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K Y Pak

Publications and source records attributed to K Y Pak.

32 records · Page 2Linked to original sources

Shared antigens of human prostate cancer cell lines as defined by monoclonal antibodies.

Eight monoclonal antibodies (MAbs) raised against human prostate cancer cell lines are described. One MAb was derived from the fusion of mouse myeloma P3x63Ag8-653 cells with spleen cells of mice immunized with DU145 prostate cancer cells. The other seven were from the fusion of myeloma lines P3x63Ag8-653 or SP2/0 with spleen cells of mice immunized with PC3, DU145 and 1013L prostate cancer cells. All of the antibodies also reacted with cell lines of other human cancer types, especially carcinomas. Immunoperoxidase staining on fixed tissue revealed strong reactivity only with antibody PrN10. Seven other antibodies seemed to bind to cell surface-associated (glyco)proteins. Antibodies PrL22 and PrO11 showed similar reactivity in radioimmunoassay, and immunoprecipitated a 160 kD molecular weight polypeptide from [125I]lactoperoxidase-labeled cells. Antibodies PrHk an PrQ12 bound to molecules with apparent MW of 115 kD and 100 kD, respectively; antibodies PrM24 and PrP14 revealed a more complex picture in immunoprecipitation of surface-labeled cells.

Antibodies, Monoclonal↗

A fetal glycolipid expressed on adenocarcinomas of the colon.

Reactivity of neuraminidase-treated colorectal carcinoma cells with antibodies that detect the X-carbohydrate structure was greater than the reactivity of untreated cells. The same results were obtained with glycolipid extracts of meconium, a colorectal carcinoma cell line, three freshly excised human adenocarcinomas, and normal bronchial mucosa. The glycolipid was either not expressed or expressed in smaller quantities on the corresponding normal colon tissue. Further study showed that the major sialo-X glycolipid has six sugars including a single sialic acid which blocks X-antigenicity. These glycolipids were further analyzed by ion-exchange high-pressure liquid chromatography and thin-layer chromatography. These monosialo-X glycolipid antigens might serve as potential tumor markers.

Adenocarcinoma↗

Extraction of circulating gastrointestinal cancer antigen using solid-phase immunoadsorption system of monoclonal antibody-coupled membrane.

An immunoadsorption system of monoclonal antibody immobilized on a polyolefin alloy fiber is described for extraction of serum gastrointestinal cancer antigen (GICA). Continuous circulation or single passage of plasma from gastrointestinal cancer patients through this antibody-fiber matrix resulted in 90% depletion of circulating GICA in 2 h using 0.6 mg immobilized antibody, and 90% depletion in 5 min using 8 mg antibody. Continual circulation resulted in total GICA removal in both cases. Desorption of antibody or of antibody-containing complexes was minimal. This methodology provides a selective and convenient means of removing any targeted substance by monoclonal antibody from the serum, and thus overcomes many of the shortcomings associated with conventional plasmapheresis.

Animals↗

Labeling monoclonal antibodies and F(ab')2 fragments with (111In) indium using cyclic DTPA anhydride and their in vivo behavior in mice bearing human tumor xenografts.

Monoclonal antibodies (MAb) and their F(ab')2 fragments to human colorectal carcinoma (CRC) and human melanoma-associated antigens were conjugated to diethylenetriaminepentaacetic acid (DTPA) via an acylation reaction using cyclic DTPA dianhydride. Relative immunoreactivity of the F(ab')2 fragments was as high as 70% when an average of only 0.7 DTPA molecules was conjugated per fragment, decreasing rapidly to less than 5% when 9.0 DTPA molecules were conjugated. The 111In-labeled whole MAb in mice bearing human tumor xenografts showed higher concentrations in tumor, liver, kidney, and spleen 7 days after injection of MAb when compared with the same MAb labeled with 131I. F(ab')2 labeled with 111In showed a marked persistence in the tumor-bearing mice with higher concentrations in all organs except blood, when compared with 131I-labeled F(ab')2. Radioactivity was particularly high in the kidneys. Although images of human tumor xenografts were easily visualized using 131I-labeled F(ab')2 3 days after injection, it was difficult to visualize tumor grafts with 111In-labeled F(ab')2 due to persistently high renal, liver, and background activity. Increased catabolism of the 131I-labeled MAb may be the cause of the difference; but antibodies with high immunological activity are a necessity for in vivo imaging studies before firm conclusions can be drawn.

