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J D Beatty

Publications and source records attributed to J D Beatty.

At least 37 records · Page 2Linked to original sources

Comparison of radioimmunotherapy and external beam radiotherapy in colon cancer xenografts.

Radioimmunotherapy and external beam radiotherapy were compared in a nude mouse human colon cancer model. Radioimmunotherapy was delivered by intraperitoneal injection of 90Y-labeled anticarcinoembryonic antigen monoclonal antibody (anti-CEA MAB). Single fraction external beam radiotherapy was delivered using a 60Co teletherapy unit. Control groups received saline, unlabeled anti-CEA monoclonal antibody and labeled nonspecific monoclonal antibody. Subcutaneous CEA-expressing LS174T human colon carcinoma tumors were measured over time. Tumor growth suppression was expressed as delay to reach 2g compared to saline controls. Unlabeled anti-CEA monoclonal antibody and labeled nonspecific monoclonal antibody had no effect. External beam radiotherapy of 300, 600, 1000 and 2000 cGy produced growth delays of 3, 12, 17, and 22 days, respectively. Radioimmunotherapy with 120 microCi, 175 microCi, and 225 microCi resulted in growth delays of 20, 34, and 36 days. Estimated absorbed tumor dose was 1750 cGy in the 120 microCi group. Similar comparisons were done with the more radioresistant WiDr human colon carcinoma cell line. External beam radiotherapy doses of 400, 800, 1200, and 1600 cGy resulted in growth delays of 6, 21, 36 and 48 days, respectively. Radioimmunotherapy of 120 microCi and 175 microCi resulted in growth delays of 9 and 19 days, respectively. The 120 microCi dose delivered an estimated absorbed tumor dose of 1080 cGy to WiDr tumors. In summary, for the radiosensitive LS174T line, radioimmunotherapy produced biologic effects that were comparable to a similar dose of single fraction external beam radiotherapy. For the more radioresistant WiDr tumor, radioimmunotherapy produced a biologic effect which was less than a similar dose of single fraction external beam radiotherapy. These studies suggest that a tumor's response to radioimmunotherapy relative to that of external beam radiotherapy is, in part, dependent on tumor radiosensitivity and repair capacity.

Animals↗

Pharmacokinetics of an anti-carcinoembryonic antigen monoclonal antibody conjugated to a bifunctional transition metal carborane complex (venus flytrap cluster) in tumor-bearing mice.

An anticarcinoembryonic antigen (CEA) monoclonal antibody, T84.66, has been conjugated to a metallocarborane complex (Venus flytrap cluster, VFC) containing 57Co. This radioimmunoconjugate, 57Co-VFC-T84.66, retained > 90% immunoreactivity, was stable in serum (7 days) and demonstrated good localization in LS174T tumor xenografts. Pharmacokinetics of 57Co-VFC-T84.66 in tumor-bearing mice were compared to T84.66 Mab conjugated with either DTPA or its benzylisothiocyanate derivative (BzDTPA) labeled with 111In. Whole-body half-life for VFC-T84.66 was less (t1/2 = 62 hr) than that for either DTPA-T84.66 (t1/2 = 157 hr) or BzDTPA-T84.66 (t1/2 = 167 hr). Blood clearance was similar for all three radioimmunoconjugates (t1/2 = 22 hr). Hepatic uptake of the radiolabel was rapid and remained constant for 7 days for both DTPA radioimmunoconjugates (DTPA radioimmunoconjugate = 13.7 +/- 1.5 %ID/g; BzDTPA radioimmunoconjugate = 10.4 +/- 1.7%ID/g). For VFC, however, liver radioactivity decreased from 19.1 +/- 0.6%ID/g at 1 hr to 0.9 +/- 0.1 %ID/g 7 days postinjection, suggesting a possible role for VFC radioimmunoconjugate in the imaging and therapy of liver metastases.

Animals↗

Immunotherapy of colorectal cancer.

