PubMed Health⌕ Search

Biomedical subjects

Z Steplewski

Publications and source records attributed to Z Steplewski.

At least 37 records · Page 2Linked to original sources

A novel model of a metastatic human breast tumour xenograft line.

The GI-101 human breast tumour xenograft line is unique in that it spontaneously metastasizes to the lungs of athymic murine hosts from subcutaneous trochar implants. Both tumour and lung metastases are positive for normal human breast tissue markers. GI-101 also is positive for the p53 antigen but negative for the c-erbB-2 oncogene.

Animals↗

Production of a functional monoclonal antibody recognizing human colorectal carcinoma cells from a baculovirus expression system.

The light and heavy chain cDNA of a murine monoclonal antibody (MoAb) with specificity for human colorectal carcinoma cells have been expressed separately, together, and as a dual construct in insect cells infected with recombinant baculoviruses. High levels of the MoAb were expressed under the control of the polyhedrin promoter. The antibody maintained its specific binding to human colorectal carcinoma cells and mediated lysis of these cells by human lymphocytes, monocytes, and murine macrophages, as determined in antibody-directed cellular cytotoxicity (ADCC) assays. The recombinant immunoglobulin (Ig), like its ascitic counterpart, did not mediate lysis by either human or rabbit complement. The expression of a recombinant antibody exhibiting both functional binding site and Fc region capacities shows that the baculovirus system could be employed in the production of therapeutic Ig.

Animals↗

Malignant astrocytomas treated with iodine-125 labeled monoclonal antibody 425 against epidermal growth factor receptor: a phase II trial.

Twenty-five patients with primary presentation of malignant astrocytoma, astrocytoma with anaplastic foci, and glioblastoma multiforme were treated with surgical resection and definitive radiation therapy followed by intravenous or intra-arterial administration of Iodine-125 labeled monoclonal antibody-425, which binds specifically to human epidermal growth factor receptor. The patients presented with primary untreated disease, positive contrast enhanced computed tomography scans of the brain, and compatible clinical symptoms. In this Phase II clinical trial, the patients had surgical debulking or biopsy followed by definitively administered external beam radiation therapy and one or multiple doses (35 to 90 mCi per infusion) of radiolabeled antibody. The total cumulative doses ranged from 40 to 224 mCi. The administrations of the radiolabeled antibody were performed in most cases 4-6 weeks following completion of the primary surgery and radiation therapy. Ten patients had astrocytoma with anaplastic foci and 15 had glioblastoma multiforme. No significant life-threatening toxicities were observed during this trial. At 1 year 60% of the patients with astrocytoma with anaplastic foci or glioblastoma multiforme are alive. The median survival for both groups was 15.6 months.

Actuarial Analysis↗

Lack of effect of recombinant human interferon-alpha 2b on expression of 17-1A antigen on human colon cancer cells.

The effects of recombinant human interferon alpha (rHuIFN-alpha 2b) on cell growth, expression of antigenic receptor sites (r) and the affinity constant (Ka) of monoclonal antibody CO 17-1A IgG were studied on two human colorectal cancer cell lines, CX-1 and SW 1116. Cells were incubated with varying concentrations of rHuIFN-alpha 2b prior to exposure to 125I-labeled 17-1A IgG at 37 degrees C following which r and Ka were determined by means of Scatchard plots. Varying concentrations of rHuIFN-alpha 2b had significant growth inhibitory effects on CX-1 and SW 1116 cells, which were time and concentration dependent, but no effects on expression of r and Ka compared to controls. Our data indicate that rHuIFN-alpha 2b does not invariably increase the expression of tumor-associated antigens and that this effect may be independent of its antiproliferative activity. The in vitro response or lack thereof of neoplastic cells to rHuIFN-alpha 2b may be useful to identify those patients who potentially might gain from a clinical course of rHuIFN-alpha 2b for either therapeutic or diagnostic purposes.

Antibodies, Monoclonal↗

Nuclear translocation of monoclonal antibody directed against cell-surface carbohydrate Y determinant.

