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Biomedical subjects

S E Order

Publications and source records attributed to S E Order.

At least 37 records · Page 2Linked to original sources

Variable low dose rate irradiation (131I-anti-CEA) and integrated low dose chemotherapy in the treatment of nonresectable primary intrahepatic cholangiocarcinoma.

Previous experience using 131I anti-CEA antibody, which irradiates at a variable low dose rate in combination with a multimodality treatment program, has demonstrated acceptable toxicity and response in primary intrahepatic cholangiocarcinoma. In attempting to improve therapy, Cis-platin was added to the prior regimen. Induction therapy was unchanged. One month later, chemotherapy was given (doxorubicin, 15 mg, 5-fluorouracil, 500 mg, plus Cis-platin, 20 mg/M2) followed the next day by outpatient administration of 20 mCi 131I anti-CEA by i.v. bolus. Five days later, 10 mCi was administered. The latter regimen (chemotherapy plus 20 + 10 mCi 131I anti-CEA) was repeated every 2 months using polyclonal antibodies derived from different species (rabbit, pig, baboon, and horse). Twenty-four patients (29% with prior chemotherapy and/or metastases) were prospectively treated according to this regimen. Toxicity was limited to hematologic toxicity and was manifested by thrombocytopenia and leukopenia (17% and 4% grade 4, respectively, according to RTOG toxicity criteria). Tumor remission was evaluated by CT volumetric analysis and demonstrated a 14% response rate for the induction portion of therapy, 24% for the radioimmunoglobulin portion of treatment, and 50% remission rate when all subsequent tumor volumes were compared to the pre-treatment volume (entire program). The median survival for the entire group of patients was 10.1 months. This result is superior to previously reported trials and, in comparison to our previous study (10.1 vs 6.5 months median survival), further advancement in protocol design appears to have been made. In view of the rarity of this disorder, a randomized trial is not possible and strict statistical analyses cannot be made. The mechanism of 131I-anti-CEA variable low dose irradiation and chemotherapy interaction is discussed as well as further potential modifications for treatment improvement.

Adenoma, Bile Duct↗

Phase I-II studies of yttrium-labeled antiferritin treatment for end-stage Hodgkin's disease, including Radiation Therapy Oncology Group 87-01.

Radiolabeled antiferritin immunoglobulin (Ig) preparations were tested in patients with advanced, end-stage Hodgkin's disease. Four patients received indium-111 (111In)-labeled monoclonal antiferritin (QCI). Targeting was not observed in tumor-bearing areas. Instead, scans showed rapid accumulation of QCI in normal liver. Forty-five patients were injected with 111In-labeled polyclonal antiferritin (rabbit, pig, or baboon). Forty (89%) patients showed tumor uptake, with dosimetric estimates ranging from 300 to 3,000 cGy in 1 week for the subsequently administered yttrium-90 (90Y)-labeled antiferritin. Yttrium-labeled antibody caused hematologic toxicity. Treatment-induced toxicity was not observed in any other organ system. Intravenous autologous bone marrow cells, 18 days after the yttrium infusion, accelerated hematopoietic recovery in eight patients receiving 30 mCi or 40 mCi. Hematopoietic recovery after a 20 mCi 90Y-labeled antiferritin infusion was not influenced by an autologous bone marrow transplant. Two patients receiving 20 mCi and one patient receiving 50 mCi remained aplastic after transplantation for unknown reasons. In 29 assessable patients, a 62% response rate was observed; nine of the 18 responses were complete. Responses ranging from 2 to 26 months were more commonly noted in patients with small tumors and long disease histories. Dosimetric calculations did not predict for responses. Recurrences frequently occurred in new areas instead of areas exhibiting bulky disease at the start of the treatment. Complete responses after 90Y antiferritin were significantly (P less than .02) more frequent than in a previous study with iodine-131 (131I) antiferritin. Further improvements are needed to make this new treatment modality curative.

Adolescent↗

The role of chronic viral hepatitis in hepatocellular carcinoma in the United States.

