Search PubMed⌕ Search

Biomedical subjects

P Verma

Publications and source records attributed to P Verma.

At least 37 records · Page 2Linked to original sources

Atropine serum concentrations after multiple inhaled doses of atropine sulfate.

Atropine may be given by inhalation for bronchodilation. Intravenous atropine at doses of 0.32 to 1 mg yields serum levels of 2 to 6 ng/ml, with an elimination t1/2 of about 4 hours. Efficient inhalation of large single doses leads to similar concentrations in some individuals, but under clinical conditions drug delivery may be less efficient. Of concern is accumulation of the drug in the body with multiple-dose therapy. We measured serum levels of atropine after single inhaled doses and again after 48 to 72 hours of inhalation every 4 to 6 hours in 11 subjects. The drug was administered by therapists at doses and techniques commonly used in the clinical setting. Serum concentrations of atropine were negligible after the first dose in all subjects but were detectable in six of nine subjects who received the drug for more than 48 hours. Three of the subjects had levels greater than 2 ng/ml.

Absorption↗

Plasma pharmacokinetics of intravenously administered atropine in normal human subjects.

The pharmacokinetics of atropine (dl-hyoscyamine) was studied in six normal volunteers following a single 1-mg intravenous dose of atropine. Atropine plasma levels were collected for 24 hours and analyzed by radioimmunoassay. Pulse rates were monitored and compared with predose values in each subject. Atropine plasma concentrations were fitted by least-squares regression analysis. The observed maximal increase in pulse rate, at 12 to 16 minutes after the dose, correlated with the maximum predicted tissue levels of atropine based on the computer fit of the plasma atropine concentration-time data. No correlation between the time of maximum response and atropine plasma concentrations was observed. The average half-life of atropine was 4.125 hours. This data may be used to design a multiple-dosing regimen for intravenous atropine in patients.

Adult↗

Massive rectal bleeding due to intestinal tuberculosis.

Two cases of massive rectal bleeding due to tuberculosis of the intestine are described and 24 reported cases of massive rectal bleeding in intestinal tuberculosis are reviewed. Tuberculosis of the intestine, though uncommon should be considered as a cause for rectal bleeding.

Adult↗

A competitive protein binding radioassay for 17alpha-ethynylestradiol in human plasma.

A competitive protein binding radioassay system using a rabbit uterine cytosol preparation for the measurement of ethynylestradiol [EE2e] in human plasma has been developed. Sephadex LH-20 column chromatography is used for the separation of the estrogens prior to assay. EE2 levels were measured in 23 normotensive subjects on contraceptive pills containing either 50 mug of EE2 or mestranol. The EE2 values ranged from 144 to 248 pg with a mean of 211 pg (S.D. +/- 37.94). The method is sensitive enough to detect 25 pg of EE2 in plasma. The intra- and inter-assay coefficients of variation were 7.54% and 10.75%, respectively. Water blanks and plasma blanks from subjects not on pills gave negligible readings for EE2.

Animals↗

Radioimmunoassay of pyridostigmine in plasma and tissues.

A sensitive and specific radioimmunoassay is reported for the cholinergic agent, pyridostigmine. Antibodies were raised in rabbits against a conjugate of pyridostigmine and bovine serum albumin. The assay can detect as little as 2.5 ng/ml of drug directly in plasma and tissue homogenates. Structurally similar compounds and major metabolites are not recognized by the antibody. The specificity of the antibody has been confirmed by utilizing high pressure liquid chromatography. Plasma concentration-time profiles and tissue distribution of the drug were determined by this method in rat after intramuscular administration of pyridostigmine.

Animals↗

Purgative and anthelmintic effects of Mallotus philippinensis in rats against tape worm.

A resin isolated from Mallotus philippinensis (Kamala) caused a significant purgative effect after an oral dose (120 mg/kg) in rats as assessed from the weight of faeces as well as from the surface area of blotting paper soaked by liquid faeces. The anthelmintic effect of the resin was evaluated in albino rats found to be infested with tape worms. The resin in 60 and 120 mg/kg dose had a lethal effect on 35.69% and 78.21% population of tape worms respectively, in small intestine.

Animals↗