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Steyer, A.

Publications and source records attributed to Steyer, A..

3 recordsLinked to original sources

PinCorr: A high-pressure freezing carrier with intrinsic landmarks for cryo-correlative light and electron microscopy

Cryo-correlative light and electron microscopy methods enable targeted structural analysis of fluorescently labelled features in vitrified specimens. However, correlative workflows on high-pressure frozen samples often remain challenging due to the lack of persistent landmarks for reliable sample tracking and image registration between different microscopes. Standard high-pressure freezing carriers provide little intrinsic reference information, as the exposed sample surface is often smooth and rotationally ambiguous, complicating localisation of regions of interest across imaging platforms. Here, we introduce PinCorr, a 3-mm high-pressure freezing carrier with an integrated coordinate system formed by four asymmetrically arranged pillars with distinct geometries. These built-in landmarks remain visible after freezing and provide a stable, sample-independent reference frame for orientation and correlation between cryo-fluorescence microscopy and electron microscopy. We show that PinCorr supports fluorescence-guided cryo-volume imaging, serial lift-out for cryo-electron tomography and freeze-substitution workflows followed by room-temperature on-section correlation. PinCorr thus provides a hardware-based approach to establishing a persistent spatial reference frame in HPF-based correlative imaging workflows for thick and multicellular specimens.

Molecular Biology↗

Anatomy and mechanics of tsetse fly blood feeding

African trypanosomiasis is a neglected tropical disease transmitted by tsetse flies (Glossina spp.) in sub-Saharan Africa. The flys saliva carries parasitic unicellular trypanosomes, such as Trypanosoma brucei, leading to infections in humans, domestic animals, and wildlife. Tsetse flies feed on a broad spectrum of hosts, including humans, elephants, buffaloes, rhinos, hippos, turtles and monitor lizards. To understand how the insects can penetrate such diverse skin types, we detailed the anatomical structures involved in tsetse blood feeding, their mechanical properties and the forces exerted by the fly during probing. We found that the tsetse flys feeding apparatus does not rely on exceptionally unique structures or extraordinary forces. Instead, the tsetse fly has evolved subtle yet highly efficient adaptations, which include a labellum equipped with arrays of small teeth. When combined with a robust retraction movement of the proboscis, these structures create lesions on various types of skin, thus facilitating blood pool feeding on a broad host spectrum.

biophysics↗

Virus transmission by ultrasonic scaler and its prevention by antiviral agent

During an ultrasonic scaler (USS) operation, droplets and aerosol are generated that may contribute to the transmission of viruses contained in saliva and gingival crevicular fluid. The purpose of this research was to develop an experimental model for testing the spread of viruses during USS instrumentation and to examining the prevention of spreading by replacing the coolant with an antiviral agent. In a virus transmission tunnel, USS operation with saline coolant and delivery of a viral suspension to the vicinity of USS tip generated droplets and aerosol containing Equine Arteritis Virus (EAV). Evaluation of droplet transmission was evaluated with adherent 48h cell culture monolayer RK13 cell lines in standard 48-well-plates positioned at a distance from 30 to 55 cm. The aerosol was collected by a cyclone aero-sampler flow of 100l/min. Antiviral activity of 0.25% sodium hypochlorite or electrolyzed water (EOW) was tested by suspension test. The two tested antiviral agents transmission prevention ability was evaluated by repeating the same experiment as with saline coolant. All experiments were repeated twice. With saline coolant, the cytopathic effect on cells was found in cells up to the distance of 45 cm, with the number of infected wells decreasing with distance. Viral particles were detected in only one AS in a very low concentration ([≤]4.2 TCID50/ml). In suspension test of 0.25% NaOCl and EOW, the TCID50/ml was below detection limit after 5s. With both antiviral agents, no cytopathic effect was found. However, the cytotoxic effect of 0.25% NaOCl was evident up to the distance of 35 cm. By USS activity, EAV could be transmitted by droplets up to a distance of 45 cm. Both antiviral agents could prevent virus droplet transmission. The transmission of EAV by aerosol yielded inconclusive results.

microbiology↗