Specific and nonspecific stimulation of the host immune system to reject cancer is an attractive concept that is just beginning to mature. Results with crude extracts and nonspecific immune stimulation have been variable. However, the recent observations of improved survival after administration of levamisole plus 5-fluorouracil in the adjuvant setting have made an impact on the treatment of colorectal cancer. Animal studies consistently show that immune therapies are most effective for disease that is not advanced. Thus, the small benefit seen with levamisole, a low toxicity immunomodulator, suggests that much more impressive results can be anticipated with more potent and specific agents. Postsurgical autologous tumor cell vaccine has been effective in some prospective randomized trials; in others, no benefit was found. The identification and purification of allogeneic tumor-associated antigens has lead to enhanced antigen-specific host cell-mediated immunity; this may result in more consistent antitumor effects. The current development of chemically defined immune adjuvants of low toxicity allows tumor-specific immune stimulation to be tested in high-risk apparently healthy patients after resection of colorectal cancer (Stages II and III). The influx of information regarding immune cell populations, cell-surface markers, and cytokines has fostered extensive exploration of lymphocyte stimulation, in vitro cell growth and expansion, and in vivo evaluation in patients with advanced cancer. Modest tumor response rates have been documented with adoptive transfer of lymphokine-activated killer cells and interleukin-2. Improved results are anticipated with the more potent tumor-infiltrating lymphocytes and specific in vitro sensitization of draining lymph node cells to autologous and allogeneic tumor antigens. Murine monoclonal antibodies specific for cell-surface markers, such as carcinoembryonic antigen, have been tested for their value in the diagnosis and therapy of colorectal cancer. A small response rate has been seen with single and multiple injections of C017-1A, a monoclonal antibody specific for colonic and pancreatic cancer. The development of antiidiotypic antibodies in these patients may have been important in those that responded to this type of therapy. However, laboratory evidence suggests that monoclonal antibody conjugated to a cytotoxic agent (i.e., radionuclide, drug, or toxin) should be much more effective. Radioimmunotherapy trials in the nude mouse model bearing human colon cancer xenografts showed good tumor incorporation of the radionuclide (yttrium 90 or iodine 131), inhibition of tumor growth, and long-term survival.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Effects of recombinant human gamma-interferon on carcinoembryonic antigen expression of human colon cancer cells.

The effects of human recombinant gamma-interferon (gamma-IFN) on the levels of carcinoembryonic antigen (CEA) expression were investigated in vitro in three human colon adenocarcinoma cell lines (WiDr, HT29, and SW403). Subconfluent cultures were exposed continuously to IFN at concentrations of 1-1,000 antiviral units/ml for up to 6 consecutive days. IFN resulted in a significant increase in CEA levels when assayed by cellular enzyme-linked immunosorbent assay (ELISA), with higher concentrations and longer exposure times resulting in greater CEA enhancement. A three to five-fold enhancement of CEA was observed after 5-6 days of continuous exposures at concentrations of 100-1,000 antiviral units/ml. CEA levels returned to baseline over a 4-day period after discontinuation of IFN. Levels of IFN that resulted in CEA enhancement also resulted in cell growth inhibition, with a direct correlation observed. Flow cytometric studies, which evaluated changes in CEA membrane expression of only the viable cells remaining after IFN exposure, gave similar results to cellular ELISA. Quantitative CEA ELISA, which quantitated changes in total cellular CEA content, demonstrated greater increase in CEA than predicted by cellular ELISA. Continuous IFN exposures for 5-6 days at 1,000 U/ml led to a 96-, 26-, and 5-fold increase in total CEA for the WiDr, HT29, and SW403 cell lines, respectively. WiDr cells exposed to daily 6-h IFN pulses demonstrated intermediate increases in CEA compared with cells exposed continuously to IFN.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenocarcinoma↗

Gamma-interferon enhancement of carcinoembryonic antigen expression in human colon carcinoma xenografts.

