PURPOSE:Mouse monoclonal antibody (mAb) M195 (anti-CD33) is reactive with most myeloid leukemia cells, monocytes, and hematopoietic progenitors, but not with other hematopoietic cells or stem cells nor with nonhematopoietic human tissues. A therapeutic dose-escalation study of M195 labeled with iodine 131 was conducted in patients with relapsed or refractory myeloid leukemias.METHODS:Twenty-four patients (16 relapsed or refractory acute myeloid leukemias, five blastic myelodysplastic syndromes [MDS], two chemotherapy-related secondary leukemias, and one blastic chronic myelogenous leukemia [CML]), including seven who had failed to respond to prior bone marrow transplantation (BMT), received from 50 mCi/m2 to 210 mCi/m2 of 131I-M195 in divided doses.RESULTS:In 22 patients, whole-body gamma-imaging demonstrated marked uptake of antibody into all areas of bone marrow. Twenty-three patients (96%) demonstrated decreases in peripheral-blood cell counts, with decreased percentage of bone marrow blasts seen in 83% of cases. Eighty-nine percent of bone marrow biopsies examined quantitatively demonstrated substantial decreases in the number of blasts, with greater than 99% of blasts killed in some patients. The two cases that failed to demonstrate leukemic cytoreduction occurred in the first two dose levels. For 131I doses of 135 mCi/m2 or greater, pancytopenia was profound and lasted for at least 12 days. Eight patients had sufficient marrow cytoreduction to proceed to BMT. Three of these achieved marrow remission, one of 6+, and one of 9 months' duration. Two patients in blastic phase temporarily reverted to their original myelodysplastic states. Thirty-seven percent of assessable patients developed human anti-mouse antibody (HAMA). In two patients with HAMA who were re-treated, plasma 131I-M195 levels could not be maintained and no therapeutic effect resulted. Significant nonhematologic toxicity (hepatic) was seen in one patient and the maximum-tolerated dose (MTD) was not reached.CONCLUSION:These data suggest that safe leukemic cytoreduction can be achieved with 131I-M195 even in multiply relapsed or chemotherapy-refractory leukemias. This agent may be useful as part of a preparative regimen for BMT.
Monoclonal antibody (mAb) M195 is a mouse IgG2a reactive with myeloid progenitors and leukemic myeloblasts. M195 is rapidly internalized by target cells, but is not cytotoxic in vitro. Ten patients with myeloid leukemias were treated in a phase I dose-escalation dosimetry trial (1) to evaluate toxicity, therapeutic effects, pharmacology, biodistribution and uptake of trace-labeled I-131-M195 onto leukemia cells in vivo. Rapid absorption of M195 onto targets was demonstrated by pharmacology, whole body gamma camera imaging, flow cytometry and bone marrow biopsy. Bound M195 was rapidly modulated with internalization of I-131 into target cells. No leukemia responses were seen. The efficient, rapid delivery and internalization of isotope suggests that therapeutic amounts of radioactive isotope can be specifically delivered to leukemic blasts in vivo. A therapeutic trial using escalating doses of I-131 is now underway with marked leukemia cytoreduction being observed. Similar efforts are being directed at the therapy of non-Hodgkin's lymphoma (NHL). Thirty two patients with NHL have been infused with I-131-OKB7, a murine IgG2b which is reactive with CR2, the Epstein-Barr virus (EBV) receptor, found on most NHL. The first eighteen patients were studied in a trace labeled OKB7 dose-escalation phase I dosimetry trial (2). Pharmacokinetics, dosimetry, radiolocalization and biopsy data showed that the percentage of the injected dose of OKB7 taken up per gram of lymphoma was independent of mAb dose and varied inversely with tumor burden. No toxicity or tumor responses were seen. Based on these data, fourteen patients have now been treated with therapeutic intent with escalating doses of I-131-OKB7 (90-200 mCi). Dose-related tumor responses have been seen in 9 patients to date with minimal toxicity. Dose escalation will continue until maximum tolerated dose (MTD) is reached.
