductase (5 alpha R; EC 1.3.99.5), with differential tissue distribution, have been identified in humans. These enzymes catalyze the reduction of testosterone (T) to dihydrotestosterone (DHT). The contributions of each of these isozymes to serum and tissue concentrations of DHT remain to be fully defined. Finasteride, a selective inhibitor of type 2 5 alpha R, lowers circulating DHT levels by approximately 70% in men after treatment with 5 mg daily. MK-386 (4,7 beta-dimethyl-4-aza-5 alpha-cholestan-3-one) is a new selective inhibitor of type 1 5 alpha R. A single rising dose, alternating panel, trial in 16 healthy males (age range, 21-25 yr) studied the effect of 0.1-100 mg MK-386. DHT was maximally reduced by 20-30% relative to placebo at MK-386 doses of 10 mg or more, orally, by 24 h posttreatment (P < 0.01 vs. placebo). No consistent effect on T concentrations was evident. In a second trial, finasteride (5 mg) was given for 19 days to 10 healthy young men (age range, 24-47 yr); a 25-mg dose of MK-386 was added for 2 days of combination therapy after at least 10 days of finasteride treatment. Withdrawal of MK-386 was followed by 5-6 days of finasteride follow-up treatment. Finasteride alone reduced DHT, on the average, by 68.7% (SE = 3.4%). Addition of MK-386 suppressed DHT by 89.5% (SE = 1.4%) relative to baseline (P < 0.01 vs. effect of finasteride alone). Small increases in serum T were observed with finasteride alone and in combination with MK-386 (approximately 10% and 19%, respectively). These data are consistent with selective 5 alpha R type 1 inhibition in man by MK-386 and the prediction that types 1 and 2 5 alpha R account for all, or nearly all, of circulating DHT. Further clinical trials are needed to assess the therapeutic utility of type 1 5 alpha R inhibition as well as that of combined inhibition of types 1 and 2 5 alpha R.

Adult↗

Single-dose and steady-state pharmacokinetics of fosinopril and fosinoprilat in patients with hepatic impairment.

The single-dose and steady-state pharmacokinetics of the angiotensin-converting enzyme (ACE) inhibitor fosinopril and its active diacid, fosinoprilat, were evaluated in 6 healthy volunteers and 12 patients with alcoholic cirrhosis. Fosinopril was administered at a dosage of 10 mg once daily for 14 days. Results in the two groups were similar, with no evidence of accumulation of fosinoprilat in hepatically impaired patients. Mean (+/- SD) maximum observed plasma concentrations of fosinoprilat in the healthy subjects were 112.0 +/- 67.2 ng/mL after the first dose and 144.1 +/- 61.7 ng/mL at steady-state. Corresponding values for the hepatically impaired patients were 111.4 +/- 40.1 ng/mL and 140.2 +/- 50.9 ng/mL. The area under the serum concentration versus time curve for healthy volunteers was 790.7 +/- 431.0 ng.hr/mL after the first dose and 940.3 +/- 400.4 ng.hr/mL at steady-state. Similar values were noted in hepatically impaired patients: 926.0 +/- 293.9 ng.hr/mL and 1,255.4 +/- 434.0 ng.hr/mL for first dose and steady-state, respectively. No statistically significant differences were detected in fosinoprilat pharmacokinetic values between healthy and hepatically impaired subjects. Absence of accumulation can be attributed to the dual route of elimination of fosinoprilat reported in previous studies. Renal excretion of fosinoprilat in hepatically impaired patients prevents increased accumulation. The present findings suggest that the starting dose of fosinopril used in hypertensive patients with normal renal and hepatic function can also be used in patients with hepatic impairment secondary to cirrhosis.

Antihypertensive Agents↗

Studies of the oral bioavailability of alendronate.

