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Biomedical subjects

D Eshima

Publications and source records attributed to D Eshima.

At least 37 records · Page 2Linked to original sources

Technetium-99m (99mTc) mercaptoacetyltriglycine: update on the new 99mTc renal tubular function agent.

Technetium-99m (99mTc) mercaptoacetyltriglycine (MAG3) is a new renal radiopharmaceutical that was recently introduced as a 99mTc-labeled replacement for iodine-131 (131I) o-iodohippurate (OIH). Since its introduction, a wide variety of in vitro and in vivo studies have been performed to characterize the high-performance liquid chromatography (HPLC)-purified complex and kit formulations. [99mTc]MAG3 has a slower plasma clearance, a higher plasma protein binding, less red blood cell (RBC) penetration, a lower extraction ratio, and a smaller volume of distribution than OIH. Because of the slower plasma clearance, [99mTc] MAG3 cannot be used as a direct measurement of effective renal plasma flow. Simplified methods have been developed to calculate [99mTc]MAG3 clearances, as well as regression equations to convert these clearances to an equivalent OIH value. The image quality of [99mTc]MAG3 is superior to [131I]OIH; the renogram curves and the fraction of the dose of the two agents that appears in the urine are almost identical, even though the plasma clearance of [99mTc]MAG3 is only 50% to 65% that of OIH. [99mTc]MAG3 compares favorably with OIH in patients with a wide range of clinical problems. The radiation dose to a patient with normal renal function using standard imaging doses is higher for [99mTc]MAG3 than for [131I]OIH, but in patients with impaired renal function, the radiation dose from [131I]OIH is much higher than [99mTc]MAG3. [99mTc]MAG3 also provides superior image quality compared with [99mTc]diethylenetriaminepentaacetic acid (DTPA) in patients with impaired renal function, but it is important to note that [99mTc]MAG3 cannot be used to measure the glomerular filtration rate (GFR). [99mTc]MAG3 is the most promising 99mTc tubular function agent to date, and it has replaced OIH and [99mTc]DPTA in a number of institutions. However, there are physiologic differences between these three agents and, therefore, they should not be expected to behave identically in all clinical conditions.

Animals↗

Prospective validation of a single sample technique to determine technetium-99m-MAG3 clearance.

Technetium-99m-MAG3 clearance is proportional to OIH clearance and can be used directly as a measure of renal function. Multiple plasma sample, two-compartment clearance data from three studies were recently pooled to develop a single-sample regression equation for determining the clearance of 99mTc-MAG3. To test this published equation, a prospective study was conducted in 34 patients with a wide range of renal function. Multiple plasma samples were obtained from 9 to 60 min following the bolus injection of 99mTc-MAG3 and the clearances were calculated based on a single injection, two-compartment model. Clearances were also calculated using a single 43-min plasma sample and the published regression equation. There was an excellent correlation (r = 0.976) between the two clearances; the slope of the regression line was 1.01 with an intercept of -26.6; the standard error of the estimate was 24 ml/min. In conclusion, the current regression equation provides a good estimate of 99mTc-MAG3 clearance.

Chromatography, High Pressure Liquid↗

Radiation dosimetry for technetium-99m-MAG3, technetium-99m-DTPA, and iodine-131-OIH based on human biodistribution studies.

