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R P Warrell

Publications and source records attributed to R P Warrell.

At least 37 records · Page 2Linked to original sources

Comparative activity of melarsoprol and arsenic trioxide in chronic B-cell leukemia lines.

Inorganic arsenic trioxide (As2O3) was recently shown to induce apoptosis in NB4 promyelocytic leukemic cells. We have investigated the effects of the organic arsenical, melarsoprol (a drug used for treatment of trypanosomiasis), upon induction of apoptosis in cell lines representative of chronic B-cell lymphoproliferative disorders. An Epstein-Barr virus (EBV)-transformed B-prolymphocytic cell line (JVM-2), an EBV-transformed B-cell chronic lymphocytic leukemia (B-CLL) cell line (I83CLL), and one non-EBV-transformed B-CLL cell line (WSU-CLL) were used as targets. Dose-response experiments with melarsoprol (10(-7) to 10(-9) mol/L) were performed over 96 hours. Unexpectedly, we found that melarsoprol caused a dose- and time-dependent inhibition of survival and growth in all three cell lines. In contrast, As2O3 at similar concentrations had no effect on either viability or growth. After 24 hours, all three cell lines treated with melarsoprol (10(-7) mol/L) exhibited morphologic characteristics of apoptosis. We also observed prominent concentration-dependent downregulation of bcl-2 mRNA after 24 hours of exposure to melarsoprol in WSU-CLL, I83CLL, and JVM-2 cells. Decrease of bcl-2 protein expression was also observed in all three cell lines, whereas As2O3 had no effect on this parameter. We conclude that melarsoprol may inhibit the growth of lymphoid leukemic cell by promoting programmed cell death. Results of these studies suggest that melarsoprol shows promising therapeutic activity in these diseases, and a study to evaluate clinical effects of this drug has been initiated.

Antineoplastic Agents↗

Clinical and molecular aspects of retinoid therapy for acute promyelocytic leukemia.

As a single agent, all-trans RA produces a higher rate of complete remission in APL than any other drug in any other neoplastic disease. The molecular findings in this illness have been exploited to develop a means of detecting and eradicating minimal residual disease. Compared with other forms of acute myeloid leukemia, this subtype is now associated with the highest proportion of patients in extended disease-free first remission who are presumably cured of their disease. APL is a prototype for understanding the pathogenesis of a malignant disease and the development of novel therapies that are targeted to specific molecular abnormalities.

Antineoplastic Agents↗

All-trans retinoic acid significantly increases 5-year survival in patients with acute promyelocytic leukemia: long-term follow-up of the New York study.

All-trans retinoic acid (ATRA) induces a high incidence of complete remission (CR) in patients with acute promyelocytic leukemia (APL); however, the magnitude of this agent's contribution to increased rates of cure of this disease has not yet been established. From 1990 to 1995 we used RA as remission induction therapy in 103 APL patients (73 newly diagnosed and 30 previously treated) who were retinoid-naive and were treated on the basis of initial morphology. Patients whose diagnosis was changed on the basis of the results of molecular testing (n = 13) were withdrawn from RA treatment and given chemotherapy alone. After achieving a CR, previously untreated patients received several cycles of consolidation chemotherapy, usually with idarubicin and cytosine arabinoside. Among individuals whose diagnosis was molecularly confirmed, 54 of 65 new patients (83%) and 25 of 30 previously treated patients (83%) achieved a CR. All induction failures in molecularly diagnosed cases were due either to early death or to premature withdrawal. Median disease-free and overall survival rates recorded for all newly diagnosed patients are currently > 40+ and > 43+ months, respectively. We subsequently examined a subset of 27 newly diagnosed patients treated during the first 2 years of this program whose actual median follow-up period is now > 5 years. Median disease-free and overall survival rates recorded for this group are > 57+ and > 58+ months, respectively; 56% of these patients are alive in first remission. These results significantly exceed those achieved using chemotherapy alone in a historical control group of 80 patients consecutively treated at this center from 1975 to 1990, whose median disease-free and overall survival rates were 11 and 19 months, respectively; only 22% of these patients were alive in first remission at 5 years. Although a high proportion of previously treated patients also achieved a CR after RA treatment, median disease-free and overall survival rates noted for that group were markedly lower (i.e., 7.5 and 10.9 months, respectively). Thus, data from patients whose median follow-up period is now > 5 years have confirmed earlier projections and indicate that the use of RA for remission induction yields an approximately 2.5-fold increase in the proportion of patients who have presumably been cured of this disease.