Athymic nu/nu mice bearing a subcutaneous human colon cancer xenograft (WiDr, low CEA expression) were treated with gamma-interferon (gamma IFN) at varying doses, frequencies, and periods of duration. CEA content (micrograms/g) and uptake of radiolabeled anti-CEA monoclonal antibody (MAB) (percent injected dose per gram, % ID/g) were measured at 48 h following administration of the MAB, The optimal enhancement of tumor CEA content and tumor localization of [111In] anti-CEA monoclonal antibody (MAB) was seen at gamma IFN doses of 100,000 U i.p. every 8 h for 4 days (4.7 micrograms/g; 29% ID/g) compared to control animals (0.9 micrograms/g; 10% ID/g). The effects of gamma IFN on CEA content and MAB localization were less pronounced when administered (a) at lower doses: 5,000 to 50,000 U i.p. every 8 h, (b) at varying frequencies: 300,000 U/day delivered in divided doses every 4 or 24 h, or (c) for varying periods: 2 or 6 days of therapy. In each case, the biologic effects on tumor CEA content and uptake of [111In]MAB correlated closely with the serum gamma IFN level. Therefore, we conclude that enhancement of in vivo CEA expression by gamma IFN may have clinical relevance for tumor imaging and therapy using radiolabeled monoclonal antibodies.

Animals↗

Comparison of immunoscintigraphy and computerized tomography in identifying colorectal cancer: individual lesion analysis.

Monoclonal antibody scintigraphy with 111In-ZCE025 was used in presurgical staging of 45 patients prior to abdominal exploration for primary, recurrent or metastatic colorectal carcinoma. A total of 186 lesions were identified, of which 147 were evaluated by abdominal surgery and pathology. Sensitivity was 40.5% (49 of 121) for immunoscintigraphy (IS), 61.2% (74 of 121) for computerized tomography (CT), and 72.7% (88 of 121) for IS and CT combined. The positive predictive value was 83.1% (49 of 59) for IS and 88.1% (74 of 84) for CT. Sensitivity of IS was 100% (23 of 23) for primary tumors, 17.7% (11 of 62) for hepatic metastases, and 41.7% (15 of 36) for extrahepatic abdominal metastases. Of the 50 hepatic lesions evaluated by single-proton emission computerized tomography, 11 were localized by IS. Only one was visualized by planar scintigraphy. Sensitivity of CT was 87% (20 of 23) for primary tumors, 67.7% (42 of 62) for hepatic metastases, and 33.3% (12 of 36) for extrahepatic abdominal metastases. Sensitivity of IS combined with CT was 72.6% (45 of 62) for hepatic and 55.6% (20 of 36) for extrahepatic abdominal metastases. Of 24 malignant lesions measured by the pathologist to be less than 3.0 cm (maximum dimension), 7 (29.2%) were detected by IS and 3 (12.5%) by CT. Of 28 malignant lesions greater than 3.0 cm, 23 (82.1%) were detected by IS and 24 (85.7%) by CT. Overall, IS and CT complemented each other in presurgical staging of colorectal carcinoma. IS was of greater value for identification of extrahepatic and small metastases. CT was more effective for identification of hepatic metastases.

Abdominal Neoplasms↗

Carcinoembryonic antigen expression of resurgent human colon carcinoma after treatment with therapeutic doses of 90Y-alpha-carcinoembryonic antigen monoclonal antibody.

We have previously shown that the colon carcinoma (LS174T) xenografts that emerged shortly after radioimmunotherapy with 90Y-labeled anti-CEA monoclonal antibody (MAb) ZCE025 lacked significant expression of CEA in comparison with the untreated tumors. The present study was designed to establish if the immunophenotype of the treated tumors was the result of CEA specific therapy and if the effect was permanent. Athymic mice bearing LS174T tumors were treated either with 120 mu Ci of 90Y-ZCE025, an equal dose of 90Y-96.5 (nonspecific MAb), or received no treatment. When the treated tumors grew to approximately 1.5 cm in diameter (6 weeks after therapy), they were resected and aliquoted to be transplanted to other mice, plated in tissue culture, fixed in formalin, and homogenized for CEA quantitation. The procedure was repeated 3 times (a total of 4 months after treatment). The CEA content was evaluated 2 and 6 weeks after therapy and when the tumors were transplanted. We confirmed a 4-fold decrease of CEA in the resurgent tumors 6 weeks after specific 90Y-ZCE025 therapy, which was twice the decrease experienced by the tumors treated with nonspecific 90Y-96.5, indicating substantial and specific killing of CEA-expressing cells. The CEA content slowly but progressively increased with each new pass of the tumor in the mice, reaching approximately one-half the value of the controls at the end of the study. The resurgent tumors were also studied by immunohistochemistry with MAbs detecting different epitopes of CEA, keratin, TAG-72, and epithelial membrane antigen to evaluate possible additional immunophenotypic changes induced by radioimmunotherapy. Only the expression of TAG-72 (recognized by MAb B72.3) increased immediately after therapy, but it returned to the original levels by the end of the study. These results suggest that: (a) specific radioimmunotherapy with 90Y-ZCE025 selectively kills cells that express higher levels of CEA; (b) the immunophenotype of the surviving fraction of the tumor appears to slowly revert to its original form; and (c) other tumor markers unrelated to CEA can also be affected. These observations have important implications for the design of radioimmunotherapy trials.

