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At least 19 recordsLinked to original sources

Treatment of recurrent gliomas with eflornithine.

BACKGROUND: Oral eflornithine in combination with intravenous mitoguazone (methylbisguanylhydrazone) has shown activity against recurrent anaplastic gliomas. Eflornithine alone, however, has not been evaluated against recurrent gliomas. PURPOSE: This study compared the antitumor activity of oral eflornithine with that of oral eflornithine combined with intravenous mitoguazone in the treatment of patients with recurrent or progressive glioblastoma multiforme as well as nonglioblastoma anaplastic gliomas. METHODS: During the 1st year of therapy with eflornithine alone, the drug was given at a dose of 3.6 g/m2 on days 1-14, 22-35, and 43-56 every 8 hours; cycles were repeated every 63 days until progression. For the 2nd year, the drug was given on days 1-14, 29-42, and 57-70, with 84 days between cycles. For the 1st and 2nd years of eflornithine-mitoguazone therapy, eflornithine was given at 1.8 g/m2 on the same schedule. Mitoguazone was given intravenously at 200 mg/m2 on the final day of each 2-week sequence of eflornithine therapy. Response was determined by evaluating changes in the size of contrast-enhanced neuroimages. RESULTS: Because of two cases of lethal hepatic necrosis, the initial random allocation of patients to the eflornithine-mitoguazone arm was stopped after 23 patients had been accrued. Ninety-eight patients were entered in the eflornithine arm; 80 patients (36 glioblastoma multiforme patients and 44 anaplastic glioma patients) were assessable for response. Antitumor activity (partial response, minor response, and stable disease) was seen in 45% of the patients with anaplastic gliomas, for a median of 49 weeks, but in only 17% of patients with glioblastoma multiforme (median not attained). Twenty-one (20%) of the patients with anaplastic glioma and 33% of the patients with glioblastoma multiforme were removed from the study before completing the first 8-week course of therapy because of neurological deterioration and tumor progression by the 5th week of treatment. CONCLUSION: This study suggests that eflornithine alone is an effective palliative therapy for recurrent anaplastic gliomas. Additional studies are needed to confirm our finding.

Adolescent↗

Percutaneous absorption and pharmacokinetics of eflornithine HCl 13.9% cream in women with unwanted facial hair.

This article reports the results of an open-label, multiple-dose study to determine percutaneous absorption and pharmacokinetics of eflornithine following topical treatment with eflornithine HCl 13.9% cream (Vaniqa). Ten women with excessive facial hair were treated with two 0.5 g single doses of [14C]-labeled eflornithine HCl 13.9% (w/w) cream (periods A and C) separated by twice-daily application of 0.5 g unlabeled eflornithine HCl 13.9% cream for 7 days (period B). Analysis of radioactivity excreted in urine and feces indicated that percutaneous absorption was minimal. Comparison with urinary excretion of eflornithine in period A suggested that most of absorbed eflornithine was excreted in urine without being metabolized. Radioactivity was not detectable in blood or plasma, but eflornithine concentrations were measurable, with peak concentrations of 4.96 ng/ml in period A and 10.44 ng/ml in period C. Eflornithine was eliminated from plasma with a mean terminal half-life of 11 hours (first application) and 8 hours (final application). Trough plasma concentrations reached steady state (4.61-5.50 ng/ml) after 4 days of twice-daily topical treatment, and multiple dosing had no apparent effect on disposition kinetics. The low degree of percutaneous absorption and low systemic exposure to eflornithine offer a favorable clinical safety profile of eflornithine HCl 13.9% cream.

Administration, Topical↗

Eflornithine cream combined with laser therapy in the management of unwanted facial hair growth in women: a randomized trial.

BACKGROUND: Eflornithine cream is approved for the reduction of unwanted facial hair in women. The mechanism of action for eflornithine is reduction in follicular cell growth rate, while laser photoepilation heats hair and adjacent tissues to suspend growth. OBJECTIVE: The objective was to assess the efficacy and safety of eflornithine or vehicle with laser therapy in the treatment of unwanted facial hair in women. METHODS: Subjects were randomized to treatment with eflornithine on one side of the face and vehicle on the contralateral side for 34 weeks. Subjects received Nd:YAG or alexandrite laser therapy to both sides of the face at Weeks 2 and 10. Blinded evaluations included left to right comparisons and appearance relative to baseline. RESULTS: Fifty-four women completed the trial. From Weeks 6 through 22, eflornithine-treated sides showed significant reduction in hair growth. By Week 34, no significant differences were seen. Subject grading showed significant and persistent hair reduction through Week 34 for eflornithine-treated sides. The safety profile for combination therapy is similar to eflornithine alone. CONCLUSION: Eflornithine is safely used in conjunction with laser hair removal treatments and promotes more rapid hair removal when combined with laser treatment. Patients demonstrate a clear preference for treatment with laser and eflornithine.