Clinical studies were performed to examine the oral bioavailability of alendronate (4-amino-1-hydroxy-butylidene-1,1-bisphosphonate monosodium). All studies, with the exception of one performed in men, involved postmenopausal women. Short-term (24 to 36 hours) urinary recovery of alendronate after an intravenous dose of 125 to 250 micrograms averaged about 40% in both men and women. In women, oral bioavailability of alendronate was independent of dose (5 to 80 mg) and averaged (90% confidence interval) 0.76% (0.58, 0.98) when taken with water in the fasting state, followed by a meal 2 hours later. Bioavailability was similar in men [0.59%, (0.43, 0.81)]. Taking alendronate either 60 or 30 minutes before a standardized breakfast reduced bioavailability by 40% relative to the 2-hour wait. Taking alendronate either concurrently with or 2 hours after breakfast drastically (> 85%) impaired availability. Black coffee or orange juice alone, when taken with the drug, also reduced bioavailability (approximately 60%). Increasing gastric pH, by infusion of ranitidine, was associated with a doubling of alendronate bioavailability. A practical dosing recommendation, derived from these findings and reflective of the long-term nature of therapy for a disease such as osteoporosis, is that patients take the drug with water after an overnight fast and at least 30 minutes before any other food or beverage.

Achlorhydria↗

The bioavailability and nonlinear pharmacokinetics of MK-679 in humans.

MK-679 (R(-)-3-((3-(2-(7-chloro-2-quinolinyl)ethenyl)phenyl)(3- (dimethylamino)-3-oxo-propyl)thio)methyl)thio)propanoic acid) is a potent and specific LTD4-receptor antagonist. The disposition of MK-679 was investigated in a three-way crossover study in 12 healthy males receiving single intravenous doses of 75, 250, and 500 mg of MK-679. A greater than proportional increase in the area under the plasma concentration-time curve of MK-679 was observed with increase in dose. The plasma concentration data for each subject fitted well to the differential equations for a two-compartment model with linear tissue distribution and Michaelis-Menten elimination from the central compartment, indicating that the elimination of MK-679 in humans is saturable. In a previous study, the disposition of MK-679 in humans was also dose-dependent when given together with its S(+)-isomer, L-668,018. Thus, the disposition of MK-679 in humans is dose-dependent regardless of the presence of its stereoisomer. Also, the bioavailability of MK-679 was determined in six healthy males receiving simultaneously an oral dose of 250 mg of MK-679 and intravenous infusion of 1 mg 14C-MK-679. Results of this study indicate that the oral bioavailability of MK-679 is nearly quantitative.

Administration, Oral↗

Pharmacodynamics of MK-0963, a new 5 alpha-reductase inhibitor: effects on serum androgen concentrations.

The hormonal effects after a 10-day administration of a 4-azasteroid inhibitor of 5 alpha-reductase, MK-0963 (previously L-654,066), were evaluated in 35 healthy male volunteers in an increasing-dose, five-panel design. Marked suppression of serum dihydrotestosterone was observed after the once-daily administration at each active dose level (placebo, 0.1, 0.5, 1.0, 10, and 25 mg). Maximum dihydrotestosterone suppression occurred at doses greater than or equal to 10 mg. The mean percentage (+/- SE) decreases in dihydrotestosterone at 24 hours after the last dose in the groups treated with the 10 and 25 mg doses were 78% +/- 4.9% and 80% +/- 2.9%, respectively. The 25 mg dose maintained a dihydrotestosterone suppression of at least 70% for more than 6 days after the last dose. No consistent changes in serum testosterone were noted. This study shows that administration of multiple doses of MK-0963 results in a substantial suppression of serum dihydrotestosterone with no consistent influence on serum testosterone concentrations.

5-alpha Reductase Inhibitors↗

Pharmacodynamics and dose-response relationship of famotidine: a double-blind randomized placebo-controlled trial.

The dose-response relationship of oral famotidine at doses up to 10 mg was evaluated in 10 healthy male subjects to assess the extent and duration of inhibition of meal-stimulated intragastric acid secretion. Each subject received single oral administrations of famotidine 0.5, 2.5, 5.0, and 10.0 mg and placebo in a double-blind, randomized, cross-over fashion. Intragastric pH was measured every 4 seconds for 24 hours and expressed as the mean pH for each 10-minute interval. Standard high-protein meals were provided 1 hour before each dose of study drug and at 3 and 9 hours postdose. The mean intragastric pH was significantly higher after famotidine doses 2.5, 5.0, and 10.0 mg than after placebo at times 2.5 to 3.0, 1.8 to 3.2, and 1.7 to 4.2 hours postdose, respectively. There were no significant differences in mean pH seen between famotidine 0.5 mg versus placebo. The range of the pH means between 1.7 and 3.2 hours postdose was placebo (1.0 to 1.3), famotidine 0.5 mg (1.1 to 1.4), 2.5 mg (1.4 to 1.7), 5.0 mg (1.7 to 2.1), and 10.0 mg (2.0 to 2.3). There was a statistically significant linear dose-response relationship between famotidine dose and intragastric pH between 1.7 and 3.8 hours and from 6.3 to 8.7 hours after ingestion.

