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Methemoglobinemia in children with acute lymphoblastic leukemia (ALL) receiving dapsone for pneumocystis carinii pneumonia (PCP) prophylaxis: a correlation with cytochrome b5 reductase (Cb5R) enzyme levels.

BACKGROUND: Dapsone is commonly used for pneumocystis carinii pneumonia (PCP) prophylaxis in immunocompromised patients. Methemoglobinemia is a known complication of dapsone, but its true frequency and pathogenesis in childhood cancer patients are unknown. Additionally, practice guidelines for evaluation and management of dapsone-induced methemoglobinemia are not available. PROCEDURE: We studied 15 children with acute lymphoblastic leukemia (ALL) receiving dapsone for PCP prophylaxis to determine the frequency of methemoglobinemia, and correlate its occurrence with cytochrome b5 reductase (Cb5R) enzyme levels. Ten children with ALL receiving trimethoprim-sulfamethaxazole (TMP-SMX) were studied as controls. All patients underwent physical examination, pulse oximetry, and methemoglobin (metHb) estimation. Commercially available assay was used to measure Cb5R levels. RESULTS: Three (20%) patients receiving dapsone developed symptomatic methemoglobinemia. Average duration of dapsone prophylaxis prior to diagnosis was 6.6 weeks (range 3.5-10 weeks). Mean metHb level in symptomatic patients was 11.67%; 95% confidence interval (CI) 0-25.79 (range 7-18%), and 1.37%; 95% CI 0.6-2.14 (range 0.02-3%) in asymptomatic patients (P = 0.09), whereas the mean metHb level in the control group was 0.54%; 95% CI 0.35-0.73 (range 0.1-0.8%) (asymptomatic vs control P < 0.0001). Mean Cb5R level in symptomatic patients was 8.6 IU/g Hb; 95% CI 3.4-13.7 (range 6.9-10.9) compared to 12.5 IU/g Hb; 95% CI 11.1-13.9 (range 10.8-14.6) in asymptomatic patients (P = 0.06). Two symptomatic patients had Cb5R levels at or below 50% of normal, consistent with heterozygosity. Parental studies for Cb5R levels were suggestive of a carrier state in one of each patient's parents. CONCLUSIONS: Heterozygosity for Cb5R deficiency may pre-dispose to methemoglobinemia even on a thrice-weekly regimen of dapsone. Such individuals should avoid subsequent exposure to oxidant agents, if possible. Children with ALL tend to be symptomatic at low levels of metHb and may have delayed detection of methemoglobinemia. Hence, frequent monitoring of patients receiving dapsone is recommended. Monitoring guidelines for dapsone prophylaxis are proposed.

Anti-Infective Agents↗

Plasma and salivary pharmacokinetics of dapsone estimated by a thin layer chromatographic method.

A high performance thin layer chromatographic assay for dapsone is described with a minimum level of detection of 20 ng ml-1 which is suitable for the study of dapsone pharmacokinetics in plasma and saliva. 100 mg dapsone was administered orally to seven normal adult volunteers, the mean plasma pharmacokinetic parameters were: alpha = 0.23 h-1; beta = 0.0236 h-1, and t1/2 beta = 30.2 h. Dapsone is also eliminated into the saliva and the t1/2 may be determined via its estimation in saliva. It is 73% bound to plasma protein and the saliva/plasma concentration ratio was found to be 27%. In two subjects the free plasma dapsone concentration was identical to the simultaneous salivary dapsone concentration. Therefore the salivary dapsone concentration is a measure of the free plasma fraction of dapsone. Saliva/plasma dapsone concentration ratios show no time or concentration dependence and little inter-individual variation but are unsuitable for acetylator phenotype determination because monoacetyldapsone is not eliminated in the saliva.

Adult↗

Oral therapy for Pneumocystis carinii pneumonia in the acquired immunodeficiency syndrome. A controlled trial of trimethoprim-sulfamethoxazole versus trimethoprim-dapsone.