Although hepatocellular carcinoma is a relatively uncommon tumor in the United States, it is quite common in sub-Saharan Africa and the Far East, where most cases are associated with infection with the hepatitis B virus. We have studied 99 American patients with hepatocellular carcinoma for evidence of hepatitis B or hepatitis C viral infection and compared these findings to those in a group of matched controls with other cancers. The two groups differed in proportion, with hepatitis B surface antigen in serum being significantly higher in patients with hepatocellular carcinoma (7% vs. 0%, p = 0.009). Antibody to hepatitis C virus was also found more frequently in patients with hepatocellular carcinoma (13% vs. 2%, p = 0.002). The relative risk for hepatocellular carcinoma in hepatitis B surface antigen-positive patients was calculated to be 17.3 and for antibody to hepatitis C virus to be 7.3. The attributable fraction of cases related to the hepatitis B surface antigen carrier state was 6.7% and for patients infected with the hepatitis C virus was 11.4%. Approximately three quarters of cases of hepatocellular carcinoma did not have evidence of either hepatitis C or hepatitis B virus infection. These findings provide strong evidence that hepatitis C virus infection is associated with the development of hepatocellular carcinoma, and in the United States may even play a more important role than the hepatitis B virus.

Adolescent↗

Staging, treatment, and results in testicular seminoma. A 12-year report.

Sixty-one patients with histologically confirmed seminoma of the testis were treated by radiotherapy at The Johns Hopkins Hospital from 1975 to 1987. Fifty-seven patients remain disease-free, three patients died of intercurrent disease, and one patient (Stage IIB) died of widespread seminoma. Median follow-up for these patients is 5.5 years. Using a modified M.D. Anderson Hospital clinical staging system, 42 (69%) were Stage I, 16 (26%) were Stage IIA, and three (5%) were Stage IIB. Radiologic staging included both lymphangiogram (LAG) and abdominal computed tomography (CT) scan. Among Stage I disease, nine patients had false-positive CT scans, determined by negative LAG. Six patients had false-negative CT scans and were upstaged to Stage IIA by LAG. Treatment portals were altered in 15 of the 39 patients (38%) who had both LAG and CT scan. Overall actuarial survival (Kaplan-Meier method) was 97% at 5 years and 92% at 10 years. Five-year survival corrected for intercurrent disease was 100% for Stage I, 100% for Stage IIA, and two of three in Stage IIB patients. There were two distant treatment failures among the entire cohort. One patient who had Stage I disease was salvaged with local-field radiation and chemotherapy and is now without evidence of disease for 6 years. The second patient with Stage IIB seminoma receiving the same treatments disseminated and died. There were no significant acute toxicities or serious complications. In summary, proper staging with information gained from LAG and adequate radiation dose led to a 92% 10-year disease-free survival.

Adult↗

Radiolabeled antibodies: results and potential in cancer therapy.

Radiolabeled antibodies are analyzed from the classical approach in radiation oncology being compared to geometric isotopic implants, external radiation, and tumor-dose response and energy of the isotope used for cytotoxicity. In addition, physiological factors that limit antibody uptake, varied routes of administration, toxicity of treatment, as well as present clinical progress are reviewed.

Antibodies, Neoplasm↗

Targeting and therapy of human glioma xenografts in vivo utilizing radiolabeled antibodies.