Ten patients with myeloid leukemias were treated in a phase I trial with escalating doses of mouse monoclonal antibody (mAb) M195, reactive with CD33, a glycoprotein found on myeloid leukemia blasts and early hematopoietic progenitor cells but not on normal stem cells. M195 was trace-labeled with iodine-131 (131I) to allow detailed pharmacokinetic and dosimetric studies by serial sampling of blood and bone marrow and whole-body gamma-camera imaging. Total doses up to 76 mg were administered safely without immediate adverse effects. Absorption of M195 onto targets in vivo was demonstrated by biopsy, pharmacology, flow cytometry, and imaging; saturation of available sites occurred at doses greater than or equal to 5 mg/m2. The entire bone marrow was specifically and clearly imaged beginning within hours after injection; optimal imaging occurred at the lowest dose. Bone marrow biopsies demonstrated significant dose-related uptake of M195 as early as 1 hour after infusion in all patients, with the majority of the dose found in the marrow. Tumor regressions were not observed. An estimated 0.33 to 1.0 rad/mCi 131I was delivered to the whole body, 1.1 to 6.1 rad/mCi was delivered to the plasma, and up to 34 rad/mCi was delivered to the red marrow compartment. 131I-M195 was rapidly modulated, with a majority of the bound immunoglobulin G (IgG) being internalized into target cells in vivo. These data indicate that whole bone marrow ablative doses of 131I-M195 can be expected. The rapid, specific, and quantitative delivery to the bone marrow and the efficient internalization of M195 into target cells in vivo also suggest that the delivery of other isotopes such as auger or alpha emitters, toxins, or other biologically important molecules into either leukemia cells or normal hematopoietic progenitor cells may be feasible.
Fifty-seven adult patients with acute promyelocytic leukemia (APL) were treated between 1974 and 1984 with daunorubicin (DNR) or 4-(9-acridinylamino)methanesulfan-m-anisidide (AMSA) in combination with arabinosylcytosine (Ara-C) and 6-thioguanine (TG); they also received prophylactic heparin. Forty-one patients (72%) achieved complete remission (CR), including 11 of 12 patients who received the AMSA-containing regimen. The incidence of early fatal hemorrhage was 14%, lower than that of earlier studies or other published reports. Elevated WBC and serum lactate dehydrogenase levels at diagnosis were associated with an increased incidence of life-threatening hemorrhage and shorter remission duration. Advanced age was an unfavorable prognostic factor for male patients. Both DNR and AMSA in combination protocols are effective treatments for APL. The incidence of CR is similar to that achieved in other types of acute nonlymphoblastic leukemia (ANLL) with the same protocols, but the median duration of remission is significantly longer in APL (24 v 9 months) and the percentage of remissions longer than 60 months is also higher in APL (35% v 5%).
We conducted a Phase I-II trial of 4-demethoxydaunorubicin (idarubicin, IDR) in combination with 1-beta-D-arabinofuranosylcytosine (ara-C) in 51 patients with relapsed or refractory acute nonlymphocytic leukemia, acute lymphocytic leukemia, or chronic myelogenous leukemia in blast crisis. Only 1 of 12 patients treated at the first dose level (idarubicin, 10 mg/m2/day for 3 days and ara-C, 25 mg/m2 i.v. bolus followed by 200 mg/m2 continuous infusion daily for 5 days) achieved aplasia and complete remission. The dose of idarubicin was subsequently increased to 10 mg/m2/day for 4 days with the ara-C dose held constant. Complete remission incidence for this dose schedule was: 7 of 31 patients with acute nonlymphocytic leukemia, 0 of 5 patients with acute lymphocytic leukemia, 0 of 1 patient with chronic myelogenous leukemia in blast crisis, and 1 of 2 patients with biphenotypic leukemia. Nonhematological toxicity included nausea, vomiting, mucositis, and abnormal liver function tests. Detailed pharmacological studies were performed to determine whether ara-C altered IDR metabolism or that of its main metabolite, 13-hydroxyidarubicinol or IDR clearance. A high degree of variability among patients was apparent and no consistent effect could be demonstrated. In summary, 9 of 37 patients (24%) with relapsed or refractory ANLL, including 1 patient with biphenotypic leukemia, achieved remission. We conclude that idarubicin in combination with ara-C is an active combination in patients with relapsed or refractory leukemia.
Recent results in adults with acute lymphoblastic leukemia (ALL) have been encouraging, generally showing half the patients surviving 3 years or more (1, 2) and 5 year relapse free survival ranging from 25–50% in large series (1–3). Conversely, half the patients with ALL will die of their disease or complications associated with their disease or the intensive treatment. Obviously in the patients who die, residual leukemic disease may have persisted, even during their periods of morphologic, biochemical and immunological remission. If our current technological achievements were able to permit detection of minimal residual leukemia, then further refined chemotherapy and/or immunotherapeutic regimens could be administered selectively in hopes of improving the prognosis of those patients who may die within the first five years.
