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Response to 2-chlorodeoxyadenosine in patients with B-cell chronic lymphocytic leukemia resistant to fludarabine.

BACKGROUND: Patients with untreated B-cell chronic lymphocytic leukemia have a high rate of complete remission when given the halogenated nucleoside analogue fludarabine. However, patients in whom the disease has proved refractory to primary treatment have a reduced life expectancy and a dismal outcome. METHODS: We treated four consecutive patients who had unsatisfactory responses to second-line or subsequent treatment with fludarabine with another halogenated nucleoside analogue, 2-chlorodeoxyadenosine. RESULTS: One patient with progressing lymphocytosis, anemia, and thrombocytopenia despite 10 courses of fludarabine entered a complete remission when treated with 2-chlorodeoxyadenosine. Two patients who had less-than-partial remissions after six courses of fludarabine had good partial remissions when treated with 2-chlorodeoxyadenosine. One patient with Coombs-positive hemolytic anemia who had no response to three courses of fludarabine had a partial remission, with resolution of hypogammaglobulinemia, when treated with 2-chlorodeoxyadenosine. CONCLUSIONS: There was no evidence of cross-resistance between fludarabine and 2-chlorodeoxyadenosine despite their similar structures. 2-Chlorodeoxyadenosine may induce a complete remission in chronic lymphocytic leukemia that is highly resistant to chemotherapy, and it deserves wider clinical evaluation in patients with this condition.

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Oral antilymphocyte activity and induction of apoptosis by 2-chloro-2'-arabino-fluoro-2'-deoxyadenosine.

2-Chlorodeoxyadenosine (CdA) is active in chronic lymphocytic leukemia, hairy-cell leukemia, and low-grade lymphomas. In part, this spectrum of activity may be attributable to the selective toxicity of CdA to nondividing lymphocytes and monocytes. However, CdA is unstable at acidic pH and is degraded by bacterial nucleoside phosphorylases. The present experiments demonstrate that the 2'-arabino-fluoro derivative of CdA, designated CAFdA, is also directly toxic to quiescent lymphocytes and macrophages. Unlike CdA, CAFdA was stable at pH 2 and resisted degradation by Escherichia coli nucleoside phosphorylase. Cell killing was preceded by the formation of DNA strand breaks and could be prevented by supplementation of the medium with deoxycytidine. The initial DNA damage initiated the pattern of oligonucleosomal DNA fragmentation characteristic of apoptosis. Mutant lymphoblasts, deficient in deoxycytidine kinase, with elevated cytoplasmic 5'-nucleotidase, or with expanded deoxynucleotide pools secondary to increased ribonucleotide reductase activity, were cross-resistant to both CAFdA and CdA toxicity. One-week oral treatment with CAFdA (1 mg/ml in drinking water) achieved an average plasma concentration of 0.56 microM and eliminated 90% of chronic lymphocytic leukemia cells transplanted into severe combined immunodeficiency (scid) mice. Under the same conditions, CdA was much less active. Collectively, these results suggest that CAFdA could be effective as an oral agent in indolent lymphoproliferative diseases and in autoimmune diseases where lymphocyte and monocyte depletion is desirable.

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Inhibition of colon tumor cell growth by 8-chloro-cAMP is dependent upon its conversion to 8-chloro-adenosine.