Adolescent↗

Initial clinical trial of a selective retinoid X receptor ligand, LGD1069.

PURPOSE: The retinoid response is mediated by nuclear receptors, including retinoic acid receptors (RARs) and retinoid "X" receptors (RXRs). All-trans retinoic acid (RA) binds only RARs, while 9-cis RA is an agonist for both RARs and RXRs. Recently, LGD1069 was identified as a highly selective RXR agonist with low affinity for RARs. We undertook a dose-ranging study to examine the safety, clinical tolerance, and pharmacokinetics of LGD1069 in patients with advanced cancer. PATIENTS AND METHODS: Fifty-two patients received. LGD1069 administered orally once daily at doses that ranged from 5 to 500 mg/m2 for 1 to 41 weeks. Treatment proceeded from a starting dose of 5 mg/m2. Pharmacokinetic sampling was performed on selected patients on days 1, 15, and 29. RESULTS: Reversible, asymptomatic increases in liver biochemical tests were the most common dose-limiting adverse effect. Less prominent reactions included leukopenia, hypertriglyceridemia, and hypercalcemia. Characteristic retinoid toxicities, such as cheilitis, headache, and myalgias/arthralgias, were mild or absent. Two patients with cutaneous T-cell lymphoma experienced major antitumor responses. Pharmacokinetic studies obtained in 27 patients at eight dose levels showed that the day 1 area under the plasma concentration-times-time curves (AUCs) were proportional to dose. At all doses studied, the day 1 AUCs were similar to those on days 15 and 29, indicating a lack of induced metabolism. CONCLUSION: LGD1069 is a unique compound that exploits a newly identified pathway of retinoid receptor biology that may be relevant to tumor-cell proliferation and apoptosis. Further investigation of this drug is warranted. Based on the results of this study, a dose of 300 mg/m2 is recommended for single-agent trials.

Adult↗

Metabolic phenotypes of retinoic acid and the risk of lung cancer.

The metabolic activity of cytochrome P-450 enzymes has been associated with an increased risk of developing lung cancer. We found previously that all-trans retinoic acid is catabolized by these oxidative enzymes, and that an inhibitor of this system discriminated between two populations of lung cancer patients. We examined the association between this metabolic phenotype and the risk of lung cancer in 85 subjects. The area under the plasma concentration x time curve (AUC) was calculated after a single oral dose of all-trans retinoic acid (45 mg/m2). The mean AUC for patients who had either squamous or large cell carcinomas was significantly lower than that of patients with adenocarcinomas (P = 0.0001) or control subjects (P = 0.01). Individuals with an AUC < 250 ng x h/ml had a greater likelihood of having squamous or large cell carcinoma (odds ratio = 5.93). This study suggests that the "rapid" catabolism of all-trans retinoic acid is linked to an increased risk of squamous or large cell cancers of the lung.

Adenocarcinoma↗

Probing the pathobiology of response to all-trans retinoic acid in acute promyelocytic leukemia: premature chromosome condensation/fluorescence in situ hybridization analysis.

The response of acute promyelocytic leukemia (APL) peripheral blood and bone marrow cells to trans-retinoic acid (RA) was cytogenetically characterized during RA treatment using the techniques of premature chromosome condensation (PCC) and fluorescence in situ hybridization (FISH). Before treatment, the predominant immature bone marrow cells were found to have t(15;17), whereas the residual mature granulocytes were diploid and lacked evidence of the translocation. In response to RA treatment, an increase in the leukocyte count was noted. The majority of these cells exhibited a t(15;17). Subsequently (eg, between days 6 and 23), 32% to 91% of the maturing myeloid cells still exhibited t(15;17). The appearance of t(15;17) in gradually maturing elements suggests that RA contributed to a release of the maturation block of the leukemic elements. As responding patients obtained complete remission, diploid elements without evidence of the translocation prevailed in the blood and bone marrow. In 16 patients studied after 1 month in complete remission, all but 2 showed all diploid cells. The residual t(15;17) cells disappeared 18 days later in 1 patient, whereas the second patient exhibited clinical evidence of relapse 20 days later. These results suggest that response of patients with APL to RA is associated with maturation, subsequent loss of the mature leukemic elements, and preferential regeneration of normal diploid hematopoietic elements.

