Metallic foreign bodies and MR imaging.
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Biomedical subjects
Publications and source records attributed to J Eschbach.
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Transdermal administration of peptides has been limited by the barrier properties of the skin. We compared the acute luteinizing hormone (LH) response to subcutaneous and transdermal administration of an LH-releasing hormone agonist (leuprolide). Eighteen volunteers received 5 mg leuprolide added to electrically powered patches delivering a current of 0.22 microA (transdermally). One week later, they received a 5 mg subcutaneous dose. LH response was measured. The area under the curve for LH response, maximum LH response, and time to maximum LH response were similar. Time to first response was shorter (147 +/- 108 minutes [transdermally] and 73 +/- 74 minutes [subcutaneously]; p less than 0.05), and the area under the curve for the first 150 minutes was greater (3655 +/- 2246 mIU.min/ml [transdermally] and 8666 +/- 4067 mIU.min/ml [subcutaneously]; p less than 0.05) for subcutaneous delivery. No major adverse effects were seen. This electrically powered transdermal technique merits further study.
The human stratum corneum constitutes a relatively impermeable barrier to the transdermal absorption of most substances, including polypeptides and proteins. This double-blind, randomized, crossover study in 13 normal men evaluated whether a low level of electrical current could induce changes in cutaneous permeability sufficient to produce absorption of a polypeptide. We compared cutaneous absorption of 5 mg of leuprolide (a 9 amino acid luteinizing hormone releasing hormone analogue) in transdermal patches containing 0.2 mA electrical current (active) and in patches containing no electrical current (passive). Serum luteinizing hormone (LH) concentration was measured 12 times during an 8-hour period as a measure of drug effect. Similar baseline LH levels were seen in each group: active = 11.3 +/- 3.1 mIU/ml and passive = 13.7 +/- 4.7 mIU/ml (p not significant). Significant elevations of LH were seen in active compared with passive patches (p = 0.0084). As predicted, passive patches produced no elevation of LH concentration (LH = 11.8 +/- 7.1 mIU/ml at 4 hours). However, active patches produced elevations comparable to those achieved with subcutaneous administration of the drug (LH = 56.4 +/- 49.6 mIU/ml at 4 hours and p = 0.003 compared with passive). The patches were well tolerated without significant cutaneous toxicity. It is concluded that the use of low levels of electrical current can induce changes in the permeability of the stratum corneum. These changes are sufficient to promote the transdermal absorption of therapeutically relevant amounts of a polypeptide. This has major importance for our understanding of skin permeability and for the development of new techniques for drug administration.
Erythropoietic activity is known to be closely associated with marrow iron uptake. A modification of the standard measure of plasma iron turnover has been developed in which erythron transferrin uptake (ETU) rather than iron uptake has been calculated. The ETU has the advantage of providing a parameter of erythroid marrow activity independent of change produced by plasma iron and transferrin saturation. Measurements in 80 patients with anemia were compared to the normal value of 60 +/- 12 mumol/L whole blood/d. The mean ETU for ten patients with severe aplastic anemia and for six patients with pure red-cell aplasia were 12 +/- 8 and 12 +/- 11 mumol/L whole blood/d, respectively. In ten transfusion-dependent patients with renal failure under dialysis therapy, the mean value was 35 +/- 11, while ten other dialyzed patients who were transfusion independent had a mean ETU of 73 +/- 21 mumol/L whole blood/d. Sixteen patients with hemolytic anemia had an average ETU of 400 +/- 130, while 28 patients with ineffective erythropoiesis had a mean value of 474 +/- 147 mumol/L whole blood/d. While patients with hypoproliferative anemia showed no relation between the severity of anemia and ETU, those with hyperproliferative erythroid marrow showed increasing values as the anemia became more severe. Sequential measurements in patients with aplastic anemia under treatment and in thalassemic patients under transfusion therapy showed the value of this measurement in monitoring the effects of treatment on erythroid marrow activity. It is concluded that the measurement of ETU provides a more direct ferrokinetic evaluation of erythroid activity in anemic states.
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