Radiation dose estimates were calculated for the renal agents 99mTc-DTPA, 99mTc-MAG3, and 131I-OIH from biodistribution data gathered in groups of healthy human volunteers. Biokinetics were evaluated by Anger camera imaging, blood sampling, and urine collection and counting. Collected data were fit to four- or five-compartmental models using the CONversational Simulation, Analysis, and Modeling (CONSAM) software. Radiation dose estimates were performed using standard MIRD techniques. Average residence times in urinary bladder, kidney, and remainder of the body were used to predict radiation dose equivalents and effective dose equivalents for the three agents. Doses for DTPA and MAG3 were very similar and much lower on a per unit injected activity than OIH. The effective dose equivalents were 3.3 mSv/370 MBq for 99Tc-DTPA, 3.7 mSv/370 MBq for 99mTc-MAG3, and 0.99 mSv/11.1 MBq for 131I-OIH for bladder voiding every 4.8 hr; effective dose equivalents were 2.0 mSv/370 MBq for 99mTc-DTPA, 1.5 mSv/370 MBq for 99mTc-MAG3, and 0.28 mSv/11.1 MBq for 131I-OIH for bladder voiding at 30 min and then every 4.0 hr. Patients should void at the conclusion of the study, as early voiding can reduce the gonadal radiation dose by a factor of 2 to 3.

Humans↗

Effect of advanced age on p-aminohippurate-induced inhibition of renal tubular secretion in male Fischer 344 rats.

The effect of aging on glomerular filtration, effective renal plasma flow and on the responsiveness of the renal tubular anion secretory system to inhibition by 4-aminobenzoylglycine (p-aminohippurate, PAH) was examined in young (5-month) and old (22-month) Fischer 344 male rats. Plasma clearance, protein binding and renal extraction of [131I]o-iodohippurate, [125I]iothalamate and HPLC-purified [99mTc]mercaptoacetyltriglycine (MAG3), were used as in vivo probes of renal function. The effect of advanced age, without concomitant PAH, on the disposition of these markers was initially determined in ketamine anesthetized, temperature-maintained male rats, ages 5, 14 and 22 months by means of constant infusion clearance studies. Aging per se decreased (P less than 0.05) the kidney-weight normalized or body weight-normalized GFR and effective renal plasma flow rates. GFR values averaged 1.67, 1.43 and 1.32 ml/min per g kidney for the 5-, 14- and 22-month-old rats, respectively. Kidney- or body weight-normalized clearances of MAG3 and o-iodohippurate showed similar (25-27%) decreases, whereas the absolute values (ml/min) for GFR, o-iodohippurate and MAG3 clearance rates were not altered by aging. The effective filtration fraction, extraction ratio and plasma protein binding were also unchanged by advanced age. Overall, the age-related decreases in renal function were minimal in Fischer-344 rats, compared to other species. Differences in data normalization, species and gender account, in part, for discrepancies observed when comparing results in different studies on the effects of advanced age on renal function. Subsequently, we examined the effect of aging on the renal responsiveness to inhibition of tubular anion secretion using constant rate PAH infusion studies, adjusted for age-related changes in renal function. Aging did not alter PAH-induced inhibition of iodohippurate secretion. Inhibition of MAG3 elimination was more pronounced in the old rats compared to the young controls.

Aging↗

99mTc renal tubular function agents: current status.

Orthoiodohippuric (OIH) acid labeled with 131I is a widely used renal radiopharmaceutical agent and has been the standard radiopharmaceutical agent for the measurement of effective renal plasma flow (EPRF). Limitations to the routine clinical use of 131I OIH are related to the suboptimal imaging properties of the 131I radionuclide and its relatively high radiation dose. 123I has been substituted for 131I; however, its high cost and short shelf-life have limited its widespread use. Recent work has centered on the development of a new 99mTc renal tubular function agent, which would use the optimal radionuclidic properties and availability of 99mTc and combine the clinical information provided by OIH. The search for a suitable 99mTc renal tubular function agent has focused on the diamide dithiolate (N2S2), the paraaminohippuric iminodiacetic acid (PAHIDA), and the triamide mercaptide (N3S) donor ligand systems. To date, the most promising 99mTc tubular function agent is the N3S complex: 99mTc mercaptoacetyltriglycine (99mTc MAG3). Studies in animal models in diuresis, dehydration, acid or base imbalance, ischemia, and renal artery stenosis demonstrate that 99mTc MAG3 behaves similarly to 131I OIH. A simple kit formulation is available that yields the 99mTc MAG3 complex in high radiochemical purity. Studies in normal subjects and patients indicate that 99mTc MAG3 is an excellent 99mTc renal tubular agent, but its plasma clearance is only 50% to 60% that of OIH. In an effort to develop an improved 99mTc renal tubular function agent, changes have been made in the core N3S donor ligand system, but to date no agent has been synthesized that is clinically superior to 99mTc MAG3.

