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At least 19 recordsLinked to original sources

Radioimmune localization of occult carcinoma.

Patients with a rising serum carcinoembryonic antigen level and no clinical or roentgenographic evidence of recurrent or metastatic cancer present a treatment dilemma. Eleven such patients, 10 with a previously treated colorectal carcinoma and 1 with a previously treated breast carcinoma, received an injection of the anticarcinoembryonic antigen monoclonal antibody ZCE-025 labeled with the radioisotope indium 111. Nuclear scintigraphy was performed on days 3 and 5 through 7 to detect potential sites of tumor recurrence. The monoclonal antibody scan accurately predicted the presence or absence of occult malignancy in 7 (64%) patients. Second-look laparotomy confirmed the monoclonal antibody scan results in the patients with colorectal cancer, and magnetic resonance imaging confirmed metastatic breast cancer. This study demonstrates that In-ZCE-025 can localize occult carcinoma and may assist the surgeon in facilitating the operative exploration. In-ZCE-025 assisted in the initiation of adjuvant therapy for the patient with breast cancer.

Antibodies, Monoclonal↗

Indium-111 tagged leucocytes in the diagnosis of inflammatory bowel disease.

The distribution of autologous leucocytes labelled with the gamma-ray emitting radioisotope indium-111 was studied in 25 patients with inflammatory bowel disease, 15 with Crohn's disease, and 10 with ulcerative colitis. In all instances the bowel lesion was identified. Radioactivity rapidly accumulated in the lesions over the first 2 h and then passed into the lumen of the bowel within the next 48 h, being redistributed from the liver and spleen. Normally, about 1% of the radioactivity passes into the stools in the 48 h after injection whereas approximately 20% of the administered radioactivity was found in the stools of the patients with inflammatory bowel disease. This noninvasive technique can show the extent of disease in patients too ill for conventional procedures. It can display abscesses and other lesions, and can be performed in outpatients.

Blood Platelets↗

Fate of intravenously administered rat lymphokine-activated killer cells labeled with different markers.

Rat lymphokine-activated killer (LAK) cells, generated by adhering rat splenocytes isolated from the 52% Percoll density fraction to plastic flasks, demonstrate restricted in vivo tissue distribution, localizing in the lungs and liver after 2 h, but redistributing into the liver and spleen 24 h after i.v. administration. However, a different pattern of distribution was observed when this population of LAK cells was labeled with one of four commonly used radioisotopes. For example, LAK cells showed a high distribution into the lungs 30 min after administration when labeled with 51Cr, 125I-dUrd or 111In-oxine, whereas 111InCl-labeled LAK cells showed an equal distribution into the blood, lungs and liver at this time. Two hours after administration, cells labeled with 111In-oxine showed an equivalent distribution into the lungs and liver, those labeled with 125I-dUrd or 51Cr showed a high accumulation in the lungs, whereas those labeled with 111In-Cl entered more into the liver and blood. The pattern of distribution of 111In-Cl- or 111In-oxine-labeled cells was confirmed using gamma camera imaging analysis. By 24 h, LAK cells labeled with 111InCl, 111In-oxine or 51Cr distributed in the liver and spleen in variable concentrations. In contrast, cells labeled with 125I-dUrd were not detected in any organ tested. This study was paralleled by monitoring the distribution of LAK cells labeled with Hoechst 33342 (H33342) and analyzed for the presence of fluoresceinated cells in different organs either by flow cytometry analysis, or in frozen section. The data indicate that the distribution pattern of LAK cells labeled with 111In-oxine is the closest to the distribution of H33342-labeled cells. Of all the radioisotopes used, 125I-dUrd has the most disadvantages and is not recommended for monitoring the in vivo distribution of leukocytes.

Animals↗

Development of radiolabelled albumin microspheres: a comparison of gamma-emitting radioisotopes of iodine (131I) and indium (111In/113mIn).

Biodegradable albumin microspheres have been prepared incorporating either 131I or 111In/111In. Using cDTPAA/albumin molar ratios of 1, 3 and 10, approx. 0.7, 2.1 and 7 molecules of DTPA could be coupled to an albumin molecule, labelling efficiency being constant over this range. Because 131I microspheres were more stable in plasma than the system labelled with radionuclides of indium it was selected for clinical evaluation: potential uses of this radiopharmaceutical are illustrated.

Biodegradation, Environmental↗

Targeting radiopharmaceuticals--II. Evaluation of new trivalent metal complexes with different overall charges.