Administration, Topical↗

Human dermal safety studies with eflornithine HCl 13.9% cream (Vaniqa), a novel treatment for excessive facial hair.

Eflornithine HCl 13.9% cream (Vaniqa) is a novel treatment for the management of unwanted facial hair in women. This paper reports the results of four modified open-label, within-subject vehicle-controlled studies evaluating the dermal safety of this topical treatment. In a repeated insult patch test (230 subjects), erythema with oedema occurred in 38.9% of subjects treated with eflornithine HCl 13.9% cream and 4.8% of subjects treated with vehicle cream. Challenge applications at previously untested sites following the three-week induction period produced noticeable erythema or greater on only four sites treated with eflornithine HCl 13.9% cream and one vehicle-treated site. The erythema at these sites subsided substantially within 24 hours. In a three-week cumulative irritation study (30 subjects), the mean irritation score for sites treated with eflornithine HCl 13.9% cream was 1.33, compared with 0.76 at vehicle-treated sites and 3.09 at positive-control (sodium lauryl sulphate-treated) sites (p < 0.001 between all three groups). In a phototoxicity study (25 subjects), irradiated sites showed either no reaction (40% of both sites treated with eflornithine HCl 13.9% cream and vehicle-treated sites), or mild erythema subsiding in all cases but one within 24 hours. No reaction was seen at non-irradiated sites. In a photocontact allergy study (30 subjects), challenge with eflornithine HCl 13.9% cream or its vehicle alone produced either no reaction or mild erythema subsiding within 24 hours at both irradiated and non-irradiated sites. No serious adverse events were reported during the studies, and the only adverse events considered related to treatment were pruritus (three subjects) and dry skin at test site (one subject). These results demonstrate that eflornithine HCl 13.9% cream does not have contact sensitising, photocontact allergic or phototoxic properties. It can cause irritation under exaggerated conditions of use. Eflornithine HCl 13.9% cream, therefore, has a favourable dermal safety profile appropriate for a topical treatment to be applied routinely.

Administration, Cutaneous↗

Melarsoprol versus eflornithine for treating late-stage Gambian trypanosomiasis in the Republic of the Congo.

OBJECTIVE: To compare the effectiveness of melarsoprol and eflornithine in treating late-stage Gambian trypanosomiasis in the Republic of the Congo. METHODS: We analysed the outcomes of death during treatment and relapse within 1 year of discharge for 288 patients treated with eflornithine, 311 patients treated with the standard melarsoprol regimen and 62 patients treated with a short-course (10-day) melarsoprol regimen between April 2001 and April 2005. FINDINGS: A total of 1.7% (5/288) of patients treated with eflornithine died compared with 4.8% (15/311) of those treated with standard melarsoprol and 6.5% (4/62) of those treated with short-course melarsoprol. Patients treated with eflornithine tended to be younger and were more likely to have trypanosomes or higher white blood cell counts in their cerebrospinal fluid. The cumulated incidence of relapse among patients who attended at least one follow-up visit 1 year after discharge was 8.1% (11/136) for those treated with eflornithine, 14% (36/258) for those treated with standard melarsoprol and 15.5% (9/58) for those treated with shortcourse melarsoprol. In a multivariate analysis, when compared with eflornithine, standard melarsoprol was found to be a risk factor for both death (odds ratio (OR) = 2.87; 95% confidence interval (CI) = 1.03-8.00) and relapse (hazard ratio (HR) = 2.47; 95% CI = 1.22-5.03); when compared with eflornithine, short-course melarsoprol was also found to be a risk factor for death (OR = 3.90; 95% CI = 1.02-14.98) and relapse (HR = 6.65; 95% CI = 2.61-16.94). CONCLUSION: The effectiveness of melarsoprol treatment appears to have diminished. Eflornithine seems to be a better first-line therapy for treating late-stage Gambian trypanosomiasis in the Republic of the Congo.

Adolescent↗

Eflornithine versus cotrimoxazole in the treatment of Pneumocystis carinii pneumonia in AIDS patients.

