TTEMF'TS TO TREAT B-cell malignancies with mono- A clonal antibodies (MoAbs) began over a decade ago with a MoAb reactive with a B-cell antigen.' Additional studies of unconjugated antibodies directed at B-cell surface molecules have shown antitumor a~tivity.'.~ Tumor-specific anti-idiotype (anti-Id) MoAbs have been developed that are directed against the variable-region antigenic determinants of the clonal surface Ig (SIg) of malignant B cells.',' In clinical trials, these MoAbs resulted in significant responses in a majority of patients, with one patient undergoing a com- plete response that lasted 6 years.' However, some patients relapsed with Id-negative disease. In these cases, the malig- nant clone no longer expressed the idiotypic determinant to which the MoAb had been generated, despite the expression of SIg.' Additional analysis revealed that ongoing somatic mutations in the variable-region genes contributed to the loss of Id expression." Subsequent investigations of anti- Id therapy combined with interferon alfa or chlorambucil resulted in response rates (complete plus partial) of 69%; however, Id-negative relapse was not prevented.' 'J' Based on the known sensitivity of lymphoma to radiation and the capability of labeling MoAbs with a variety of radio- isotopes,13 several clinical trials using radiolabeled anti-B- cell MoAbs have been initiated with promising result^.^^-'^
Radiolabelled anti-tumour antibodies, their fragments and derivatives hold promise for imaging and therapeutics in oncology. A better understanding of the pharmacokinetics of these entities is therefore important for clinical applications and management. In the present study, the in vivo behaviour of 111Indium-labelled monoclonal anti-CEA antibody ZCE-025 and its F(ab')2 and Fab' fragments and a Fab' derivative are compared in the nude mouse-human tumour model. The object of the derivative was to improve the tumour uptake of the fragment yet reduce its high renal uptake while continuing to achieve desirable kinetics in the normal tissues. Uptake of the derivative in the tumour was comparable to that of the intact antibody and exceeded that of the underivatized fragments. Moreover, uptake in non-target tissues was lower with the derivative than with the intact entity. The renal uptake of the derivative was dramatically lower than for the fragments. The modelling data strongly suggest that the derivatives will be advantageous for clinical use compared with the underivatized whole antibodies or their fragments.
Isoelectric focusing (IEF) of the Fab' derivative of murine monoclonal antibody ZCE-025 is known to detect at least six bands having isoelectric points (pI) ranging from 5.4 to 7.8. Chromatofocusing was employed to separate these bands. Electrophoresis of the starting materials under nonreducing conditions indicated all of the materials to migrate as Fab'. The electrophoresis of urine samples obtained from Balb/c and nude mice 8 hr after the i.v. injection of the various 125I bands revealed the low pI bands to migrate approximately as a 125I-Fab'. The higher pI band activity was located in lower molecular weight regions. Serum samples taken at 8 hr postinjection from the above mice revealed a series of what appeared to be high molecular weight complexes and some low molecular weight species. Biodistribution studies in comparison Balb/c mice and nude mice revealed that the low pI 125I-Fab' bands gave an organ and tumor uptake at 8 hr very similar to Fab', while the high pI 125I-Fab' bands were rapidly excreted into the urine and feces and did not concentrate in the tumor. The data suggest that the population of molecules making up the Fab' of this antibody is heterogeneous and variably stable. Theoretically, some of the entities observed could be counter productive to successful radioimmunoimaging. It is also possible that some of the labeled molecules are associating in vivo with endogenous proteins that might, in some Mabs, affect the biodistribution of the radiopharmaceutical.