BACKGROUND: Antimicrobial drugs that can be taken orally are needed for the treatment of Pneumocystis carinii pneumonia in patients with the acquired immunodeficiency syndrome (AIDS). Preliminary data indicate that dapsone with trimethoprim may be an effective alternative to trimethoprim-sulfamethoxazole, which is frequently toxic. METHODS: In a double-blind trial, 60 patients with AIDS and mild-to-moderately-severe first episodes of P. carinii pneumonia (partial pressure of oxygen in arterial blood, greater than 60 mm Hg while breathing room air) were randomly assigned to 21 days of treatment with either trimethoprim-sulfamethoxazole (20 and 100 mg per kilogram of body weight per day, respectively) or trimethoprim-dapsone (20 mg per kilogram per day and 100 mg per day). RESULTS: The orally administered treatment failed because of progressive pneumonitis in 3 of the 30 patients assigned to trimethoprim-sulfamethoxazole and in 2 of the 30 assigned to trimethoprim-dapsone (P greater than 0.3). Major toxic effects required a switch to intravenous pentamidine for 17 patients (57 percent) in the trimethoprim-sulfamethoxazole group, as compared with 9 (30 percent) in the trimethoprim-dapsone group (P less than 0.025). With trimethoprim-sulfamethoxazole, there were more instances of severe chemical hepatitis (six, as compared with one in the trimethoprim-dapsone group) and marked neutropenia (five vs. one). Intolerable rash (three in each treatment group) and severe nausea and vomiting (two in each group) occurred with equal frequency with both drug combinations. Methemoglobinemia occurred in most of the patients treated with trimethoprim-dapsone, but it was asymptomatic and the level exceeded 20 percent in only one patient. Mild hyperkalemia (serum potassium level, 5.1 to 6.1 mmol per liter) also occurred in 53 percent of the patients treated with trimethoprim-dapsone. CONCLUSIONS: In patients with AIDS, oral therapy with trimethoprim-sulfamethoxazole and with trimethoprim-dapsone are equally effective for mild-to-moderate first episodes of P. carinii pneumonia, but with trimethoprim-dapsone there are fewer serious adverse reactions than with trimethoprim-sulfamethoxazole.

Acquired Immunodeficiency Syndrome↗

Atovaquone compared with dapsone for the prevention of Pneumocystis carinii pneumonia in patients with HIV infection who cannot tolerate trimethoprim, sulfonamides, or both. Community Program for Clinical Research on AIDS and the AIDS Clinical Trials Group.

BACKGROUND: Although trimethoprim-sulfamethoxazole is the drug of choice for the prevention of Pneumocystis carinii pneumonia, many patients cannot tolerate it and must switch to an alternative agent. METHODS: We conducted a multicenter, open-label, randomized trial comparing daily atovaquone (1500-mg suspension) with daily dapsone (100 mg) for the prevention of P. carinii pneumonia among patients infected with the human immunodeficiency virus who could not tolerate trimethoprim-sulfamethoxazole. The median follow-up period was 27 months. RESULTS: Of 1057 patients enrolled, 298 had a history of P. carinii pneumonia. P. carinii pneumonia developed in 122 of 536 patients assigned to atovaquone (15.7 cases per 100 person-years), as compared with 135 of 521 in the dapsone group (18.4 cases per 100 person-years; relative risk for atovaquone vs. dapsone, 0.85; 95 percent confidence interval, 0.67 to 1.09; P=0.20). The relative risk of death was 1.07 (95 percent confidence interval, 0.89 to 1.30; P=0.45), and the relative risk of discontinuation of the assigned medication because of adverse events was 0.94 (95 percent confidence interval, 0.74 to 1.19; P=0.59). Among the 546 patients who were receiving dapsone at base line, the relative risk of discontinuation because of adverse events was 3.78 for atovaquone as compared with dapsone (95 percent confidence interval, 2.37 to 6.01; P<0.001); among those not receiving dapsone at base line, it was 0.42 (95 percent confidence interval, 0.30 to 0.58; P<0.001). CONCLUSIONS: Among patients who cannot tolerate trimethoprim-sulfamethoxazole, atovaquone and dapsone are similarly effective for the prevention of P. carinii pneumonia. Our results support the continuation of dapsone prophylaxis among patients who are already receiving it. However, among those not receiving dapsone, atovaquone is better tolerated and may be the preferred choice for prophylaxis against P. carinii pneumonia.