Monoclonal antibody (MAb) Br 15-6A directed against the carbohydrate Y determinant expressed on tumor cells was found to be internalized and translocated to the nucleus of SK Br 5 breast carcinoma and SW 1116 and SW 707 colorectal carcinoma cells. Intracellular localization of MAb Br 15-6A was determined by cell fraction and by indirect immunofluorescence staining. Internalization of MAb Br 15-6A seems to be mediated by a specific cell surface protein of M(r) 108,000 in colorectal carcinoma cells and M(r) 92,000-96,000 in breast carcinoma cells. The MAb Br 15-6A precipitates an 88,000 M(r) chromatin protein and appears to be bound specifically to two EcoRI-digested and two HincII-chromatin fragments. Another MAb against the Y determinant (MAb Br 55.2) recognizes the same antigens as MAb Br 15-6A, but is not internalized.

Antibodies, Monoclonal↗

Biological activity in the human system of isotype variants of oligosaccharide-Y-specific murine monoclonal antibodies.

The capacity of isotype variants of BR55-2, an anti-tumor monoclonal antibody directed against Y oligosaccharide, to mediate antibody-dependent cellular cytotoxicity (ADCC) and complement-dependent cytotoxicity (CDC) in the human system was evaluated using freshly isolated peripheral blood mononuclear cells, lymphocytes, monocytes and complement. The ADCC activities of the BR55-2 IgG3 isotype and its switch variants (IgG1, IgG2b, and IgG2a) with human monocytes were high for all isotypes, whereas the activity of all isotypes was lower with freshly isolated lymphocytes, IgG1 being the least effective. The CDC on the other hand was strong with IgG3, IgG2b and IgG2a and negative with the IgG1 variant. The IgG3 and IgG2a isotypes were selected for further development. Their strong ADCC and CDC activity against mammary carcinoma, colon carcinoma and small-cell lung tumor cell lines was confirmed quantitatively using proteins highly purified from tissue-culture supernatants. Significant variations in ADCC and CDC competence was observed among human donors.

Antibodies, Monoclonal↗

Immunotherapy with monoclonal antibody (Mab) in pancreatic adenocarcinoma.

Conventional therapy of pancreatic exocrine cancer is disappointing. The poor prognosis of the disease challenges development of novel therapeutic strategies. We report the results of clinical trials of the monoclonal antibody (Mab) 17-1A in patients with histologically verified unresectable pancreatic exocrine cancer. No antitumor response was seen in 18 patients treated with Mab 17-1A (500 mg) admixed with 10(9) autologous mononuclear cells, and 81% of the patients developed antimouse antibody response. Combination of recombinant gamma interferon and Mab 17-1A mixed with autologous mononuclear white cells resulted in complete response of 4-mo duration in 1 out of 25 evaluable patients and unusually stable disease from 4 to 48+ mo in another 6 patients. High intermittent doses of infused Mab 17-1A did not show any objective antitumor response and caused serious anaphylaxis in two of the patients in the trial. Because examination of six pancreatic adenocarcinoma cell lines with different doses of Mab 17-1A and IL-2 failed to augment lytic activity of mononuclear effector cells against all cancer cell lines tested, there seemed to be no rationale for pursuing clinical studies with IL-2 and Mab 17-1A in either the murine or chimeric form. Attractive therapeutic approaches include active immunotherapy with immunization using idiotypic antibodies or targeted toxicity with the use of radioimmunoconjugates, particularly 125I-labeled chimeric Mab 17-1A.

Adenocarcinoma↗

The expression of epidermal growth factor receptor on human bladder cancer: potential use in radioimmunoscintigraphy.

Monoclonal antibody 425, which binds to an extracellular domain of the epidermal growth factor receptor, was used to evaluate the expression of this antigen on bladder cancer cells. Epidermal growth factor receptor was found on all bladder cancer cell lines tested. Immunoperoxidase staining of fourteen invasive human bladder cancers with monoclonal antibody 425 demonstrated that ten showed strong staining, one showed weak staining and three were negative. Five noninvasive tumors were similarly examined. Four of these were negative and one showed weak staining. Biodistribution experiments with human bladder tumor xenografts in athymic nude mice using radiolabeled monoclonal antibody 425 and an isotype matched control antibody demonstrated specific tumor localization at five and seven days following antibody injection. Successful imaging of a human bladder tumor xenograft was achieved five days post antibody injection. These data confirm that epidermal growth factor receptor expression correlates with bladder cancer stage and suggests that epidermal growth factor receptor may serve as a target antigen for radioimmunoscintigraphy.

