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Biomedical subjects

P L Beaumier

Publications and source records attributed to P L Beaumier.

At least 19 recordsLinked to original sources

Cure of human carcinoma xenografts by a single dose of pretargeted yttrium-90 with negligible toxicity.

A covalent conjugate (NR-LU-10/SA) was prepared between streptavidin (SA) and NR-LU-10, a mAb that binds an antigen expressed on the surface of most human carcinomas. NR-LU-10/SA was injected into nude mice bearing human tumor xenografts. Injection of biotinylated galactosyl-human serum albumin reduced the circulating levels of conjugate by 95%. Subsequent administration of (90)Y-1,4,7, 10-tetraazacyclododecane-1,4,7,10-tetraacetic acid-biotin achieved peak uptake at the tumor within 2 hr while >80% of the radioactivity was eliminated in the urine. A single dose of 600-800 microCi of (90)Y-1,4,7,10-tetraazacyclododecane-1,4,7,10-tetraacetic acid-biotin produced cures in 10/10 mice with established (>200 mm(3)) s.c. human small cell lung or colon cancer xenografts and 8/10 cures in mice with human breast cancer xenografts without significant toxicity.

Animals↗

Clinical optimization of pretargeted radioimmunotherapy with antibody-streptavidin conjugate and 90Y-DOTA-biotin.

UNLABELLED: Pretargeted radioimmunotherapy (PRIT) was evaluated using an antibody-streptavidin conjugate, followed by a biotin-galactose-human serum albumin clearing agent and 90Y-dodecane tetraacetic acid (DOTA)-biotin as the final step for therapy. The objective was to develop a clinical protocol that could show an improved tumor-to-red marrow therapeutic ratio compared with conventional radioimmunotherapy (RIT) and at the same time preserve the efficiency of tumor targeting. METHOD: Forty-three patients with adenocarcinomas reactive to NR-LU-10 murine monoclonal antibody received the 3 components. Doses and timing parameters were varied to develop an optimized schema. In some patients, the conjugate was radiolabeled with 186Re as an imaging tracer to assess biodistribution of the conjugate and effectiveness of the clearing agent. 111In-DOTA-biotin was coinjected with 90Y-DOTA-biotin for quantitative imaging. Safety, biodistribution, pharmacokinetics, dosimetry, and antiglobulin formation were evaluated. RESULTS: The optimal schema was defined as a conjugate dose of 125 microg/mL plasma volume followed at 48 h by a clearing agent in a 10:1 molar ratio of clearing agent to serum conjugate. The therapeutic third step was 0.5 mg radiobiotin administered 24 h later. No significant adverse events were observed after administration of any of the components. The mean tumor-to-marrow absorbed dose ratio when using the optimized PRIT schema was 63:1, compared with a 6:1 ratio reported previously for conventional RIT. Antiglobulin to murine antibody and to streptavidin developed in most patients. CONCLUSION: This initial study confirmed that the PRIT approach is safe and feasible and achieved a higher therapeutic ratio than that achieved with conventional RIT using the same antibody.

Adenocarcinoma↗

Rhenium-186-labeled chimeric antibody NR-LU-13: pharmacokinetics, biodistribution and immunogenicity relative to murine analog NR-LU-10.

A mouse-human chimeric monoclonal antibody (NR-LU-13), with the same pancarcinoma antigen recognition site as a previously studied murine monoclonal antibody (NR-LU-10), was radiolabeled with 186Re using a bifunctional chelate. Nine patients (ages 31-81 yr) with metastatic adenocarcinoma received 186Re NR-LU-13. A single intravenous dose of 42 mg NR-LU-13 labeled with 25 mCi/m2 (two patients) or 60 mCi/m2 (seven patients) was administered. Mean serum disappearance half-time values for the chimeric 186Re NR-LU-10). Fifty percent of the radiolabel was excreted in the urine by 6 days. Tumor localization was demonstrated by gamma camera imaging in seven of nine patients. The percent injected dose per gram in a single tumor biopsy specimen was 0.003% at 72 hr postinjection. Absorbed dose to bone marrow was 1.5 +/- 0.7 rads/mCi and resulted in reversible myelosuppression in five of six evaluable patients who received 60 mCi/m2: median WBC nadir = 2500/microliters; median platelet nadir = 85,500/microliters. Low grade fever, nausea, slight elevations of liver function tests and mild allergic reactions were seen in some patients. The chimeric antibody elicited low levels of anti-NR-LU-13 antibody in six of eight evaluable patients (75%), in contrast to NR-LU-10 which elicited higher levels of human anti-mouse antibody in all patients. This pilot study demonstrates the ability of the chimeric antibody to target tumors with reduced (but not absent) immunogenicity and delayed clearance relative to the murine antibody.