Recent interest in site-selective cAMP analogs has focused on the role of 8-chloro-adenosine (8-Cl-adenosine) in the inhibition of tumor cell growth by 8-chloro-cAMP (8-Cl-cAMP) (Van Lookeren Campagne, et al. Cancer Res 1991; 51: 1600-5). We have evaluated 8-Cl-cAMP and 8-Cl-adenosine for their growth inhibitory activity against two human colon adenocarcinoma cell lines, HCT116 and FET. Because these cell lines have been adapted to grow in chemically defined medium we were able to evaluate the effect of serum on 8-Cl-cAMP's growth inhibitory activity. In addition, cells grown in serum-free medium were tested for their sensitivity to 8-Cl-cAMP, serum-activated 8-Cl-cAMP and 8-Cl-adenosine. IC50 values, determined by measuring cell growth using a MTT colorimetric assay, showed that 'serum activation' of 8-Cl-cAMP was required to achieve inhibition of HCT116 (IC50 = 1.3 +/- 0.1 microM) and FET (IC50 = 2.0 +/- 0.1 microM) cell growth. IC50 values were not reached at the highest concentrations tested (IC50 > 500 microM) in the absence of serum, permitting us to conclude that 8-Cl-cAMP does not have growth inhibitory activity between 1.0 and 500 microM doses. HCT116 and FET cells grown in media containing serum and in the presence of 8-Cl-adenosine had IC50 values of 0.6 +/- 0.1 and 0.9 +/- 0.2 microM, respectively. HCT116 and FET cells grown in chemically defined medium containing 8-Cl-adenosine exhibited IC50 values of 1.0 +/- 0.1 and 3.1 microM, respectively.(ABSTRACT TRUNCATED AT 250 WORDS)

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2-Chlorodeoxyadenosine produces a high rate of complete hematologic remission in relapsed acute myeloid leukemia.

PURPOSE: The purine analog 2-chlorodeoxyadenosine (2-CDA) was well tolerated and showed promising anti-leukemic activity in a phase I trial conducted at St Jude Children's Research Hospital. To substantiate and extend this result, we performed a phase II trial in a representative group of children and young adults with relapsed acute leukemia. PATIENTS AND METHODS: Twenty-four patients (median age, 11 years) with acute myeloid or lymphoid leukemia in first or later relapse (acute myeloid leukemia [AML], 17; acute lymphoid leukemia [ALL], seven) were given continuous infusion 2-CDA for 5 days at 8.9 mg/m2/d. Patients with residual blast cells 10 days after treatment received a second course of 2-CDA that was identical to the first. Detailed pharmacokinetic studies were performed on plasma collected from five patients. RESULTS: Eight (47%) of the 17 patients with AML had complete hematologic remissions (four after the initial course of 2-CDA), and two (12%) had partial remissions, for a total response rate of 59%. Only one child with ALL achieved remission. Seven of the responding patients underwent allogeneic or autologous bone marrow transplantation, with six remaining free of leukemia for a median of 7 months (range, 1 to 11 months). The major form of drug-induced toxicity was hematologic, with severe neutropenia and thrombocytopenia (National Cancer Institute [NCI] grade 3 or 4) developing in 34 of the 36 courses of 2-CDA. In responding patients, the median times to recovery of neutrophil counts greater than 0.5 x 10(9)/L and platelet counts greater than 50 x 10(9)/L were 18 and 21 days, respectively. There were no deaths due to toxicity. The mean steady-state plasma concentration of 2-CDA was 34.6 nmol/L (range, 20 to 54 nmol/L). CONCLUSION: 2-CDA given by prolonged continuous infusion has clinically significant activity against AML and merits further testing in multidrug regimens for this disease.

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2-Chlorodeoxyadenosine treatment of low-grade lymphomas.

PURPOSE: Because of the need to identify effective new agents in the treatment of non-Hodgkin's lymphoma and because of the high activity of the purine analog 2-chlorodeoxyadenosine (2-CdA) against chronic lymphocytic leukemia and hairy cell leukemia, a phase II trial of 2-CdA was initiated in patients with low-grade lymphocytic lymphomas. PATIENTS AND METHODS: Forty patients with low-grade lymphocytic lymphomas including diffuse small lymphocytic, follicular small-cleaved, and follicular mixed histologies were enrolled onto the study. Conventional therapies had failed in all patients, and six patients had lymph node biopsies showing evidence of histologic evolution to a higher-grade lymphoma. A total of 107 courses of 2-CdA were administered. There were 27 males and 13 females. The median age was 59 years (range, 37 to 80 years). Patients had received a median of three prior therapies (range, one to six therapies). RESULTS: An overall response rate of 43% was achieved, with eight patients experiencing complete responses (CRs) and nine patients experiencing partial responses (PRs). The duration of responses ranged from 1 to greater than 33 months without maintenance therapy (median duration of response, 5 months). Histology and prior therapy history did not seem to correlate with responses. Significant toxicity was limited to bone marrow suppression; 18% of patients developed neutropenia, and 30% developed thrombocytopenia. CONCLUSIONS: This phase II trial demonstrates that 2-CdA is an effective antilymphocyte, antineoplastic agent with significant activity as a single agent in patients with recurrent or refractory low-grade lymphocytic lymphoma. Responses were achieved with an acceptable toxicity profile. Further trials of this agent in previously untreated patients and in combination regimens are indicated and will be developed.