Adenocarcinoma↗

Interferon enhancement of radioimmunotherapy for colon carcinoma.

Recombinant human gamma-interferon (IFN-gamma) has recently been shown to enhance localization of radiolabeled monoclonal antibodies (MAb) to human colon carcinoma xenografts in athymic mice. The present study investigates the ability of gamma-interferon to enhance radioimmunotherapy of a low carcinoembryonic antigen-expressing human colon cancer (WiDr) in athymic mice. Growth curve analysis, antibody localization, and dose estimation studies were performed. A significant tumor growth delay, measured as the time to reach 1.0 g, was noted for animals receiving specific anti-carcinoembryonic antigen 90Y-MAb (ZCE025, 120 microCi) plus IFN-gamma (61.8 days) as compared to animals that received specific 90Y-MAb with phosphate-buffered saline (34.9 days; P less than 0.005). IFN-gamma (100,000 units) was given i.p. every 8 h for 2 days before and 4 days after 90Y-MAb therapy. The time required to reach 1.0 g for animals treated with nonspecific 90Y-MAb (ZME018) was significantly less either with (38.3 days) or without (34.4 days) IFN-gamma. The difference was more apparent when compared to animals receiving IFN-gamma alone (30.0 days) or phosphate-buffered saline alone (28.9 days; P less than 0.001). Increased antibody localization in the tumors of animals treated with IFN-gamma plus specific 90Y-MAb (43.2% injected dose/g) was seen in comparison to animals treated with specific 90Y-MAb without IFN-gamma (18.2% injected dose/g). The estimate of radiation dose delivered to the tumors, based on biodistribution data over time, revealed significantly higher levels in animals treated with specific 90Y-MAb with IFN-gamma (2477 cGy) compared to animals treated without IFN-gamma (1217 cGy). These results provide support for the use of gamma-interferon as an immunomodulating agent prior to radioimmunotherapy.

Animals↗

A transition metal complex (Venus flytrap cluster) for radioimmunodetection and radioimmunotherapy.

A novel transition metal complex, Venus flytrap cluster (VFC), is described for the preparation of radio-labeled antibodies. VFC contained 57Co, which was held tightly between the faces of two covalently bridged carborane ligands by cluster bonding of the metal with appropriate ligand orbitals. Anti-carcinoembryonic antigen monoclonal antibody T84.66 was conjugated to 57Co-VFC with full retention of immunological activity. Biodistribution studies in nude mice bearing carcinoembryonic antigen-producing tumors showed excellent tumor localization of 57Co-VFC-T84.66. The accumulation of radionuclide in normal liver was low and independent of dose, which may reflect the stability of the radionuclide complex. These results presage the use of VFC systems for binding transition metals that are clinically useful for radioimmunodiagnosis and radioimmunotherapy.

Animals↗

Intraoperative gamma detection probe with presurgical antibody imaging in colon cancer.

In this study, presurgical gamma camera imaging and an intraoperative gamma detection probe were used in 12 consecutive patients 6 to 22 days after infusion with indium 111-labeled anticarcinoembryonic antigen monoclonal antibody (111In-MoAb). In three of 11 patients who underwent laparotomy, clinical management was affected by the probe findings: localization of occult retroperitoneal disease, identification of an occult cecal lesion, and localization of residual disease at a site of local recurrence. Of all intra-abdominal lesions seen using any method, the probe identified 18 (86%) of 21, compared with 14 (67%) of 21 with the 111In-MoAb scan, 10 (48%) of 21 by computed tomographic scan, and 16 (76%) of 21 after surgical exploration. Uptake of 111In-MoAb in the portal (n = 3) and mediastinal (n = 3) lymph nodes was not associated with histologic findings of malignant neoplasms. For all pathologically confirmed extrahepatic and nonportal sites of cancer, the probe localized nine of nine, compared with five of nine by 111In-MoAb scan, two of nine by computed tomographic scan, and six of nine by surgical exploration. Important clinical uses of the intraoperative probe included occult lesion identification, localization of areas with 111In uptake shown with MoAb scanning, and verification of complete resection of areas with 111In-MoAb uptake.