AIDS-Related Opportunistic Infections↗

Efficacy and safety of dapsone prophylaxis against Pneumocystis carinii pneumonia in human immunodeficiency virus-infected children.

Dapsone (4,4'-diaminodiphenylsulfone) is recommended as an alternative agent for prophylaxis against Pneumocystis carinii in children with human immunodeficiency virus infection. We reviewed our experience over the past 100 months with 20 children (age range, 2 months to 13 years) who received dapsone and examined the safety and efficacy of this regimen. Dapsone was taken for an average of 7.33 months/patient or a total of 4410 days by those children in whom safety could be assessed. Three of the 20 patients had an adverse reaction to dapsone. One had mild elevation of blood methemoglobin values (5.6%) and transient elevation of serum transaminases that resolved without discontinuing drug. The other two developed allergic skin rashes which necessitated discontinuation. Efficacy of dapsone in preventing P. carinii pneumonia (PCP) was assessed in 16 children at high risk for developing PCP (defined by CD4 counts or prior PCP infection). These 16 children took dapsone for an average of 6.88 months and a total of 3300 days. Two of the 16 high risk children, one who had had a previous P. carinii pneumonia, developed PCP while taking dapsone. Both had CD4 counts < or = 200 cells/mm3 and were taking dapsone for > or = 12 months before developing PCP. Dapsone is well-tolerated in children and appears to be as effective in preventing PCP in children with human immunodeficiency virus infection as it is in adults.

AIDS-Related Opportunistic Infections↗

Gonadal influence on the metabolism and haematological toxicity of dapsone in the rat.

Administration of dapsone (33 mg kg-1) to intact rats resulted in a marked elevation of methaemoglobin levels in male (435.0 +/- 105.2% met Hb h) compared with female rats (59.0 +/- 17.2% met Hb h). However, the clearance of dapsone was significantly faster in males compared with females. Female rats showed very low levels of methaemoglobin which were accompanied by significantly higher blood concentrations of parent drug. Clearance of dapsone in castrated animals was less than one-third of that of the intact sham-operated males (252.2 +/- 67.2 vs 81.4 +/- 33.0 mL h-1). Likewise, clearance of dapsone in ovarectomized rats was approximately half that of intact females. There were no significant differences in the disposition of dapsone between the ovarectomized (AUC 431.0 +/- 31.7 micrograms h mL-1; t1/2, 15.62 +/- 1.8 h) and castrated (AUC, 450.6 +/- 150.9 micrograms h mL-1; t1/2, 17.6 +/- 7.9 h) animals. However, methaemoglobin levels in castrated males, although less than a third of those of intact males, significantly exceeded those of ovarectomized animals. There was no significant difference between the four groups of animals with respect to red cell sensitivity to the methaemoglobin-forming capacity of the toxic metabolite of dapsone, the hydroxylamine. Metabolic conversion of dapsone to the hydroxylamine in the presence of NADPH was 7.6 +/- 1.5% for liver microsomes from intact males and was significantly greater (P less than 0.05) than the corresponding values for liver microsomes from castrated rats (5.3 +/- 0.59%). Conversion of dapsone to dapsone-NOH by liver microsomes from intact females and ovarectomized animals was below 1% in both cases.(ABSTRACT TRUNCATED AT 250 WORDS)

Acetylation↗

Inhibition of dapsone-induced methaemoglobinaemia by cimetidine in the presence of trimethoprim in the rat.

