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Biology subjects

Olliff, S.

Publications and source records attributed to Olliff, S..

2 recordsLinked to original sources

Experimental validation of computationally prioritized bisphosphonates reveals no direct in vitro antiviral activity against SARS-CoV-2

It is essential to experimentally evaluate antiviral efficacy predicted by molecular docking and related in silico approaches, which this study achieves for three bisphosphonates (alendronate, minodronate, zoledronate) and treprostinil, identified as potential antiviral therapies in our previous work. These investigational compounds had no detectable cytotoxicity at concentrations up to 25M in Vero E6 cells but also failed to show any antiviral effect against the PQ.8.1 isolate of SARS-CoV-2, when compared to control drugs (ensitrelvir, nirmatrelvir, and remdesivir). It appears that for bisphosphonates, any protective effect is likely due to other virus- or host-mediated mechanisms of action. This study demonstrates the importance of iterating between theoretical hypotheses and experiments to elucidate underlying mechanisms at play.

molecular biology↗

Use of Stem Cell-Derived Cardiomyocyte and Nasal Epithelium Models to Establish a Multi-Tissue Model Platform to Validate Repurposed Drugs Against SARS-CoV-2 Infection

The novel coronavirus disease (COVID-19) and any future coronavirus outbreaks will require more affordable, effective and safe treatment options to complement current ones such as Paxlovid. Drug repurposing can be a promising approach if we are able to find a rapid, robust and reliable way to down-select and screen candidates using in silico and in vitro approaches. With repurposed drugs, ex vivo models could offer a rigorous route to human clinical trials with less time invested into nonclinical animal (in vivo) studies. We have previously shown the value of commercially available ex vivo/3D airway and alveolar tissue models, and this paper takes this further by developing and validating human nasal epithelial model and embryonic stem cells derived cardiomyocyte model. Five shortlisted candidates (fluvoxamine, everolimus, pyrimethamine, aprepitant and sirolimus) were successfully compared with three control drugs (remdesivir, molnupiravir, nirmatrelvir) when tested against key variants of the SARS-CoV-2 virus including Delta and Omicron, and we were able to reconfirm our earlier finding that fluvoxamine can induce antiviral efficacy in combination with other drugs. Scalability of this high-throughput screening approach has been demonstrated using a liquid handling robotic platform for future Disease-X outbreaks.

microbiology↗