Radiolabeled antibodies provide a potential basis for selective radiotherapy of human gliomas. We have measured tumor targeting by radiolabeled monoclonal antibodies directed against neuroectodermal and tumor-associated antigens in nude mice bearing human glioma xenografts. Monoclonal P96.5, a mouse IgG2a immunoglobulin, defines an epitope of a human melanoma cell surface protein and specifically binds the U-251 human glioma as measured by immunoperoxidase histochemistry. IIIIn-radiolabeled P96.5 specifically targets the U-251 human glioma xenograft and yields 87.0 microCi of tumor activity/g/100 microCi injected activity compared to 4.5 microCi following administration of 100 microCi radiolabeled irrelevant monoclonal antibody. Calculations of targeting ratios demonstrate the deposited dose to be 11.6 times greater with radiolabeled P96.5 administration compared to irrelevant monoclonal antibody. The dose found in normal organs is less than 20% of that in the tumor, further supporting specific targeting of the human glioma xenograft by this antibody. Monoclonal antibody ZME018, which defines a second melanoma-associated antigen, demonstrates positive immunoperoxidase staining of the tumor, but comparatively decreased targeting. To test the therapeutic potential of 90Y-radiolabeled P96.5 and ZME018, tumors and normal sites were implanted with miniature thermoluminescent dosimeters. Average absorbed doses of 3770 +/- 445 (SEM) and 645 +/- 48 cGy in tumor, 353 +/- 41 and 222 +/- 13 cGy in a contralateral control i.m. site, 980 +/- 127 and 651 +/- 63 cGy in liver, and 275 +/- 14 and 256 +/- 18 cGy in total body were observed 7 days following administration of 100 microCi 90Y-radiolabeled P96.5 and ZME018, respectively. Calculations of absorbed dose by the medical internal radiation dose method confirmed thermoluminescent dosimeter absorbed dose measurements. To test the therapeutic potential, tumor-bearing nude mice were given intracardiac injections of either buffer or 90Y-radiolabeled P96.5 or ZME018. Tumor regression was measured in 1 of 12, 9 of 10, and 12 of 12 compared to 0 of 10, 1 of 10, and 2 of 10 animals following administration of 50, 100, or 200 microCi 90Y-labeled P96.5 and ZME018, respectively. Average maximal decreases in tumor volume were 42.7 +/- 11.9 and 94.2 +/- 3.3% 28 and 58 days following 100 and 200 microCi 90Y-radiolabeled P96.5 administration, respectively. In contrast, no average decrease in tumor volume was noted following 50, 100, or 200 microCi 90Y-labeled ZME018.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Pretreatment evaluation of sexual function in patients with adenocarcinoma of the prostate.

Forty-three patients with adenocarcinoma of the prostate and available partners were interviewed to assess qualitatively and quantitatively their levels of sexual functioning prior to radiotherapy. The mean age was 67.7 years (58-80 years). The Derogatis Interview for Sexual Functioning (DISF) was the evaluation used. The Derogatis Interview for Sexual Functioning measures five domains of sexual functioning: sexual fantasy, arousal, experience, orgasm, and drive. Twenty-seven of the 43 (62.7%) patients evaluated were considered impotent. Fifteen of the 27 patients scored low in all five domains of sexual functioning even though they could achieve erection but they were unable to maintain erection throughout the phases of the sexual response cycle. Twelve of the 27 patients had scored 0 on sexual arousal and orgasm, thus had no ability for erection. Sixteen of the 43 (37.2%) patients were considered potent. This group of patients had achieved erection throughout the phases of sexual cycle and scored adequately in all five domains of sexual functioning. Patients with DISF score less than 20 were impotent. Those with a Derogatis Interview for Sexual Functioning score of greater than 45 were potent. Only 6 of 19 patients with scores between 20 and 45 were potent. The Derogatis Interview for Sexual Functioning score was highly prognostic for impotence, (p = .002) was easy to use and could be used for follow-up of the effect of therapy on sexual function in patients with adenocarcinoma of the prostate. Patients who present for radiation therapy are older, 50% are on cardiac or antihypertensive medication, and the majority (62.7%) are already impotent prior to therapy.

Adenocarcinoma↗

Accelerated fractionation radiation therapy for liver metastases: selection of an optimal patient population for the evaluation of late hepatic injury in RTOG studies.

The palliation of hepatic metastases represents a major therapeutic problem in oncology. The generally unfavorable prognosis of patients with liver metastasis may complicate the evaluation of the efficacy and toxicity of various therapeutic modalities. The Radiation Therapy Oncology Group (RTOG) is evaluating new accelerated fractionation schemes for hepatic irradiation. In designing this study it became necessary to identify a favorable subpopulation of patients with an expected median survival of 6 months in whom the late effects of treatment could be evaluated. Data from two RTOG liver metastases studies (7605 and 8003) were analyzed using multi-variate techniques. Cases with a serum bilirubin level of greater than 1.5 mg%, performance score of less than 50, and gastric or pancreatic primary carcinomas were initially excluded because of the adverse influence of these factors on survival. One hundred and ninety cases met the criteria for inclusion in this analysis. A loglinear model was used to identify the patient characteristics associated with a favorable prognosis for survival. These included a performance score of 80-100, colorectal carcinoma primary, and no extrahepatic metastases. A logistic regression equation was derived and confirmed that the probability of surviving at least 6 months depended on the effects of performance score, primary site and the presence or absence of extra-hepatic metastases. Patients with all three favorable factors constituted 30% of the evaluable study population and had a predicted survival of 50% at 6 months. A patient population with these characteristics will be used to study the late effects of accelerated fractionated radiation therapy on the liver.

