Pet dogs often overlooked as spreader of antimicrobial-resistant Salmonella

Antibiotic-resistant Salmonella is a serious public health concern that has increased in recent years as the bacteria have developed ways to survive drugs. According to the U.S. Centers for Disease Control and Prevention, people can get Salmonella from eating contaminated food products or from infected people or animals — typically via unintentional contact with feces via touching hands or stroking a pet. However, a team of Penn State researchers have found that household dogs are an overlooked transmission point for zoonotic pathogens such as nontyphoidal Salmonella, which can cause diarrhea, fever and abdominal cramps, with some infections potentially having life-threatening complications.

The findings were made available online ahead of the next print edition of the journal Zoonoses and Public Health. Given the proximity of dogs to humans and the use of critically important antibiotics in companion animal medicine, the researchers reported, household dogs represent a risk for the spread of antimicrobial-resistant Salmonella. They explained that better awareness of the risk and proper hygiene could potentially help mitigate cross-species infections.

Salmonella infections in dogs can be clinical — showing signs or symptoms — or asymptomatic with numerous studies reporting Salmonella isolation from clinically healthy dogs, according to team leader Erika Ganda, assistant professor of food animal microbiomes, Penn State College of Agricultural Sciences. A major concern, she explained, is the closeness of humans and pet dogs that creates ample opportunity for Salmonella “zoonosis” — the disease transmitted to humans from animals — and pet-management decisions involving food contamination, improper food handling or both can increase the likelihood of infection.

To investigate antimicrobial-resistant Salmonella and the zoonotic potential of nontyphoidal Salmonella isolated from dogs and humans, the researchers leveraged existing biosurveillance infrastructure. Using the U.S. Food & Drug Administration’s Veterinary Laboratory Investigation and Response Network, they identified all nontyphoidal Salmonella strains isolated from domestic dogs between May 2017 and March 2023.

Then they matched the timing and location of those 87 cases to strains isolated from humans in the National Center for Biotechnology Information database maintained by the National Library of Medicine at the National Institutes of Health, which provides access to biomedical and genomic information. They found 77 suspected zoonotic cases — meaning the bacteria moved from a pet dog to a human — comprising 164 strains, collected from 17 states in the United States.

Strains isolated from dogs included diverse serovars, or distinct variations within the species of bacteria, with most being clinically relevant to human health, the researchers reported. While the datasets did not contain information on severity of infection or treatments, the researchers did find that all identified strains possessed antimicrobial resistance genes for drug classes deemed critically or highly important by the World Health Organization.

“We identified 16 nontyphoidal Salmonella isolates from humans closely related to more than one of six dog-associated strains,” said Sophia Kenney, a student in the molecular, cellular and integrative biosciences doctoral program, and in the Department of Animal Science, who spearheaded the study. “Collectively, our data emphasize the importance of antimicrobial stewardship and sustained biosurveillance beyond human and agriculture-associated veterinary medicine, using a ‘One Health’ framework, that accounts for all transmission points — including companion animals. One Health isan approach that recognizes that the health of people is closely connected to the health of animals and our shared environment.”

Antimicrobial stewardship in companion animal veterinary medicine is crucial for mitigating antimicrobial resistance within the One Health model, Kenney explained.

“Especially with Salmonella, we think about the role of agriculture and transmission — we think about eggs, we think about beef. But the thing is, we don’t let cows sleep in our beds or lick our faces, but we do dogs,” she said. “We have this close bond with companion animals in general, and we have a really close interface with dogs. So, we asked the question: What’s the role of companion animals in transmission of zoonotic disease like Salmonella, since they can get it. Salmonella infections in dogs are not common but we’re aware of foodborne outbreaks related to pet treats or from contact with contaminated pet food and improper food handling.”

Study co-author Nkuchia M’ikanatha, lead epidemiologist for the Pennsylvania Department of Health and an affiliated researcher in Penn State’s Department of Food Science, referred to an outbreak of multidrug-resistant Salmonella infections in people linked to pig ear pet treats in the United States a few years ago that sickened 154 people across 34 states.

“This reminds us that simple hygiene practices such as hand washing are needed to protect both our furry friends and ourselves — our dogs are family but even the healthiest pup can carry Salmonella,” he said. “Salmonella is a quintessential human microbe, its presence intertwined with our history since the dawn of agriculture. Emerging research suggests this pathogen may have shadowed humanity for some 10,000 years, coinciding with the rise of animal domestication. With nearly 40% of Pennsylvania households and over half of U.S. homes including dogs, we must respect the enduring threat of Salmonella and remain vigilant in preventing its spread within our families.”

Bacteria are never entirely “bad” or “good” — their role depends on the context, Ganda pointed out. While some bacteria, like Salmonella, can pose serious health risks, others are essential for maintaining our health and the health of our pets. It is important to remain vigilant and informed about potential risks, especially when living closely with animals, she added.