Aminohippuric Acids↗

Comparison of Tc-99m MAG3 and Tc-99m DTPA in renal transplant patients with impaired renal function.

Tc-99m mercaptoacetyltriglycine (MAG3) is a new Tc-99m renal agent that compares favorably to I-131 Hippuran in animal models, normal volunteers, and patients. Based on the fact that Tc-99m MAG3 has a much more rapid clearance than Tc-99m DTPA and a smaller volume of distribution, it was postulated that the image quality of Tc-99m MAG3 studies should be superior to scans obtained using Tc-99m DTPA, particularly in patients with impaired renal function. To test this hypothesis, Tc-99m DTPA and MAG3 images were obtained in three transplant patients during periods of stable but impaired renal function. In one study, the Tc-99m DTPA study was potentially misleading, whereas the Tc-99m MAG3 examination assessed the clinical situation correctly. In all three cases, the Tc-99m MAG3 images were superior.

Adult↗

Clinical comparison of I-131 orthoiodohippurate and the kit formulation of Tc-99m mercaptoacetyltriglycine.

Previous studies in animals and humans have shown that technetium-99m mercaptoacetyltriglycine (MAG3) purified by high-performance liquid chromatography is a renal tubular agent with characteristics similar to those of iodine-131 orthoiodohippurate (OIH). A kit formulation for Tc-99m MAG3 has been developed and compared with I-131 OIH in 17 patients with suspected renal dysfunction and three potential kidney donors. There were no adverse reactions. Tc-99m MAG3 images were of good quality and consistently better than I-131 OIH images. There was no significant difference in the relative renal uptake of Tc-99m MAG3 and I-131 OIH. The 30-minute urinary excretion of Tc-99m MAG3 was 36.4%, versus 40.4% for I-131 OIH. The average plasma clearance of Tc-99m MAG3 (138 mL/min +/- 117) was less than that of I-131 OIH (272 mL/min +/- 205) (P less than .001); however, there was good correlation between the Tc-99m MAG3 and I-131 OIH clearances (r = .87). The volume of distribution of Tc-99m MAG3 (5.96 L +/- 1.94) was less than that of I-131 OIH (9.41 L +/- 3.73) (P less than .001). These characteristics and the advantages of a simple kit formulation should lead to widespread clinical use.

Adult↗

Estimation of technetium-99m-MAG3 plasma clearance in adults from one or two blood samples.

Technetium-99m mercaptoacetyltriglycine (MAG3) clearance is strongly correlated with effective renal plasma flow and can be used directly as a measure of renal function. For these reasons, formulas were developed for estimation of [99mTc]MAG3 clearance based on one or two plasma samples. A two-exponential model provided an excellent fit for 8-point plasma clearance curves obtained from 35 patients having a wide range of renal function. The 8-point [99mTc]MAG3 clearance could be estimated from a single point at 43 min with an error of 19 ml/min (residual s.d.) or from two samples at 12 and 94 min with an error of 7 ml/min. The relative errors with MAG3 are thus comparable to those reported for similar techniques used with [131I]orthoiodohippurate, [99mTc]diethylenetriaminepentraacetic acid and [51Cr]ethylenediaminetetraacetic acid.

Adult↗

Technetium-99m MAG3 kit formulation: preliminary results in normal volunteers and patients with renal failure.