Breast Neoplasms↗

Prevention of hypothyroidism related to mantle irradiation for Hodgkin's disease: preparative phantom study.

To decrease the incidence of hypothyroidism related to mantle irradiation for Hodgkin's disease, we initiated a study designed to protect the thyroid gland using a phantom. A thyroid phantom was filled with technetium-99m. The thyroid phantom was placed inside of its corresponding anterior neck position in a whole body phantom. An anterior scintiscan of the head and neck region demonstrated the radioactivity in the simulated thyroid. A mantle port included a focused block that would shield the thyroid from the anterior port. The phantom was exposed (4 MeV) to 180 cGy (AP-PA) at midplane with lithium fluoride dosimeters in the position of the thyroid. The thyroid received an average of 12 cGy from the anterior field and 48 cGy from the posterior field for a total of 60 cGy per treatment or 30% of the prescribed dose. A complete mantle field course of radiation of 4000 cGy would lead to a thyroid dose of 1200 cGy at a daily fractional dose of 60 cGy. We elected not to block the thyroid from the posterior field to prevent shielding and potential underdosage of involved nodal sites. The present study suggests a method of safe and effective thyroid shielding which needs to be tested clinically to determine whether it would reduce the incidence of chemical and clinical hypothyroidism or simply extend the period until occurrence.

Hodgkin Disease↗

Targeting of human glioma xenografts in vivo utilizing radiolabeled antibodies.

Radiolabeled antibodies provide a potential basis for selective radiotherapy of human gliomas. We have measured tumor targeting by radiolabeled monoclonal and polyclonal antibodies directed against neuroectodermal and tumor-associated antigens in nude mice bearing human glioma xenografts. Monoclonal P96.5, a mouse IgG2a immunoglobulin, defines an epitope of a human melanoma cell surface protein, and specifically binds the U-251 human glioma as measured by immunoperoxidase histochemistry. 111In-radiolabeled P96.5 specifically targets the U-251 human glioma xenograft and yields 87.0 microCuries (microCi) of tumor activity per gram per 100 microCi injected activity compared to 4.5 microCi following administration of radiolabeled irrelevant monoclonal antibody. Calculations of targeting ratios demonstrate deposited dose to be 11.6 times greater with radiolabeled P96.5 administration compared to irrelevant monoclonal antibody. The proportion of tumor dose found in normal organs is less than 10%, further supporting specific targeting of the human glioma xenograft by this antibody. Monoclonal antibody ZME018, which defines a second melanoma-associated antigen, and polyclonal rabbit antiferritin, which defines a tumor-associated antigen, demonstrate positive immunoperoxidase staining of the tumor, but comparatively decreased targeting. When compared to the 111In-radiolabeled antibody, 90Y-radiolabeled P96.5 demonstrates comparable tumor targeting and percentages of tumor dose found in normal organs. To test the therapeutic potential of 90Y-radiolabeled P96.5, tumors and normal sites were implanted with miniature thermoluminescent dosimeters (TLD). Seven days following administration of 100 microCi 90Y-radiolabeled P96.5, average absorbed doses of 3770, 980, 353, and 274 cGy were observed in tumor, liver, contralateral control site, and total body, respectively. Shared cell surface antigens among neuroectodermally derived neoplasms provide a basis for exploration of human glioma radioimmunotherapy.

Animals↗

Systemic radiotherapy--the new frontier.

The present day use of systemically administered isotopes and conjugated isotopic combinations are reviewed. Administration of 131Iodine in thyroid cancer led to a 97% local control and 50% complete remission of pulmonary metastases. Specificity directed isotopic therapy (metabolic, hormonal, and antibody) is discussed and includes factors such as tumor physiology and isotopic linkage. The clinical results and new knowledge being gained in Hodgkin's disease, non-Hodgkin's, colorectal, hepatoma, intrahepatic biliary and gliomatous cancers are reviewed. The dose response relationship to tumor remission is demonstrated in Hodgkin's treated with 131I antiferritin (40% partial remission) and more recently 90Yttrium antiferritin (50% complete response). Varied routes of administration, the problem of anti-antibody and bone marrow transplantation are discussed. Finally, the challenge to radiobiologists, physicists, chemists, immunologists, nuclear radiologists, and radiation oncologists is emphasized by definition of the new laboratory and clinical approaches being developed in systemic radiation therapy.