Administration of dapsone in combination with trimethoprim and cimetidine to male rats resulted in a marked decrease (P less than 0.05) in measured methaemoglobin levels (46.2 +/- 24% Met Hb h) compared with administration of dapsone alone (124.5 +/- 24.4% Met Hb h). The elimination half-life of dapsone (814 +/- 351 min) was more than doubled in the presence of trimethoprim and cimetidine compared with control (355 +/- 160 min, P less than 0.05). However, there were no significant differences in AUC and clearance when dapsone was administered in combination with trimethoprim and cimetidine compared with dapsone alone. Co-administration of trimethoprim with dapsone in the absence of cimetidine did not affect either methaemoglobin formation, AUCs, half-lives, or clearance values of dapsone compared with control. There was a threefold increase in the AUC of trimethoprim (6296 +/- 2249 micrograms min mL-1) in the presence of dapsone compared with trimethoprim alone (2122 +/- 552 micrograms min mL-1). There was also a corresponding decrease in the clearance of trimethoprim in the presence of dapsone compared with control (19.1 +/- 6.9 vs 60.8 +/- 21.0 mL min-1). However, there was no change in the elimination half-life of trimethoprim between the two experimental groups (273 +/- 120 vs 292 +/- 54 min). The AUC of trimethoprim increased more than threefold in the presence of cimetidine (7100 +/- 1501 micrograms min mL-1) compared with trimethoprim alone (2122 +/- 552 micrograms min mL-1).(ABSTRACT TRUNCATED AT 250 WORDS)

Acetylation↗

Dihydropteroate synthase of Mycobacterium leprae and dapsone resistance.

Two Mycobacterium leprae genes, folP1 and folP2, encoding putative dihydropteroate synthases (DHPS), were studied for enzymatic activity and for the presence of mutations associated with dapsone resistance. Each gene was cloned and expressed in a folP knockout mutant of Escherichia coli (C600DeltafolP::Km(r)). Expression of M. leprae folP1 in C600DeltafolP::Km(r) conferred growth on a folate-deficient medium, and bacterial lysates exhibited DHPS activity. This recombinant displayed a 256-fold-greater sensitivity to dapsone (measured by the MIC) than wild-type E. coli C600, and 50-fold less dapsone was required to block (expressed as the 50% inhibitory concentration [IC(50)]) the DHPS activity of this recombinant. When the folP1 genes of several dapsone-resistant M. leprae clinical isolates were sequenced, two missense mutations were identified. One mutation occurred at codon 53, substituting an isoleucine for a threonine residue (T53I) in the DHPS-1, and a second mutation occurred in codon 55, substituting an arginine for a proline residue (P55R). Transformation of the C600DeltafolP::Km(r) knockout with plasmids carrying either the T53I or the P55R mutant allele did not substantially alter the DHPS activity compared to levels produced by recombinants containing wild-type M. leprae folP1. However, both mutations increased dapsone resistance, with P55R having the greatest affect on dapsone resistance by increasing the MIC 64-fold and the IC(50) 68-fold. These results prove that the folP1 of M. leprae encodes a functional DHPS and that mutations within this gene are associated with the development of dapsone resistance in clinical isolates of M. leprae. Transformants created with M. leprae folP2 did not confer growth on the C600DeltafolP::Km(r) knockout strain, and DNA sequences of folP2 from dapsone-susceptible and -resistant M. leprae strains were identical, indicating that this gene does not encode a functional DHPS and is not involved in dapsone resistance in M. leprae.

Amino Acid Sequence↗

Dapsone-induced methemoglobinemia.

OBJECTIVE: To report a case of methemoglobinemia in a patient receiving dapsone for prophylaxis of Pneumocystis carinii pneumonia (PCP). CASE SUMMARY: A 69-year-old white woman was hospitalized to rule out sepsis. Two years prior to this admission, the patient received an orthotopic liver transplant after which she required hemodialysis three times weekly. Because of intolerance to trimethoprim/ sulfamethoxazole and aerosolized pentamidine, she was prescribed dapsone therapy on hospital day 13, that was continued for 11 days. On hospital day 45 the patient received a cadaveric kidney transplant, and dialysis treatments were scheduled only as needed. One week after the transplant, dapsone therapy was resumed. Nine days into this course of dapsone, the patient developed dyspnea and oxygen desaturation of unknown etiology. The patient was evaluated for and diagnosed with methemoglobinemia. She received two doses of intravenous methylene blue and one dose of oral activated charcoal due to fluctuating methemoglobin concentrations. DISCUSSION: The elimination of dapsone is not completely understood. Several case reports of dapsone-induced methemoglobinemia are present in the literature. Most have occurred in patients who have accidentally or deliberately overdosed. Cases of methemoglobinemia in patients receiving therapeutic doses of dapsone are discussed. CONCLUSIONS: The growing numbers of immunosuppressed patients due to transplantation of HIV may result in increased dapsone use for the prevention of PCP. Clinicians should be aware of the adverse effects associated with dapsone therapy, and patients with dyspnea and hypoxemia of unclear etiology should be evaluated for methemoglobinemia.

