Publications by authors named "Stone H"

Microtubules are dynamic filaments that assemble spindles for eukaryotic cell division. As the concentration profiles of soluble tubulin and regulatory proteins are non-uniform during spindle assembly, we asked if diffusiophoresis - motion of particles under solute gradients - can act as a motorless transport mechanism for microtubules. We identify the migration of stable microtubules along cytoplasmic and higher concentration gradients of soluble tubulin, MgCl, Mg-ATP, Mg-GTP, and RanGTP at speeds O(100) nm/s, validating the diffusiophoresis hypothesis.

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  • Management decisions in wildlife conservation should consider both habitat selection and demographic performance, as habitat selection alone may not reflect true species viability.
  • This study focuses on the greater sage-grouse to illustrate how mapping habitat selection against survival rates can reveal important mismatches and trade-offs throughout different reproductive life stages.
  • By integrating demographic measures into habitat management, conservation efforts can be more effectively tailored to enhance species survival and resource allocation, particularly during critical life stages.
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Surface-attached cells can sense and respond to shear flow, but planktonic (free-swimming) cells are typically assumed to be oblivious to any flow that carries them. Here, we find that planktonic bacteria can transcriptionally respond to flow, inducing expression changes that are beneficial in flow. Specifically, we use microfluidic experiments and quantitative modeling to show that in the presence of flow, planktonic induce shear rate-dependent genes that promote growth in low-oxygen environments.

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A hallmark of biomolecular condensates formed via liquid-liquid phase separation is that they dynamically exchange material with their surroundings, and this process can be crucial to condensate function. Intuitively, the rate of exchange can be limited by the flux from the dilute phase or by the mixing speed in the dense phase. Surprisingly, a recent experiment suggests that exchange can also be limited by the dynamics at the droplet interface, implying the existence of an 'interface resistance'.

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  • Mammalian DNA replication requires various helicases and nucleases for accurate genetic duplication, but the direction of these activities was previously unclear.
  • The study identifies USP50 as a crucial chromatin-associated protein that aids in ongoing replication, fork restart, and telomere maintenance, while also preventing DNA breaks.
  • USP50 works by ensuring the correct localization of other proteins like WRN and FEN1 during stalled replication, and its absence leads to increased activity of certain helicases and nucleases, causing replication issues and telomere instability.
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Capillarity-driven transport in nanoporous solids is widespread in nature and crucial for modern liquid-infused engineering materials. During imbibition, curved menisci driven by high negative Laplace pressures exert an enormous contractile load on the porous matrix. Due to the challenge of simultaneously monitoring imbibition and deformation with high spatial resolution, the resulting coupling of solid elasticity to liquid capillarity has remained largely unexplored.

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Lumpy skin disease (LSD) poses a significant threat to animal welfare and leads to economic losses in affected countries. LSD outbreaks may also impact trade and regional relationships. South and Southeast Asia, with its dense livestock population and intricate trade networks, are susceptible to LSD outbreaks.

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  • Malaria begins when Plasmodium sporozoites from infected mosquitoes are injected into a host’s skin during a blood meal.
  • Researchers used CRISPR-Cas9 to create AgTRIO knockout mosquitoes, which showed reduced ability to bite hosts and needed to probe multiple times for blood.
  • Despite their diminished probing capabilities, these knockout mosquitoes ended up transmitting more Plasmodium to hosts, highlighting the role of the AgTRIO protein in mosquito behavior and malaria transmission.
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The Flory-Huggins theory describes the phase separation of solutions containing polymers. Although it finds widespread application from polymer physics to materials science to biology, the concentrations that coexist in separate phases at equilibrium have not been determined analytically, and numerical techniques are required that restrict the theory's ease of application. In this work, we derive an implicit analytical solution to the Flory-Huggins theory of one polymer in a solvent by applying a procedure that we call the implicit substitution method.

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The soft part of the Earth's surface - the ground beneath our feet - constitutes the basis for life and natural resources, yet a general physical understanding of the ground is still lacking. In this critical time of climate change, cross-pollination of scientific approaches is urgently needed to better understand the behavior of our planet's surface. The major topics in current research in this area cross different disciplines, spanning geosciences, and various aspects of engineering, material sciences, physics, chemistry, and biology.

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Background: Recurrence of focal segmental glomerulosclerosis (FSGS) or steroid-resistant nephrotic syndrome (SRNS) after kidney transplant leads to significant morbidity and potentially earlier allograft loss. To date however, reported rates, risk factors and treatment outcomes have varied widely.