Animals↗

Identification and isolation of Lewis blood group antigens from human saliva using monoclonal antibodies.

Solid-phase radioimmunoassay, polyacrylamide gel electrophoresis and thin-layer chromatography were used to compare, identify, and characterize the Lewis antigens from human salivas, using monoclonal antibodies directed to the Lea and Leb determinants. Sialylated Lea glycolipid was detected in saliva from individuals with Le(a+ b+) and Le(a+ b-) phenotypes. Immunoaffinity chromatography of the saliva from individuals with different phenotypes revealed a glycoprotein of molecular weight greater than 200 kD bearing the Lewis antigenic determinants.

Antibodies, Monoclonal↗

Characterization of gastrointestinal tumor-associated carcinoembryonic antigen-related antigens defined by monoclonal antibodies.

Four major carcinoembryonic antigen-related glycopeptides (Mr 180,000, 160,000, 50,000, and 40,000) were detected in SW948 colon carcinoma cells and in colon adenocarcinoma tissue using a monoclonal antibody (C(4)20-32) generated by immunizing mice with SW1222 human colon carcinoma cells. Only the Mr 50,000 polypeptide was immunoprecipitated from normal colon mucosa by this antibody. Binding studies using other monoclonal antibodies and lectins indicated the different epitopes and carbohydrate attachment sites on each of the four polypeptides. Only monoclonal antibody C(4)20-32 recognized a common determinant on all four polypeptides which was revealed by its reactivity with each affinity-purified component.

Adenocarcinoma↗

Identification and isolation of a common tumor-associated molecule using monoclonal antibody.

A monoclonal antibody, 16B-13, derived from the immunization of BALB/c mice with a lung tumor line, immunoprecipitates a common tumor-associated molecule with an apparent mol. wt of 37,000 from lactoperoxidase-iodinated lung carcinoma, colon carcinoma, gastric carcinoma, brest carcinoma, melanoma and lymphoma cells, but not from normal fibroblasts. Analysis by two-dimensional gel electrophoresis of the cell surface-labeled 16B-13 antigen from a colorectal and a melanoma cell line reveals four components with similar mol. wts but with different isoelectric points. The antigen purified from a colorectal carcinoma cell line by immunoaffinity chromatography was shown to be a 37,000 mol. wt polypeptide similar to that obtained by the lactoperoxidase-labeling procedure. However, the purified antigen from the melanoma cell line shows the presence of a 65,000 mol. wt polypeptide and the loss of the 37,000 mol. wt component as detected by Coomassie blue staining and immunoprecipitation.

Animals↗

Production and characterization of monoclonal antibodies against human malignant melanoma.

The specific immunoreactivities of 31 monoclonal antibodies against human malignant melanoma were analyzed on a variety of malignant and nonmalignant human cells. Seven distinct groups were defined based on reactivity in radioimmunoassay and in mixed hemadsorption assay. The Group A antibody bound to 33% of short- and long-term cultured melanomas; Group B antibodies reacted with the majority of melanomas, astrocytomas, neuroblastomas, and fetal polygonal cells; and Group C antibodies bound to melanomas, teratocarcinomas, and to melanocytes grown in the presence of tumor-promoting phorbol esters. Antibodies of Groups D-G showed a less restricted binding pattern. In all groups, antibodies of IgG2b and IgM isotypes mediated complement-dependent lysis (CDC) and antibodies of IgG1, IgG2a, and IgG2b isotypes mediated antibody-dependent cell-mediated cytotoxicity (ADCC). Biochemical analysis indicated that 16 different proteins with molecular weights ranging between 28,000 and 500,000 were detected by the monoclonal antimelanoma antibodies.

