Joel Tärning

Professor
Visiting address: Avd.För klinisk Farmakologi C1:68, Karolinska Universitetssjukhuset, 14186 Stockholm
Postal address: H5 Laboratoriemedicin, H5 Klin Farmakologi Eliasson, 141 52 Huddinge
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Grants

  • MORU Wellcome Major International Programme Core Grant Renewal 2025-2032
    Wellcome Trust Ltd
    1 October 2025 - 30 September 2032
    MORU’s research programme aims to improve the health and well-being of people living in low-resource settings across the tropical world through high quality science and its translation. We will conduct clinical and laboratory research on diseases that disproportionately affect disadvantaged communities. Through discovery research we will identify and understand these health threats, and then innovate affordable and deployable solutions to counter them. We address health challenges along the entire patient pathway, from the village health worker to the intensive care unit. We will address major challenges, with the aim of benefitting hundreds of millions of people. We will focus on infectious diseases and maternal and child health, and the emerging health threats of antimicrobial resistance and climate change. We are committed to ethical research practices and community engagement to ensure our work is relevant. We will improve the techniques to assess and optimise new and existing antimicrobial treatments, and then conduct high-quality clinical trials to assess them. We will strengthen stakeholder partnerships and collaborations to ensure our research agenda is equitably set, and our research is translated into impact. We will develop local research leaders and build research capacity to improve health outcomes and contribute to a more equitable world.
  • Swedish Research Council
    1 January 2025 - 31 December 2026
    Malaria is a potentially severe and fatal disease. Artemisinin combination therapy (ACT) is the first line therapy for malaria. Alarming emergence of resistance to artemisinin and partner drugs is now reported from Sub-Saharan Africa. Understanding treatment outcomes and identifying drug resistant markers could guide management and development of new treatment strategies. The purpose of this preparatory study is to plan: 1) a nationwide prospective treatment efficacy study using a new standardized follow-up protocol for all malaria patients in Sweden for detecting treatment failures, and 2) to plan a comprehensive prospective study in adults treated for Plasmodium falciparum malaria with more extensive sampling to assess parasite clearance time in relation to antimalarial drug concentrations, host immunity and parasite genomics. Within the preparatory study, we will assess current practice of diagnostics and management of malaria across Sweden. Moreover, we will perform a retrospective review of treatment outcomes since ACT was introduced, and also perform a pilot analysis of resistance mutations in available archived samples. The project involves experts in infectious diseases, pediatrics, microbiology and pharmacology
    and the aim is to establish a nationwide collaborative network including all treating clinics. The findings from this project will lead to improved management and monitoring of malaria in travelers, and could also inform treatment strategies in endemic areas.
  • Medical Research Council
    30 June 2022 - 31 December 2026
    Neonatal sepsis (life-threatening infection in infants aged below 28 days of age) is the single greatest cause of preventable death in children living in tropical countries, being responsible for more than half a million of the estimated 2.4 million deaths that occur each year. Most deaths occur at or near home. Prompt administration of effective antibiotics by injection is life saving, but is usually not possible in the rural tropics where health centres are frequently several hours' journey away from home. Alternative strategies are needed to deliver effective treatment at the community level. Since 2012 we have worked on the pharmaceutical development of a suppository formulation of ceftriaxone. Ceftriaxone is an antibiotic used to treat severe infections, including meningitis, which has the advantage of being dosed just once day because it is a long-acting medicine. Our goal is to make effective community-based neonatal sepsis treatment feasible at low cost, and therefore used early and widely enough to prevent a substantial proportion of neonatal deaths from sepsis in high-burden low- and middle-income countries. We have developed several prototype suppositories already and we are ready to move testing into humans. We have an industrial partner (Orofino Pharmaceuticals) who has evaluated our candidate formulations for feasibility for industrial production and has lowered the cost of producing the absorption enhancer that will be combined with the antibiotic in the formulation. In this research project we plan to manufacture two different suppositories and assess how well they are absorbed in healthy adults in Thailand first. Based on absorption and safety results from this study we will then select the leading formulation to be tested in babies. We plan to give 60 babies who are in hospital under treatment for an infection one dose of the suppository in addition to their usual treatment and evaluate the absorption of antibiotic in the suppository. If ceftriaxone is absorbed adequately by this route and is well-tolerated, we will assess this formulation in large trials to measure impact on mortality, with the longer term goal of including the treatment in global treatment guidelines. This would pave the way for widespread uptake in high burden low- and middle-income countries. Technical Summary Neonatal sepsis is the single greatest cause of preventable death in children living in tropical countries, being responsible for more than half a million of the estimated 2.4 million deaths that occur each year. Most deaths occur at or near home. Prompt administration of effective antibiotics by injection is life saving, but is usually not possible in the rural tropics where health centres are frequently several hours' journey away. Alternative strategies are needed to deliver effective treatment at the community level. Since 2012 we have worked on the pharmaceutical development of a rectal formulation of ceftriaxone, a broad spectrum, slowly eliminated, and widely-used antibiotic. The objective is to make effective community-based neonatal sepsis treatment feasible at low cost, and therefore used early and widely enough to prevent a substantial proportion of neonatal deaths from sepsis in high-burden low- and middle-income countries (LMICs). Roche gave us access to data from prior studies of intra-rectal ceftriaxone in animals and man showing bioavailability sufficient for treatment of serious infections. We developed several prototypes, and tested pre-clinical bioavailability, confirming earlier results. Our industrial partner (Orofino), has evaluated our candidate formulations for feasibility for industrial production and has lowered the cost of producing the absorption enhancer. The next steps are to i) manufacture GMP clinical batches, ii) evaluate bioavailability and tolerability of two formulations in healthy adults and iii) assess absorption and tolerability of the leading formulation in sick neonates. If rectal ceftriaxone is absorbed adequately and is well-tolerated, we will assess this formulation in field trials to measure impact on mortality, with the goal of including rectal formulations of ceftriaxone in World Health Organization Treatment Guidelines. This would pave the way for widespread uptake in high burden LMICs.
  • Pharmacological properties of triple antimalarial drug combinations in malnourished children
    Wellcome Trust Ltd
    1 September 2021 - 31 March 2023
  • Medical Research Council
    1 February 2021 - 27 March 2025
  • Medical Research Council
    1 January 2021 - 31 March 2024
  • Modelling the impact of poor quality antimicrobials on patient outcome and drug resistance – a pilot study to inform policy in the absence of empirical data
    Wellcome Trust Ltd
    1 November 2017 - 31 August 2019
  • High resolution mass spectrometry for tropical medicine research.
    Wellcome Trust Ltd
    1 November 2014 - 31 October 2019

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