We performed cytogenetic analyses using banding techniques on 89 adults with acute nonlymphoblastic leukemia prior to receiving protocol chemotherapy. The relationships of cytogenetic findings both to outcome and to other pretreatment variables (particularly the presence or absence of Auer rods) were analyzed. Patients were followed up to 90+ months. When patients were grouped according to cytogenetic findings (NN: all normal metaphases; AA: all abnormal metaphases; AN: both normal and abnormal metaphases; F: no evaluable metaphases; I: insufficient (less than three) metaphases) no significant differences were noted with regard to age, sex, terminal transferase positivity, complete remission rate, remission duration or survival. The marrow aspirates of patients with only normal (69%) metaphases or no evaluable metaphases (64%) were more likely to display Auer rods than specimens from individuals with only abnormal (26%) or a mixture of normal and abnormal (42%) metaphases (p = 0.03). The presence of Auer rods in the pretreatment marrow aspirate was associated with an increased complete remission rate (71% vs 41%, p = 0.004), median remission duration (12 months vs 9 months, p = 0.02), and median survival (13 months vs 4 months, p = 0.01). Using multivariable analyses, the presence or absence of Auer rods was the pretreatment factor that most significantly predicted response and survival in this group of patients. The presence of a normal karyotype in the initial cytogenetic preparation is associated with the presence of Auer rods. The finding of Auer rods in the initial bone marrow predicts greater response and longer survival in acute nonlymphoblastic leukemia.
Article Tools Article Tools OPTIONS & TOOLS Export Citation Track Citation Add To Favorites Rights & Permissions COMPANION ARTICLES No companion articles ARTICLE CITATION DOI: 10.1200/JCO.1985.3.9.1287 Journal of Clinical Oncology - published online before print September 22, 2016 PMID: 3861776 Acute leukemia following testicular carcinoma. P KerbratxP KerbratSearch for articles by this author , P Y Le PrisexP Y Le PriseSearch for articles by this author https://doi.org/10.1200/JCO.1985.3.9.1287 PDF "Acute leukemia following testicular carcinoma.." Journal of Clinical Oncology, 3(9), p. 1287© 1985 by American Society of Clinical Oncology
Twenty-three of 26 patients with hairy cell leukemia evaluable for response to splenectomy had significant improvement in anemia, thrombocytopenia, and/or neutropenia. Eight of the 23 had a recurrence of cytopenia after a median response duration of 4 to 5 months (range, 1-22). The remaining 15 patients did not have a recurrence of cytopenia at 20 months median follow-up (range, 1-76). Six patients with postsplenectomy cytopenia were given androgenic steroids. Two of the six had an improvement in anemia and thrombocytopenia, and a third patient had an improvement in neutropenia. It was concluded that, although most patients with hairy cell leukemia have initial improvement in cytopenia with splenectomy, a significant number of them either fail to respond or have recurrent cytopenia after initial response to splenectomy. A trial of androgenic steroids is a reasonable therapeutic option in these patients. Alternative therapies are reviewed and recommendations made.
The aim of this study was to compare the results of flow cytometric (FCM) determination of heavy and light chain cytoplasmic immunoglobulin (cIg) with those obtained by the peroxidase-antiperoxidase (PAP) method. Fifty-one patients, including five non-T-acute lymphoblastic leukemias, 16 B-chronic lymphocytic leukemias (CLL), 13 non-Hodgkin's lymphomas, seven hairy cell leukemias, four multiple myeloma/plasma cell leukemias, and six T-cell leukemia/lymphomas, as well as 12 normal controls, were studied. Saponin-permeabilized cell suspensions were indirectly stained with monoclonal antibodies and analyzed by flow cytometry. Acetone-fixed cytocentrifuge smears were stained for cIg by the PAP method. The results obtained indicate that: (a) detection of cIg by FCM is a feasible and useful technique to confirm the B-cell lineage of leukemias and lymphomas, particularly those characterized by low-density surface immunoglobulin, such as CLL; and (b) cIg detection by FCM and PAP staining are complementary methods to recognize with certainty the monoclonality of B-cell malignancies.
Fifty-two adults treated previously with either acute leukemia (43 patients) or blastic-phase chronic myelogenous leukemia (nine patients) received 4-demethoxydaunorubicin (20 to 45 mg/sq m) i.v. over 2 to 3 days. Three of the ten patients with acute lymphocytic leukemia achieved a complete remission (CR) lasting 5 to 7 weeks. Five of the 28 patients with acute nonlymphocytic leukemia achieved a CR lasting 5 to 80 weeks. All remissions were induced with one course of treatment with a median time to CR of 28 days (range, 22 to 40 days). None of the patients with blastic chronic myelogenous leukemia or secondary leukemia achieved a CR. The drug was well tolerated; mucositis (36%), nausea and vomiting (35%), and hepatic dysfunction (26%) were the most common side effects. Pharmacokinetic observations on five patients demonstrated multiphasic clearance of 4-demethoxydaunorubicin and extensive formation and prolonged retention of 4-demethoxy-13-hydroxydaunorubicin; that metabolite accumulated in plasma on repeated daily dosing. 4-Demethoxydaunorubicin has sufficient antileukemic activity in both acute lymphocytic leukemia and acute nonlymphocytic leukemia to warrant a prospective comparison, in combination regimens, against the conventional anthracyclines, daunorubicin and/or doxorubicin.
