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临床试验/NCT02001012
NCT02001012已完成3 期

Artemether-lumefantrine vs Chloroquine in Patients With Acute Uncomplicated P. Knowlesi Malaria: a Randomized Open Label Trial in Sabah, Malaysia (CAN KNOW Trial)

Menzies School of Health Research3 个研究点 分布在 1 个国家目标入组 123 人开始时间: 2014年1月最近更新:
适应症
干预措施
相关药物

试验速览

阶段
3 期
状态
已完成
入组人数
123
试验地点
3
主要终点
Parasite clearance

研究概览

简要总结

Preliminary studies have supported the background efficacy of local standard anti-malarial medications in the treatment of uncomplicated knowlesi malaria, however there are no current WHO treatment guidelines for this infection. There are both health cost benefits to a more rapidly acting agent, and due to difficulties with microscopic identification there may be more effective treatment for all malaria species if an aligned treatment guideline could be supported. We are currently conducting a separate RCT using a similar protocol evaluating artesunate-mefloquine versus chloroquine for uncomplicated P. knowlesi malaria. However artemether-lumefantrine should also be compared against chloroquine due to the fact it is also a first line anti-malarial recommended in Malaysia, and there are potential differences in efficacy due to the different administration, absorption and half-life of artemether-lumefantrine.

The investigators aim to test whether the fixed combination of artesunate-mefloquine is superior to chloroquine in order to define the optimal treatment for both uncomplicated P. knowlesi infection in both adults and children in this region.

详细描述

Naturally acquired infections with Plasmodium knowlesi, the fifth human malaria, are growing [1]. Since 2004 increasing numbers of cases have been reported from residents and returned travelers predominantly from Malaysia and other countries in South-East Asia including Thailand, Vietnam, Myanmar, Singapore, Indonesia and the Philippines [2-8]. Cases coincide with the geographic distribution of its natural simian hosts (long-tailed and pig-tailed macaques) and Anopheles leucosphyrus group mosquito vector [9, 10], with potential human-to-human transmission unknown. Eastern Malaysia appears to be the epicentre, with around 1400 PCR-confirmed P. knowlesi human mono-infections reported in 2009, comprising 41% of 2,189 total malaria cases in Sarawak [11] and 343 cases from selected samples sent to Sabah's State Reference Laboratory [12]. P. knowlesi is also now the most common cause of malaria in different contrasting regions, including 70% of malaria admissions in the heavily forested area of Kapit in Sarawak [1, 13], 63% of samples from the interior division of Sabah [14], and in 87% of malaria admissions in the deforested coastal area of Kudat in Sabah, where it is also the major cause of malaria in children [15].

Despite the increase in reported incidence, difficulties with microscopic diagnosis and a lack of PCR based epidemiological surveillance studies throughout South-East Asia mean the true disease burden is underestimated. P. knowlesi is microscopically misidentified as P . falciparum and P. malariae due to morphological similarities in the early trophozoite, and late trophozoite and schizont life stages respectively, with studies showing up to 80% of P. malariae [16-19] and 7-12% of P. falciparum [1, 16] in this region are actually P. knowlesi when definitively evaluated with PCR. Misdiagnosis has concerning treatment implications, as unlike P. malariae, knowlesi malaria has a rapid 24-hour replication rate and can cause hyperparasitaemia, severe complications and fatal outcomes [13, 17, 18], while the inadvertent use of chloroquine for widely chloroquine-resistant P. falciparum may also have fatal consequences.

Naturally acquired infections with Plasmodium knowlesi, the fifth human malaria, are growing [1]. Since 2004 increasing numbers of cases have been reported from residents and returned travelers predominantly from Malaysia and other countries in South-East Asia including Thailand, Vietnam, Myanmar, Singapore, Indonesia and the Philippines [2-8]. Cases coincide with the geographic distribution of its natural simian hosts (long-tailed and pig-tailed macaques) and Anopheles leucosphyrus group mosquito vector [9, 10], with potential human-to-human transmission unknown. Eastern Malaysia appears to be the epicentre, with around 1400 PCR-confirmed P. knowlesi human mono-infections reported in 2009, comprising 41% of 2,189 total malaria cases in Sarawak [11] and 343 cases from selected samples sent to Sabah's State Reference Laboratory [12]. P. knowlesi is also now the most common cause of malaria in different contrasting regions, including 70% of malaria admissions in the heavily forested area of Kapit in Sarawak [1, 13], 63% of samples from the interior division of Sabah [14], and in 87% of malaria admissions in the deforested coastal area of Kudat in Sabah, where it is also the major cause of malaria in children [15].