Aged↗

Dapsone therapy for malaria during pregnancy: maternal and fetal outcomes.

The need to consider using dapsone in pregnant women for its antimalarial activity is becoming greater in areas where Plasmodium falciparum resistance to chloroquine and pyrimethamine-sulfadoxine is rapidly increasing. Dapsone in combination with other antimalarials might provide a valuable alternative for both treatment and prophylaxis. This review assesses the clinical pharmacology of dapsone and its adverse drug reactions in relation to haemolysis, glucose-6-phosphate dehydrogenase (G6PD) deficiency, blood dyscrasias and methaemoglobinaemia. Studies are summarised reporting its use in leprosy, dermatological and other conditions, and malaria, in relation to maternal and infant outcomes. A total of 924 pregnancies were identified during which dapsone therapy was taken. Only limited data are available and this precludes a meaningful quantitative benefit-risk analysis. Mild degrees of haemolysis consistently occur with continued therapy, although adverse effects may be less likely with intermittent treatment, as most reported adverse effects have occurred with long-term use of dapsone. There are a number of gaps in knowledge where more data are needed. These include no data on pharmacokinetics in pregnancy and whether these are altered with co-administration of chlorproguanil. Potential complications in women with severe anaemia are unknown and there is no information on haemolytic effects in women or the fetus with G6PD deficiency. The use of dapsone in HIV-infected women in malarious areas could carry increased risks because of the immunosuppressive actions of the drug. Trials of dapsone therapy in pregnancy should be considered in malarious areas where there is good reason for its deployment. Controlled trials have provided data on maternal tolerance, and dapsone in combination with other antimalarial drugs can offer clear benefit in terms of improved birthweight. The use of dapsone combinations should be considered when no good alternative is available and the threat of malaria is the greater risk.

Abnormalities, Drug-Induced↗

Dapsone activation of CYP2C9-mediated metabolism: evidence for activation of multiple substrates and a two-site model.

Dapsone activates CYP2C9-mediated metabolism in various expression systems and is itself metabolized by CYP2C9 to its hydroxylamine metabolite. Studies were conducted with expressed CYP2C9 to characterize the kinetic effects of dapsone (0-100 microM) on (S)-flurbiprofen (2-300 microM), (S)-naproxen (10-1800 microM), and piroxicam (5-900 microM) metabolism in 6 x 6 matrix design experiments. The influence of (S)-flurbiprofen on dapsone hydroxylamine formation was also studied. Dapsone increased the Michaelis-Menten-derived V(max) of flurbiprofen 4'-hydroxylation from 12.6 to 20.6 pmol/min/pmol P450, and lowered its K(m) from 28.9 to 10.0 microM, suggesting that dapsone activates CYP2C9-mediated flurbiprofen metabolism without displacing flurbiprofen from the active site, supporting a two-site model describing activation. Similar results were observed with piroxicam 5'-hydroxylation, as V(max) was increased from 0.08 to 0.20 pmol/min/pmol P450 and K(m) was decreased from 183 to 50 microM in the presence of dapsone. In addition, the kinetic profile for naproxen was converted from biphasic to hyperbolic in the presence of dapsone, while exhibiting similar decreases in K(m) and increases in V(max). Kinetic parameters were also estimated using the two-site binding equation, with alpha values <1 and beta values >1, indicative of activation. Additionally, dapsone hydroxylamine formation was measured from incubations containing flurbiprofen, exhibiting a kinetic profile that was minimally affected by the presence of flurbiprofen. Overall, these results suggest that dapsone activates the metabolism of multiple substrates of CYP2C9 by binding within the active site and causing positive cooperativity, thus lending further support to a two-site binding model of P450-mediated metabolism.

Aryl Hydrocarbon Hydroxylases↗

Chlorproguanil-dapsone for treating uncomplicated malaria.