Three new multidentate ligands designed to have high affinity for Ga3+, In3+ and Fe3+ have been synthesized. N-(2-hydroxybenzyl)-N'-pyridoxylethylenediamine-N,N'-diacetic acid (HBPLED), N-(2-hydroxy-3,5-dimethylbenzyl)-N'-(3-hydroxy-1,2,5-trimethyl-4- pyridylmethyl)ethylenediamine-N,N'-diacetic acid (Me4HBPLED) and N,N'-bis(3-hydroxy-1,2,5-trimethyl-4-pyridylmethyl) ethylenediamine-N,N'-diacetic acid (DMPLED). These ligands give metal-ligand (M-L) complexes with (M = Ga3+, In3+, Fe3+) overall charges of -1.0 and +1, respectively. The 67Ga, 68Ga and 111In complexes of each of the three ligands and the 59Fe complex of Me4HBPLED were prepared, characterized and their biodistributions determined in rats after intravenous injection. Despite the differences in overall charge, the biological behavior of all three 111In complexes were similar, in that the radioactivity cleared rapidly via the kidney. The biodistributions of the 68Ga and 67Ga complexes were comparable to that of the 111In complex counterpart. Also, the 59Fe-Me4HBPLED biodistribution was not significantly different from those of the 68Ga- and 111In-Me4HBPLED. The renal clearance rate seems insensitive to the overall M-L charge; suggesting that the hydrophilic periphery of the ligand rather than the overall molecular charge determines the biological fate (with respect to renal clearance).

Animals↗

A bifunctional HBED-derivative for labeling of antibodies with 67Ga, 111In and 59Fe. Comparative biodistribution with 111In-DPTA and 131I-labeled antibodies in mice bearing antibody internalizing and non-internalizing tumors.

To investigate whether bifunctional ligands containing chelating structures other than EDTA and DTPA and metallic radiotracers other than 111In will reduce the non-specific radioactivity uptake in the liver during immunoscintigraphy, we synthetized an isothiocyanato-substituted phenolic polyaminocarboxylic acid (HBED-CI) for labeling of MAbs with 67Ga, 111In and 59Fe. Biodistribution of HBED-CI-labeled MAbs was compared to that of 131I and 111In-DTPA labeled MAbs in nude mice bearing tumors, which differ with regard to intracellular internalization and catabolism of the corresponding MAb-antigen complex. In the liver a continuous radioactivity excretion for 67Ga-HBED-CI-labeled MAbs was observed with kinetics that parallel 131I clearance after administration of 131I-MAbs, while 111In-HBED-CI-labeling led to a constant 111In liver level quite similar to that of 111In-DTPA-MAbs. In tumors, 67Ga-HBED-CI-MAb uptake again paralleled that of 131I-MAbs, showing continuous accumulation in tumor tissues when internalization of the MAb-antigen complex was not involved. A much lower uptake, which peaked between 24 and 48 h, was found in the case of MAb-antigen internalization. 111In of 111In-HBED-CI- and 111In-DTPA-labeled MAbs continuously accumulated in both types of tumors. Compared with 111In-DTPA-MAbs, an improvement in tumor-to-liver ratios, due to the reduced liver radioactivity associated with 67Ga-HBED-CI-labeled MAbs, could only be obtained with non-internalizing tumors. The time course of radioactivity distribution in the liver and in MAb-internalizing tumors after administration of 67Ga-HBED-CI-, 111In-HBED-CI- and 111In-DTPA-labeled MAbs further indicates a dominating influence of the metallic radiotracer rather than the ligand on retention or excretion of radioactivity in MAb-catabolizing tissues.

Animals↗

Synthesis of novel bifunctional chelators and their use in preparing monoclonal antibody conjugates for tumor targeting.

Bifunctional derivatives of the chelating agents ethylenediaminetetraacetic acid and diethylenetriaminepentaacetic acid, in which a p-isothiocyanatobenzyl moiety is attached at the methylene carbon atom of one carboxymethyl arm, was synthesized by reductive alkylation of the relevant polyamine with (p-nitrophenyl)pyruvic acid followed by carboxymethylation, reduction of the nitro group, and reaction with thiophosgene. The resulting isothiocyanate derivatives reacted with monoclonal antibody B72.3 to give antibody-chelator conjugates containing 3 mol of chelator per mole of immunoglobulin, without significant loss of immunological activity. Such conjugates, labeled with the radioisotopic metal indium-111, selectively bound a human colorectal carcinoma implanted in nude mice when given intravenously. Uptake into normal tissues was comparable to or lower than that reported for analogous conjugates with known bifunctional chelators. It is concluded that substitution with a protein reactive group at this position in polyaminopolycarboxylate chelators does not alter the chelating properties of these molecules to a sufficient extent to adversely affect biodistribution and thus provides a general method for the synthesis of such chelators.