Abdominal Neoplasms↗

Human anti-murine antibody interference in measurement of carcinoembryonic antigen assessed with a double-antibody enzyme immunoassay.

Fifty-eight plasma specimens from 30 patients who had undergone presurgical radioimmunoscintigraphy with 111In-labeled anti-carcinoembryonic antigen (CEA) murine monoclonal antibody (Mab) and who had no clinical evidence of disease after surgical resection showed increased concentrations of CEA (greater than or equal to 5 micrograms/L) in plasma when studied with the previously available commercial CEA enzyme immunoassay (EIA) from Roche. The possible role of anti-murine antibody (HAMA) interference was addressed by adding mouse IgG (mIgG) to the plasma (2 g/L) before assay. Fifteen specimens (26%) showed no change in CEA (reflecting a true increase as shown by the original results), 22 (38%) showed a decrease in CEA of greater than 15% but remained positive (reflecting an artefactual increase), and 21 (36%) became CEA-negative (less than or equal to 5 micrograms/L; reflecting a false increase). Subsequently, we assayed the same samples with a modified version of this CEA EIA kit and 47 specimens remained CEA positive (greater than 5 micrograms/L): 25 (53%) were truly increased, 12 (26%) remained artefactually increased, and 10 (21%) continued to show a false increase. The degree of interference in the original EIA kit correlated with the plasma concentration of HAMA (P less than 0.005). All artefactually and falsely increased CEA values observed in both kits were corrected by addition of polyclonal mIgG or of a mixture of IgG1, IgG2a, and IgG2b Mabs before assay. This correction is important in the follow-up of patients who receive murine Mabs for treatment or diagnosis.

Animals↗

The value of symptom directed evaluation in the surveillance for recurrence of carcinoma of the breast.

Specific postoperative tests used to diagnose recurrent carcinoma of the breast were evaluated for their ability to have an impact on the over-all course of the disease. Sixty-four patients with recurrent or new contralateral primary disease were divided into two groups based on the method of diagnosis. Those patients with a new complaint at an interval between scheduled follow-up visits and who went on to have tests to document a recurrence were categorized as interval follow-up. Those who were seen at a prearranged regular follow-up period and received tests as recommended by the attending physician or surgeon and had a documented recurrence were classified as routine follow-up. Thirteen patients presented with new contralateral primary disease and 51 with metastatic disease (16, bone; 13, lung; 11, local; three, liver, and eight, multiple). The median time to discovery of recurrence from the primary treatment was 29 and 28 months for the interval and routine groups, respectively. Ninety per cent of the failures occurred by 53 months. The survival time after recurrence was significantly greater in those patients diagnosed routinely (p = 0.003). However, the over-all survival time (from primary therapy to death) was only significantly improved for the routine group when the contralateral new primary diseases were included (p = 0.009). The method of diagnosis of a contralateral primary carcinoma was physical examination and mammogram. Strong recommendations for follow-up testing can be limited to mammogram and physical examination.

Breast Neoplasms↗

Translumbar amputation.

Six patients underwent translumbar amputation (TLA), a life-saving procedure, after standard modalities of therapy failed to control the progression of the disease. The primary diagnoses were as follows: pelvic arterial-venous (A-V) malformation, 1; sacral chordoma, 3; giant cell tumor of the sacrum, 1; and paraplegia with squamous cell cancer arising in intractable decubitus, 1. There were no operative deaths. The following postoperative complications developed in five patients: urinary fistulae, 2; small bowel obstruction, 1; intraabdominal bleeding, 1; hypertension, 2; small bowel fistula, 1; and dehiscence of skin closure, 1. Two patients died with distant metastases (24 months) and distant metastases with local recurrence (6 months). The remaining four patients were alive and well 72, 56, 48, and 18 months after the surgical procedure. All of these patients have reached the rehabilitation goals.