Adenocarcinoma↗

Dosimetry of rhenium-186-labeled monoclonal antibodies: methods, prediction from technetium-99m-labeled antibodies and results of phase I trials.

Rhenium-186 is a beta-emitting radionuclide that has been studied for applications in radioimmunotherapy. Its 137 keV gamma photon is ideal for imaging the biodistribution of the immunoconjugates and for obtaining gamma camera data for estimation of dosimetry. Methods used for determining radiation absorbed dose are described. We have estimated absorbed dose to normal organs and tumors following administration of two different 186Re-labeled immunoconjugates, intact NR-LU-10 antibody and the F(ab')2 fragment of NR-CO-02. Tumor dose estimates in 46 patients varied over a wide range, 0.4-18.6 rads/mCi, but were similar in both studies. Accuracy of activity estimates in superficial tumors was confirmed by biopsy. Prediction of 186Re dosimetry from a prior 99mTc imaging study using a tracer dose of antibody was attempted in the NR-CO-02 (Fab')2 study. Although 99mTc was an accurate predictor of tumor localization and the mean predicted and observed radiation absorbed doses to normal organs compared favorably, 186Re dosimetry could not be reliably predicted in individual patients. The methods described nevertheless provide adequate estimates of 186Re dosimetry to tumor and normal organs.

Humans↗

Targeted proteins for diagnostic imaging: does chemistry make a difference?

The Oyen et al. study is valuable in that it systematically evaluates several of the factors involved in radiolabeled protein uptake and retention in infectious foci. The role of particular proteins and their receptor specific interactions seems to be inconsequential in agreement with the findings of other. However, the role of the radiolabel was shown to be important and significant differences were delineated from comparisons of the radionuclides and their associated chemistries. The conclusion implicating radionuclide chemistry and associated linkages underscores the need to optimize the attachment and labeling chemical modifications of protein carriers. Evaluation criteria should include serum stability, determination and assessment of the effect of molar substitution ratio, and potential for improving blood clearance without reducing the target-to-non-target ratio. Important areas for future study include characterization of radioactive metabolites and the design and synthesis of new ligands which direct the disposition of metabolites reducing retention in normal organs or accelerating renal excretion. Additionally, intracellular processing of radiolabel, compartmental distribution and strategies for augmenting internalization and retention within the target cell merit detailed exploration. For each radionuclide of interest, 111In, radioiodines, 99mTc and others, improved chemical moieties exist for controlling radiolabel fate. When carrying out mechanistic and evaluative studies, clear-cut conclusions will only be reached when defined and controlled chemistry is used. Having established a "gold standard," simplifications in radiolabeling and other chemical refinements can then be pursued with a quantitative understanding of the trade-offs in targeting agent performance versus other considerations such as cost reduction, simplicity, and convenience.

Bacterial Infections↗

186Re radioimmunotherapy of small cell lung carcinoma xenografts in nude mice.

A 186Re-labeled monoclonal antibody (MAb), NR-LU-10, was used for the radioimmunotherapy of a subcutaneous human small cell lung carcinoma xenograft, SHT-1, in nude mice. Biodistribution with specific and irrelevant labeled MAb demonstrated peak tumor uptake of 8% and 3% of the injected dose/g at 2 days, respectively. Dosimetry analysis predicted tumor:whole-body radiation-absorbed dose ratios of 2.43:1 for NR-LU-10 and 0.62:1 for irrelevant MAb. Single-dose toxicity screening estimated a 50% lethal dose within 30 days of 600 microCi (880 cGy of whole-body radiation). As anticipated, a multiple-dose regimen of 490 microCi in four doses over 10 days (720 cGy of whole-body radiation, eight of eight surviving greater than 30 days) was less toxic than a single bolus dose of 430 microCi (644 cGy of whole-body radiation), six of eight surviving greater than 30 days). A multidose radioimmunotherapy regimen was initiated in nude mice bearing 66-mm3 tumors (total dose, 500 to 600 microCi). Complete remissions (greater than 140 days) were achieved in three of 16 mice, and the remainder showed a mean tumor growth delay of 53 days. Matched doses with irrelevant MAb produced one remission, one treatment-related death, and a mean growth delay of only 20 days in six of eight mice. Thus, in this nonoptimal radioimmunotherapy model, significant antitumor responses were observed using a mildly toxic multiple dosing regimen.