BACKGROUND: In Africa, malaria is often resistant to chloroquine and sulfadoxine-pyrimethamine. Chlorproguanil-dapsone is a potential alternative. OBJECTIVES: To compare chlorproguanil-dapsone with other antimalarial drugs for treating uncomplicated falciparum malaria. SEARCH STRATEGY: We searched the Cochrane Infectious Diseases Group Specialized Register (May 2004), CENTRAL (The Cochrane Library Issue 2, 2004), MEDLINE (1966 to May 2004), EMBASE (1988 to May 2004), LILACS (May 2004), Biosis Previews (1985 to May 2004), conference proceedings, and reference lists, and contacted researchers working in this field. SELECTION CRITERIA: Randomized and quasi-randomized controlled trials comparing chlorproguanil-dapsone to other antimalarial drugs. DATA COLLECTION AND ANALYSIS: Two reviewers independently applied the inclusion criteria, extracted data, and assessed methodological quality. We calculated the relative risk (RR) for dichotomous data and weighted mean difference for continuous data, and presented them with 95% confidence intervals (CI). MAIN RESULTS: Six trials (n = 3352) met the inclusion criteria. Chlorproguanil-dapsone (with 1.2 mg chlorproguanil) as a single dose had fewer treatment failures than chloroquine (1 trial), but more treatment failures and people with parasitaemia at day 28 than sulfadoxine-pyrimethamine (3 trials). Two trials compared the three-dose chlorproguanil-dapsone (with 2 mg chlorproguanil) regimen with sulfadoxine-pyrimethamine in new attendees. There were fewer treatment failures with chlorproguanil-dapsone by day 7 (RR 0.30, CI 0.19 to 0.49; n = 827, 1 trial) and day 14 (RR 0.36, CI 0.24 to 0.53; n = 1709, 1 trial). Neither trial reported total failures by day 28. A further trial was carried out in participants selected because they had previously failed sulfadoxine-pyrimethamine. Adverse event reporting was inconsistent between trials, but chlorproguanil-dapsone was associated with more adverse events leading to discontinuation of treatment compared with sulfadoxine-pyrimethamine (RR 4.54, CI 1.74 to 11.82; n = 829, 1 trial). It was also associated with more red blood cell disorders (RR 2.86, CI 1.33 to 6.13; n = 1850, 1 trial). REVIEWERS' CONCLUSIONS: There are insufficient data about the effects of the current standard chlorproguanil-dapsone regimen (three-dose, 2 mg chlorproguanil). Randomized controlled trials that follow up to day 28, record adverse events, and use an intention-to-treat analysis are required to inform any policy decisions.

Adult↗

Carcinogenicity of dapsone of mice and rats.

Dapsone (4,4'-diamino-diphenyl sulfone) has been tested for possible carcinogenicity in long-term animal experiments. BDIV rats and C₇ Bl mice received a 3.5% aqueous suspension of dapsone by intragastric intubation. Treatment was started in pregnant females during the last part of pregnancy, continued during lactation, then given to the offspring after weaning, five times a week for 104 weeks. The dose administered was 100 mg/kg to both rats and mice; total doses ranged from 10-16 g per rat and 1.2-1.4 g per mouse. Separate groups of animals received a combined treatment of dapsone with urethane or benzo (alpha) pyrene, to investigate the possible additive or synergistic action of dapsone with known carcinogens, as well as the possible inhibiting effect of dapsone on carcinogenesis. Unusual tumors, viz. spleen sarcomas (related to severe fibrosis of the spleen) were detected in male rats, and higher morbidity from C-cell thyroid carcinomas was observed in treated rats of both sexes than in control rats. There was no evidence that dapsone can modify the action of other chemical carcinogens. It was noted that: (1) although the increase in the incidence of tumours in dapsone-treated animals over that observed in untreated controls is statistically significant, the increase is relatively low; (2) the tumours appeared after lifetime treatment with maximum tolerated doses; (3) in rats, spleen sarcomas were observed mostly in males; this may indicate a possible hormone-dependence of the observed carcinogenic effect. The present results therefore provide only limited evidence of carcinogenicity of dapsone in rats.

Animals↗

Neither dapsone hydroxylation nor cortisol 6beta-hydroxylation detects the inhibition of CYP3A4 by HIV-1 protease inhibitors.