OBJECTIVES: To compare cotrimoxazole and eflornithine as primary treatment for first-episode Pneumocystis carinii pneumonia (PCP). DESIGN: Prospective open-labelled study. METHODS: Patients were randomized to eflornithine (400 mg/kg daily, as a continuous intravenous infusion) or cotrimoxazole (3.84 g twice daily, intravenously) for 14 days. RESULTS: Only 39% of patients treated with eflornithine (20 out of 51) and 40% of those given cotrimoxazole (nine out of 47) successfully completed therapy. Although 12 out of the 36 patients with confirmed PCP were treated successfully with eflornithine, significantly more patients were withdrawn from the eflornithine group because of therapy failure (25 out of 51 versus 10 out of 47, P = 0.007). This significant difference persisted in patients in whom a diagnosis of PCP was confirmed histologically (19 out of 33 versus seven out of 27, P = 0.03). Significantly more patients were withdrawn from cotrimoxazole because of serious drug-related side-effects (38 versus 12%, P = 0.005). CONCLUSIONS: Eflornithine (400 mg/kg daily) is less effective than cotrimoxazole (7.68 g daily) as treatment for first-episode PCP. Eflornithine does have activity against P. carinii in humans.

AIDS-Related Opportunistic Infections↗

The role of the polyamine inhibitor eflornithine in the neuropathogenesis of experimental murine African trypanosomiasis.

The treatment of late-stage human African trypanosomiasis is complicated by a post-treatment reactive encephalopathy, also referred to as a 'reactive arsenical encephalopathy', that may be fatal. This study used a well established experimental mouse system to assess the use of the trypanostatic drug, eflornithine, in the management of this post-treatment reaction. Female CD-1 mice infected with an eflornithine-resistant trypanosome stabilate and treated with the trypanocidal compound diminazene aceturate on or after day 21 post-infection develop a reactive encephalopathy and relapsing parasitaemia. If these animals are re-treated with diminazene aceturate, a severe encephalopathy develops histologically comparable with that of human cases and characterized by a severe meningoencephalitis and astrogliosis. Histopathological and immunocytochemical examination shows that administration of eflornithine before or after the development of this reactive encephalopathy prevented or ameliorated the inflammatory reaction. Since an eflornithine resistant stabilate was used, this effect appears to be independent of the drug's trypanostatic action and illustrates an important, previously unrecognized, pharmacological property of eflornithine. Consideration can now be given to the use of eflornithine for the management of human trypanosomiasis cases, even where trypanosome resistance to eflornithine exists.

Animals↗

Eflornithine treatment of refractory Pneumocystis carinii pneumonia in patients with acquired immunodeficiency syndrome.

Eflornithine was offered as compassionate treatment of 33 episodes of Pneumocystis carinii pneumonia in 31 patients with acquired immunodeficiency syndrome who were intolerant of and/or unresponsive to conventional trimethoprim-sulfamethoxazole or pentamidine therapy. A full course of eflornithine consisted of ten days at 400 mg/kg/d but no more than 30 g/d in four divided intravenous doses, four days at 300 mg/kg/d in four divided intravenous doses, and then up to six weeks at 300 mg/kg/d in four divided oral doses where tolerated. Of 33 patient-episodes, 15 patients were discharged from the hospital without need for supplemental oxygen after receiving ten or more days of parenteral therapy and were classified as responders. Of the 16 episodes classified as treatment failures, death occurred within the first 10 days of therapy in 12, and supplemental oxygen could not be withdrawn in 4. The other two patients left the hospital without need of oxygen after receiving one and six days of treatment with eflornithine and were not considered evaluable for efficacy. The most serious adverse effect was thrombocytopenia, which occurred in 12 of 19 patients treated for ten days or more. Serious bleeding associated with thrombocytopenia was observed in two patients. Other common adverse effects were anorexia, nausea, and diarrhea. Prior to receiving eflornithine, 13 of 15 responders had received ten or more days of conventional therapy without demonstrating clinical improvement. Two had improved while receiving conventional therapy but were switched to eflornithine because of a treatment-limiting adverse effect of standard therapy. These results suggest that eflornithine may be useful as an alternative therapeutic agent for Pneumocystis carinii pneumonia. Studies designed to determine proper dosage, duration of therapy, and efficacy as primary therapy are warranted.

Acquired Immunodeficiency Syndrome↗

Topical eflornithine.