Animals↗

Initial clinical evaluation of two murine IgG2a monoclonal antibodies for immunotherapy of gastrointestinal carcinoma.

Eleven patients with advanced gastrointestinal (GI) carcinoma were entered in Phase I initial clinical trials with IgG2a antiGI carcinoma monoclonal antibodies (MAbs) GA733 (five patients) or CO19-9 (six patients). Infusion of MAb GA733 in doses greater than 30 mg was accompanied by mild and short-lasting GI toxicity. Infused MAb GA733 was bound to each patient's tumor tissue in vivo. MAb circulated in the blood for 10-25 days. All patients developed anti-mouse antibodies between 15 and 60 days post infusion. Furthermore, all but one patient raised anti-idiotypic antibodies against MAb GA733. Following administration of 10-600 mg of MAb CO19-9, no immediate or delayed toxicity symptoms were noted. Binding of infused MAb CO19-9 to tumor cells in vivo could not be detected in any of the six patients studied. The MAb circulated in the bloodstream between 5 and 12 days. Human anti-mouse antibody was detected in sera of three patients. None of the eleven patients treated with either MAb had anti-tumor responses in this Phase I clinical trial. The strong binding reactivity of MAb GA733 to tumors in vivo suggests the use of this MAb in cancer patients with less tumor burden to determine the tumoricidal efficacy of this antibody.

Animals↗

Human anti-murine immunoglobulin responses and immune functions in cancer patients receiving murine monoclonal antibody therapy.

In our institution, over 200 patients with gastro-intestinal tract carcinomas have been treated with monoclonal antibodies (MAbs) including CO 17-1A. In one clinical trial, MAbs were administered in combination with gamma interferon. Natural killer cell cytotoxicity (NK) and antibody-dependent cell-mediated cytotoxicity (ADCC) were studied in patients before treatment. Very low NK and ADCC activities were measured in metastatic cancer patients. NK cell lysis was enhanced during gamma-interferon treatment, associated with a modification of the Fc receptor expression, but no changes in the ADCC reactivities of leukocytes were noticed. Monoclonal antibodies were circulating for one to four weeks after a single dose infusion, independent of the patients' immune responses toward the administered MAb. Sixty-three percent of the patients mounted an anti-mouse immunoglobulin response. Anti-idiotypic antibodies were detected in 70% of the responding patients. Variations in the anti-mouse Ig responses were dependent on the therapeutic protocol. The immune responses were composed of IgM, IgA, and IgG (mainly IgG1, often associated with IgG2 and/or IgG3). In patients receiving MAbs together with gamma-interferon, development of the anti-mouse Ig responses were delayed with an increase in the anti-isotypic component and a decrease in the anti-idiotypic component as compared to patients treated with MAb alone. No correlation could be established with clinical results.

Adenocarcinoma↗

Expression of blood group antigens H-2, Le(y), and sialylated-Le(a) in human colorectal carcinoma. An immunohistochemical study using double-labeling techniques.

In this study, double-labeling immunohistochemistry was used to gain insight into the coexpression or interrelationship between blood group antigens (BGA) that are differentiation antigens in the normal colon, and BGA that are sequential moieties in the same synthetic pathway. Paired-wise Sialylated-Le(a)/Le(y) and H-2/Le(y) was studied. The Sialylated-Le(a) and Le(y) are synthesized from type 1 and type 2 backbones, respectively. In the normal colon, the Le(y) and Sialylated-Le(a) are expressed by cells at the base and surface of the crypt, respectively, representing undifferentiated and differentiated enterocytes. The H-2 is considered oncofetal in nature, and is considered to be the immediate precursor in the synthesis of Le(y). In individual cancers. Sialylated-Lea and Le(y) were detected in different cancer cells within the same malignant glands, separately in different glands, and in different subcellular compartments of the same cell. Both H-2 and Le(y) were coexpressed in the same individual cells in 92% of cancers expressing both these BGA. In 50% of the cancers, the H-2 and Le(y) also were expressed separately in different malignant glands within individual tumors. These findings indicate that, in colorectal cancers, differentiation antigens (Sialylated Le(a) and Le(y)) are expressed by different individual cells within the same malignant gland somewhat, recapitulating the normal colon crypt. Antigens of different backbones occasionally may be expressed in the same cells but within different subcellular compartments. Precursor accumulation is common in cancers, and antigens in the same synthetic pathway are coexpressed in the same cell. The expression of H-2 and Le(y) in different glands (lack of coexpression) may be explained possibly by aberrant synthesis of Le(y) by an alternate pathway.