Antibodies, Monoclonal↗

Factors influencing DTPA conjugation with antibodies by cyclic DTPA anhydride.

Diethylenetriaminepentaacetic acid (DTPA) was conjugated with a practical concentration (300 micrograms/ml) of antibody to human albumin (Ab) and 1083 17-1A monoclonal colorectal antibody (MAb-17-1A) via an acylation reaction using cyclic DTPA anhydride (cDTPAA). The conjugation reaction was favored as pH increased. Bicarbonate buffer at pH 8.2 was chosen for studies of the effect of the cDTPAA-to-antibody ratio on DTPA conjugation with antibody because of its good buffer capacity at that pH. The reaction of cDTPAA with Ab at molar ratios of 2000, 1000, 500, and 100 in the bicarbonate buffer gave rise to 11, 9, 8, and 2 indium atoms incorporated per Ab with 47%, 55%, 59%, and 77% retention of the binding activity. For the conjugation reaction of MAb-17-1A, 29, 28, 31, 11, 4, and 1 indium atoms were incorporated, with the retention of less than 5%, less than 5%, less than 5%, 12%, 60%, and 93% of binding activity when the molar ratio was 5000, 2000, 1000, 500, 100, and 50.

Animals↗

Maximizing radiotracer delivery to experimental atherosclerotic lesions with high-dose, negative charge-modified Z2D3 antibody for immunoscintigraphic targeting.

BACKGROUND: Two factors that directly affect target/background ratio in immunoscintigraphy are the concentration of the antibody bound to the target and the concentration of the antibody in the circulation. High dosages of monoclonal antibody have been reported to be more efficacious in visualization of tumors. Although administration of a higher dosage of antibody increases the absolute target accumulation of the radiotracer, it also increases the background activity, which may offset this advantage. Negative charge-modified antibodies carry high specific radioactivity to the target sites without significantly increasing the background activity. Therefore we investigated whether higher dosages of negative charge-modified antibody can be used to improve imaging of experimental atherosclerotic lesions. METHODS AND RESULTS: Experimental atherosclerotic lesions were produced in 16 New Zealand White rabbits by balloon deendothelialization of the infradiaphragmatic aorta and hyperlipidemic diet for 12 weeks. Negative charge-modified Z2D3 antibody F(ab')2 specific for an antigen on proliferating smooth muscle cells of human atheroma labeled with (111)In was used for imaging experimental atherosclerotic lesions either at high (100 to 125 microg) or low (25 to 50 microg) dosages. A lower dosage of Z2D3 was labeled with 507 +/- 29.5 microCi (25 to 50 microg) (111)In label, compared with 2.9 +/- 0.24 mCi (100 to 125 microg) for the higher dosage. Although noninvasive visualization of atherosclerotic lesions was possible in all animals at 24 hours, high antibody dose allowed unequivocal visualization of the lesion as early as 3 hours after intravenous administration of the antibody. Eight animals were killed at 24 hours and the remaining eight animals at 48 hours. Mean radioactivity dose delivered per gram of lesion with the low-dose protocol at 24 hours was 0.46 +/- 0.09 microCi, which remained essentially unchanged at 48 hours (0.37 +/- 0.09 microCi; p = 0.51). With the high-dosage protocol, the total radioactivity (dose) per gram uptake in the lesion increased by about eightfold (3.49 +/- 0.58 microCi; p = 0.002) at 24 hours and was sixfold higher at 48 hours (2.21 +/- 0.45 microCi; p < 0.02). CONCLUSIONS: The study demonstrated that the increase in the dosage of negatively charge-modified antibody allows a very high delivery of specific radioactivity to the target, which in turn enables early visualization of experimental atherosclerotic lesions.

Animals↗

Avidity of technetium 99m glucarate for the necrotic myocardium: in vivo and in vitro assessment.