Animals↗

Optimal antibody-radionuclide combinations for clinical radioimmunotherapy: a predictive model based on mouse pharmacokinetics.

A theoretical comparison was made of radioimmunotherapy (RIT) dosimetry estimates for eight radionuclides (90Y, 105Rh, 131I, 153Sm, 186Re, 188Re, 198Au, 211At) conjugated to IgG, F(ab')2, and Fab antibody forms. Antibody pharmacokinetics, derived from a nude mouse animal model were combined with appropriate physical data and S values to evaluate absorbed dose to a 0.5 kg centrally located tumor, total body and kidney. Radioimmunoconjugates of F(ab')2 with 90Y, 153Sm and 186Re were predicted to be the most promising for RIT.

Animals↗

Development and biologic evaluation of a kit for preformed chelate technetium-99m radiolabeling of an antibody Fab fragment using a diamide dimercaptide chelating agent.

A kit has been developed for 99mTc antibody radiolabeling via defined chemistry using an N2S2 diamide dimercaptide bifunctional chelating agent and the performed chelate method. The process involved efficient transchelation of 99mTc from gluconate to 2,3,5,6-tetrafluorophenyl 4,5-bis-S-(1-ethoxyethyl) mercaptoacetamidopentanoate as an active ester ligand and subsequent conjugation to antibody lysine amine functional groups. The use of the ethoxyethyl group for sulfur protection allowed optimum yields of 99mTc N2S2 chelate formation with complete retention of the active ester. Subsequent addition of antibody Fab fragment gave 99mTc chelate conjugates indistinguishable from the stepwise in situ esterification and purification of the 99mTc N2S2 complex followed by conjugation as previously shown to give stable 99mTc antibody fragments with retained immunoreactivity and tumor-targeting properties.

Amino Acids, Diamino↗

Evaluation of L6, an anti-carcinoma murine monoclonal antibody, in tumor-bearing nude mice.

L6 is a murine monoclonal antibody (MAb) binding to cells of most human carcinomas, mediating antibody-dependent cellular cytotoxicity and complement-dependent cytotoxicity, and inhibiting tumor growth in nude mice [10]. Fab and F(ab')2 fragments of L6, as well as intact MAb, have been evaluated for immunospecific localization in nude mice xenografted with a human lung carcinoma. They were compared with preparations of an isotype-matched control immunoglobulin, P1.17, after labelling with 125I or 131I. L6 Fab fragments prepared from MAb L6 and labelled with 67Ga via desferrioxamine were also tested. The data suggest that MAb L6 may be useful for in vivo detection of human carcinomas.

Animals↗

Characterization of a human-mouse chimeric antibody reactive with a human melanoma associated antigen.

The data presented demonstrate that a human-murine chimeric antibody has been generated that retains the immunoreactivity and has similar pharmacokinetic properties of its parent murine monoclonal antibody NRML-05. A competitive ELISA assay demonstrated that antigen reactivity of both parent and chimera were nearly identical. In a direct cell binding assay, NRML-05 and chimeric antibodies were immunoreactive, 81% and 83%, respectively. Scatchard Analysis of the antibodies indicate very similar affinities for NRML-05 (4.4 x 10(9) M-1) and chimera (2.7 x 10(9) M-1). Localization of the two antibodies to tumor xenografts in nude mice were very similar in biodistribution studies. The chimeric antibody is not as well recognized by antiglobulin from patients who have responded to non-idiotypic murine antibody determinants. Although this data does not predict how immunogenic a chimera would be in the clinical setting, it does suggest that patients without significant anti-idiotypic antiglobulin response could benefit from second and subsequent administrations with chimeric antibody. Even though anti-idiotypic responses may occur with the chimera, these may be reduced as a result of the presentation of these epitopes on the less immunogenic human constant domains.

Animals↗

Specific and stable labeling of antibodies with technetium-99m with a diamide dithiolate chelating agent.

Technetium-99m labeling of antibodies has been suboptimal because of low affinity adventitious binding, nonspecific labeling, and loss of immunoreactivity. The diamide dithiolate ligand system (N2S2) forms highly stable, well-defined tetradentate complexes with Tc(V). Antibodies and their fragments have been labeled by conjugation of preformed 99mTc-4,5-bis(thioacetamido)pentanoate active ester to protein amine groups to give a chemically known 99mTc-N2S2 complex covalently linked to antibody. Evaluations of the 99mTc-N2S2-bound antibodies and their fragments have shown high stability and retained immunoreactivity.