Adolescent↗

Acute renal failure associated with the retinoic acid syndrome in acute promyelocytic leukemia.

All-trans-retinoic acid is an effective agent to induce remission in patients with acute promyelocytic leukemia (APL). Unlike conventional chemotherapy, this drug exerts its effect by inducing differentiation of immature leukemic cells. A distinctive clinical syndrome characterized by fever, dyspnea, effusions, weight gain, and organ failure (the "retinoic acid syndrome") can occur during treatment with this drug. Postmortem studies have shown extensive organ infiltration by leukemic cells, and the early administration of corticosteroids can result in prompt resolution of symptoms. We describe a patient with APL in whom acute renal failure developed during treatment with all-trans-retinoic acid. Transient renal enlargement during a period of leukocytosis and a beneficial response to treatment with dexamethasone suggest that renal failure in this patient was probably related to the retinoic acid syndrome.

Acute Kidney Injury↗

Pathogenesis and management of acute promyelocytic leukemia.

Acute promyelocytic leukemia, formerly a highly lethal disease, was recently shown to be highly responsive to treatment with the natural retinoid, all-trans retinoic acid. This compound induces terminal differentiation of the malignant cells and produces complete remission in most patients with this disease. The clinical response is due in part to the presence of a chromosomal break that occurs in a gene that encodes a nuclear retinoic acid receptor.

Chromosome Aberrations↗

Initial clinical trial of the retinoid receptor pan agonist 9-cis retinoic acid.

The retinoid response is mediated by families of nuclear receptors, the retinoic acid receptors (RARs), and the retinoid X receptors. All-trans retinoic acid (RA) binds only RARs and induces its own metabolism. In contrast, 9-cis RA is a newly identified agonist for both RARs and retinoid X receptors. We undertook a dose-ranging study to examine the safety, clinical tolerance, and pharmacokinetics of 9-cis RA in patients with advanced cancer. Thirty-four patients received once daily p.o. doses of 9-cis RA (administered as LGD1057) ranging from 5 to 230 mg/m2 for 4 weeks. Pharmacokinetic studies were performed on 28 patients at seven dose levels. 9-cis RA was generally well tolerated. Headache was the most common dose-limiting adverse effect. Other prominent reactions included facial flushing, myalgia, dyspnea, hypertriglyceridemia, and hypercalcemia. Relative to other retinoids, mucocutaneous reactions were mild. No major antitumor responses were observed. Pharmacokinetic analysis revealed that the day 1 area under the plasma concentration x time curves (AUCs) were proportional to the dose. Up through doses of 140 mg/m2, the day 1 AUCs were similar to those on days 15 and 29. At higher doses, however, AUCs tended to decline with repeat dosing. 9-cis RA is a novel compound that exploits a newly identified pathway of retinoid receptor biology that may be relevant to tumor cell proliferation and differentiation. We recommend a dose of 140 mg/m2 for single-agent trials utilizing a once-daily schedule of administration.

Adult↗

Radiolabeled anti-CD33 monoclonal antibody M195 for myeloid leukemias.

M195, a mouse monoclonal antibody reactive with the early myeloid antigen CD33, has been shown to target leukemia cells in patients and to reduce large leukemic burdens when labeled with 131I. A complementarity-determining region-grafted, humanized version (HuM195) has demonstrated similar targeting of leukemia cells without immunogenicity. We have studied two applications of therapy with 131I-M195. First, to intensify therapy prior to bone marrow transplantation (BMT), we combined 131I-M195 with busulfan and cyclophosphamide. Fifteen patients received first BMT for relapsed or refractory acute myelogenous leukemia or accelerated or blastic chronic myelogenous leukemia; four received second BMT for relapsed chronic or accelerated chronic myelogenous leukemia. Doses of 131I-M195 ranged from 120 to 230 mCi/m2. Few toxicities could be attributed to 131I-M195 therapy, and all patients engrafted. Eighteen patients achieved complete remission. Among those patients receiving first BMT, three have remained in unmaintained remission for 18+ to 29+ months. Six patients relapsed, including one with isolated central nervous system disease 32 months after BMT. Ten patients died in complete remission of transplant-related complications. Second, we studied whether 131I-M195 could reduce minimal residual disease and prolong remission and survival durations safely in patients with relapsed acute promyelocytic leukemia after they attained remission with all-trans-retinoic acid. Seven patients were treated with either 50 or 70 mCi/m2 131I-M195. Toxicity was limited to myelosuppression. As a measure of minimal residual disease, we monitored PML/RAR-alpha mRNA by reverse transcription PCR. Six patients had positive reverse transcription PCR assays prior to receiving 131I-M195; two converted transiently to negative. Median disease-free survival and overall survival of the seven patients were 8 (range, 3-14.5) months and 28 (range, 5.5-43+) months, respectively. This regimen compares favorably with others for relapsed acute promyelocytic leukemia. In an effort to avoid nonspecific cytotoxicity associated with 131I in future trials for minimal residual disease, we have conjugated short-range, alpha particle-emitting radioisotopes to HuM195 using a bifunctional chelate, 2-(p-isothiocyanatobenzyl)-cyclohexyldiethyl-enetriaminep entaacetic acid, with high efficiency and specific activities. 212Bi-HuM195 has demonstrated dose- and specific activity-dependent killing of HL60 cells in vitro. Injection of 213Bi-HuM195 into healthy BALB/c mice produced no effects on weight or viability.