Previous studies have shown that [99mTc]mercaptoacetyltriglycine (MAG3) purified by high performance liquid chromatography (HPLC) is a very promising new renal imaging agent which has characteristics very similar to [131I]orthoiodohippurate. An easily prepared kit formulation has been developed and evaluated in ten normal volunteers and three patients on hemodialysis. The average radiochemical purity was 96.6%. There were no adverse reactions. In the volunteers, the relative uptake +/- 1 s.d. was 49.1% +/- 2.6% for the right kidney and 50.9% +/- 2.6% or the left kidney. Urine activity was 71.4% +/- 6.4% of the injected dose at 30 min and 94.4% +/- 2.2% at 180 min. The 60-min plasma clearance was 340.0 +/- 79.0 ml/min and the volume of distribution was 5.15 +/- 1.1I. Approximately 0.5% of the injected dose was present in the gallbladder at 30-60 min postinjection. Gut activity was not present 30-60 min postinjection but reached 1% of the injected dose by 3 hr. In the hemodialysis patients, approximately 1% of the injected dose was present in the gallbladder and 0.5% in the gut at 30-60 min; gut activity increased to approximately 5% at 3 hr. In summary, results using the kit formulation compare favorably to previously published data using the HPLC purified material. Based on these preliminary results, the kit formulation is expected to have widespread clinical utility.

Adult↗

Effects of altered physiologic states on clearance and biodistribution of technetium-99m MAG3, iodine-131 OIH, and iodine-125 iothalamate.

Technetium-99m mercaptoacetyltriglycine [( 99mTc]MAG3) is a new renal radiopharmaceutical with biologic properties similar to iodine-131 orthoiodohippuric acid [( 131I]OIH). MAG3 may be used as a replacement for [131I]OIH and/or [99mTc]DTPA. For this reason, we compared the effects of several potential adverse clinical conditions on the clearance and biodistribution of MAG3, OIH and a GFR marker. To simulate renal failure, five mice underwent bilateral renal pedical ligation. Twenty-four hours after surgery they were injected with MAG3 and OIH and killed 2 hr postinjection. Compared to sham operated controls, liver activity for MAG3 and OIH increased from 0.2% to 14.1% and 0.1% to 13.9%, respectively, while intestinal activity increased from 1.3% to 8.9% for MAG3 and 0.2% to 7.7% for OIH. Constant infusion studies were performed in rats to evaluate the effects of increased plasma organic acid levels, mannitol diuresis, dehydration, and acid/base imbalance on the clearance of OIH, MAG3, and [125I]iothalamate. No differences were noted between the OIH and MAG3 clearances following diuresis and dehydration and the differences involving acid/base imbalance were minimal. Dehydration depressed the clearance of [125I]iothalamate more than that of OIH or MAG3. Para-aminohippurate (PAH) infusion inhibited the clearance of MAG3 more than OIH supporting proximal tubular transport for MAG3; PAH had no effect on [125I]iothalamate. In summary HPLC purified MAG3 behaved similarly to OIH under adverse physiologic conditions and the data continue to support the use of MAG3 as a potential clinical substitute for OIH.

Acid-Base Imbalance↗

99mTc-MAG3, a new renal imaging agent: preliminary results in patients.

99mTc-mercaptoacetyltriglycine (MAG3) is a new renal radiopharmaceutical which has been shown to have biological properties similar to 131I-hippurate (OIH) in animals and volunteers. 99mTc-MAG3 has now been compared with 131I-orthoiodohippurate (OIH) in a group of patients with varying degrees of renal impairment. In all cases, the 99mTc-MAG3 images were superior regardless of serum creatinine. Selected examples are illustrated including scans and renogram curves in a normal volunteer, transplant patients with creatinines of 9.8 mg/dl and 2.6 mg/dl respectively, and a furosemide study in a patient with questionable obstruction. Our preliminary results suggest that 99mTc-MAG3 performs well in patients with impaired renal function and may well provide an acceptable replacement for OIH. A kit formulation has been developed and will soon be undergoing clinical evaluation.