Methods: We applied computational phenotypes to a multicenter aggregation of electronic health records data from 7 large pediatric health systems in the USA, to identify recurrence rates, risk factors, and treatment outcomes.

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The fluid-fluid interface is a complex environment for a floating object where the statics and dynamics may be governed by capillarity, gravity, inertia, and other external body forces. Yet, the alignment of these forces in intricate ways may result in beautiful pattern formation and self-assembly of these objects, as in the case of crystalline order observed with bubble rafts or colloidal particles. While interfacial self-assembly has been explored widely, controlled manipulation of floating objects, drops, at the fluid-fluid interface still remains a challenge largely unexplored.

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Previous research suggests that curiosity is sometimes induced by novel information one has no relevant knowledge about, but it is sometimes induced by new information about something that one is familiar with and has prior knowledge about. However, the conditions under which novelty or familiarity triggers curiosity remain unclear. Using metacognitive confidence judgments as a proxy to quantify the amount of knowledge, this study evaluates the relationship between the amount of relevant knowledge and curiosity.

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Unlabelled: The effect of variations in Nb, Ta, and Ti concentrations in exchange for Al on the oxidation resistance of a new polycrystalline Ni-based superalloy (C19) was studied in air at 800 °C for up to 1000 h. An external scale of Ti-doped CrO and a sub-scale of discontinuous AlO intrusions formed on the surface of all the studied alloys. Contrary to other reports, increasing the Nb concentration improved the oxidation performance and may have promoted the formation of a CrTaO layer, thereby reducing oxygen ingress.

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Introduction: Pharmacists are often not recognised as a core part of palliative care teams, despite their ideal placement to assist with the burden of medication management.

Objective: This study explored the role of pharmacists working in the rural palliative care team, in the home-based setting.

Design: Health care professionals working with palliative care patients in rural South Australia participated in semi-structured interviews.

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The stereoselective synthesis of both enantiomers of -protected 1,2-diazetidine-3-carboxylic acid (aAze) from homochiral glycidol is described. Orthogonal protection of this novel cyclic α-hydrazino acid allows for selective functionalisation at either N or N. This novel peptidomimetic building block was incorporated into the pseudotripeptides Gly-γaAze-Ala and Gly-δaAze-Ala.

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  • Measuring elastic moduli of fragile fibers like bacteria and carbon nanotubes is important in various fields, but traditional tensile tests are slow and labor-intensive.
  • A new microfluidic method allows high-throughput measurement of microfiber elastic moduli through a spontaneous rope coiling phenomenon, eliminating the need for sample handling between tests.
  • This method operates at a rate of 3,300 fibers per hour, significantly enhancing efficiency and enabling applications like mechanical property screening and real-time production monitoring.
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Bacterial spores have outstanding properties from the materials science perspective, which allow them to survive extreme environmental conditions. Recent work by [S. G.

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Introduction: This feasibility study aims to develop and test a new model of practice in Australia using digital technologies to enable pharmacists to monitor early signs and symptoms of medicine-induced harms in residential aged care.

Methods And Analysis: Thirty residents will be recruited from an aged care facility in South Australia. The study will be conducted in two phases.

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The paper examines the health system's response to COVID-19 in Sierra Leone. It aims to explore how the pandemic affected service delivery, health workers, patient access to services, leadership, and governance. It also examines to what extent the legacy of the 2013-16 Ebola outbreak influenced the COVID-19 response and public perception.

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Repurposing is one of the key opportunities to address the unmet rare diseases therapeutic need. Based on cases of drug repurposing in small population conditions, and previous work in drug repurposing, we analyzed the most important lessons learned, such as the sharing of clinical observations, reaching out to regulatory scientific advice at an early stage, and public-private collaboration. In addition, current upcoming trends in the field of drug repurposing in rare diseases were analyzed, including the role these trends could play in the rare diseases' ecosystem.

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Mammalian DNA replication employs several RecQ DNA helicases to orchestrate the faithful duplication of genetic information. Helicase function is often coupled to the activity of specific nucleases, but how helicase and nuclease activities are co-directed is unclear. Here we identify the inactive ubiquitin-specific protease, USP50, as a ubiquitin-binding and chromatin-associated protein required for ongoing replication, fork restart, telomere maintenance and cellular survival during replicative stress.

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