Administration, Oral↗

Antihypertensive and metabolic effects of concomitant administration of terazosin and methyclothiazide for the treatment of essential hypertension.

The efficacy and safety of once-daily 2.5- or 5.0-mg methyclothiazide (MCTZ) added to once-daily 5.0-mg terazosin (TRZ) versus 5.0-mg TRZ alone was evaluated in this double-blind, multicenter study. All patients received TRZ during a 6-week titration period. Hypertensive patients (222) (mean blood pressure of 159/104 mm Hg) were randomized to one of three treatment groups: TRZ alone (N = 76); TRZ+MCTZ-2.5 mg (N = 74); and TRZ+MCTZ-5.0 mg (N = 72) for the 8-week double-blind period. Changes in the supine and standing SBP/DBP from preTRZ period were: TRZ alone (-4.8/-8.1 and -2.6/-6.1 mm Hg); TRZ+MCTZ-2.5 mg (-17.3/-12.4 and -16.0/-11.2 mm Hg); and TRZ+MCTZ-5.0 mg (-20.6/-14.4 and -23.3/-14.6 mm Hg). Blood pressure changes in the combination groups were significantly greater than those in the TRZ alone group. However, there were no statistically significant differences between the TRZ+MCTZ-2.5-mg and TRZ+MCTZ-5.0-mg groups. The combination of TRZ and MCTZ tends to mitigate the adverse effects on serum glucose, uric, potassium and lipids usually associated with thiazide diuretics. Thus, combination treatment that begins with TRZ and adds MCTZ is effective in lowering blood pressure without any significant adverse metabolic effects.

Adrenergic alpha-Antagonists↗

Epoetin enhances erythropoiesis in normal men undergoing repeated phlebotomies.

Epoetin may enhance autologous blood donation, but efficacy and dose response have not been established. This multicenter, double-blind trial compared intravenous placebo (n = 23) with epoetin beta, 250 U/kg (n = 23), 500 U/kg (n = 19), and 1000 U/kg (n = 22), administered three times weekly for 26 days. Normal men (age, 28 +/- 7 years; mean +/- SD) received phlebotomies up to three times weekly as long as the hemoglobin remained greater than or equal to 12 gm/dl. Subjects treated with epoetin donated 32% more units of blood (p less than 0.05) compared with placebo. A dose response was not observed. Platelet counts increased with epoetin compared with placebo, but platelet function and bleeding time did not change. Prothrombin times increased and partial thromboplastin times decreased with both epoetin and placebo. The supernatant of packed red blood cells collected after multiple phlebotomies and stored 42 days had slightly lower glucose concentrations and pH after therapy with epoetin. Blood pressure did not change with epoetin or placebo. These findings support the efficacy and safety of epoetin for enhancing the erythropoietic response of normal subjects during intensive phlebotomy.

Adolescent↗

Comparative absorption of atropine from a metered-dose inhaler and an intramuscular injection.

The inhalation of atropine sulfate from a pressurized metered-dose inhaler was investigated in a nonrandomized four-period rising-dose study. Eight healthy, nonsmoking subjects received 1.7, 3.4, and 5.2 mg of atropine sulfate by inhalation and 1.67 mg of atropine free base (equivalent to 2 mg of atropine sulfate) by intramuscular (i.m.) injection. Serum atropine sulfate concentrations were measured over a 24-h period by gas chromatography/mass spectrometry. Mean serum concentrations increased nonproportionally as the inhaled dose increased. Mean peak concentrations were 4.9, 6.1, and 7.9 ng/ml for the inhaled doses and 8.4 ng/ml for the i.m. dose. Typical anticholinergic effects were seen after all doses.

Absorption↗

Effects of aluminum hydroxide and calcium carbonate antacids on the bioavailability of ciprofloxacin.