Adult↗

Evaluation of Tc-99m mercaptoacetyltriglycine in patients with impaired renal function.

Technetium-99m mercaptoacetyltriglycine (MAG3), a new radiopharmaceutical shown to have biological properties similar to iodine-131 o-iodohippurate (OIH) in animals and healthy volunteers, was compared with OIH in 15 patients with varying degrees of renal impairment. The Tc-99m MAG3 images were uniformly superior, regardless of the serum creatinine level. There was no significant difference in the 30-minute blood clearance of OIH and MAG3. MAG3 protein binding (78.6%) was greater than that of OIH (53.1%) (P less than or equal to .01), and the volume of distribution of MAG3 (7.06 liters) was less than that of OIH (10.78 liters) (P less than or equal to .01). In six patients the 30-minute urinary excretion of the two agents was essentially identical. The time to the peak height of the renogram curves was more rapid for MAG3 than for OIH using both cortical and whole-kidney regions of interest (P less than or equal to .02). In summary, preliminary results suggest that Tc-99m MAG3 performs well in patients with impaired renal function and may well be an acceptable replacement for OIH. A kit formulation is currently undergoing clinical evaluation.

Blood Proteins↗

Animal evaluation of technetium-99m triamide mercaptide complexes as potential renal imaging agents.

Technetium-99m mercaptoacetylglycylglycylglycine (MAG3), a [99mTc]triamide mercaptide (N3S) compound has been synthesized in an attempt to obviate the stereochemistry problems associated with the diamide dimercaptide (N2S2) ligands. Because initial studies have been promising, the terminal glycine on the MAG3 compound has been varied to create a new series of N3S compounds. Twelve new N3S complexes were initially screened in mice and the more promising complexes, 99mTc mercaptoacetylgylcylglycyl-glycine [( 99mTc]MAG3), 99mTc mercaptoacetylgylcylglycyl-L-alanine [( 99mTc]MAG2-Ala), and both complexes of 99mTc mercaptoeacetylglycylglycyl-L-asparagine [( 99mTc]MAG2-Asn) and 99mTc mercaptoacetylglycylglycyl-L-glutamine [( 99mTc]MAG2-Gln), were further evaluated in rats utilizing constant infusion blood clearances, extraction efficiencies and protein binding assays. The renal excretion of all these complexes compared favorably with simultaneously administered [131I]OIH and [125I]iothalamate. The triamide mercaptide complexes represent a new ligand class for 99mTc, which may provide a variety of complexes for the evaluation of renal tubular function.

Animals↗

Tissue distribution properties of technetium-99m-diamide-dimercaptide complexes and potential use as renal radiopharmaceuticals.

A series of new ligands and the corresponding technetium-99m chelates based on diamide dimercaptide donor groups were synthesized as derivatives of technetium-99m 1,2-bis(2-thioacetamido)ethane, a complex shown to be excreted by renal tubular secretion. Chelation with 99mTc resulted in single radiochemical products or the expected numbers of stereoisomers. They were purified by high-performance liquid chromatography (HPLC) and evaluated in mice as potential renal tubular function agents. The in vivo properties were sensitive to the presence of functional groups, the positional isomerism of the carboxylate group functionality, and the chelate ring stereochemistry of the ligand. The presence of methyl groups slowed renal transit and decreased renal specificity. Cyclohexyl rings fused to the ethylene bridge of the center chelate ring decreased renal excretion while aromatic rings essentially abolished renal excretion. Slow hepatobiliary clearance was observed as an alternate mode of excretion. Polar groups, such as hydroxyl, carboxylate, and carboxamide, increased renal excretion rates and specificity in a stereochemically dependent manner. 99mTc chelates of 1,3-bis(2-thioacetamido)-2-hydroxypropane, 3,4-bis(2-thioacetamido)butanoate and 1,8-dimercapto-2,7-dioxo-3,6-diazanonanoate were identified as promising new renal radiopharmaceuticals.

Amides↗