Animals↗

The utility of monoclonal antibodies in the imaging of prostate cancer.

Monoclonal antibodies (mAbs) to prostate-specific antigens, such as PSMA, have great potential as diagnostic and therapeutic tools in the management of advanced prostate cancer. PSMA is a very attractive target for mAb-based imaging. It is expressed by virtually all prostate cancers and its expression is further increased in poorly differentiated, metastatic, and hormone-refractory carcinomas. The ProstaScint scan (Cytogen, Princeton, NJ), based on the mAb 7E11-C5.3, is currently approved for the imaging of prostate cancer in soft tissue but is not approved for imaging bone metastases. It appears superior to conventional imaging studies for soft-tissue disease but has limitations attributed to its intracellular binding site on PSMA. Overcoming this limitation, new mAbs to the extracellular domain of PSMA have been developed. The radioisotopes, (111)Indium, (90)Yttrium, and (177)Lutetium have been conjugated to one such mAb, J591. Radioimmunoscintigraphy with this immunoconjugate has demonstrated excellent tumor targeting of prostate cancer sites not only in soft tissue but also in bone.

Antibodies, Monoclonal↗

Methods for routine calibration of brachytherapy sources.

Two types of routine geometry calibrators, the nuclear medicine dose calibrator and a Lucite jig holding a 30-ml external beam ion chamber with the source in a rigid geometry, were compared with open-air measurements for 137Cs, 192Ir, and 226Ra brachytherapy sources. The proximity of scattering surfaces in the second apparatus resulted in significant distortion of the buildup effect and deviation from the inverse square law (5% to 15%). For the dose calibrator, the response/Roentgen was found to be dependent not only on source energy, but on source capsule thickness as well. Approximately one half of the observed variation (27%) in calibration factors was accounted for by differences in filtration among sources. A mathematical logarithm that corrects for these geometric and filtration effects is presented. In addition, the activity assay procedure provided by the manufacturer of the dose calibrator is shown to be unsuitable for brachytherapy sources. Steps to overcome these problems are discussed.

Brachytherapy↗

Pulmonary clearance of three aerosolized solutes in oleic acid-induced lung injury.

We studied the effects of oleic acid (OA) on pulmonary clearance of three aerosolized radioactive solutes: 99mTc-diethylenetriamine pentaacetate (99mTc-DTPA), 67Ga-desferoxamine (67Ga-DFOM), and 111In-transferrin (111In-TF). Either 0.09 ml/kg OA or an equivalent volume of 0.9% NaCl (controls) was administered intravenously to 48 anesthetized, paralyzed dogs. Each animal received one aerosolized solute either 60 min after (protocol A) or 30 min before (protocol B) the infusion of OA or NaCl. In protocol A clearances of all three solutes were similar in OA and control animals. In contrast, in protocol B clearances of all three solutes increased significantly during OA infusion; during the next 60 min clearances of 99mTc-DTPA and 67Ga-DFOM returned to control values but 111In-TF remained increased. We conclude that 1) in OA-induced permeability edema pulmonary clearance of aerosolized solutes is increased when the aerosol is delivered 30 min before but not 60 min after injury, and 2) increased clearance persists only for large molecules, presumably because smaller molecules cross injured epithelium quickly and completely. These phenomena are best explained by a nonhomogeneous distribution of OA-induced injury.

Aerosols↗

Effect of the radiolabel mediator tropolone on lymphocyte structure and function.

The in vitro use of the radioisotope indium 111 (111In) was examined as a radiolabel for lymphocytes obtained from both normal individuals and patients with a variety of lymphoid malignancies. Successful cell labeling requires a chelator. The traditional agent oxine, has proved to be toxic to the lymphoid lineage. Cellular uptake of 111In mediated by the chelator oxine was compared with that of a new chelator, tropolone. Oxine provided better labeling efficiency (48%) than tropolone (35%) for the labeling of normal lymphocytes. By contrast, lymphocytes from patients with chronic lymphocytic leukemia had a nearly twofold greater labeling efficiency when tropolone was substituted for oxine. Further studies demonstrated that tropolone induced functional injury to lymphocytes when mitogenic response to concanavalin A, pokeweed mitogen, and phytohemagglutinin was assessed. Similar toxicity was found when tropolone was compared with oxine. In addition, tropolone produced damaging structural changes seen by both scanning and transmission electron microscopic examination. These changes were both variable and not predictable. Shortening of the incubation time of the chelator with the cell provided the least amount of cellular injury. These findings suggest that tropolone be used as an alternative mediator of lymphocyte labeling with 111In only under critically defined conditions.