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Treatment of hairy cell leukemia with 2-chlorodeoxyadenosine (2-CdA).

We administered one course of 2-chlorodeoxyadenosine (2CdA) at 4 mg/m2 daily for 7 days by continuous intravenous infusion to 46 patients with hairy cell leukemia. Complete remissions occurred in 36 patients (78%; 95% confidence limits, 63% to 89%), partial remissions in five (11%), and a minor response in one. One patient died of candida sepsis 3 weeks after beginning treatment and three patients were clearly resistant to therapy. These three either had morphologically atypical hairy cells, less than 20% of which expressed Ig light chain on the cell surface, or had failed prior treatment with deoxycoformycin and interferon-alpha. At a median of 37 weeks since discontinuation of therapy, recurrent thrombocytopenia has developed in one patient, whose marrow remains normal, while a bone marrow relapse has occurred in another patient, whose blood counts remain normal. Treatment produced a greater than 50% decrease in neutrophil count in 26 patients, which lasted 3 to 4 weeks and was associated with an increased incidence of febrile episodes. These episodes occurred in 21 patients but were associated with documented infection in only four patients. Decreases in the number of CD4+ lymphocytes appeared to occur regularly after treatment and have persisted for a median of 18 weeks without obvious clinical significance. Although years of follow-up will be needed, our results confirm Piro et al's observation (N Engl J Med 322: 1117, 1990) that 2CdA appears to be highly effective in the treatment of hairy cell leukemia.

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Rapid recovery from cytopenia in hairy cell leukemia after treatment with 2-chloro-2'-deoxyadenosine (CdA): relation to opportunistic infections.

Sixteen patients with symptomatic hairy cell leukemia were treated with a single course of 2-chloro-2'-deoxyadenosine (CdA), 0.7 mg/kg total dose. Twelve patients achieved complete remission (CR). One patient with a CD19+/CD5+/CD25- phenotype and one with a pentostatin-treated CD19+/CD25- variant form had minor responses. Two patients with advanced disease and poor performance status died early from invasive mycosis. Three patients recovered from infections caused by cytomegalovirus and by candida. No patient had infections caused by bacteria or by unknown organisms. The median time to full recovery from anemia and thrombocytopenia was 6 and 2 weeks from start of therapy, respectively. Patients with infections, however, recovered at 13 and 5 weeks, respectively. Neutrophil, monocyte, and lymphocyte counts returned to normal at a median of 5, 5, and 10 weeks, respectively. Infections developed more frequently in pancytopenic patients than in those with one or more blood cell count within the normal range (P less than .01). All patients with one or no previous therapy had a CR, whereas those with more than one previous regimen had a lower CR rate (P less than .01). Thus, 1 week of CdA therapy frequently induced CR also in patients resistant to interferon. Toxicity was limited, and recovery from cytopenia was faster than what is reported during interferon therapy.

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[Alpha interferon treatment in hairy cell leukemia].

Since 1984 alpha-interferon (alpha IFN) has been the treatment of choice in cases of hairy-cell leukaemia. However, eight years' experience shows that, although a large majority of the patients are improved, they are not cured. Thus, a new type of cytostatic drug, perhaps capable of cure as well, may replace alpha-IFN for the treatment of hairy-cell leukaemia in the future.

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The treatment of hairy cell leukemia: an update.