Antibodies, Anti-Idiotypic↗

Targeting and therapy of human glioma xenografts in vivo using radiolabeled antibodies.

Radiolabeled antibodies provide a potential basis for selective radiotherapy of human gliomas. Monoclonal P96.5, a mouse IgG2a immunoglobulin, defines an epitope of a human melanoma cell surface protein and specifically binds the U-251 human glioma as measured by immunoperoxidase histochemistry. 111In-radiolabeled P96.5 specifically targets the U-251 human glioma xenograft and yields 87.0 microCuries (uCi) of tumor activity per gram per 100 uCi injected activity compared to 4.5 uCi following administration of radiolabeled irrelevant monoclonal antibody. Calculations of targeting ratios demonstrate deposited dose to be 11.6 times greater with radiolabeled P96.5 administration compared to irrelevant monoclonal antibody. Tumor dose found in normal organs is less than 20% of the tumor dose, further supporting specific targeting of the human glioma xenograft by this antibody. Monoclonal antibodies QCI054 and ZME018, which define a tumor-associated and a second melanoma-associated antigen, respectively, demonstrate positive immunoperoxidase staining of the tumor, but comparatively decreased targeting. To test the therapeutic potential of 90Y-radiolabeled P96.5, QCI054, and ZME018, tumors and normal sites were implanted with miniature thermoluminescent dosimeters (TLD). Average absorbed doses of 3770 +/- 445 (mean +/- SEM), 2043 +/- 134, and 645 +/- 48 cGy in tumor, 353 +/- 41, 243 +/- 22, and 222 +/- 13 cGy in a contralateral control intramuscular site, 980 +/- 127, 815 +/- 41, and 651 +/- 63 cGy in liver, and 275 +/- 14, 263 +/- 11, and 256 +/- 18 cGy in total body were observed 7 days following administration of 100 uCi 90Y-radiolabeled P96.5, QCI054, and ZME018, respectively. To test the therapeutic potential, tumor-bearing nude mice were given intracardiac injections of either buffer or 90Y-radiolabeled P96.5, QCI054, or ZME018. Striking tumor regression and prolonged survival were measured following administration of 90Y-labeled P96.5. Average maximal decreases in tumor volume were 42.7 +/- 11.9 and 94.2 +/- 3.3 percent 28 and 58 days following 100 and 200 uCi 90Y-radiolabeled P96.5 administration, respectively. The time required to achieve four times the initial tumor volume was 6.1 +/- 0.9 days for buffer; 43 +/- 12 and 63 +/- 10 days for 50 and 100 uCi 90Y-radiolabeled P96.5; 7 +/- 2, 20 +/- 1, and 53 +/- 4 for 50, 100, and 200 uCi 90Y-radiolabeled QCI054; and 9 +/- 1, 13 +/- 1, and 29 +/- 3 days for 50, 100, and 200 uCi 90Y-radiolabeled ZME018, respectively. Average tumor regrowth failed to occur 180 days following administration of 200 uCi 90Y-labeled P96.5.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Pre and posttreatment evaluation of sexual function in patients with adenocarcinoma of the prostate.

Twenty-seven patients with adenocarcinoma of the prostate, and available partners, were interviewed to qualitatively and quantitatively assess their level of sexual function prior to and 12 months after radiotherapy. Assessments were made using the Derogatis Interview for Sexual Functioning (DISF). Five domains of sexual functioning are measured: sexual fantasy, arousal, experience, orgasm, and drive. Prior to therapy 17 of 27 patients (62.9%) were considered impotent. There were eight patients with a DISF score of less than 20 who were impotent. Six patients had a DISF score of greater than 47 and were considered potent. Of the patients with DISF scores between 20-47 four were potent, and nine were impotent. Post radiation therapy three of the patients considered potent (with a score greater than 47) maintained their potent status. Four patients considered impotent prior to therapy became potent after therapy. All patients with a score less than 20 prior to radiation therapy remained impotent after therapy. Results indicate that an objective evaluation of sexual function pre treatment is necessary to determine the effect of radiotherapy. Our method of qualitative assessment of sexual function was easy to implement, was reproducible and could be used to evaluate long-term effects of radiotherapy on sexual function. Of the patients presenting for radiotherapy, 62.9% were impotent. Twelve months after radiation therapy 19 of 27 (70.3%) were impotent.

