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ZELA, L.

Publications and source records attributed to ZELA, L..

2 recordsLinked to original sources

Efficacy of a long lasting ivermectin formulation against malaria vectors in a semi-field trial in Bapla, Southwest of Burkina Faso

BackgroundIvermectin, a widely used endectocide with activity against Anopheles (An) mosquitoes, has emerged as a promising complementary tool for malaria vector control. However, currently approved oral formulations provide only short-lived plasma concentrations at mosquitocidal levels, thereby limiting their operational impact. To overcome this limitation, a long-acting injectable formulation based on ivermectin and BEPO technology (mdc-STM-001) was selected through laboratory screening using mosquito colonies. This formulation demonstrated mosquitocidal efficacy meeting WHO criteria, with a hazard ratio (HR) >4 maintained for at least two months. The present study aims to further characterize the efficacy of ivermectin under robust field conditions and to expand susceptibility assessments to wild Anopheles populations representing different species and vectorial status. Ivermectin was tested in cattle at two doses under field conditions using experimental huts and tent traps. Plasma drug levels were also monitored to characterize the pharmacokinetic profile of ivermectin. MethodsThirty-six calves were involved in the study and allocated to three groups (n = 12 per group). The mdc-STM-1.0 group received a single subcutaneous injection of the long-acting ivermectin formulation mdc-STM-001 at a dose of 1.0 mg/kg; the mdc-STM-1.5 group received the same formulation at 1.5 mg/kg and the third group served as controls. Using a three-arm design, cattle from each treatment group were simultaneously exposed to mosquitoes in experimental huts and tent traps, following a Greco-Latin Square rotation to minimize positional confounding factors. Pharmacokinetic data were collected to assess ivermectin release from the subcutaneous depot. Correlations between plasma ivermectin concentrations and mosquito mortality were explored, and survival analysis including Kaplan-Meier and cox proportional hazards models were performed to assess the effect of treatment on mosquito survival. ResultsThe mdc-STM-001 formulation was well tolerated and produced sustained, dose-dependent plasma ivermectin concentrations, with detectable levels maintained for more than 90 days after a single administration. Both doses induced strong mosquitocidal activity against wild Anopheles, with hazard ratios reaching 8.03 and 16.47 for the 1.0 and 1.5 mg/kg doses, respectively. An. funestus and An. rufipes were the most susceptible species (LC50: 5.1-6.9 ng/mL) exhibiting prolonged LC50 coverage (>75 days), whereas An. coustani was less susceptible (LC50: 12.4-19.2 ng/mL) resulting in a shorter duration of effective coverage (17-41 days). ConclusionsTaken together, our results revealed the potential of the mdc-STM-001 long-acting ivermectin formulation as an effective endectocide against residual malaria transmission by primary and secondary vectors and establish evidence basis to support its progression to early-phase clinical trials in humans.

ecology↗

Selection of a Lead Long-Acting Formulation of Ivermectin to Target Major Malaria Vectors in Western Africa: Evaluation of Pharmacokinetics and Mosquitocidal Efficacy in Cattle under Laboratory Conditions.

BackgroundIvermectin, a semisynthetic endectocide, is widely used against parasitic nematodes in humans and animals. Its lethality to Anopheles mosquitoes after feeding on treated hosts represents a promising malaria control strategy, particularly against outdoor transmission. However, standard oral formulations for use in humans produce short-lived mosquitocidal blood concentrations, limiting epidemiological impact. To meet WHO Preferred Product Characteristics (PPC) for endectocides against malaria vectors (Hazard Ratios >4 for at least one month), three long-acting injectable ivermectin formulations (LAIFs) based on BEPO(R) depot technology were developed and compared in cattle to identify the most suitable candidate for future human use. MethodsA cattle-Anopheles model was used under laboratory conditions in Bobo-Dioulasso, Burkina Faso. Three LAIF candidates (mdc-STM-001, mdc-STM-002, mdc-STM-003) were injected to calves (n=5 per formulation) at 0.6 mg/kg, with untreated calves as controls (n=5). Plasma ivermectin concentrations were measured over 130 days and analyzed using non-compartmental pharmacokinetics. Direct skin feeding assays were conducted at 15 timepoints (days 2-126 post-injection) using insecticide-susceptible (KIS) and wild-derived resistant (VK5) Anopheles colonies. Efficacy was assessed through 10-day cumulative mortalities, hazard ratios, 50% lethal concentrations (LC50), and duration of exposure above the 10-day LC50, accounting for the extrinsic incubation period of Plasmodium falciparum. ResultsAll formulations were well tolerated. Mdc-STM-001 showed the most favorable pharmacokinetic profile, with a controlled peak concentration (Cmax = 34.5 {+/-} 12.7 ng/mL) and the lowest inter-individual variability (12%). Ten-day hazard ratios exceeded 4 and cumulative mortalities were >50% for at least 60 days in both strains. Median mosquito lifespan remained below 10 days for at least 90 days post-injection. The 10-day LC50 for resistant mosquitoes (3.66 [2.69-4.97] ng/mL) was maintained for [≥]126 days. ConclusionThe Mdc-STM-001 was identified as the optimal candidate. A single injection induced sustained mosquitocidal efficacy for at least two months, achieving HR >4 against both susceptible and resistant Anopheles populations and meeting WHO PPC for malaria endectocides. Although extrapolation from cattle to humans requires caution, the favorable pharmacokinetic profile and robust entomological outcomes support progression to Phase 1 clinical trials. Ivermectins established safety record further strengthens the rationale for clinical development.

pathology↗