Despite the increase in reported incidence, difficulties with microscopic diagnosis and a lack of PCR based epidemiological surveillance studies throughout South-East Asia mean the true disease burden is underestimated. P. knowlesi is microscopically misidentified as P . falciparum and P. malariae due to morphological similarities in the early trophozoite, and late trophozoite and schizont life stages respectively, with studies showing up to 80% of P. malariae [16-19] and 7-12% of P. falciparum [1, 16] in this region are actually P. knowlesi when definitively evaluated with PCR. Current rapid diagnostic tests (RDT) for malaria can distinguish falciparum Current rapid diagnostic tests (RDT) for malaria can distinguish falciparum from other Plasmodium species with a sensitivity of up to 99% at parasite counts > 1,000/ μL [20], but a knowlesi specific antigen has not been developed and current antibody panels are unable to differentiate between P. knowlesi and other mixed Plasmodium spp. infections [21]. Misdiagnosis has concerning treatment implications, as unlike P. malariae, knowlesi malaria has a rapid 24-hour replication rate and can cause hyperparasitaemia, severe complications and fatal outcomes [13, 17, 18], while the inadvertent use of chloroquine for widely chloroquine-resistant P. falciparum may also have fatal consequences.

Artemether-lumefantrine (A-L) is a common and widely available ACT, and along with artesunate-mefloquine (AS-MQ) is one of only 2 first line WHO recommended options for the treatment of uncomplicated P.falciparum infection which are registered in Malaysia and produced according to international good manufacturing practice (GMP) standards. ACTs are the current mainstay of malaria eradication efforts 28, with a mechanism of action resulting both in a rapid reduction in parasite mass and resolution of clinical features, while the long acting component eliminates residual parasites and delays the development of de novo resistance 29,30.

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Parallel
主要目的
Treatment
盲法
None

入排标准

年龄范围
1 Year 至 —(Child, Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • Male and female patients at least 1 year of age and weighing more than 10kg.
  • Microscopic diagnosis P. knowlesi (including diagnosis as P. malariae) or P. falciparum infection (any parasitaemia).
  • Negative P. falciparum malaria rapid diagnostic test (histidine rich protein 2)
  • Fever (temperature ≥37.5°C) or history of fever in the last 48 hours.
  • Able to participate in the trial and comply with the clinical trial protocol.
  • Written informed consent to participate in trial; thumbprint is required for illiterate patients, and written consent from parents/guardian for children below age of consent.

排除标准

  • Clinical or laboratory criteria for severe malaria, including warning signs, requiring parenteral treatment according to modified WHO criteria (see Appendix 4)
  • Parasitaemia > 20,000 /μL
  • Inability to tolerate oral treatment
  • Concomitant infection with any other malaria species
  • Positive for P. falciparum histidine-rich-protein-2 by malaria rapid diagnostic test
  • Pregnancy or lactation
  • Unable or unwilling to use contraception during study period
  • Known hypersensitivity or allergy to artemisinin derivatives
  • Serious underlying disease (cardiac, renal or hepatic)
  • Received anti-malarials in previous 2 months
  • Previous psychiatric illness or epilepsy
  • Previous episode of cerebral malaria

研究组 & 干预措施

Artemether-lumefantrine

Active Comparator

Artemether-lumefantrine.

1 tablet = 20mg arthemether and 120mg lumefantrine. Dosing at 0, 8, 24, 36, 48 and 60 hours. Dose according to bodyweight; >35kg = 2 tablets, 26-35kg = 3 tablets, 16-25kg = 2 tablets, >10-15kg = 1 tablet.

干预措施: Artemether-lumefantrine combination (Drug)

Chloroquine

Active Comparator

Chloroquine.

1 tablet contains 155mg chloroquine base. Adult dose (>35kg); 620mg (4 tablets) at 0 hours, and 310mg (2 tablets) at 6-8, 24 and 48 hours.

Child dose (>10-35kg); 10mg/kg at 0 hours, and 5mg/kg at 6-8, 24 and 48 hours.

干预措施: Chloroquine (Drug)

结局指标

主要结局

Parasite clearance

时间窗: 24 hours

The primary endpoint is the therapeutic efficacy of artemether-lumefantrine versus chloroquine, as defined by the assessment of microscopic P. knowlesi parasite clearance 24 hours after initiation of treatment.

次要结局

  • P. knowlesi and gametocyte carriage throughout follow up when using AL vs. CQ.(42 days)
  • Rates of recurrent infection / treatment failure at day 42.(42 days)
  • Occurrence of anaemia at day 28 when using AL vs. CQ.(28 days)
  • Frequency of complications throughout follow up when using AL vs. CQ.(42 days)

研究者

申办方类型
Other
责任方
Sponsor

研究点 (3)

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