BACKGROUND: Similar to other 99mTc-based infarct-avid agents, 99mTc-glucarate localizes in myocardial infarcts. Whether severely ischemic viable myocytes sequester 99mTc-glucarate is uncertain. To assess the infarct specificity, in vitro and in vivo studies were performed. METHODS AND RESULTS: H9C2 embryonic rat cardiocytes cultured under normoxia (N) or hypoxia (H) for 24 hours in 7.5 muCi 99mTc-glucarate were compared with necrotic cardiocytes. Mean H/N ratio (3.0 +/- 0.004, mean +/- SD) was significantly less than that of the necrotic/N ratio (39.9 +/- 6.5, p < 0.01). Reperfused myocardial infarction (MI) in 4 dogs confirmed by 201Tl (0.5 to 1.0 mCi) scintigraphy were imaged serially with simultaneously injected mixture of 99mTc-glucarate and 111In-antimyosin Fab. Infarcts were detected scintigraphically within 4 to 10 minutes with 99mTc-glucarate. 111In-antimyosin required more than 1 hour. Myocardial distribution at 5 hours showed a direct correlation between 99mTc-glucarate and 111In-antimyosin uptake (r = 0.99, p < 0.0001). Both 99mTc-glucarate (r = -0.777, p < 0.0001) and 111In-antimyosin (r = -0.775, p < 0.0001) were inversely related to 201Tl distribution. CONCLUSIONS: The near perfect correlation between 99mTc-glucarate and 111In-antimyosin uptake (r = 0.99) in reperfused canine MI and the insignificant glucarate uptake by viable cardiocytes in vitro attest to the avidity of 99mTc-glucarate for the necrotic myocardium and favor its use as a specific early marker of myocyte necrosis in acute MI.

Animals↗

Myocardial kinetics of Tc-99m glucarate in low flow, hypoxia, and aglycemia.

BACKGROUND: Technetium-99m glucarate is a myocardial infarct-avid imaging agent. Recent conflicting and inconclusive reports have suggested that the agent may be taken up by ischemic but viable myocardium. The purposes of this study were (1) to determine conclusively whether there is Tc-99m glucarate uptake in ischemic viable myocardium and (2) to investigate the potential mechanisms for such uptake by studying components of ischemia, namely, low flow, hypoxia, and aglycemia. METHODS AND RESULTS: Rat hearts were isolated and perfused in a modified Langendorff preparation with a crytalloid perfusate. Tc-99m glucarate was studied in control (n = 6), low-flow (n = 5), hypoxic (n = 5), and aglycemic (n = 5) conditions. The experimental protocol consisted of 20-minute baseline (12 mL/min flow) and 20-minute treatment (low flow at 1 mL/min, hypoxia, or aglycemia), followed by tracer uptake (20 minute) and washout (20 minutes). Activity was monitored with a sodium iodide detector. The tracer was delivered continuously over a 20-minute uptake period. The injected dose was 150 micro Ci (5.6 MBq). Hemodynamics were monitored throughout. Triphenyltetrazolium chloride staining was used to assess myocardial viability. There was no evidence of myocardial necrosis. Low flow tended to delay tracer uptake compared with control for the first 10 minutes, but this did not reach statistical significance. Low flow increased end fractional retention significantly compared with control (mean +/- SEM, 59.0% +/- 0.9% peak vs 41.2% +/- 1.4%, respectively; P <.05). Hypoxia resulted in a trend toward increased uptake; however, this was significant only at one early time point during the uptake phase. Retention in the hypoxia group was similar to control. Tc-99m glucarate uptake was significantly increased in aglycemia from 16 minutes to peak compared with control (1.36% +/- 0.71% injected dose per gram vs 0.91% +/- 0.37% injected dose per gram, respectively; P <.05). Aglycemia produced significantly higher end fractional retention compared with control (51.6% +/- 1.8% peak vs 41.2% +/- 1.4%, respectively; P <.05). CONCLUSIONS: Tc-99m glucarate myocardial retention is increased in the setting of ischemia, even in the absence of necrosis. This increased retention is not due to hypoxia. Furthermore, the retention is only partially explained by tissue hypoglycemia. Thus low flow per se appears to have a role in this increased retention, probably as a result of delayed flow-dependent washout.

Animals↗