Adult↗

Rapid diagnosis of acute promyelocytic leukemia by immunohistochemical localization of PML/RAR-alpha protein.

Acute promyelocytic leukemia (APL) is characterized by a consistent chromosomal aberration that fuses the retinoic acid receptor alpha (RAR alpha) gene with the novel gene PML, resulting in the expression of a PML/RAR-alpha fusion protein. Immunohistochemical examination of APL cells shows a unique abnormal distribution of anti-PML and anti-RAR alpha antibody labeling. The PML labeling pattern observed in normal cells consists of 5 to 10 discrete spherical nuclear bodies called PODs (for "PML oncogenic domains"), whereas that of APL consists of a smaller and far more numerous speckled pattern. We examined malignant cells from patients with a variety of hematopoietic cancers by immunohistochemistry (IH) and found this abnormal PML pattern expressed in cells from patients with t(15;17)-associated leukemia but not in patients with other neoplastic disorders. IH results agreed with reverse transcription polymerase chain reaction for PML/RAR-alpha in 31 of 32 patients with acute myelogenous leukemia, including 5 of 5 patients in whom the initial clinical diagnosis of APL was not supported by cytogenetics, molecular tests, or response to all-trans retinoic acid (RA). Cells from patients with APL were examined during the course of retinoid therapy and at the time of complete remission and relapse. Reorganization of the PML labeling into PODs with normal appearance was observed in cells from patients who received RA. IH showed primarily normal PML staining during clinical remission, although the APL-specific labeling pattern was again seen in cells taken from patients at the time of relapse. Thus, IH provides an independent assay for the presence and expression of the molecular rearrangement of APL. The relative ease and speed of detecting the APL-specific PML labeling pattern should make IH a useful diagnostic tool to guide specific therapy of APL, and establish a direct assay for PML/RAR-alpha protein expression and localization in individual patient cells.

Cells, Cultured↗

Clinical and pharmacology study of chloroquinoxaline sulfonamide given on a weekly schedule.

The in vitro human tumor colony-forming assay identified chloroquinoxaline sulfonamide (CQS) as an active agent at human plasma concentrations of > 100 micrograms/ml. In the initial phase I trial of CQS given every 28 days, peak plasma concentrations > 500 micrograms/ml were associated with reversible dose-limiting hypoglycemia and occasional cardiac arrhythmias. Therefore, we evaluated whether a weekly schedule of treatment might minimize the drug-associated toxicity while maintaining potential therapeutic concentrations. CQS was given intravenously over 1 h once per week for 4 weeks to 12 patients, beginning at a dose of 2,000 mg/m2. All patients underwent monitoring for cardiac arrhythmias and hypoglycemia. Plasma drug levels were measured following each dose. Mild hypoglycemia was the most common adverse effect. A median nadir plasma glucose concentration of 56 mg/dl was observed at a weekly dose of 2,500 mg/m2. Two patients experienced cardiac dysrhythmia while on study. Continuous electrocardiographic monitoring failed to identify any significant infusion-related arrhythmia. The median CQS plasma concentration measured 24 h following a 2,000-mg/m2 dose of CQS was > 100 micrograms/ml, and the cumulative area under the concentration x time curve (AUC) determined at concentrations of > or = 100 micrograms/ml was similar to that observed with the every-28-day schedule. The weekly schedule described herein appears to maximize the plasma AUC with an acceptable margin of safety. The recommended phase II dose and schedule for CQS is 2,000 mg/m2 given once per week. Although severe hypoglycemia is unlikely, glucose monitoring is appropriate for 6 h following CQS administration.

