Pharmacokinetic, Efficacy, Safety, and Tolerability Study of a Single Dose of Acoziborole Under Fasting Conditions in Paediatric Patients From 1 to 14 Years of Age and With g-HAT: a Multicentre, Open-label Study
Trial Snapshot
- Phase
- Phase 2
- Status
- Completed
- Sponsor
- Enrollment
- 35
- Locations
- 12
- Primary Endpoint
- Area under the curve (AUC0-96h)
Study Overview
Brief Summary
Acoziborole has been studied in an open-label pivotal Phase II/III trial (DNDi-OXA-02-HAT) in the DRC and Guinea. As the numbers of reported cases diminish, resources for surveillance and specialised screening will also taper. This decrease, coupled with the loss of diagnostic skills and disease management expertise, will lead to a weak and less specialised HAT technical environment. The history of g-HAT has shown that outbreaks or re-emergence of the disease have already happened under different circumstances when surveillance was relaxed or simply because the populations at risk live in areas of political instability, limiting access to specialised care. Even with a steady decrease of reported incidence, no model can currently predict that HAT could not re-emerge.
Although g-HAT is predominantly a disease of adults, children are also affected at diverse rates depending on the geographical and behavioural characteristics in the different areas of disease transmission. Hence efforts are needed to develop a paediatric formulation from a new generation of oral HAT treatments.
Detailed Description
Human African trypanosomiasis (HAT), or sleeping sickness, is a life-threatening disease transmitted by tsetse flies and caused by a single-celled extracellular parasite that lives free in the bloodstream and other body fluids, including lymph and cerebrospinal fluid (CSF). There are many species of African trypanosomes; however, only two subspecies of the Trypanosoma brucei (T.b.) species are causative of HAT. T.b. gambiense is endemic in West and Central Africa and causes over 98% of current cases. It progresses at a more indolent pace than that of T.b. rhodesiense.
Approximately 5 million people live in areas, mainly in rural parts of 24 disease endemic countries in West and Central Africa, where HAT due to T.b. gambiense (g-HAT) is still considered a public health problem; whereas, 51 million people are estimated to be at risk of infection on the African continent. With 864 cases of g-HAT reported in 2019, the global goal of sustainable disease elimination by 2030, including the interruption of the transmission of g-HAT, is foreseeable. Consistently falling numbers of cases are thanks to efforts from national control programmes, supported by the World Health Organization (WHO), non-governmental organisations, bilateral cooperation, the private sector (including pharmaceutical companies), and philanthropic organisations.
As the numbers of reported cases diminish, resources for surveillance and specialised screening will also taper. This decrease, coupled with the loss of diagnostic skills and disease management expertise, will lead to a weak and less specialised HAT technical environment. The history of g-HAT has shown that outbreaks or re-emergence of the disease have already happened under different circumstances when surveillance was relaxed, e.g. South Sudan and the Democratic Republic of the Congo (DRC) or simply because the populations at risk live in areas of political instability, limiting access to specialised care. Even with a steady decrease of reported incidence, no model can currently predict that HAT could not re-emerge.
Although g-HAT is predominantly a disease of adults, children are also affected at diverse rates depending on the geographical and behavioural characteristics in the different areas of disease transmission. Globally, the WHO Expert Committee on control and surveillance report states: "rates in children are usually less than half of those in adults, reflecting less exposure to flies during daily activities". In data from the Médecins Sans Frontières Database on HAT control projects, out of 684 second stage HAT patients included, 17.5% were children under the age of 15 hence efforts are needed to develop a paediatric formulation from a new generation of oral HAT treatments. The majority of signs and symptoms associated with HAT occur at similar frequencies in paediatric patients with first and second stage disease compared with adults, including sleep disturbances. The presence of trypanosomes in cervical lymph nodes is less frequent in preschool children than in older children and adults. More infants are seen at the second stage, most likely due to delayed diagnosis and the immaturity of the blood-brain barrier. In some studies, fever, hepatomegaly, splenomegaly and facial oedema were observed more frequently in children aged 2 to 15 years than in adults.
As per the WHO 2019 interim guidelines for the treatment of HAT, the choice treatment is determined by a two-step assessment. The first step is the clinical assessment and the second step is the CSF examination (lumbar puncture), which is required only for patients with clinical symptoms and signs suggestive of the severe meningo-encephalitic stage.
