A previously reported Phase I/II multimodality program for non-resectable hepatocellular cancer began with external beam-radiation and chemotherapy, followed by administration of I-131 antiferritin-specific radioimmunoglobulin and led to a 48% remission (7% complete remission and 41% partial remission). Survival and response depended on alpha fetoprotein status. AFP+ patients had a median survival of 5 months; AFP- patients had a median survival of 10.5 months. No acute effects occurred relative to treatment with radiolabeled antibody. A randomized prospective study was designed to compare full dose chemotherapy consisting of 60 mg/m2, doxorubicin and 500 mg/m2 of 5-fluorouracil administered every 3 weeks, to I-131 antiferritin administration every 8 weeks and allowed for crossover treatment if tumor progression occurred. Overall, radiolabeled antibody administration and full dose chemotherapy led to equivalent partial remission rates (22-30% vs 23-25%) and survival rates compared to chemotherapy (6 month median; AFP+ 5 months; AFP- 10 months). The most important new observations were the response in AFP- patients who, following chemotherapy failure, achieved remission using I-131 radiolabeled antibody (7/11) and a subset of patients (7%) who were treated with radiolabeled antibody and converted from non-resectable to resectable status followed by surgical excision.
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.
Thirty-seven patients with primary nonresectable intrahepatic cholangiocarcinoma (57% with prior treatment and/or metastasis) were prospectively treated with external radiation, chemotherapy, and 131I labelled anti-CEA. Therapy began in all trials with whole liver irradiation (21.0 Gy, 3.0 Gy/Fx, 4 days/week, 10 MV photons) with alternate treatment day chemotherapy (Adriamycin, 15 mg + 5-FU, 500 mg). One month after external beam therapy, chemotherapy was given (Adriamycin, 15 mg + 5-FU, 500 mg) followed the next day by the first administration of 131I anti-CEA. The treatment schedule used was 20 mCi day 0; 10 mCi day 5 as an outpatient. This schedule was derived from tumor dose estimates which indicated that 20 mCi (8-10 mCi/mg IgG) was sufficient to achieve tumor saturation with a tumor effective half-life of 3 to 5 days, depending upon the species of animal from which the antibody was obtained. The median tumor dose for the 20 mCi + 10 mCi regimen was 6.2 Gy. Antibody therapy was delivered in 2-month cycles using antibody generated in different species of animals; rabbit, pig, monkey, and bovine. Toxicity was limited to hematologic toxicity and was manifested as thrombocytopenia and leukocytopenia (3.2% Grade IV for each according to RTOG toxicity criteria). Tumor remission evaluated by CT scan digitized tumor volume analysis indicated a 26.6% partial response (PR). Tumor remission by physical examination indicated a 33.3% remission rate (25.9% PR and 7.4% complete remission (CR]. The median survival for patients who responded was 15.2 months. The actuarial median survival for the entire group of patients (metastases and previous treatment) was 6.5 months. The longest partial remission is presently more than 4 years.