Adenocarcinoma↗

The theoretical implications and experimental and clinical results of radiolabeled antiferritin.

Ferritin is produced in malignant and normal tissues. It acts both as an immunosuppressant and as an iron storage protein. As a tumor associated protein, it is related to virally induced tumors, and selective tumor targeting by radiolabeled antiferritin antibodies has led to its use in clinical trials. In patients with advanced Hodgkin's disease who have failed conventional therapy, 131I antiferritin produced partial remissions, while 90Y antiferritin led to complete remissions and a demonstrable dose-response relationship. Combining the variable low-dose radiation patterns produced by radiolabeled antibody therapy with chemotherapy in the treatment of hepatocellular cancer has led to enhanced tumor cytotoxicity and, in some cases, the conversion of non-resectable hepatoma to resectable. Further, the potential for clinical and laboratory investigation of radiolabeled antibody therapy is discussed in light of new findings.

Animals↗

Yttrium-90 and iodine-131 radioimmunoglobulin therapy of an experimental human hepatoma.

Therapeutic trials were performed on the HepG2 human hepatoblastoma implanted s.c. in the athymic nude mouse. Animals were treated with polyclonal and monoclonal antiferritin and control antibodies labeled with either iodine-131 (131I) or yttrium-90 (90Y). Administration of 400 muCi of 131I-labeled polyclonal antiferritin or 300 muCi of 90Y-labeled polyclonal antiferritin significantly increased survival (P less than 0.001). There were no tumor cures with radiolabeled polyclonal antibody therapy. Animals treated with 200 or 300 muCi of 131I-labeled monoclonal antiferritin (QCI054) did not show increased survival compared to controls. Although 400 muCi of 131I-labeled QCI significantly prolonged survival, treatment resulted in no long-term survivors. Monoclonal antiferritin labeled with 90Y significantly prolonged survival of animals (P less than 0.001) at doses of 100, 200, or 300 muCi compared with untreated controls. Fifty % of the animals treated with 200 muCi and 75% of the animals treated with 300 muCi showed no evidence of disease at 140 days following treatment. Four hundred muCi of 90Y-labeled QCI proved toxic to the animals. Increased survival was accompanied by a decrease in tumor mitotic rate and increase in cellular polymorphism as determined by pathological examination. The radiation dose absorbed in the tumor correlated directly with tumor response following treatment. The absorbed dose in tumors for complete decay of the isotope ranged from 165 and 330 cGy at the periphery and center of small tumors for an administered activity of 200 muCi of 131I-labeled polyclonal antiferritin, to 7,573 and 12,400 cGy for 300 muCi of 90Y-labeled monoclonal antiferritin QCI.

Animals↗

Polyclonal 90Yttrium labeled antiferritin for refractory Hodgkin's disease.

Six patients with chemotherapy resistant Hodgkin's disease were treated with intravenous polyclonal 90-Yttrium (90Y) labeled antiferritin. Eighteen days after isotope infusion, patients received an autologous bone marrow transplant that was cryopreserved prior to initiation of treatment. Ten (one patient), 20 (four patients), or 30 mCi (two patients) were used. One patient received three cycles, three patients received two cycles, and two patients received one cycle. The same antibody labeled with 111-Indium (111In) was helpful in documenting the absence of anti-antibodies in six out of six patients, the presence of tumor targeting in six out of seven patients, and allowed for dose estimates in two out of six patients. One patient with a complete response received approximately 20 Gy to the tumor, whereas a second patient with 20 Gy to the tumor showed progressive disease. A total of three patients obtained a complete response, one had a partial response, and two patients progressed on treatment. Acute toxicity was limited to bone marrow aplasia, without a clear-cut beneficial effect for transplantation after 20 mCi 90Y and the suggestion of a positive effect after 30 mCi. One patient died in complete remission 26 months after treatment with chronic lung insufficiency, probably unrelated to the isotope treatment. The early observations are that 90Y-labeled antiferritin has a pronounced antitumor effect as a single agent and less normal tissue toxicity than other treatment modalities for Hodgkin's disease, such as chemotherapy, external beam radiotherapy, or autologous bone marrow transplantation after high dose chemo/radiotherapy.

Adolescent↗