Eflornithine is a specific, irreversible inhibitor of the enzyme ornithine decarboxylase which is thought to slow hair growth by inhibiting this enzyme in hair follicles. Percutaneous absorption of eflornithine in women with unwanted facial hair (hirsutism) was < 1% when the 15% cream was applied twice daily to a shaved 50 cm2 area of skin under the chin. In clinical studies in women with excessive, unwanted facial hair, eflornithine 15% cream was superior to placebo in reducing hair growth, as demonstrated by objective and subjective methods, after 2 to 8 weeks' treatment. After 24 weeks' treatment, 58% of eflornithine and 34% of placebo recipients had at least some improvement in facial hirsutism (for the purposes of this analysis all patients not assessed at week 24 were considered to be worse or to have no improvement). In addition, 32 versus 8% of patients were judged to be successfully treated (at least marked improvement). Hair growth returned to pretreatment rates within 8 weeks of stopping treatment. Use of a self-assessment questionnaire to assess the effect of study treatment on 6 aspects of patient well-being showed that eflornithine reduced the mean level of overall discomfort and bother by 33 versus 15% in placebo recipients. Adverse events mostly affected the skin. Only burning/stinging/tingling was markedly more common with eflornithine than with placebo.

Administration, Cutaneous↗

Treatment of acute myeloid leukemia and blastic phase of chronic myeloid leukemia with combined eflornithine (alpha difluoromethylornithine) and methylglyoxal-bis-guanyl hydrazone (methyl-GAG).

A combined eflornithine-MGBG treatment was studied in patients with acute myeloid leukemia (AML) or blastic transformation of chronic myeloid leukemia (BT CML). The first ten patients (5 AML, 5 BT CML) received i.v. or p.o. eflornithine 6 g m-2 day-1 and i.v. MGBG 500 mg/m2 once a week. The duration of treatment was 5-37 days (median 15) with one to five MGBG infusions (median 2). The results were complete response (CR) in one patient, partial response (PR) in four, minimal response (MR) in one and failure (F) in four. Pronounced side effects, including severe mucositis, gastrointestinal disturbances and skin infiltration, were observed in eight patients. As the four PRs were achieved in patients with BT CML, it was decided also to study ten patients with this indication. In attempts to decrease the incidence and severity of unwanted effects, lower doses of eflornithine-MGBG were used, i.e., eflornithine 4 g m-2 day-1 and MGBG 200 mg m-2 once a week. The duration of treatment was 9-110 days (median 46), with 2-14 MGBG infusions (median 6). Responses observed were CR in two patients (in one of whom it was only transient), transient PR in two, transient MR in four, and F in two. Treatment at lower doses was better tolerated, thus allowing a longer duration of treatment. Five of ten patients had moderate or severe gastrointestinal disturbances and one patient had a severe subjective hearing loss. The eflornithine-MGBG combination may prove to be a useful alternative treatment for AML and BT CML, but comparative trials will ultimately be necessary for a more definitive assessment of the combination.

Adult↗

Combination of eflornithine and melarsoprol for melarsoprol-resistant Gambian trypanosomiasis.

OBJECTIVE: To evaluate the efficacy and toxicity of a combination of eflornithine and melarsoprol among relapsing cases of Gambian trypanosomiasis. METHODS: Forty-two late-stage Trypanosoma brucei gambiense trypanosomiasis patients relapsing after initial treatment with melarsoprol were treated with a sequential combination of intravenous eflornithine (100 mg/kg every 6 h for 4 days) followed by three daily injections of melarsoprol (3.6 mg/kg, up to 180 mg). They were then followed-up for 24 months. RESULTS: Two (4.8%) patients died during treatment. Of the 40 surviving patients, two had a treatment failure, 13 and 19 months after having received the combination therapy. By Kaplan-Meier analysis, the 2-year probability of cure was 93.3% (95% confidence interval: 84.3-100%). CONCLUSION: This sequential combination has an efficacy and a toxicity similar to a 7-day course of eflornithine monotherapy, but is easier to administer. Whether such therapeutic success corresponds tosynergism between eflornithine and melarsoprol, or merely means that 4 days of eflornithine monotherapy suffices for such patients, will need to be determined in a comparative trial.

Adolescent↗

Eflornithine alters changes in vascular responsiveness associated with coarctation hypertension.