OBJECTIVE: This study examined the use of dapsone N-hydroxylation and cortisol 6beta-hydroxylation, well accepted in vivo probes of cytochrome P4503A4 (CYP3A4) activity, on defining the effect of three HIV protease inhibitors on CYP3A4 activity. METHODS: Subjects from University Hospital Infectious Disease Clinic about to be started on indinavir, and subjects from two clinical studies, one using ritonavir and the other using amprenavir, were recruited to participate in the study. Subjects received dapsone 100 mg p.o. followed by an 8-h urine collection for dapsone, dapsone N-hydroxylamine, cortisol, and 6beta-hydroxycortisol concentrations before HIV protease inhibitor administration, and 3 4 weeks into receiving HIV protease inhibitors. RESULTS: None of the HIV protease inhibitors demonstrated statistically significant alterations in dapsone recovery ratio and 6beta-hydroxycortisol/cortisol ratio. In fact, with ritonavir, the dapsone recovery ratio tended to increase rather than decrease, suggesting induction. These negative results were found despite evidence of CYP3A4 inhibition by these three HIV protease inhibitors via published drug-drug interactions with drugs that are substrates for CYP3A4. CONCLUSIONS: These in vivo assays used to probe CYP3A4 activity are suboptimal, most likely because of the presence of extrahepatic sites of metabolism for both dapsone and cortisol, and multiple CYP isozymes involved in dapsone N-hydroxylation.

Adult↗

Randomized trial of dapsone and aerosolized pentamidine for the prophylaxis of Pneumocystis carinii pneumonia and toxoplasmic encephalitis.

PURPOSE: Pneumocystis carinii pneumonia (PCP) and toxoplasmic encephalitis are the most frequent pulmonary and central nervous system opportunistic infections associated with human immunodeficiency virus (HIV) infection. We designed a prospective study to compare the effects of aerosolized pentamidine and dapsone in the prophylaxis of these infections in HIV-infected persons with CD4+ lymphocyte counts less than 250/mm3. PATIENTS AND METHODS: Two hundred seventy-eight patients seropositive for HIV who had acquired immunodeficiency syndrome (AIDS) or advanced AIDS-related complex were randomly assigned to receive intermittent dapsone (100 mg twice weekly) or aerosolized pentamidine (100 mg every 2 weeks). The proportion of patients remaining free of PCP or toxoplasmosis was analyzed with the log-rank test as a function of time, as were the effects of zidovudine or prophylaxis on survival. RESULTS: Dapsone and aerosolized pentamidine demonstrated similar efficacy in the primary and secondary prophylaxis of PCP, with 15 (18%) failures among patients receiving dapsone compared to 15 (14%) among those receiving aerosolized pentamidine (p = 0.4), after a mean length of follow-up of 42 and 44 weeks, respectively. Dapsone was more effective in the primary prophylaxis of toxoplasmic encephalitis, with six toxoplasmic encephalitis events occurring among those receiving aerosolized pentamidine, compared to none among those taking dapsone (p = 0.01). Primary prophylaxis for PCP was more effective than secondary prophylaxis with either therapy. Zidovudine therapy did not prevent PCP yet prolonged the PCP-free interval for those in whom either prophylactic therapy failed. Kaplan-Meier estimates did not show a difference in survival between the patients receiving either therapy, yet zidovudine use was associated with improved survival, independent of race and risk factor (Cox proportional hazards model, p = 0.001). The 1-month survival for patients developing PCP despite prophylaxis was better with those in whom dapsone failed than it was for those in whom aerosolized pentamidine failed (p = 0.08). CONCLUSION: Dapsone is as effective as aerosolized pentamidine in preventing PCP and has the advantage of a lower cost, easier administration, and possibly an additional preventive effect against toxoplasmosis. Zidovudine prolongs the PCP-free interval for patients receiving prophylaxis, regardless of which prophylactic agent is used.

AIDS-Related Opportunistic Infections↗

Toxicity and efficacy of daily dapsone as Pneumocystis jiroveci prophylaxis after hematopoietic stem cell transplantation: a case-control study.