This study was designed to determine the effects of an aluminum hydroxide antacid and a calcium carbonate antacid on the bioavailability of ciprofloxacin (Cipro). Cipro (750 mg) was administered orally to 12 healthy volunteers in a three-way randomized crossover design. The three treatments included Cipro alone, four 850-mg calcium carbonate tablets taken 5 min before Cipro, and three 600-mg aluminum hydroxide tablets taken 5 min before Cipro. The relative bioavailability of Cipro when given with calcium carbonate was approximately 60% of the control value. When Cipro was given with aluminum hydroxide, the relative bioavailability was approximately 15%. Urinary recovery of Cipro in the aluminum hydroxide treatment group was approximately one-fourth of that in the calcium carbonate group. Although calcium carbonate decreased absorption to a lesser extent than aluminum hydroxide, these data suggest that antacids containing either aluminum or calcium should not be given concomitantly with Cipro.

Adult↗

The effects of benazepril, a new angiotensin-converting enzyme inhibitor, in mild to moderate essential hypertension: a multicenter study.

Benazepril hydrochloride is a new angiotensin-converting enzyme inhibitor. In a multicenter study, 206 patients with mild to moderate hypertension were randomized to receive benazepril at a dose of 2, 5, 10, or 20 mg, hydrochlorothiazide, 25 mg, or placebo once daily for 4 weeks. The 20 mg dosage of benazepril lowered blood pressure to a degree equal to that of 25 mg hydrochlorothiazide: -12.2/7.7 mm Hg and -13.4/-7.5 mm Hg, respectively. Hydrochlorothiazide proved to be more effective in black subjects. At lower dosage levels of benazepril (2, 5, and 10 mg), blood pressure reduction was not significantly different from that with placebo. In those patients who failed to achieve goal diastolic blood pressure of less than 90 mm Hg with monotherapy after 4 weeks, the addition of open-label hydrochlorothiazide (25 mg/day) to benazepril, hydrochlorothiazide, or placebo produced a substantial additional decrease in blood pressure over a 2-week period. No definite adverse effects on hematologic measurements, serum biochemistry test results, or urinalyses were noted. Subjective adverse experiences were common in all groups but except in three or possibly four instances were not considered causally related to the study drug.

Adult↗

The disposition of [14C]-labelled benazepril HCl in normal adult volunteers after single and repeated oral dose.

1. The disposition of [14C]-labelled benazepril HCl, an ACE-inhibitor, was studied in four normal adult volunteers after a single oral dose of 20 mg and after repeated doses of 20 mg once daily for 5 days. Radioactivity was measured in plasma, urine and faeces. The prodrug ester benazepril and the pharmacologically active metabolite benazeprilat were determined quantitatively in plasma and urine by a g.c.-m.s. method. The pattern of metabolites in urine was analysed semiquantitatively by h.p.l.c.-radiometry. 2. After a single oral dose at least 37% was absorbed, as indicated by urinary recovery. The peak plasma concentration of benazepril (0.58 +/- 0.13 nmol/g (SD] was observed at 0.5h after dose, indicating rapid absorption. Peak concentrations of radioactivity (1.88 +/- 0.48 nmol/g) and of active benazeprilat (0.84 +/- 0.25 nmol/g) were observed at 1 h after dose, demonstrating rapid bioactivation. 3. The area under the plasma curve (AUC0-96 h) of total radioactivity amounted to 9.7 +/- 1.1 (nmol/g)h, 5% of which was accounted for by benazepril and about 50% by benazeprilat. 4. Over 9 days 96.8 +/- 0.5% of the dose was excreted in urine and faeces. Urinary excretion accounted for 37.0 +/- 6.0% of the dose, 80% of which was recovered in the first 8 h after dosing. 5. In urine, only 0.4% of the dose (1% of the radioactivity) was excreted as unchanged benazepril, indicating that the compound was extensively metabolized. Benazeprilat accounted for 17% of the dose (about half of the radioactivity; 0-96 h). Glucuronide conjugates of benazepril and benazeprilat constituting approximately 11% and 22% of the radioactivity (about 4% and 8% of the dose; 0-48 h) were tentatively identified. 6. Repeated oral treatment with benazepril HCl did not influence the pharmacologically relevant kinetics and disposition parameters.

Administration, Oral↗

Diurnal blood pressure in patients with mild-to-moderate hypertension treated with once-daily benazepril hydrochloride.