“At the same time, several studies highlight the significant physical and mental health benefits of owning a dog, including reduced stress and increased physical activity,” Ganda said. “Our goal is not to discourage pet ownership but to ensure that people are aware of potential risks and take simple steps, like practicing good hygiene, to keep both their families and their furry companions safe.”

This work was supported by funds from the U.S. Department of Agriculture, the U.S. Centers for Disease Control and Prevention, the National Institutes of Health and the U.S. Food and Drug Administration.

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BBC goes inside hospital battling unprecedented winter pressures

As pressures on the NHS bite, doctors are facing terrible decisions about who should get a bed.

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Winter pressure bad as height of pandemic, NHS says

More than 5,400 patients a day are in hospital with flu, as delays in A&E and for ambulances mount.

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Evolutionary biology: Ants can hold a grudge

A team led by evolutionary biologist Volker Nehring is investigating the extent to which ants learn from past experiences.

Ants learn from experience. This has been demonstrated by a team of evolutionary biologists from the University of Freiburg, led by Dr Volker Nehring, research associate in the Evolutionary Biology and Animal Ecology group, and doctoral student Mélanie Bey. The researchers repeatedly confronted ants with competitors from another nest. The test ants remembered the negative experiences they had during these encounters: when they encountered ants from a nest they had previously experienced as aggressive, they behaved more aggressively towards them than towards ants from nests unknown to them. Ants that encountered members of a nest from which they had previously only encountered passive ants were less aggressive. The biologists published their results in the journal Current Biology.

Ants are aggressive towards their neighbours

Ants use odours to distinguish between members of their own nest and those from other nests. Each nest has its own specific scent. Previous studies have already shown that ants behave aggressively towards their nearest neighbours in particular. They are especially likely to open their mandibles and bite, or spray acid and kill their competitors. They are less likely to carry out such aggressive manoeuvres against nests that are further away from their own. Until now, it was unclear why this is the case. Nehring’s team has now discovered that ants remember the smell of attackers. This is why they are more aggressive when confronted with competitors from nests they are familiar with.

More aggressive behaviour towards competitors from familiar nests

The scientists conducted an experiment in two phases. In the first phase, ants gained various experiences: one group encountered ants from their own nest, the second group encountered aggressive ants from a rival nest A, and the third group encountered aggressive ants from rival nest B. A total of five encounters took place on consecutive days, with each encounter lasting one minute.

In the subsequent test phase, the researchers examined how the ants from the different groups behaved when they encountered competitors from nest A. The ants that had already been confronted with conspecifics from this nest in the first phase behaved significantly more aggressively than those from the other two groups.

To test the extent to which the higher aggression arises from the behaviour of ants from a particular nest, the scientists repeated the experiment in a slightly modified form. In the first phase, they now distinguished between encounters with aggressive and passive ants. They ensured that an ant behaved passively by cutting off its antennae. In phase two of the experiment, the ants that had previously only encountered passive competitors behaved significantly less aggressively.

“We often have the idea that insects function like pre-programmed robots,” says Nehring. “Our study provides new evidence that, on the contrary, ants also learn from their experiences and can hold a grudge.” Next, Nehring and his team will investigate whether and to what extent ants adapt their olfactory receptors to their experiences, thus reflecting what they have learned at this level as well.

  • Mélanie Bey conducted her doctorate under Dr. Volker Nehring. Rebecca Endermann, Christina Raudies and Jonas Steinle are former bachelor’s and master’s students in the Evolutionary Biology and Animal Ecology working group.
  • The research was funded by the German Research Foundation (project number NE1969/6-1).
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Low-cost system will improve communications among industrial machines

Researchers have found a low-power, inexpensive way for large numbers of devices, such as machines in factories and equipment in labs, to share information by efficiently using signals at untapped high frequencies.

The technology could immediately enable low-cost, efficient real-time monitoring in industrial settings, such as tracking the condition of manufacturing robots or detecting gas leaks in refineries, by eliminating the need for power-hungry signal transmitters. The researchers said that with some engineering improvements, the technology could be used for large-scale applications like smart cities and agriculture.

The technology is an advanced version of a device that transmits data in a wireless system, commonly known as a tag. The new tag can support data transmission for a large network of devices using a technique called backscattering. This is where a central reader sends a signal to a sensor tag to gather information, and the tag reflects this ambient signal directly back to the reader. Backscattering is already used in simple systems like smart payment and building entry cards, but until now has only been possible at low frequencies.

The low frequency limit poses a problem when many devices try to communicate at the same time because when more signals are introduced, they are more likely to run into one another and get jumbled up. Conventional backscatter designs also have slow communication speeds, as lower frequency signals have limitations on how much information can travel back and forth at once.