We investigated the incidence of leukemia occurring subsequent to the treatment of germ cell tumors in men at our institution over a 30-year interval and found four patients with acute nonlymphocytic leukemia (ANLL) and one patient with chronic myelomonocytic leukemia. The relative risk (observed/expected cases) estimates for the development of leukemia ranged from 13.7 (P = .0005) in the total population to 50.1 (P = .0001) in the group treated with cytotoxic agents alone. All three patients with ANLL treated with contemporary antileukemic therapy had complete responses, with survivals of 7, 29, and 133 + months. In a review of the literature, 14 additional cases of germ cell tumors were found in which the men subsequently developed leukemia. It is concluded that leukemia following germ cell tumors is increased in incidence and is likely to be treatment induced. Complete responses and long-term survival are possible in secondary leukemia and aggressive antileukemic therapy should be given.
Article Tools Article Tools OPTIONS & TOOLS Export Citation Track Citation Add To Favorites Rights & Permissions COMPANION ARTICLES No companion articles ARTICLE CITATION DOI: 10.1200/JCO.1983.1.8.513 Journal of Clinical Oncology - published online before print September 21, 2016 PMID: 6583323 Patients with secondary acute myelocytic leukemia (AML) receiving "timed" sequential chemotherapy. Z A ArlinxZ A ArlinSearch for articles by this author , S J KempinxS J KempinSearch for articles by this author , R MertelsmannxR MertelsmannSearch for articles by this author , T S GeexT S GeeSearch for articles by this author , B ClarksonxB ClarksonSearch for articles by this author https://doi.org/10.1200/JCO.1983.1.8.513 PDF "Patients with secondary acute myelocytic leukemia (AML) receiving "timed" sequential chemotherapy.." Journal of Clinical Oncology, 1(8), p. 513© 1983 by American Society of Clinical Oncology
Two successive protocols (L-10 and L-10M) employing multidrug induction therapy with vincristine, prednisone, and doxorubicin (Adriamycin) plus an intensive consolidation phase and maintenance program have led to a significant improvement in the prognosis of adult acute lymphoblastic leukemia (ALL). The complete remission (CR) rates for the 34 patients entered on the L-10 protocol and the 38 patients entered on the L-10M protocol were 85% and 84%, respectively. The median duration of remission has not yet been reached for either the L-10 (median follow-up, 5.5 years; range, 3.5-7.5 years) or the L-10M protocol (median follow-up, 2.5 years; range, 1-3.5 years). The median survival time has not yet been reached for the L-10M protocol. Central nervous system prophylaxis with intrathecal methotrexate alone was effective in preventing central nervous system relapse. An analysis of possible prognostic factors indicated that patients less than 25 years of age had a higher CR rate than older patients (p = 0.02). Patients with an initial leukocyte count below 15,000/microL experienced longer remissions than patients with a leukocyte count above 15,000/microL (p = 0.008), and patients who achieved CR within the first month of therapy were in remission longer than those requiring a longer time to achieve CR (p = 0.04). Patients with T cell ALL did not have a poorer prognosis than other patients treated on these protocols. The L-10 and L-10M protocols were well tolerated with minimal morbidity.
Twenty-four adults with ALL were treated with AMSA alone or in combination. Twenty-two were treated at time of relapse and two patients after failing primary induction therapy. All had been treated with anthracyclines prior to receiving AMSA. Of the 22 patients with ALL in relapse, 4 achieved a complete remission. Two of these patients have relapsed while receiving maintenance chemotherapy; one died 1 mo after achieving remission due to the occurrence of cholycystitis in the setting of pancytopenia and one patient underwent bone marrow transplantation and is in remission at 8 mo after the second remission. Both patients who failed primary induction therapy remain in remission at 11 and 36 mo, respectively. The use of AMSA should be considered for patients with ALL who fail primary induction as well as those whose leukemia becomes resistant to conventional agents.
Seventy-nine adult patients with acute nonlymphoblastic leukemia (ANLL) were treated on the L-6 protocol at Memorial Sloan-Kettering Cancer Center between May 1970 and January 1974. Forty-two patients achieved a complete remission (CR) and nine of these are still disease free, with a minimum of seven years of follow-up. An extensive statistical analysis has been carried out on a large number of pretreatment and treatment characteristics to identify factors related to CR and remission duration. Multivariate regression techniques yielded as favorable characteristics associated with CR, in order of importance: young age at diagnosis, the presence of Auer rods at diagnosis, and treatment with Pseudomonas vaccine. A regression model for remission duration identified as favorable prognostic factors for long-term remission: at most two courses of induction therapy, an intermediate age range, and a low platelet count at diagnosis.