Challakere, K. K.; Dupont, R.; Grant, I.; Lehr, P.; Reed, R.; Lamoureux, G.; . Allen, J; O'Rourke, S.; Halpern, S. E. Author Information
Even with the advancement of radiologic techniques, metastatic cancers can still be difficult to detect. In this study, 48 patients suspected of having occult metastases were studied by radioimmunodetection following the administration of 92.5 to 181.3 MBq of indium 111-labeled monoclonal anticarcinoembryonic antigen antibody. All but seven patients were thought to have metastatic colorectal carcinoma. In the majority of cases, physical examinations and computed tomographic scans had failed to detect a lesion. At least one lesion that was later proved to exist was detected in 34 of the 50 studies performed on these patients. Seven of eight patients with normal radioimmunodetection scans remain free of disease. One hundred one sites were detected overall; 60 were considered true-positive sites and 27 false-positive sites. Fourteen sites remained in question. Nineteen false-negative sites occurred. Radioimmunoimaging appears valuable for the detection of occult cancer where standard, noninterventional techniques have failed to detect the suspected disease.
Studies were performed to determine in vitro and in vivo effects of acetylation on Fab' fragments of ZCE-025, a monoclonal anti-CEA antibody. Isoelectric focusing revealed a drop in isoelectric point of 1.7 pI units following acetylation. Biodistribution studies of acetylated and nonacetylated [111In]Fab' were performed in normal BALB/c mice and in nude mice bearing the T-380 CEA-producing human colon tumor. The acetylated fragments remained in the vascular compartment longer and had significantly diminished renal uptake of 111In compared to controls. While acetylation itself effected a 50% drop in immunoreactivity, tumor uptake of the acetylated and nonacetylated 111In-labeled Fab' fragments was comparable, with the exception of one data point, through 72 h.
We report the first case of 90Y-conjugated monoclonal antibody (MoAb) administration for human radioimmunotherapy. Ten mCi 90Y-labeled antiidiotype (anti-Id) MoAb were administered to a patient with B-cell lymphoma whose tumor successfully imaged with 111In-labeled anti-Id MoAb. No significant toxicities were observed. More than 2 g of unlabeled anti-Id MoAb were administered while clearing the circulating IgM idiotype prior to administration of the 90Y-MoAb. Transient partial regression of disease was observed. Serial fine needle aspirations of a malignant lymph node documented in vivo anti-Id penetration into a site that did not image by radioimmunoscintigraphy. The radiosensitivity of B-cell lymphoma, the tumor specificity of anti-Id, the antitumor activity of anti-Id alone, and the safe administration of 10 mCi 90Y-labeled anti-Id MoAb in this report suggest further investigation of this radioimmunoconjugate for therapy of B-cell lymphoma is warranted.
The toxicity during and following 291 infusions of 19 murine and three human monoclonal antibodies (MoAB) in 177 cancer patients with 10 different malignancies was assessed. Doses ranged from 0.5 to 500 mg administered over 0.25 to 24 hours. Various reactions in varying degrees were observed in 45 (28%) patients during their first MoAb infusion. Nine additional patients experienced toxicity following a subsequent antibody infusion. Antibodies that reacted with circulating cells were associated with toxicity in 20 of 28 (71%) of the first infusions, compared to 24 of 127 (19%) for patients receiving antibodies that did not react with circulating cells. Fevers, rigors, chills, and diaphoresis were observed in 10% to 12% of the patients and were associated with binding to circulating cells. Presumed hypersensitivity reactions, including urticaria, pruritus, bronchospasm, and anaphylaxis occurred in 20 patients (11%). There were five episodes of bronchospasm and a single episode of anaphylaxis. Liver transaminases were elevated in 14%. There was no correlation between dose or infusion rate and toxicity. Murine monoclonal antibodies that are not conjugated to cytotoxic agents can be given with an acceptable frequency of side effects and serious allergic reactions. There is a small risk of anaphylaxis, and one should avoid rapid infusion of high antibody doses in the presence of circulating target cells and/or circulating free antigen.