The treatment of hairy cell leukemia (HCL) requires continuing update. The role for splenectomy is extremely limited. Alfa-interferon therapy has been available and utilized for five years; there have been few complete remissions. The experience with Pentostatin has resulted in a majority of clinical complete remissions after several months of therapy, but persistence of a small percentage of hairy cells in the bone marrow. The most recent therapeutic agent, 2-chloro-deoxyadenosine (2-CDA) is given for seven days and results in a complete remission in the great majority of patients with no evidence of persistent bone marrow disease. If this trend persists, 2-CDA will become first line therapy for HCL as it may cure the disease.

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2-Chlorodeoxyadenosine: an active agent in the treatment of cutaneous T-cell lymphoma.

Cutaneous T-cell lymphomas are disfiguring malignant lymphoproliferative disorders for which standard therapy has been principally palliative. 2-Chlorodeoxyadenosine (2-CdA), a new purine analogue resistant to degradation by adenosine deaminase that has substantial activity against lymphoid neoplasms, was administered to 16 patients with cutaneous involvement by T-cell lymphoma. All patients had failed topical treatment modalities and/or systemic therapies. Fifteen patients were evaluable; one patient was not evaluable due to incomplete therapy and follow-up. The overall response rate was 47%. Three of 15 patients (20%) achieved complete responses and four of 15 patients (27%) achieved partial responses. The median duration of response was 5 months. One patient remains in unmaintained complete remission at 52+ months. Therapy was well tolerated. Myelosuppression was the principal toxicity encountered, occurring in 8 of 15 (53%) patients. 2-CdA is an effective new agent for the treatment of cutaneous T-cell lymphoma and warrants further study both as a single agent and in combination regimens.

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Current strategies for treatment of acute myeloid leukemia at St Jude Children's Research Hospital.

We examined the feasibility of maintaining specific plasma concentrations of ara-C and VP-16 in children with AML. Sixty-one children were treated with 6 sequential cycles of intensive chemotherapy consisting of: (1) cytarabine (ara-C)/VP-16, (2) ara-C/daunorubicin (Dauno), (3) VP-16/amsacrine (m-AMSA), (4) VP-16/5-azacytidine (5-Az), (5) ara-C/Dauno, and (6) ara-C/VP-16. Fifty-nine children had de novo AML, and 2 had a previous myelodysplastic syndrome. The number of patients with each specific FAB subtype was: M0-1; M1-7; M2-24; M3-7; M4-5; M5-11; and M7-6. Simultaneous continuous infusions of ara-C and VP-16 (cycle 1) given at individualized doses to achieve drug plasma concentrations of 1 microM and 30 microM, respectively, produced complete remission (CR) in 26 of 61 patients (43%); an additional 17 patients entered CR after Dauno/ara-C (cycle 2), and one patient required 4 cycles of chemotherapy to achieve CR (total CR rate = 72%). The preliminary 2-year event-free survival (EFS) for patients with FAB-M1 and -M2 AML was only 15% versus 40% for those with FAB-M4 and -M5 AML. Overall, 21 of the 61 patients remain in CR (2-yr EFS = 29%). We conclude that intense treatment with ara-C and VP-16 at doses individualized to achieve target plasma concentrations is feasible although severely myelosuppressive. It results in an acceptable CR rate, but does not improve EFS.(ABSTRACT TRUNCATED AT 250 WORDS)

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Effects of insulin and a tumour promoter, TPA, on glucose transport and metabolism in retinal pigmented epithelium in vitro.

We have studied the effects of insulin, adenosine and 12-O-tetradecanoylphorbol-13-acetate (TPA) on glucose metabolism of the retinal pigmented epithelial (RPE) cells in vitro. Insulin stimulates glucose transport, glucose oxidation and lipogenesis in RPE cells. TPA at low concentrations of insulin increases the rates of glucose transport and glucose oxidation. Depletion of adenosine in RPE cells by adenosine deaminase increases the rate of both glucose transport and 14CO2 formation and improves insulin-sensitivity of both processes. The effects of TPA on RPE cells cannot be explained by the activation of protein kinase C. An alternative possibility is that the effects of TPA on insulin-stimulated glucose disposal in RPE cells is mediated by a change in adenosine concentration and/or the affinity/number of its receptors.

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