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Biomedical subjects

M Chinol

Publications and source records attributed to M Chinol.

44 records · Page 3Linked to original sources

Patient biodistribution of intraperitoneally administered yttrium-90-labeled antibody.

Although 90Y is one of the best radionuclides for radioimmunotherapeutic applications, the lack of gamma rays in its decay complicates the estimation of radiation dose since its biodistribution cannot be accurately determined by external imaging. A limited clinical trial has been conducted with tracer doses (1 mCi) of 90Y in five patients who then received second-look surgery such that tissue samples were obtained for accurate radioactivity quantitation by in vitro counting. The anti-ovarian antibody OC-125 as the F(ab')2 fragment was coupled with diethylenetriaminepentaacetic acid, radiolabeled with 90Y and administered intraperitoneally to patients with suspected or documented ovarian cancer. Size exclusion and ion exchange high performance liquid chromatography analysis of patient ascitic fluid and serum samples showed no evidence of radiolabel instability although a high molecular weight species (presumably immune complex) was observed in three patients. Total urinary excretion of radioactivity prior to surgery averaged 7% of the administered radioactivity while at surgery the mean organ accumulation was 8% of the administered radioactivity in serum, 10% in liver, 7% in bone marrow, and 19% in bone with large patient to patient variation. The mean tumor/normal tissue radioactivity ratio varied between 3 and 25. On the assumption that the above radioactivity levels were achieved immediately following administration, that the radioactivity remained in situ until decayed and that the dimensions of tumor were sufficient to completely attenuate the emissions of 90Y, the dose to tumor for a 1-mCi administration would be approximately 50 rad with normal tissues receiving approximately 8 rad.

Animals↗

Generator-produced yttrium-90 for radioimmunotherapy.

Yttrium-90 is often considered to possess many favorable properties for radioimmunotherapy applications. Among these is its availability as a radionuclide generator product by decay of its parent, 90Sr. Nevertheless, most present and planned clinical trials with 90Y-labeled antibodies employ radioactivity obtained not from an in-house generator, but from commercial sources. To prepare for clinical trials at this institution with 90Y labeled to diethylenetriaminepentaacetic acid- (DTPA) coupled antibodies, we have adapted previously published procedures and have developed others to prepare antibodies labeled with generator produced 90Y for human use. Up to 25 mCi of 90Sr have been loaded without evidence of radiolytic degradation to the Dowex 50 cation exchange resin which serves as the solid support for the generator. Using 0.003M ethylenetriaminetetraacetic acid (EDTA) as eluant, elution efficiency averages 98% and 90Sr breakthrough averages 0.002%. The EDTA is destroyed remotely and the activity is dissolved in 0.5M acetate, pH 6. In this form, 90Y may be used to label DTPA-coupled proteins at specific activities of 1-3 mCi/mg (an order of magnitude improvement in specific activity results from the purification of 90Y by cation exchange prior to labeling). When properly labeled, size exclusion HPLC shows 90% or greater radiochemical purity and recovery without postlabeling purification. We conclude that these techniques provide a 90Y-labeled protein preparation which is safe for administration to patients.

Animals↗

Study on the absorption of ketoprofen topically administered in man: comparison between tissue and plasma levels.

In this study the transcutaneous passage of ketoprofen (gel) topically administered and its distribution in the inner part of the knee-joint were evaluated in six patients. The ketoprofen concentrations detected were: 4.70 mcg/g +/- 3.87 in the intra-articular adipose tissue; 2.35 mcg/g +/- 2.41 in the capsular sample and 1.31 mcg/g +/- 0.89 in the synovial fluid. Plasma concentrations of the drug were also examined. In the samples studied, the ketoprofen levels amounted to about one hundred times higher than the plasma concentrations.

Administration, Topical↗

Plasma and synovial fluid concentrations of isoxicam in meniscectomized patients.

Concentrations of isoxicam in the plasma and synovial fluid of 7 patients were investigated by means of high-pressure liquid chromatography. The samples were collected after 7 days' treatment with a single 200 mg isoxicam capsule taken each morning. A highly significant correlation was found (r = 0.82; p less than 0.05) between isoxicam concentrations in the plasma and in the synovial fluid. The mean concentration (+/- s.d.) was 25.54 +/- 10.91 micrograms/ml in the plasma and 17.47 +/- 6.54 micrograms/ml in the synovial fluid; the ratio between isoxicam concentrations in the synovial fluid and in the plasma was 71.06% +/- 18.83.

Adult↗

Quantitative high-performance liquid chromatographic determination of delta 4-3-ketosteroids in adrenocortical extracts.

A high-performance liquid chromatographic method is described for the determination of seven steroids in adrenocortical extracts showing a delta 4-3-ketonic conjugated system. The seven steroids (cortisol, cortisone, 11-dehydrocorticosterone, corticosterone, 11-deoxycortisol, aldosterone and 11-deoxycorticosterone) were separated with a chloroform-methanol gradient on a 5-micron silica column and with a water-acetonitrile gradient on a 10-micron RP-8 column. Effluents were monitored by UV absorption at 242 nm. Quantitative analysis was performed by comparing peak areas, which are proportional to the amounts of the individual substances (external standard method). The method is rapid, sensitive, easy to perform and reproducible.

Adrenal Cortex Hormones↗