ABO Blood-Group System↗

Radioimmunotherapy of human colorectal carcinoma xenografts using 90Y-labeled monoclonal antibody CO17-1A prepared by two bifunctional chelate techniques.

Monoclonal antibody CO17-1A, which has specificity for colorectal and pancreatic carcinomas, was radiolabeled with the pure beta emitter, 90Y, by either the cyclic diethylenetriaminepentaacetic acid (DTPA) anhydride technique or by a site-specific bifunctional chelate technique using 1-(p-aminobenzyl)DTPA (p-NH2-Bz-DTPA). Female nude mice bearing SW 948 human colorectal carcinoma xenografts were given injections i.v. of 90Y-labeled monoclonal antibody CO17-1A at dosages of 100, 150, and 200 muCi/25 g body weight. Unlabeled CO17-1A (100 micrograms/25 g body weight) was coadministered. In animals receiving 90Y-CO17-1A prepared by the cyclic DTPA anhydride technique, tumor volume was unchanged from base line at a dose of 200 microCi/25 g. As the dosage of 90Y-CO17-1A increased, the rate of tumor growth decreased, but all experimental animals in this group died between 14 and 21 days. In contrast, CO17-1A radiolabeled with 90Y by the site-specific p-NH2-Bz-DTPA bifunctional chelate technique produced a maximum tumor volume reduction of 87% in the 200 microCi/25 g group by day 15, and no deaths were noted in any of the 90Y-CO17-1A-treated groups for 71 days. Dose-response curves again showed increased tumoricidal effects with increased dosages of 90Y-CO17-1A. S-2-(3-Aminopropylamino)ethylphosphorothioic acid, commonly known as WR-2721, is a radioprotective drug which has been shown to protect against bone marrow depression in irradiated humans. No protection was observed when WR-2721 was used as an adjunct to treatment with 90Y-CO17-1A prepared by either the cyclic DTPA anhydride technique or the site-specific p-NH2-Bz-DTPA technique. When the site-specific p-NH2-Bz-DTPA technique was used, the reduction in WBC and hemoglobin levels correlated with increasing bone marrow toxicity at higher doses. We conclude that CO17-1A labeled with 90Y via the site-specific p-NH2-Bz-DTPA technique has potential for radioimmunotherapy of human colorectal carcinoma.

Amifostine↗

Immunoglobulin class and immunoglobulin G subclass analysis of human anti-mouse antibody response during monoclonal antibody treatment of cancer patients.

The immune response against murine IgG2a immunoglobulin was studied in 42 gastrointestinal cancer patients treated with mouse monoclonal antibodies. IgM, IgA, and all 4 IgG subclasses directed against mouse immunoglobulin were studied. Thirty of 42 patients developed an anti-mouse response of IgG isotype, often associated with IgM and IgA specific for mouse monoclonal antibodies circulating in serum. Patients first developed an IgM response, followed by IgA and IgG. IgG1 was found to be the most frequently expressed isotype, followed by IgG2 and IgG3. IgG4 was detected in only 6 patients.

Animals↗

Comparative binding and preclinical localization and therapy studies with radiolabeled human chimeric and murine 17-1A monoclonal antibodies.