This study examined the temporal effects of the polyamine synthesis inhibitor eflornithine (alpha-difluoromethylornithine) on vascular responses to KCI, norepinephrine, sodium nitroprusside and acetylcholine in aortic rings from coarctation hypertensive rats. Coarctation hypertension reduced the contractile response of aortic rings to KCI and norepinephrine, increased sensitivity (reduced the EC50 value) to norepinephrine and attenuated relaxation to acetylcholine by 14 days of hypertension. Treatment of coarctation hypertensive rats with eflornithine resulted in a normalization of the contractile intensity to KCI and norepinephrine and relaxations to acetylcholine by 14 days of hypertension. Responses to sodium nitroprusside were similar in all groups at all time points. Hyperresponsiveness to norepinephrine produced by coarctation of the aorta was not affected by eflornithine. These studies indicate that normalization of vascular function can occur in the presence of significantly elevated blood pressure upon chronic administration of eflornithine. This functional normalization correlates with eflornithine-mediated regression of structural abnormalities normally associated with pressure overload hypertension.

Acetylcholine↗

African sleeping sickness in the United States. Successful treatment with eflornithine.

The traditional treatment of African sleeping sickness (trypanosomiasis) with central nervous system involvement is an organic arsenical compound, melarsoprol, which is associated with severe and even life-threatening side effects. A polyamine biosynthesis inhibitor, eflornithine (chemical name, DL-alpha-difluoromethylornithine, supplied as monohydrochloride monohydrate), was used to treat a 3 1/2-year-old child with newly diagnosed severe trypanosomiasis that had been acquired more than two years previously in Zaire or the Congo. Treatment consisted of 300 to 400 mg/kg/d of eflornithine by continuous intravenous infusion for 25 days followed by 300 mg/kg/d of eflornithine by mouth divided in four equal doses daily for 17 days. The child's recovery was dramatic, with eradication of blood and cerebrospinal fluid parasites in the first week. Cerebrospinal fluid pleocytosis resolved completely. Her generalized adenopathy and fever gradually resolved. Severe ataxia, inability to walk or to change posture on her own, marked language regression, and lethargy all improved during and after her therapy. The drug was well tolerated; the only noted adverse effect was transient thrombocytopenia during the fourth week of therapy. Eflornithine was a safe and effective agent for treatment of trypanosomiasis with central nervous system involvement in this child.

Animals↗

Eflornithine. A new drug in the treatment of sleeping sickness.

Eflornithine (alpha-difluoromethylornithine; DFMO) is a recently developed drug against African trypanosomiasis (sleeping sickness). After a short description of trypanosomiasis and the current treatment, the mechanism of action of eflornithine is discussed, some clinical data is given and attention is paid to recently discovered analogues of eflornithine. Some examples of combination therapy with eflornithine and possible applications are mentioned.

Animals↗

Eflornithine for the treatment of human African trypanosomiasis.

Eflornithine is the only new molecule registered for the treatment of human African trypanosomiasis over the last 50 years. It is the drug used mainly as a back-up for melarsoprol refractory Trypanosoma brucei gambiense cases. The most commonly used dosage regimen for the treatment of T. b. gambiensesleeping sickness consists of 100 mg kg(-1) body weight at intervals of 6 h for 14 days (150 mg kg(-1) body weight in children) of eflornithine given as short infusions. Its efficacy against Trypanosoma brucei rhodesiense is limited due to the innate lack of susceptibility of this parasite based on a higher ornithine decarboxylase turnover. Adverse drug reactions during eflornithine therapy are frequent and the characteristics are similar to other cytotoxic drugs for the treatment of cancer. Their occurrence and intensity increase with the duration of treatment and the severity of the general condition of the patient. Generally, adverse reactions to eflornithine are reversible after the end of treatment. They include convulsions (7%), gastrointestinal symptoms like nausea, vomiting and diarrhea (10%-39%), bone marrow toxicity leading to anemia, leucopenia and thrombocytopenia (25-50%), hearing impairment (5% in cancer patients) and alopecia (5-10%). The drug arrests embryonic development in mice, rats and rabbits but the extent of excretion into breast milk is unknown. The mean half-life is around 3-4 h and the volume of distribution in the range of 0.35 l kg(-1). Renal clearance is about 2 ml min kg(-1) (i.v.) and accounts for more than 80% of drug elimination. Bioavailability of an orally administered 10 mg kg(-1) dose was estimated at 54%. One of the major determinants of successful treatment seems to be the cerebrospinal fluid drug level reached during treatment, and it was shown that levels above 50 micro mol l(-1) must be reached to attain the consistent clearance of parasites. Based on its trypanostatic rather than trypanocidal mode of action, it is a rather slow-acting drug.