The purpose of this study was to evaluate and compare the kinetics, biodistribution, and tumor-depicting properties of three intact indium-111-labeled murine monoclonal antibodies (MoAb) and to determine if use of In-111-labeled F(ab')2 fragments of one of them had advantages over its intact counterpart for immunoscintigraphy. Ten patients with prostate cancer were studied with an anti-prostatic acid phosphatase MoAb (PAY-276), with a resultant tumor detection rate of 15%. Twenty-eight patients with melanoma were studied with ZME-018, a MoAb that targets the KD-240 melanoma antigen. Forty-three percent of the known lesions were detected. Forty patients with carcinoembryonic antigen (CEA)-producing tumors were studied, 24 with intact ZCE-025, and anti-CEA MoAb, and 16 with its F(ab')2 fragment. With use of intact ZCE-025, 34% of known lesions were detected versus 83% with its F(ab')2 fragment. The distribution of each MoAb appears unique unto itself with regard to kinetics, normal tissue distribution, and response to MoAb mass.
Lamoureux, G.; Verba, J.; Halpern, S. E.; de Sherbrooke, U.; Quebec, Sherbrooke P. Author Information
Lamoureux, G.; Dupont, R. M.; Gillin, J. C.; Ashburn, W. L.; Halpern, S. E.; de Sherbrooke, U.; Quebec, Sherbrooke P. Author Information
Colon carcinoma multicellular spheroids were incubated in vitro with radiolabelled MAbs. The more rapid penetration of fragments as compared to intact MAbs was clearly demonstrated. For the study of antibody localization in tumors in vivo, the model of nude mice with ligated kidneys was used. Although very artificial, this model allowed to demonstrate that, without urinary excretion, Fab fragments accumulated more rapidly into the tumor than intact MAbs and disappeared faster from the blood. This difference was less striking for F(ab')2 fragments. In the liver a decreased accumulation of both types of fragments as compared to intact MAbs was observed. Concerning radioimmunotherapy we think that Fab fragments are not useful because of their too short half-life in the circulation and in tumor and because they will probably be too toxic for the kidneys. Intact MAbs and F(ab')2 fragments have each their advantages. Intact MAbs show highest tumor accumulation in mice without ligated kidney, however, they remain mostly on the periphery of tumor nodules, as shown by autoradiography. F(ab')2 fragments have been found to penetrate deeper into the tumor and to accumulate less in the liver. It might be therefore an advantage to combine intact MAbs with F(ab')2 fragments, so that in the tumor two different regions could be attacked whereas in normal tissues toxicity could be distributed to different organs such as to the liver with intact MAbs and to the kidney with F(ab')2 fragments.
The murine 96.5 monoclonal antimelanoma antibody (MoAb) was labeled with In-111, and 1-20 mg were administered to 21 patients who had proved or suspected melanoma metastases. One patient was studied twice. In four patients, unlabeled 96.5 MoAb was administered prior to the radiopharmaceutical. All of the patients tolerated the procedure without toxicity regardless of the mass of MoAb administered. The scans were interpreted by two observers, one with full knowledge, the other with no knowledge of the cases. Increasing the MoAb mass or preinfusing unlabeled MoAb prior to the administration of In-111 MoAb resulted in a prolongation of the serum half time, and appeared to improve tumor detection. Lesions were best seen at 72 hours after infusion or later. In all patients who had metastatic disease, at least one tumor site was apparent. Fifty-six per cent of known lesions 1.5 cm or greater in size were detected by the physician who had knowledge of the cases when data from all doses were considered. There were eight lesions detected that were not suspected in the workup of the patient. When these are included, the detection rate rises to 61%. Forty-nine per cent were detected by the other physician. Subtraction techniques were not employed. Lesions were often better seen with single photon emission computed tomography than with planar imaging techniques. The 96.5 In-111 MoAb appears to have utility for the detection of metastatic melanoma. Further clinical evaluation of 96.5 In-111 MoAb is warranted.