Aged↗

Hypercalcaemia and increased serum interleukin-6 levels induced by all-trans retinoic acid in patients with multiple myeloma.

All-trans retinoic acid (ATRA) inhibits human myeloma cell growth in vitro, presumably through the down-regulation of interleukin 6 receptors (IL-6R). Based on these and other studies, we initiated a phase II clinical trial using ATRA in patients with advanced refractory multiple myeloma (MM). We report that three out of six treated patients developed severe hypercalcaemia following administration of ATRA, which was accompanied by a significant rise in serum IL-6 levels. Normal calcium levels were restored after the discontinuation of the drug and the administration of standard anti-hypercalcaemic care. We suspect that down-regulation of IL-6R resulted in increased serum IL-6 levels, leading to advanced bone resorption and hypercalcaemia. We conclude that the use of ATRA in patients with advanced MM is not warranted.

Humans↗

Sequential targeted therapy for relapsed acute promyelocytic leukemia with all-trans retinoic acid and anti-CD33 monoclonal antibody M195.

Acute promyelocytic leukemia (APL) provides a model to examine the sequential use of selective oncogene product-targeted and lineage-targeted agents. All-trans retinoic acid (RA) has been shown to produce brief remissions by a novel differentiating mechanism in most patients with APL. M195, a mouse monoclonal antibody (moAb) reactive with the cell-surface antigen CD33, can target myeloid leukemia cells in patients and reduce large leukemic burdens when labeled with 131I. We studied whether 131I-M195 could safely reduce minimal residual disease and prolong remission and survival durations in patients with relapsed APL after they had attained remission with all-trans RA. Seven patients with relapsed APL in second remission were treated with either 70 (n = 2) or 50 (n = 5) mCi/m2 of 131I-M195. As a measure of minimal residual disease, we serially monitored PML/RAR-alpha mRNA by a reverse transcription polymerase chain reaction (RT-PCR) assay. There was no immediate toxicity. Late toxicity was limited to myelosuppression, but no episodes of febrile neutropenia were seen. Six patients had detectable PML/RAR-alpha mRNA after all-trans RA therapy; two had single negative RT-PCR determinations following 131I-M195. Median disease-free survival of the seven patients was 8 months (range 3-14.5). Four patients with median follow-up of 24 months remain alive, and median overall survival exceeds 21+ months (range 5.5-33+). This regimen based on targeted therapy compares favorably to other approaches for the treatment of relapsed APL, including that used in the immediately preceding trial in which patients were induced into remission and maintained with all-trans RA, as well as other chemotherapy-based regimens. These data support further study of moAb-based therapy for minimal residual disease in acute leukemia.

Adult↗

Early mortality and the retinoic acid syndrome in acute promyelocytic leukemia: impact of leukocytosis, low-dose chemotherapy, PMN/RAR-alpha isoform, and CD13 expression in patients treated with all-trans retinoic acid.

All-trans retinoic acid (RA) has proven a major advance in the treatment of acute promyelocytic leukemia (APL). However, the proper management of patients who present with or develop leukocytosis during remission induction with all-trans RA is not established, nor is there a clear relation between leukocytosis and the development of the retinoic acid syndrome. We reviewed the course of our patients who underwent induction with all-trans RA to identify potential factors that might predict for the development of this syndrome and to identify which patients, if any, might specifically benefit from additional treatment with cytotoxic chemotherapy. Seventy-eight courses of all-trans RA therapy were administered to patients with a molecular diagnosis of APL. Initial and peak leukocyte counts, their rate of rise, leukocyte count criteria developed in Europe, and cell surface marker expression were all analyzed relative to subsequent development of both the RA syndrome as well as all causes of early mortality. The outcome of patients who received specific treatment for retinoid-induced leukocytosis was also examined. No factor was found to consistently predict for the development of the RA syndrome. Although the occurrence of the syndrome was positively associated with the peak value of the peripheral blood leukocyte count (P = .001), neither the initial leukocyte count nor the rate of rise in leukocyte counts on days preceding onset of the syndrome were sufficiently well-correlated to be clinically useful (P = .21). The leukocyte count criteria developed in Europe had a sensitivity of 62%, a specificity of 69%, and a positive predictive value that ranged from only 44% to 72%. However, we unexpectedly found that basal expression of CD13 (aminopeptidase N), a cell surface enzyme previously linked to tumor cell invasion and an inferior outcome in patients with acute myeloid leukemia, was highly associated with both development of the syndrome (P < .05) as well as an elevated leukocyte count (P = .006). Neither low-dose chemotherapy nor leukapheresis prevented development of the syndrome nor ameliorated its effects. In fact, 9 of 11 patients who received these interventions sustained fatal or near-fatal events, most of which were due to hemorrhage. However, early treatment with a short-course of high-dose corticosteroids halted progression of the syndrome in most cases. Finally, we found that expression of the type "A" isoform of PML/RAR-alpha (also known as bcr3 or "short") was associated with a significantly shorter duration of relapse-free and overall survival (P = .005).(ABSTRACT TRUNCATED AT 400 WORDS)