This study evaluated the blood pressure effects of administration of once daily oral benazepril hydrochloride, a new angiotensin-converting enzyme (ACE) inhibitor, for mild-to-moderate hypertension. After a 2 to 4 week placebo baseline period, patients with diastolic blood pressure between 95 and 114 mm Hg, were randomized to receive either placebo or benazepril hydrochloride, 5, 10, 20, or 40 mg, once daily in double-blind fashion for 28 days. Blood pressure was measured predose and at 1, 2, 3, 4, 6, 8, 12, 16, 20, and 24 hours after the dose during inpatient observation days at the end of the placebo baseline period, and on the first and last day of the double-blind treatment period; and 24 hours after the dose at weekly outpatient visits. All doses of benazepril hydrochloride resulted in clinically important reductions in diastolic and systolic blood pressures that lasted between 12 and 24 hours after both the first dose, and following the last dose after 4 weeks of treatment. The findings indicate that benazepril hydrochloride may be clinically useful as once-daily monotherapy in many patients with hypertension.

Administration, Oral↗

Effects of finasteride (MK-906), a 5 alpha-reductase inhibitor, on circulating androgens in male volunteers.

Finasteride, a 5 alpha-reductase inhibitor, was administered to normal male volunteers in a blinded placebo-controlled study at daily oral doses of 25, 50, and 100 mg for 11 days (part 1) and daily oral doses of 0.04, 0.12, 0.2, and 1.0 mg for 14 days (part 2). Results from part 1 showed a significant reduction in dihydrotestosterone (DHT) at all doses and a significant increase in both testosterone (T) and delta 4-androstenedione at the 50- and 100-mg doses. No change was seen in LH, FSH, cortisol, or estradiol levels. Serum lipids, including total cholesterol, low density lipoprotein, high density lipoprotein, and triglycerides were not affected by treatment. Results from part 2 again showed significant reduction in DHT at all doses. DHT levels returned to pretreatment values within 14 days of discontinuing treatment. Significant increases in T were observed only in the 1.0 mg group and only during the first 8 days of treatment. The T/DHT ratio increased with all doses and returned to baseline when drug was discontinued. The DHT metabolites and androstanediol glucuronide and androsterone glucuronide were significantly reduced at all doses. There were no significant adverse experiences reported during part 1 or 2. In conclusion, finasteride is well tolerated by normal volunteers and results in significant suppression of serum DHT at all doses tested.

Adult↗

Profile of etodolac: pharmacokinetic evaluation in special populations.

The pharmacokinetics of etodolac, a new nonsteroidal anti-inflammatory drug, were compared in normal subjects, in patients with renal and hepatic disease, and in elderly patients. In 28 normal subjects, orally administered etodolac was rapidly absorbed. By 1.2 hours after ingestion of a 200 mg dose, the maximum serum concentration (Cmax) averaged 15.9 micrograms/ml, with more than 99% of the drug bound to serum protein. Clearance was primarily hepatic. The mean half-life (t1/2) was 6 to 7 hours. There were no apparent differences in Cmax, the time at which Cmax occurred (tmax), area under the serum concentration/time curve (AUC0-24), or t1/2 between groups of young men (n = 20), elderly men (n = 24), and elderly men with osteoarthritis (n = 20), after a single dose of etodolac or after 7 days of subchronic administration. Moreover there was no evidence of accumulation. There also were no differences in Cmax, tmax, AUC0-24 or t1/2 between groups of normal subjects (n = 10) and patients with mild-to-moderate renal impairment (n = 10). Patients with end-stage renal disease who were receiving chronic hemodialysis had the same mean serum concentration of free drug as normal subjects, even though mean serum levels of protein-bound etodolac were slightly lower than those in the normal subjects. The only significant (p less than 0.05) difference between patients with stable hepatic cirrhosis and normal, age-matched subjects was a slightly shorter tmax in the cirrhotic subjects (1.1 vs. 1.4 hours). These findings suggest that no alteration of etodolac dosage would be necessary in these high-risk groups.

Administration, Oral↗

The effect of cirrhosis on the steady-state pharmacokinetics of oral ciprofloxacin.