Murine MoAb 17-1A is an IgG2a antibody reactive with a gastrointestinal cancer-associated cell surface antigen. Human-mouse chimeric 17-1A MoAbs were constructed in which the murine variable region of 17-1A was joined with human IgG1, IgG2, IgG3, and IgG4 constant regions. Human-mouse IgG1, IgG2, and IgG4 chimeric antibodies were compared with the parental murine antibody and its F(ab')2 fragments for their ability to bind to colon carcinoma cells in vitro, for their blood clearance in normal nude mice, and for their localization and tumor growth inhibition of colon carcinoma xenografts in nude mice. Indirect immunofluorescence experiments with fluorescein-conjugated goat anti-mouse or goat anti-human antibody verified that the substitution of human constant regions in the chimeric MoAbs did not significantly alter the ability of the murine variable region to bind to colon adenocarcinoma cell lines (LS174T, SW948, and C0112). The immunoreactivities of 125I-labeled murine and chimeric 17-1A MoAbs measured in a live cell-binding assay with LS174T, SW948, and C0112 cells revealed that chimeric IgG1, IgG4, and 17-1A F(ab')2 were comparable to murine 17-1A while chimeric IgG2 showed lower binding. The blood half-lives of 125I-labeled murine 17-1A, its F(ab')2 fragments, and chimeric IgG1, IgG2, and IgG4 in normal nude mice determined by serial eye bleeding were 7.5, 0.5, 5.2, 6.9, and 1.9 days, respectively. In biodistribution studies at 4 days after injection of 125I-labeled MoAbs in nude mice bearing LS174T tumors, chimeric IgG1 had the highest tumor concentration of 20.5% injected dose/g with a tumor/blood ratio of 3.2. 131I-labeled murine 17-1A administered in a single injection of 300 microCi or 3 injections of about 300 microCi each to nude mice bearing established LS174T tumors inhibited tumor growth, whereas a comparable amount of unlabeled murine 17-1A did not inhibit tumor growth. 131I-labeled chimeric IgG1 MoAb showed a similar level of tumor growth inhibition. The results of the present study indicate that 17-1A chimeric IgG1 antibody may be the best choice for clinical radioimmunodetection and radioimmunotherapy studies.

Animals↗

Humoral and cellular responses of colorectal cancer patients treated with monoclonal antibodies and interferon gamma.

Fifteen patients with metastatic gastrointestinal adenocarcinomas were treated with low doses of recombinant human interferon gamma (rh-IFN gamma) and a mixture of monoclonal antibodies (mAb) that bind to tumor cells. All antibodies were of the IgG2a isotype and interact with human effector cells to mediate antibody-dependent cell-mediated cytotoxicity (ADCC). Natural killer lysis against K562 cells by peripheral blood mononuclear cells purified from patients' blood was enhanced in all patients at day 3 during IFN gamma treatment. Monocytes from two patients had increased ADCC levels. Increase in the percentage of monocytes able to bind mouse IgG2a was detected by Fc receptor flow cytometry analysis 24 h after the first IFN gamma infusion. However, 3 days later, the percentage of fluorescent cells had fallen below baseline levels. The analysis of patients' sera showed that at day 2 after mAb infusion, only 50% of the circulating mouse IgG was immunoreactive, and after 1 week, only traces of immunoreactive mouse IgG were detected. All patients developed a human anti-(mouse Ig) response of IgG, IgM and IgA isotypes, although only low levels of anti-idiotypic antibodies were detected at the time of testing (up to 9 weeks) after mAb infusion. No difference in the IgG subclasses of anti-(mouse Ig) antibody was observed between patients treated with mAb and IFN gamma and patients treated with mAb alone.

Adenocarcinoma↗

A comparison of 131I-labeled monoclonal antibody 17-1A treatment to external beam irradiation on the growth of LS174T human colon carcinoma xenografts.

Inhibition of growth of LS174T human colon cancer xenografts in athymic nude mice due to 131I-labeled MoAb 17-1A treatment was compared to inhibition due to different single doses of 60Co external radiation. From those data, conditions which produced equivalent radiobiological end points could be identified and compared to dose estimates calculated using a technique analogous to the Medical Internal Radiation Dose (MIRD) Committee formalism. The tumor growth rate in mice injected with a single intraperitoneal administration of 300 microCi of 131I-labeled MoAb was reduced relative to tumor growth in untreated control animals and in mice administered unlabeled MoAb and was found to be similar to the growth rate of tumors given a single 6 Gy dose of 60Co radiation. Furthermore, the growth rate of tumors in mice that received three injections of 300 microCi of 131I-labeled MoAb on days 9, 16 and 28 after tumor cell injection was similar to the growth rate of tumors given a single 60Co dose of 8 or 10 Gy. The biodistribution data for 125I-labeled 17-1A MoAb were used to calculate total doses for the tumor and various normal tissues in animals given a single administration of 131I-labeled 17-1A MoAb. The absorbed radiation dose in tumor was approximately five times higher than in normal tissues. The results of the present study indicate that the tumor growth inhibition produced by the administration of radiolabeled antibody can equal that produced by up to 10 Gy of external beam radiation. In addition, the MIRD calculations allow comparison of this form of low dose radiation to external photon irradiation.

Animals↗