Adrenal Cortex Hormones↗

Therapeutic and neurotoxic effects of 2-chlorodeoxyadenosine in adults with acute myeloid leukemia.

Despite expectations that 2-chlorodeoxyadenosine (2-CdA) would prove active primarily in lymphoproliferative diseases, early reports suggested unexpected high activity of this drug in heavily pretreated children with acute myeloblastic leukemia (AML) at a maximally tolerated dose of 8.9 mg/m2/day for 5 days. In view of these findings, we conducted an escalating dose trial of 2-CdA in adult patients with relapsed or resistant AML. Thirty-six patients who had received extensive prior therapy were treated at 9 dose levels of 2-CdA at daily doses ranging from 5 to 21 mg/m2 for 5 days. 2-CdA eliminated leukemic blasts from the peripheral blood in 32 of 36 cases; however, bone marrow hypoplasia was seen only at daily dose levels > or = 15 mg/m2. We observed a total of 3 complete remissions: 1 at the 15 mg/m2/d dose level and 2 at the 21 mg/m2/d dose level; these responses persisted for 3, 2, and 3 months, respectively. Although prolonged myelosuppression would have been dose-limiting at 21 mg/m2/d for 5 days, the most important adverse effect was the development of a sensorimotor peripheral neuropathy. This reaction, whose onset was substantially delayed after completion of drug treatment, was observed in 2 of 5 patients at the 19 mg/m2/d level and in 4 of 4 evaluable patients at the 21 mg/m2/d level. Pathologically, this process was characterized by axonal degeneration and secondary demyelination. Other side effects included reactivation of a posttransplant Epstein-Barr virus-related lymphoma in 1 patient and tumor lysis syndrome. We conclude that the maximally tolerable dose of 2-CdA in adult patients (17 mg/m2/d for 5 days) in approximately twofold in excess of that previously reported in children and that the limiting toxic effect is a degenerative neuropathic disorder. We confirm that this drug has definite activity in AML, but the magnitude of this effect needs to be determined in larger numbers of patients who have received less extensive therapy. This agent deserves further evaluation in patients with both AML and acute lymphoblastic leukemia at these higher doses and perhaps as part of a preparative regimen for patients undergoing bone marrow transplantation.

Adolescent↗

Two cases of extramedullary acute promyelocytic leukemia. Cytogenetics, molecular biology, and phenotypic and clinical studies.

BACKGROUND: The extramedullary collection of leukemic cells is an infrequent complication of myeloid leukemias, and extremely uncommon in acute promyelocytic leukemia (APL). METHODS: The case reports of two patients with APL who relapsed with extramedullary disease and a review of the literature are presented. RESULTS: Two patients with cytogenetically and molecularly confirmed APL developed extramedullary relapse in skin and lymph nodes after prior treatment with all-trans retinoic acid. A review of the literature revealed only nine cases of APL complicated by extramedullary disease. However, only one of these previously reported patients was shown to have the cytogenetic abnormality characteristic of APL. CONCLUSIONS: To the authors' knowledge, These two patients represent the first cases of cytogenetically confirmed APL treated with all-trans retinoic acid who developed extramedullary relapse. These events, which were reported infrequently in patients treated only with cytotoxic therapy, may be more common in patients receiving all-trans retinoic acid. In view of the differentiating activity of all-trans retinoic acid, which may increase the migratory capacity of these malignant cells, it is hypothesized that this agent may predispose some patients to unusual forms of relapse.

Adult↗