Animals↗

Uptake of small liposomes by non-reticuloendothelial tissues.

The distribution of liposomes within the intravascular space and the extent to which they escape into extravascular space strongly impact on the application of lipid vesicles as a carrier for pharmacologically active agents. The present study investigates how intact small unilamellar vesicles (SUV) may be taken up by different tissues after intravenous injection into mice, using various types of SUV with different entrapped markers, lipid composition, size, doses of liposomal lipids and stability in the blood. Our focus was specifically on sphingomyelin (or distearoyl phosphatidylcholine)/cholesterol (2:1, mol/mol) SUV, which are known to be stable in the blood circulation. Our results indicated that, in addition to the reticuloendothelial tissues, intact SUV were taken up in several other parts of the body, including intestine, skin, carcass and legs. It appears that the accumulation of SUV in the intestine and the skin increases with time post-injection. Furthermore, from the kinetic data, the process of uptake of SUV by the skin and intestine is compatible with a non-saturable pathway, which follows first-order kinetics. This suggests that the cells involved in the uptake of SUV in the intestine and skin are not phagocytic cells, which are normally saturable.

Animals↗

Preliminary studies of monoclonal antibody lymphoscintigraphy in malignant melanoma.

Lymphoscintigraphy was performed at 3 and 20 hr following subcutaneous injection of 131I anti-melanoma antibody (Fab) in 11 patients who had surgical resection of lymph nodes (neck, axilla, groin) at 24 hr for suspected metastatic melanoma. Comparable amounts of 125I nonspecific control antibody (Fab) were co-administered. Six patients had nodal metastases and three showed positive images at both time periods. Five patients had no metastases though one was image positive. Four other nondiseased inguinal node groups were image negative. A total of 28 tumored nodes and 110 normal nodes were removed, counted and histologically examined. All metastatic tumors expressed antigen against which the specific Fab was directed. The concentrations of both specific and nonspecific Fab were similar in tumored nodes and both were significantly greater than in normal nodes showed essentially identical intranodal spatial distribution of the specific and control Fab in areas containing tumor. These preliminary results suggest the increased concentration of murine immunoglobulin (Fab) retained in diseased nodes was a nonspecific phenomenon.

Adult↗

Autoradiolysis of iodinated monoclonal antibody preparations.

We investigated the effects of ionizing radiation on the immunointegrity of antibody fragments (Fab) because large amounts of high specific activity 131I may damage the proteins. We found that 1000 Gy of external 137Cs gamma radiation was sufficient to destroy 80-90% of the immunointegrity of the initial preparation. This effect was also produced by internally added [131I]NaI in a quantity sufficient to provide the same radiation absorbed dose. Since radioiodinated monoclonal antibodies labeled to high specific activity are being evaluated for radioimmunotherapy, the above observation is significant since high levels of internal radiation occur with therapeutic doses of 131I-labeled antibody. Human serum albumin in low concentration (2%) added to the iodinated antibody solutions was successful in preventing loss of immunoreactivity and can be used to protect and stabilize therapeutic quantities of radiolabeled monoclonal antibody preparations.

Antibodies, Monoclonal↗

Antitumor effects of L6, an IgG2a antibody that reacts with most human carcinomas.

Mouse monoclonal antibody L6 (IgG2a subtype) recognizes a ganglioside antigen expressed at the surface of cells from human non-small-cell lung carcinomas, breast carcinomas, and colon carcinomas. We now show that this antibody can lyse L6 antigen-positive human tumor cells in the presence of Leu-11b-positive human lymphocytes (i.e., mediate antibody-dependent cellular cytotoxicity) or human serum (mediate complement-dependent cytotoxicity) and that it can inhibit the outgrowth of an L6 antigen-positive human tumor transplanted onto nude mice.

Animals↗

Immunoreactivity assay for labeled anti-melanoma monoclonal antibodies.

A convenient, rapid, and reproducible assay was developed to evaluate the immunoreactivity of radiolabeled monoclonal antibodies against three different human melanoma-associated antigens, p97, a proteoglycan and a GD3 ganglioside. A cloned melanoma cell line (M 2669 CL 13) was selected as the target and, when fixed with paraformaldehyde, showed binding as good as or better than that obtained with live cells for the three antigens. Fixed cells retained good binding properties stored at 4 degrees C for over 6 mo. This assay has general applicability to other antigen-antibody systems for testing chemically modified monoclonal antibodies or fragments during the development of a radiopharmaceutical or as a routine quality control measure for clinical agents.

Antibodies, Monoclonal↗