Because of the large number of different immunoconjugates which can be produced from monoclonal antibody-directed anti-cancer therapy, it would be useful to have in vivo tumor models to compare such preparations. Although historically human leukemias-lymphomas have been difficult to establish in athymic mice we have succeeded in establishing human T-cell tumors from primary MOLT-4 cultures in 290 of 353 animals and have successfully transferred tumors in 42 of 45 animals during ten serial passages. The potential utility of this model for testing immunoconjugates of murine monoclonal antibody T101 have been confirmed by: (a) in all 148 tumors sampled including all passaged tumors the human T-cell antigen, T65, was expressed in a manner identical to that of cultured cells; (b) 111In-T101 was concentrated preferentially in the tumor; and (c) T101 injected by both the i.p. and i.v. routes bound to tumor and induced antigenic modulation to the same extent as that observed previously in vitro and in human studies.
The importance of molecular size in tumor (T) uptake of intact monoclonal antibody (MAb) or MAb fragments (frag.) is difficult to assess because frag. are excreted by the kidney. To obviate this problem nephrectomized nude mice (M) bearing carcinoembryonic antigen (CEA) secreting human colon T were used in the following experiments. Following nephrectomy 3 groups of M were injected intervenously with intact In-111 anti-CEA MAb and simultaneously with I-125 intact, F(ab')2 or Fab anti-CEA-MAb. Iodination was by chloramine T and In-111 labeling by bifunctional chelation. All M were killed 8 h after injection, T and normal tissues (NT) dissected, weighed, and counted against a standard of the injectate. The distribution of intact I-125 and In-111-MAb were nearly identical allowing In-111MAb to be used for comparison with the I-125 frag. T concentration (conc.) of I-125-F(ab')2 were 25% greater and L cone. were 63% lower than for intact In-111-MAb. T cone, of I-125-Fab were 86% greater and L cone. 64% lower than for intact In-111-MAb. Large T, which produce higher serum CEA levels, increased the L cone. of intact MAb but not I-125 frag. In conclusion, when renal excretion is prevented there is (a) an inverse relationship between size of a MAb moiety and its T cone. indicating that the improved T/NT ratios observed with frag. are not due only to renal excretion, (b) the Fc portion of the MAb appears to be critical for L uptake of MAb or immune complexes.
In-111-labeled leukocytes were administered to 13 patients on continuous ambulatory peritoneal dialysis in order to locate catheter-associated infections. Using a marker to indicate the catheter exit site, infections of the catheter tunnel were correctly identified prior to surgery in 4 patients with relapsing peritonitis and infections of the exit site were diagnosed in 5 out of 7 patients. There were no false positives or negatives as documented by surgery or follow-up. The authors conclude that In-111-leukocyte scintigraphy appears to be accurate in diagnosing peritoneal infections of the dialysis catheter tunnel.
Characterization of several high-affinity murine monoclonal anticarcinoembryonic antigen (CEA) antibodies suggested good specificity except for cross-reactivity with an antigen on granulocytes and erythrocytes which was different from the previously described normal cross-reacting antigen of granulocytes. In vivo studies in athymic mice using an indium conjugate of an anti-CEA monoclonal antibody (MoAb) revealed excellent specific uptake in colorectal carcinoma xenografts. Studies were conducted in humans to determine the limitations produced by the cross-reactivity with granulocytes and erythrocytes. Patients with metastatic colorectal cancer received 3 to 6 mg of anti-CEA MoAb over 10 min or 2 hr. In five of six trials, the MoAb infusion was associated with a 40 to 90% decrease in circulating granulocytes and systemic toxicity including fever, rigors, and emesis. One patient had no change in cell count and had no toxicity. Radionuclide scans with 111In-anti-CEA MoAb showed marked uptake in the spleen when cells were eliminated, and in the liver, especially when pretreatment CEA levels were high. Metastatic tumor sites failed to concentrate the isotope. This study emphasizes the potential limitations for radioimmunodetection and/or radioimmunotherapy imposed by reactivity with circulating cells, and suggests that certain toxic reactions associated with MoAb infusions are related to destruction of circulating cells rather than allergic reactions to mouse protein. It also emphasizes how variables such as dose and binding affinity of antibody, radioisotope used, and assessment at different observation points can obscure lack of antibody specificity.