Adolescent↗

Role of bone marrow transplantation in 90Y antibody therapy of colon cancer xenografts in nude mice.

The efficacy of bone marrow transplantation (BMT) for the prevention of 90Y toxicity and extension of survival in nude mice with i.p. LS174T carcinomatosis was evaluated. 90Y-labeled monoclonal antibody (MAB) directed against carcinoembryonic antigen (90Y-anti-CEA MAB) at a dose of 120 microCi caused no deaths due to treatment toxicity and increased the duration of animal survival. No long term cures were obtained in these mice. At doses of 160 microCi or more 90Y-anti-CEA MAB led to hematological deaths. Nude mice were given i.p. injections of 10(6) LS174T tumor cells on day 0. On day 7 the mice received 90Y-anti-CEA MAB i.p. at doses of 120-225 microCi. Syngeneic bone marrow cells (10(7) cells) were then injected i.v. into the mice at 1, 3, 5, 7, 10, or 14 days following 90Y treatment. In the absence of BMT, toxic deaths for animals given 175 microCi 90Y were 11 of 24 (46%) with a median survival of 17 days and 13 of 20 (65%) for animals given 225 microCi 90Y with a median survival of 14 days. Animals receiving the same two doses of 90Y and given BMT 5 days following the 90Y treatment showed 0 of 24 (0%) and 0 of 54 (0%) toxicity deaths, respectively. The optimal time of BMT in relation to 90Y therapy was dependent upon the dose of 90Y-anti-CEA MAB (225 microCi, 3-5 days; 175 microCi, 5-14 days). The mean survival in tumor bearing animals was extended from 31.7 +/- 1.2 (SE) to 45.3 +/- 2.0 days by treatment with 120 microCi of 90Y-anti-CEA MAB. By increasing the dose of 90Y-anti-CEA MAB to 225 microCi and undertaking BMT 5 days later the mean survival was further extended to 63.2 +/- 3.6 days (P less than 0.005). BMT administered at the optimal times can prevent toxic deaths and facilitates higher, more effective doses of tumor specific 90Y-MAB.

Animals↗

Estimation of monoclonal antibody-associated 90Y activity needed to achieve certain tumor radiation doses in colorectal cancer patients.

In these measurements, we quantitated, via surgical samples, human primary tumor uptake of the anti-carcinoembryonic antigen monoclonal antibody T84.66. Uptake was measured in units of percentage of injected dose/kg with 111In as the radiolabel. All 11 colorectal lesions were nonnecrotic and were visualized upon scanning. Tumor volume was calculated using the three orthogonal dimensions as described by pathology. Uptake mean +/- SD was 6.55 +/- 3.55% injected dose/kg with a range of 1.2 to 10.4% injected dose/kg. Lesion mean volume was 36 cm3 with a range of 1.5 to 304 cm3. Using mean values, assuming no biological clearance and that the biodistribution of the monoclonal is independent of its radiolabel, the predicted human tumor 90Y beta dose was 0.12 Gy/mCi. Therefore a 10-Gy tumor dose would require 83 mCi of i.v. activity. Using least and highest uptake results, requisite activity values were 3-fold larger and smaller respectively. Thus, there was approximately an order of magnitude variation in the amount of 90Y predicted to achieve a given tumor dose in colorectal cancer patients. Murine and human uptake values were consistent if lesion mass and carcinoembryonic antigen content were taken into account.

Antibodies, Monoclonal↗

Mechanisms of tissue uptake and metabolism of radiolabeled antibody--role of antigen: antibody complex formation.