Cells, Cultured↗

Tissue preparation technique for microsphere assays of blood flow.

A simple method for preparing standardized tissue samples for microsphere assay of tissue blood flow is described. By reduction of tissue samples into a liquid state and centrifugation of the microspheres to the bottom of conical-shaped counting vials, the microspheres within all tissue and blood reference samples attain the same counting geometry. The validity and reproducibility of this technique has been established for planar-configured gamma-ray detectors in an in-situ porcine kidney model. A positive correlation coefficient of r = 0.99 was observed between the total kidney blood flow, as measured by a calibrated Transonic flow probe, and the microsphere reference sample technique.

Animals↗

Rapid tumor imaging by active background reduction using biotin-bearing liposomes and avidin.

Tumor imaging with labeled liposomes is slow; although they reach the tumor quickly, their blood clearance is slow, and the high blood background hinders early imaging. We have developed a rapid tumor imaging technique based on the active removal of liposomes from the circulation by using the avidin-biotin system. 67Ga- or 111In-labeled liposomes with biotin molecules bound on the surface were administered to mice bearing sarcoma 180, and avidin was administered 2 h later. The strong affinity between biotin and avidin initiated the aggregation of liposomes, resulting in their rapid removal from the circulation by the reticuloendothelial system, and the blood level of radioactivity was dramatically reduced without any change of the tumor level. Consequently, the tumor:blood ratio reached 14-18 only 2.5 h after liposome injection. Increased accumulation in the liver was also observed. By this method, an acceptable tumor image could be obtained no more than 2 h after administration of labeled liposomes.

Animals↗

Optimal radiolabeled liposomes for tumor imaging.

UNLABELLED: We conducted a systematic study of the effects of liposome formulation and encapsulated radionuclides on imaging ability. METHODS: Various types of liposomes were prepared and labeled with 67Ga, 111In or 99mTc. Their tumor-imaging potential was evaluated in terms of tumor accumulation and tumor-to-blood ratios of radioactivity delivered by the liposomes. Mouse sarcoma 180 and Ehrlich solid tumor were the tumor models. RESULTS: Liposomes could be labeled rapidly and with high efficiency, which was sufficient for clinical application. Tumor accumulation of liposome-encapsulated radionuclides that have intrinsic tumor affinity, such as 67Ga-NTA or 111In-NTA, was larger than that of the other nuclides. Liposomes that were fairly small, cholesterol-rich and composed of so-called rigid phospholipids, could deliver large amounts of encapsulated radionuclides to the tumor. We also found that tumor uptake of such liposomes was large and their blood retention was prolonged. Liposomal lipid dose also influenced tumor delivery and blood retention. The results suggest that these factors extended liposomal blood retention and, consequently, increased tumor uptake of the liposomes and tumor delivery of encapsulated radionuclides. Not all liposomes with long blood retention, however, are suitable for tumor imaging. Incorporation of monosialo-ganglioside in the liposomal membrane greatly extended blood retention but increased tumor uptake only slightly and, consequently, made the tumor-to-blood value worse. One of the 67Ga-labeled liposome formulations resulted in high tumor uptake and tumor-to-blood ratios in various tumor models as well as clearly visualized tumors clearly in sarcoma 180-bearing mice. CONCLUSION: For tumor imaging with radiolabeled liposomes, we should choose liposomal formulations and dose to give prolonged blood retention for large tumor delivery. We must then select liposomes that give good tumor-to-blood values. For the best results, the radionuclide should have intrinsic tumor affinity. Labeled liposomes that meet these criteria result in excellent tumor images.

Animals↗

Rapid diagnostic imaging of cancer using radiolabeled liposomes.

A novel tumor diagnostic imaging method was developed that allows tumor localization soon after administration of radiolabeled liposomes. Although previous studies showed that radiolabeled liposomes can reach various tumors in a short time, their blood clearance is slow, and the high blood background hinders early imaging. Therefore, we attempted to remove actively the liposomes from the circulation using the strong affinity between avidin and biotin. Liposomes that had biotin bound to their surface and were labeled with 111In, 67Ga, or 99mTc were administered to mice bearing sarcoma 180, followed by administration of avidin 2 or 4 h later. Avidin initiated liposomal aggregation, resulting in their rapid removal by the reticuloendothelial system. Consequently, their blood level was markedly reduced without any changes in tumor levels. The tumor-to-blood ratio reached about 13 at only 2.5 h after administration of 99mTc-labeled liposomes, versus 1.0 or less without postadministration of avidin. Increased liver accumulation was also observed, but it decreased gradually with time.

Animals↗