The toxicity and efficacy of dapsone given daily as Pneumocystis jiroveci (PCP) prophylaxis in hematopoietic stem cell transplant (HSCT) recipients who cannot take trimethoprim-sulfamethoxazole (TMP-SMX) have not been fully evaluated. We compared 155 HSCT recipients who received daily dapsone as second-line PCP prophylaxis with 310 matched control patients who received TMP-SMX throughout the posttransplantation course. Among patients who started dapsone before transplantation because of TMP-SMX allergy, there was no difference in the transfusion requirement after HSCT when compared with controls. Among patients who started dapsone after transplantation, increased red blood cell ( P<.0001) and platelet transfusion ( P=.003) requirements were noted compared with controls. This effect was, however, limited to patients who were receiving dapsone for reasons (mostly neutropenia) other than TMP-SMX allergy. Two of 155 patients developed PCP, compared with 0 of 310 controls ( P=.11); both patients survived. In conclusion, the efficacy of daily dapsone in preventing PCP was similar to that observed in patients able to remain on TMP-SMX prophylaxis. Dapsone did not seem to cause hematologic toxicity among TMP-SMX--allergic patients. The observed higher transfusion need in patients who received dapsone for reasons other than TMP-SMX allergy seems mostly due to an underlying condition of poor marrow reserve. Further studies are required to establish whether the drug has an etiologic role in these situations.

Adolescent↗

Safety of dapsone as Pneumocystis carinii pneumonia prophylaxis in human immunodeficiency virus-infected patients with allergy to trimethoprim/sulfamethoxazole.

OBJECTIVE: To assess the safety of dapsone prophylaxis of Pneumocystis carinii pneumonia (PCP) in patients with prior intolerance to trimethoprim/sulfamethoxazole (TMP/SMX). METHODS: We conducted a retrospective study in the categorical human immunodeficiency virus out-patient program of a university hospital. Patients who had filled prescriptions for dapsone at our pharmacy between January 1991 and April 1994 were evaluated and 75 patients were found eligible for analysis. RESULTS: The overall incidence of adverse events (AE) in our study cohort was 39%. The most common AEs were anemia (23%) and rash (16%). However, after critical evaluation of each case, only 3 cases of anemia (4%) and 2 cases of rash (3%) were judged to be "likely related" to dapsone. Only 5/75 patients (7%) developed the same intolerance to dapsone as previously experienced on TMP/SMX, and none of these cases was viewed as "likely related" to dapsone. A dapsone regimen of 100 mg qd and a prior episode of PCP were associated with a higher incidence of AEs. Eight cases of PCP occurred in spite of dapsone prophylaxis for an incidence of 7 cases per 1,000 patient-months. Seven of the cases of PCP occurred in patients who were receiving secondary prophylaxis. CONCLUSIONS: Given the low incidence of AEs judged to be "likely related" to dapsone, this drug is a reasonable choice for PCP prophylaxis in patients with prior AEs to TMP/SMX.

Adult↗

Dapsone-induced neutropenia in patients treated for ocular cicatricial pemphigoid.

BACKGROUND: Dapsone is used widely in treating ocular cicatricial pemphigoid, leprosy, and dermatologic disorders. Hemolysis is a well-known complication of dapsone therapy. Rarely, neutropenia or agranulocytosis may occur, resulting in up to a 50% mortality rate. To the authors' knowledge, agranulocytosis has not been reported in patients treated with dapsone for ocular cicatricial pemphigoid. METHODS: The authors report two cases of dapsone-induced neutropenia with bone marrow suppression in patients with ocular cicatricial pemphigoid. RESULTS: Neutropenia was detected on routine laboratory examination 8 and 10 weeks after initiating dapsone therapy. Bone marrow biopsy showed acellular or hypocellular marrow. Leukocyte count returned to baseline value after cessation of dapsone. CONCLUSION: Patients with ocular cicatricial pemphigoid who were treated with dapsone are at increased risk for agranulocytosis. Dapsone-induced neutropenia may not be a dose-dependent phenomenon. The authors indicate that there is a need for routine monitoring of leukocyte counts, especially 8 to 10 weeks after initiating therapy. Signs or symptoms of infection require immediate investigation.

Aged↗