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Gliga, D. S.

Publications and source records attributed to Gliga, D. S..

2 recordsLinked to original sources

A new semi-automated, motility-based screening assay for discovery of compounds with activity against the juvenile stage of Fasciola hepatica

Fasciola hepatica is a trematode parasite responsible for fasciolosis, a liver disease that affects humans and livestock worldwide. Together with other food-borne trematode infections, fasciolosis is considered a neglected tropical disease. Further, it imposes substantial agricultural losses due to infections in ruminants. No vaccine is currently available, and control heavily relies on drug treatment, especially with triclabendazole (TCBZ). However, the intensive use of TCBZ over the past four decades has led to increasing rates of treatment failures and the emergence of drug-resistant parasites. Therefore, the identification of new treatment options is an urgent priority. The currently available toolset for drug screening, however, is limited. To address this need, we established a novel, semi-automated, standardized, and objective screening assay based on motility monitoring of newly excysted juveniles using microscopic live imaging. The assay was validated by testing a panel of ten compounds with known anthelmintic properties, amongst them TCBZ (IC50: 1.5 {micro}M) and the new activator of the F. hepatica transient receptor potential melastatin (TRPM) ion channel, benzamidoquinazolinone (IC50: 1.05 {micro}M). In addition to these two compounds with known activity against F. hepatica, three compounds were identified as particularly promising with a fast onset of action and IC50 values in the nanomolar range: the salicylanilides MMV665807 (IC50: 44 nM), niclosamide (IC50: 32 nM), and its ethanolamine salt, niclosamide ethanolamine (IC50: 9 nM). Complementary live/dead staining revealed that only TCBZ displayed parasiticidal activity, while the other compounds, although leading to parasite paralysis, did not lead to parasite death within 72 hours. Scanning electron microscopy of drug treated parasites did not reveal any significant damage at concentrations corresponding to the IC50s, but strong phenotypes were visible at 20 {micro}M. The presented motility assay provides a robust method for the discovery of novel anthelmintic compounds and facilitates the ongoing effort to combat fasciolosis. Author SummaryFasciola hepatica, the common liver fluke, is a parasitic platyhelminth that infects the liver and biliary ducts of humans and livestock, causing fasciolosis, a Neglected Tropical Disease as defined by the World Health Organization. Triclabendazole is the drug of choice to treat humans and animals. However, its intensive use has led to the emergence of drug resistance resulting in treatment failures worldwide. The identification of novel drugs is therefore urgent. Here, we present a semi-automated and objective method to assess the activity of compounds on one of the key life stages of the parasite: the newly excysted juveniles (NEJ). This stage is highly motile and motility assessment can be exploited to screen for bioactive compounds. Using time-lapse imaging, we quantified NEJ movement after drug exposure. From a panel of ten tested reference anthelmintics, two known fasciolicides (triclabendazole and benzamidoquinazolinone) and three additional compounds (MMV665807, niclosamide, and niclosamide ethanolamine) displayed particularly strong activity and were selected for further investigation. This method represents a robust tool for drug screening and facilitates the discovery of new compounds against F. hepatica.

microbiology↗

Changes in housing and diet combined increase fecal Oxyurid load in captive tokay geckos

Reptiles are increasingly popular as exotic pets and suffer high mortality especially in the first year in captivity, yet research into their welfare remains limited. Reptiles are often infected by parasites. One common taxon is Oxyuroidea superfamily, which has a direct life cycle that promotes easy transmission in enclosed environments. Due to limited ecological knowledge, inappropriate husbandry practices are common in reptiles causing stress and increased parasite loads leading to severe health issues. Therefore, it is crucial to understand how routine captive procedures may influence parasite infections. In this study, we exposed captive bred tokay geckos (Gekko gecko) to two stressors common in the reptile trade, cohabitation with a novel conspecific and a change in diet. We tested their effect on fecal oxyurid output compared to a control group as well as their combined effect. We found that a single stressor had no effect on fecal parasite load while both combined did significantly increase parasite load. However, we did not find a detectable change in the lizards general condition. Our study shows that seemingly minor changes in housing and husbandry can exert stress and increase parasite load in tokay geckos. Further studies are needed to determine which other procedures (e.g. confinement, transport, novel environments) affect health and when combined could lead to more severe changes in health in reptiles. SummaryMany reptiles are infected with parasites that can lead to health issues. Routine husbandry procedures such as new conspecifics and diet are stressful and lead to a higher parasite load in geckos.

zoology↗