Clinical trials

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Condition / disease
Location
Status: Not yet recruiting

Can Aspirin Reduce the Risk of HCC in Cirrhosis: The AspiRe HCC Trial

This clinical trial is testing whether taking a low dose aspirin tablet (100 mg) once a day can help prevent liver cancer (hepatocellular carcinoma, HCC) in people who have cirrhosis, which is severe scarring of the liver. People with cirrhosis have a higher risk of developing HCC. Currently, there is no approved treatment that prevents liver cancer in this group. Research from around the world suggests that low dose aspirin might reduce the risk of liver cancer by up to half and is safe for people with cirrhosis. However, it is not yet approved for this purpose in Australia. A trial is needed to find out if aspirin really can prevent liver cancer in people with cirrhosis and is safe for these people to use. 890 people from up to 7 hospitals across Australia will take part. Participants will take medication daily for 4 years. They will be randomly allocated to either aspirin or a placebo (dummy pill). Participants will continue to have their regular 6 monthly clinic visit with liver ultrasounds and blood tests as part of their normal care. If at any time liver cancer is found, they will stop the trial. Participants will also complete some extra tasks: * Record missed doses or other medications in a small diary. * Fill in two short quality of life surveys each year. * Return their medication and diary at their regular 6 monthly appointments. * In Western Australia only: they will be invited to give optional blood samples for future research.

Participants needed: 890
Trial details
Phase: Phase 3Age: 18-75Biological sex: AllType: InterventionalSponsor: Curtin UniversityUpdated: Apr 14, 2026
Eligibility criteria

Provide written informed consent to participate in the trial according to ICH GC... [+4]

autoimmune liver disease. [+15]

Status: Recruiting

Investigating the Pharmacokinetics of Tafenoquine in Healthy Papua New Guinean Children

Plasmodium vivax is the most geographically widespread malaria species and the second largest contributor to symptomatic malaria worldwide. It accounts for half of all malaria cases outside Africa, with an estimated 14.3 million clinical vivax malaria cases reported annually, contributing to an annual cost of US$359 million. Children are most vulnerable to infection, with P. vivax prevalence peaking between 2 to 6 years of age. In Papua New Guinea (PNG), there are \>1.5 million suspected P. vivax cases annually, and while P. falciparum infections are the most prevalent, P. vivax transmission is the most intense in the world. P. vivax in PNG provides a unique epidemiological setting in which to assess innovative treatments in children. The complex biology of P. vivax represents a challenge for malaria control and chemotherapy, especially dormant liver-stage parasites (hypnozoites) which can reactivate (relapse) and cause disease at a time remote from the primary infection. Hypnozoite relapse is the primary cause of vivax malaria in endemic regions and is resistant to most antimalarial drugs. Identifying effective treatments for radical cure, the complete elimination of parasites (both blood- and liver-stage), is therefore a priority. The World Health Organization (WHO) recommends a 14-day radical cure regimen for uncomplicated vivax malaria; comprised of blood stage treatment (chloroquine or artemisinin combination therapy (ACT)) and 14 days of the 8-aminoquinoline drug primaquine (PQ; 0.25-0.5 mg/kg/day) for liver-stage cure. More recently, the 8-aminoquinoline tafenoquine has garnered interest as an alternative radical cure agent to primaquine. However, there is limited data on the pharmacokinetics, tolerability and radical cure efficacy of tafenoquine in children. The overall aim of the study is to characterise the pharmacokinetic profile of tafenoquine (and primary metabolite) in Papua New Guinean children.

Participants needed: 30
Trial details
Phase: Phase 4Age: 5-12Biological sex: AllType: InterventionalSponsor: Curtin UniversityUpdated: Mar 18, 2026Locations: 1
Eligibility criteria

have a normal glucose-6-phosphate-dehydrogenase (G6PD) activity (>70% enzyme act... [+5]

have G6PD activity <70% [+5]