Scintigraphic studies in animals and in humans have demonstrated uptake of radiolabeled antibody by both normal and tumor tissue. Normal tissues most commonly visualized are blood, liver, spleen, kidneys, lymph nodes, bone, and thyroid. A number of factors have been demonstrated to affect the uptake by normal and tumor tissue, including radioisotope properties, immunoglobulin characteristics, antibody specificity, tumor size, vascular permeability, and antigen expression. Clarification of the mechanisms of tumor and normal tissue uptake depends upon comparison of scintigraphic findings with analysis of tissue for such factors as radioactivity, antigen content, and tumor size. One of the major limitations of 111In labeled monoclonal antibody imaging has been extensive 111In uptake by histologically normal liver, especially in a host bearing a large tumor mass. By high performance liquid chromatography and sodium dodecyl sulfate-polyacrylamide-gel electrophoresis analysis of liver and blood it can be demonstrated that much of the liver uptake is related to the formation of antigen:antibody complexes. The normal liver intensity can be decreased by inhibition of radiolabeled complex formation. Understanding of the mechanisms of tissue uptake, both normal and tumor, and of radiolabeled antibody metabolism is crucial to the rational planning and use of radioimmunoconjugates for tumor imaging and treatment. Animal and human studies complement one another in examination of these mechanisms.

Animals↗

Mechanism of decreasing liver uptake of 111In-labeled anti-carcinoembryonic antigen monoclonal antibody by specific antibody pretreatment in tumor bearing mice.

The purpose of this study was to examine the mechanism of specific antibody pretreatment for reduction of liver uptake of 111In-labeled monoclonal antibody (MAB). Previous work with an anti-carcinoembryonic antigen (CEA) MAB (T84.66) and LS174T human colon cancer xenografts in nude mice has shown that giving a high dose (0.2 mg) of unlabeled T84.66 in conjunction with the same MAB (T84.66) labeled with 111In (Indacea) significantly lowered the liver uptake of 111In. High performance liquid chromatography and sodium dodecyl sulfate-polyacrylamide gel electrophoresis were used to assess the radiolabeled components in serum and liver at different times following administration of Indacea in normal and tumor bearing mice. In serum the 111In remained associated with the IgG in both tumor bearing and non-tumor bearing mice. Liver uptake of 111In in mice without tumor was low (8-12% injected dose/g) and both IgG and a low molecular weight metabolite were found in the liver homogenates. Liver uptake in tumor bearing mice increased dramatically (15-40% injected dose/g) with size of tumor and in addition to the IgG and low molecular weight components, a high molecular weight compound was identified. Administration of CEA: Indacea complexes to non-tumor bearing mice produced the same high pressure liquid chromatography and gel patterns as those seen in mice with large (greater than 1 g) tumors. Liver homogenates from tumor bearing mice given specific antibody pretreatment showed the same patterns seen with non-tumor bearing mice (no high molecular weight peak). In conclusion, CEA:Indacea complexes are formed in tumor bearing mice and rapidly cleared by the liver. Specific antibody pretreatment results in the production of unlabeled CEA:MAB complexes causing a reduction in the formation of CEA:Indacea complexes and a lower liver uptake of 111In.

Animals↗

Presurgical imaging with indium-labeled anti-carcinoembryonic antigen for colon cancer staging.

Over a 4-year period, 108 patients with known or suspected colorectal cancer were studied by radioimmunoconjugate scintigraphy prior to operative procedures. Study subjects received 0.2 to 40 mg i.v. of murine anti-carcinoembryonic antigen monoclonal antibody labeled with 2-5 mCi of 111In (Indacea). Resected tissues were analyzed for 111In and carcinoembryonic antigen content. Tumor, liver, and draining lymph nodes had over 10% injected dose/kg compared to less than 2.5% injected dose/kg for other normal tissues. Primary tumors that were successfully imaged were significantly larger and had higher 111In and carcinoembryonic antigen content. In 54 patients, primary tumors were visualized with a sensitivity of 78%. Hepatic metastases (58 patients) were visualized as negative filling defects (sensitivity, 45%). Extrahepatic (intraabdominal) metastases (25 patients) were visualized (sensitivity, 48%) as areas of increased uptake. Extraabdominal metastases were uncommon (10 patients; sensitivity, 80%). Of 56 patients with known or suspected hepatic metastases who presented with no evidence of extrahepatic disease by conventional tests (X-ray, computerized tomographic scan), 20 (36%) were documented to have extrahepatic metastases at exploratory surgery and 10 of these (50%) had the extrahepatic disease localized by the Indacea scan. The management of these 10 patients was, or could have been, modified by the scan findings and unnecessary surgery eliminated.

Adult↗