Animals↗

Phase II trial of recombinant interferon-alpha-2a and eflornithine in patients with recurrent glioma.

Interferons alpha and beta have been reported to cause tumor regression in a small proportion of patients with recurrent glioma. Eflornithine, an irreversible inhibitor of ornithine decarboxylase, reduces cellular polyamine levels and has also been reported to cause tumor regression in patients with recurrent anaplastic astrocytoma and glioblastoma multiforme. In vitro evidence suggests that interferon and eflornithine are synergistic. In this phase II trial, we investigated the combination of recombinant alpha interferon (36 x 10(6) units/m2 subcutaneously days 3 to 7) and eflornithine (2.25 g/m2 QID PO days 1 to 7) repeated every 28 days. All 29 patients entered in the study were evaluable for toxicity and efficacy. Toxicity consisted primarily of fever, chills, myalgia, weakness and fatigue as well as cortical dysfunction including somnolence, confusion, and exacerbation of underlying neurologic deficits. One patient died from cerebral herniation attributable to interferon. None of the patients experienced objective tumor regression. Seven patients (24%) were stable for more than six months, but the disease stability could also be explained by indolent underlying disease or inability to distinguish recurrent tumor from delayed radiation effects. Intermittent high-dose recombinant interferon alpha plus eflornithine demonstrated no definite antitumor effects in this trial.

Adult↗

Pneumocystis carinii pneumonia treated with eflornithine in AIDS patients resistant to conventional therapy.

Eflornithine (DFMO) was used to treat 31 AIDS patients with confirmed Pneumocystis carinii pneumonia who had clinically failed treatment with pentamidine, sulphamethoxazole-trimethoprim or both agents as their first-line therapy. Twenty-one of 31 (68%) responded to second-line treatment with 400mg/kg per day of eflornithine. Five patients discontinued treatment because of bone marrow toxicity. Eflornithine appears to be a useful salvage therapy in patients failing first-line treatments.

Acquired Immunodeficiency Syndrome↗

Short-course eflornithine in Gambian trypanosomiasis: a multicentre randomized controlled trial.

OBJECTIVE: A randomized controlled trial was conducted to determine whether 7 days of intravenous eflornithine (100 mg/kg every 6 h) was as effective as the standard 14-day regimen in the treatment of late-stage Trypanosoma brucei gambiense trypanosomiasis. METHODS: A total of 321 patients (274 new cases, 47 relapsing cases) were randomized at four participating centres in Congo, Côte d'Ivoire, the Democratic Republic of the Congo, and Uganda to one of these treatment regimens and followed up for 2 years. RESULTS: Six patients died during treatment, one of whom was on the 7-day regimen, whereas the other five had been on the 14-day regimen (P = 0.2). The response to eflornithine differed markedly between Uganda and other countries. Among new cases in Uganda, the 2-year probability of cure was 73% on the 14-day course compared with 62% on the 7-day regimen (hazard ratio (HR) for treatment failure, 7-day versus 14-day regimen: 1.45, 95% CI: 0.7, 3.1, P = 0.3). Among new cases in Côte d'Ivoire, Congo, and the Democratic Republic of the Congo combined, the 2-year probability of cure was 97% on the 14-day course compared with 86.5% on the 7-day regimen (HR for treatment failure, 7-day vs 14-day: 6.72, 95% confidence interval (CI): 1.5, 31.0, P = 0.003). Among relapsing cases in all four countries, the 2-year probability of cure was 94% with 7 days and 100% with 14 days of treatment. Factors associated with a higher risk of treatment failure were: a positive lymph node aspirate (HR 4.1; 95% CI: 1.8-9.4), a cerebrospinal fluid (CSF) white cell count > or = 100/mm3 (HR 3.5; 95% CI: 1.1-10.9), being treated in Uganda (HR 2.9; 95% CI: 1.4-5.9), and CSF trypanosomes (HR 1.9; 95% CI: 0.9-4.1). Being stuporous on admission was associated with a lower risk of treatment failure (HR 0.18; 95% CI: 0.02-1.4) as was increasing age (HR 0.977; 95% CI: 0.95-1.0, for each additional year of age). DISCUSSION: The 7-day course of eflornithine is an effective treatment of relapsing cases of Gambian trypanosomiasis. For new cases, a 7-day course is inferior to the standard 14-day regimen and cannot be recommended.

Adolescent↗