The pharmacokinetics of ciprofloxacin, a carboxyquinolone, was studied after oral administration of the drug to seven patients with biopsy-proved cirrhosis and to seven healthy volunteers. Serum concentrations of ciprofloxacin and its three metabolites--desethylene ciprofloxacin (M1), sulfociprofloxacin (M2), and oxociprofloxacin (M3)--were measured by an HPLC procedure. The pharmacokinetic parameters for ciprofloxacin were not significantly altered in cirrhotic patients. The elimination half-life (t 1/2) and the area under the serum concentration versus time curve (AUC) were, respectively, 3.71 hours and 16.18 microgram.ml-1.hr-1 in the normal subjects and 3.47 hours and 18.38 micrograms.ml-1.hr-1 in patients with cirrhosis. The formation of oxociprofloxacin was reduced by approximately one half in the cirrhotic subjects, as the Cmax was 0.29 micrograms/ml in normal subjects versus 0.14 micrograms/ml in cirrhotic patients and the mean AUC(0-t) was 1.54 micrograms.ml-1.hr-1 in normal subjects versus 0.70 micrograms.ml-1.hr-1 in cirrhotic patients. However, there appeared to be no significant difference between groups with respect to desethylene ciprofloxacin and sulfociprofloxacin. Therefore it appears from this study that no dosage adjustment is required in patients with hepatic cirrhosis.

Administration, Oral↗

Pharmacokinetics and bioavailability of Sinemet CR: a summary of human studies.

The pharmacokinetics of Sinemet CR, a controlled-release formulation containing carbidopa and levodopa, were investigated in healthy young and elderly volunteers and in patients with Parkinson's disease. Sinemet CR produced more sustained plasma levels of levodopa, carbidopa, and 3-O methyldopa than did conventional Sinemet. In elderly subjects, the corresponding steady-state plasma levels fluctuated in narrower ranges with Sinemet CR than those following the administration of Sinemet. Results indicate a levodopa bioavailability of 71% for Sinemet CR, in contrast to a bioavailability of 99% for Sinemet for these subjects. The carbidopa bioavailability of Sinemet CR was 58% relative to that of Sinemet. Systemic decarboxylase inhibition was comparable between the 2 regimens as indicated by the renal clearance of levodopa. The absorption of levodopa was slower and more protracted with Sinemet CR than with Sinemet. Food increased the levodopa bioavailability of Sinemet CR. This increase was attributed to an increased gastric retention time. No dose-dumping occurred with Sinemet CR in either the nonfasting or the fasting state. Levodopa bioavailability was lower in young volunteers than in elderly volunteers. This was attributed to an age-related decrease in gastric emptying and in 1st-pass metabolic decarboxylation in the gastrointestinal (GI) tract. In parkinsonian patients, as in healthy subjects, the Sinemet CR formulation produced more sustained levodopa plasma levels. These patients required a higher total daily dosage of Sinemet CR than of Sinemet for control of parkinsonian symptoms, but less frequent dosing was required during chronic therapy. Peak plasma levodopa levels increased proportionately with increasing Sinemet CR dosage. These observations were consistent with the pharmacokinetic characteristics of the formulation.

Adolescent↗

Comparative absorption of inhaled and intramuscularly administered atropine.

The inhalation of atropine sulfate was investigated in a randomized, 4-period, rising-dose study. Atropine sulfate 2, 4, and 6 mg by inhalation, and atropine free base 1.67 mg (equivalent to 2.0 mg atropine sulfate) by intramuscular (IM) injection were given to 8 healthy, nonsmoking subjects. Serum atropine sulfate concentrations were monitored during an 8-h period by radioimmunoassay. Mean serum concentrations and area under the serum concentration-versus-time curves (AUC) increased as the inhaled dose increased. Peak concentrations (mean +/- SD) were 11.5 +/- 3.4, 16.4 +/- 6.2, and 18.0 +/- 3.1 ng/ml for the 2, 4, and 6 mg doses, and 11.7 +/- 2.5 ng/ml for the IM dose. The time to peak concentration for each dose was similar (mean, 0.8 to 1.9 h). The AUC ratio of the 2-mg inhaled and IM doses was 1.11 +/- 0.41. The observed bronchodilating, anticholinergic, and other pharmacologic effects were seen after all dose concentrations and were typical of atropine. This study showed that inhalation is an efficient way to administer atropine sulfate for systemic use.

Absorption↗