Study Design
- Study Type
- Interventional
- Allocation
- Na
- Intervention Model
- Single Group
- Primary Purpose
- Treatment
- Masking
- None
Eligibility Criteria
- Ages
- 1 Year to 14 Years (Child)
- Sex
- All
- Accepts Healthy Volunteers
- No
Inclusion Criteria
- •Signed informed consent from one parent or from the legal representative
- •Assent from the paediatric patient (for paediatric patients >6 years of age) to participate in the study, collected in the presence of an impartial witness
- •Between 1 and 14 years of age and between 10 and ≤40 kg (as per the requirements of step 1 and step 2)
- •Male or female
- •Evidence of trypanosomes in any body fluid (blood or lymph or CSF)
- •Having a permanent address and able to comply with the schedule of follow-up visits
- •Agreement to not take part in any other clinical trials during the participation in this study
- •For pubescent girls of childbearing potential must agree to have avoid getting pregnant during the screening period and up to 3 months after acoziborole dosing by using an acceptable effective contraception method (sexual abstinence, condom, injectable progestin-only contraceptive)
- •Agreement not to continue any treatment (including traditional/herbal medicine) without consulting the investigator
- •Agreement not to start a treatment (including traditional/herbal medicine) during 4 months after intake of acoziborole without consulting the Investigator
Exclusion Criteria
- •Previous treatment for g-HAT
- •Refusal to participate in the study, expressed by the paediatric patient and/or parent or legal representative
- •Complicated severe acute malnutrition as defined by weight for height (-3 SDs Z score)
- •Unable to take medication by the oral route
- •Clinically significant medical condition (other than HAT) that could, in the opinion of the Investigator, jeopardise the patient's safety or interfere with participation in the study
- •Any condition (excluding HAT-specific symptoms) that affects the patient's and/or parent's ability to communicate with the Investigator as required to complete the study
- •Prior enrolment in the study or prior intake of acoziborole
- •Foreseeable difficulty complying with follow-up, including family of migrant workers, refugee status, itinerant trader, etc.
- •Clinically significant laboratory test abnormality, with:
- •Alanine aminotransferase (ALT) and/or aspartate aminotransferase (AST) more than twice the upper limit of normal (ULN)
- •Total bilirubin more than 1.5 x ULN
- •Severe leukopenia at <2000/mm3
- •Potassium <3.5 mmol/L
- •Any other clinically significant laboratory test abnormality
- •Pregnancy confirmed by a positive urine pregnancy test (during the screening period and/or within 24 hours prior to the start of treatment) for pubescent girls of childbearing potential
- •Not tested for malaria and/or not having received appropriate treatment for malaria
- •Not having received appropriate treatment for soil-transmitted helminthiasis
- •Paediatric patient who is taking praziquantel, erythromycin, ritonavir, lopinavir, or darunavir and could not stop this treatment
Arms & Interventions
Acoziborole
Single dose administration
Two different mode of administration will be used depending on the body weight and on the step of the study:
- In step 1: 2 tablets of 320 mg (whole) for paediatric patients weighing 30 to 40 kg
- In step 2 : whole or crushed tablets (1 or 2 tablets depending on the weight) for paediatric patients weighing 10 to 40 kg. Tablets will be crushed for paediatric patients < 6 years old and for paediatric patients ≥ 6 years old who are unable to swallow tablets
- Initially, recruitment will be limited to paediatric patients weighing 30 to 40 kg who will receive the 2 tablets of 320 mg.
- Once the PK data from the first six patients have been analysed and the dosing regimen confirmed or adapted, inclusion will resume and be extended to allow enrolment of paediatric patients weighing >10 kg.
Intervention: Acoziborole (Drug)
Outcomes
Primary Outcomes
Area under the curve (AUC0-96h)
Time Frame: From time 0 to 96 hours
Primary PK parameters in blood
Time to maximum concentration (Tmax)
Time Frame: From time 0 to 96 hours
Primary PK parameters in blood
Volume of distribution (Vd)
Time Frame: Day 1 Hour 0, Day 1 Hour 4, Day 1 Hour 9, Day 2 Hour 24, Day 3 Hour 48, Day 4 Hour 72, Day 5 Hour 96, Day 11 Hour 264, month 3 any time
Secondary PK parameters in blood
Area under curve (AUC0-∞)
Time Frame: Day 1 Hour 0, Day 1 Hour 4, Day 1 Hour 9, Day 2 Hour 24, Day 3 Hour 48, Day 4 Hour 72, Day 5 Hour 96, Day 11 Hour 264, month 3 any time
Secondary PK parameters in blood
Maximum concentration (Cmax)
Time Frame: From time 0 to 96 hours
Primary PK parameters in blood
Half-life (t1/2)
Time Frame: Day 1 Hour 0, Day 1 Hour 4, Day 1 Hour 9, Day 2 Hour 24, Day 3 Hour 48, Day 4 Hour 72, Day 5 Hour 96, Day 11 Hour 264, month 3 any time
Secondary PK parameters in blood
Clearance
Time Frame: Day 1 Hour 0, Day 1 Hour 4, Day 1 Hour 9, Day 2 Hour 24, Day 3 Hour 48, Day 4 Hour 72, Day 5 Hour 96, Day 11 Hour 264, month 3 any time
Secondary PK parameters in blood
CSF concentration
Time Frame: Day 11
Acoziborole concentration in CSF
Secondary Outcomes
- Success or failure(6 and 12 months post-treatment)
- Cumulative risk of proven failure over time (Kaplan-Meyer estimate)(6 and 12 months post-treatment)
- Occurrence of any treatment-emergent adverse events (TEAEs) (any grade) during the observation period(Day 1 to month 6)
- Occurrence of any TEAEs (grade ≥3 or severe) and relatedness to medication during the observation period(Day 1 to month 6)
- Occurrence of any serious adverse events (SAEs) during the study(Day 1 to month 12)
- Corrected QT interval (QTc)(Day 1 Hour 0, Day 1 Hour 4, Day 1 Hour 9, Day 2 Hour 24, Day 3 Hour 48, Day 4 Hour 72, Day 5 Hour 96, Day 11 Hour 264)
- Palatability questionnaire(Day 1)
- Acceptability questionnaire(Day 1)