Status: Not yet recruiting

Postpartum 8-aminoquinoline Breast Milk Study

In Papua New Guinea, administration of primaquine (PQ) or tafenoquine (TQ) to breastfeeding mothers is contraindicated during the first six months postpartum, when infants are recommended to be exclusively breastfed, because of a lack of comprehensive pharmacokinetic data on PQ/TQ neonatal and infant exposure via breast milk. The therapeutic restriction of PQ/TQ use in lactating women during the first six months postpartum effectively translates into \~10% of females being excluded from radical cure in endemic areas at any time. This is because many at risk women live in remote areas, are frequently lost to follow-up, or may have conceived again before they reattend. As a result, radical cure is rarely achieved and women are exposed to recurrent infections and cumulative risk of anaemia. Relapses may occur for years, placing subsequent pregnancies at risk and perpetuating intergenerational failure of fetal growth. They also contribute to malaria transmission, thus household and community exposure to vivax malaria. The goal of the present study is to determine how much PQ/TQ is transferred to a suckling baby, if a mother receives a treatment course of PQ/TQ at time of delivery. We also want to confirm that this treatment is safe and has no major side effects for babies in Papua New Guinea. The study Interventions areas follows: Group 1 - Participants receive PNG standard of care; PQ given 6-months postpartum; Group 2 - Participants receive a 14-day treatment regimen of PQ, at the standard dose prescribed in PNG for vivax radical cure (0.5 mg/kg/day for 14 days); Group 3 - Participants receive an accelerated high-dose 7-day treatment regimen of PQ, as per current WHO recommendations (1.0 mg/kg/day for 7 days); Group 4 - Participants receive a single dose of 300mg tafenoquine. All participants will be monitored for a total duration of 6 months, with the safety, tolerability, pharmacokinetics and preliminary relapse efficacy of PQ/TQ evaluated at standardised time points over this period (Day 0, 1, 3, 6, 8, 15, 20, 28, and Month 2, 3, 4, 5 and 6). At each of these time points, participants will be asked to describe any symptoms they may be experiencing, participate in a medical examination, and provide a blood and breast milk sample for drug analysis and safety (biochemistry and haematology testing). The investigators will also collect a small blood sample (heel prick) from the infant to measure drug concentrations and safety testing.

Participants needed: 60
Trial details
Phase: Phase 2, Phase 3Age: 18+Biological sex: FemaleType: InterventionalSponsor: Curtin UniversityUpdated: Mar 18, 2026Locations: 1
Eligibility criteria

≥18 years of age [+8]

Either mother/infant have G6PD activity <70% (SD Biosensor) [+7]

Status: Not yet recruiting

Investigating the Pharmacology of Tafenoquine in Papua New Guinean Children With Uncomplicated Malaria

Plasmodium vivax is the most geographically widespread malaria species and the second largest contributor to symptomatic malaria worldwide. It accounts for half of all malaria cases outside Africa, with an estimated 14.3 million clinical vivax malaria cases reported annually, contributing to an annual cost of US$359 million. Children are most vulnerable to infection, with P. vivax prevalence peaking between 2 to 6 years of age. In Papua New Guinea (PNG), there are \>1.5 million suspected P. vivax cases annually, and while P. falciparum infections are the most prevalent, P. vivax transmission is the most intense in the world. P. vivax in PNG provides a unique epidemiological setting in which to assess innovative treatments in children.The complex biology of P. vivax represents a challenge for malaria control and chemotherapy, especially dormant liver-stage parasites (hypnozoites) which can reactivate (relapse) and cause disease at a time remote from the primary infection. Hypnozoite relapse is the primary cause of vivax malaria in endemic regions and is resistant to most antimalarial drugs. Identifying effective treatments for radical cure, the complete elimination of parasites (both blood- and liver-stage), is therefore a priority. The World Health Organization (WHO) recommends a 14-day radical cure regimen for uncomplicated vivax malaria; comprised of blood stage treatment (chloroquine or artemisinin combination therapy (ACT)) and 14 days of the 8-aminoquinoline drug primaquine (PQ; 0.25-0.5 mg/kg/day) for liver-stage cure. More recently, the 8-aminoquinoline tafenoquine has garnered interest as an alternative radical cure agent to primaquine. However, there is limited data on the pharmacokinetics, tolerability and radical cure efficacy of tafenoquine in children. Furthermore, early data suggest a drug interaction between TQ and artemisinin combination therapy (ACT) drugs - which requires further investigation and confirmation. This study will generate critical paediatric safety, tolerability, pharmacokinetic, and preliminary efficacy data for TQ when administered with either artemether-lumefantrine or dihydroartemisinin-piperaquine in PNG children with uncomplicated malaria.

Participants needed: 60
Trial details
Phase: Phase 4Age: 2-12Biological sex: AllType: InterventionalSponsor: Curtin UniversityUpdated: Feb 12, 2026Locations: 1
Eligibility criteria

Have normal G6PD activity (>70% enzyme activity) as confirmed by quantitative SD... [+6]

Have <70% G6PD enzyme activity, as confirmed by quantitative SD Biosensor [+6]