The new tag, developed by researchers at Princeton, Rice University and Brown University, is the first of its kind that can use backscattering in the sub-terahertz range, a high-frequency portion of the radio spectrum. This range can support high-speed data transmission across broad bandwidths. The development means it could be possible to power signal transmission for dense networks of devices using passive tags, saving significant power and infrastructure compared to conventional wireless systems.

“I believe this technology will find applications in many interesting settings,” said Yasaman Ghasempour, assistant professor of electrical and computer engineering at Princeton and the study’s principal investigator. “Despite the conventional wisdom, this paper shows that it is possible to have low-power, scalable communication in the sub-terahertz range.”

The paper was published Oct. 9 in Nature Communications.

Using backscattering at higher frequencies is challenging because the signals are more susceptible to fading as they propagate and must be very precise to travel long distances. “The reader has to form a narrow pencil-shaped beam to shine into the tag’s precise location, and the low-power tag should do the same without consuming any power. That’s the real challenge,” Ghasempour said.

Traditional backscatter tags reflect signals back to their source using simple antennas that typically broadcast the energy in all directions, causing only a portion of the energy to reach back to the reader. While some advanced tags can adjust the direction of their signal, their ability to do so is limited, and they’re restricted to a narrow range of frequencies. Ghasempour said that achieving sub-terahertz backscattering required the team to rethink the entire architecture of the tag. “It wouldn’t work to use the same old hardware design and scale it up,” she said.

To address these limitations, the researchers came up with an entirely new antenna structure. The new antennas allow the direction of the signal to change automatically in response to changes in frequency. By doing this, the tag can steer the signal to enable longer range communication and avoid interference from other signals. In other words, the interference footprint of each tag is limited in spatial and spectral domains.

Ghasempour said she hopes that others will read this paper and find engineering improvements for advanced applications. By implementing a way to amplify signals in the system at low costs, for example, the technology could power sensor networks across cities to monitor air quality or traffic flow.

The tags could be placed on traffic signs to be detected by self-driving cars, as they can use radio waves to convey messages like “stop” or “yield” even when visibility is blocked by fog or snow. In agriculture, the technology could help create expansive networks of soil sensors across fields or forests, providing real-time data on moisture levels or temperature.

Ghasempour said that developing low-power data modulators in these kinds of systems is an active area of research, and that this innovation is a step toward decreasing cost and power consumption for the entire wireless system.

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High performance in frosty conditions

Most solids expand as temperatures increase and shrink as they cool. Some materials do the opposite, expanding in the cold. Lithium titanium phosphate is one such substance and could provide a solution to the problem of steeply declining performance of lithium-ion batteries in cold environments. In the journal Angewandte Chemie, a Chinese team has demonstrated its suitability for use in electrodes for rechargeable batteries.

Lithium-ion batteries and other rechargeable batteries based on metal ions provide our portable devices with electricity, power vehicles, and store solar and wind energy. They work well — as long as it is warm. As temperatures drop, the performance of these batteries can decrease sharply — a problem for electric cars, aerospace, and military applications. Countermeasures such as integrated heaters, improved electrolytes, or electrode coatings increase the cost and complexity of battery production or reduce performance.

One of the causes of the cold problem is the slowed diffusion of lithium ions within the electrode material. A team from Donghua University and Fudan University in Shanghai, as well as Inner Mongolia University in Hohhot has proposed a new approach to tackling this issue: electrodes made of electrochemical energy-storage materials with negative thermal expansion (NTE), such as lithium titanium phosphate LiTi2(PO4)3 (LTP). Led by Liming Wu, Chunfu Lin, and Renchao Che, the team used LTP as a model substance to demonstrate that electrode materials with NTE properties can provide good performance at low temperatures.

Analysis of the crystal structure revealed a three-dimensional lattice of TiO6 octahedra and PO4 tetrahedra with an open, flexible structure that contains both “cavities” and “channels,” where lithium ions can lodge. When cooled, the structure stretches along one of its crystal axes. By using spectrometric and electron microscopic analyses in conjunction with computer modeling, the team determined that the vibrational modes of the atoms change at low temperature. This increases the occurrence of special transverse vibrations of certain oxygen atoms, increasing their distances from each other and widening the cavities in the lattice. This facilitates storage and transport of the lithium ions. At −10 °C, their diffusion rate is still at 84% of the value obtained at 25 °C. Electrochemical tests on carbon-coated LTP at −10 °C also showed good electrochemical performance with high capacity and a high rate capability, as well as a high retention of capacity over 1000 charge/discharge cycles.

Materials with negative thermal expansion are thus highly promising for use as an electrode material in lithium-ion batteries in cold environments.

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‘Patients are collapsing in the waiting room’: A&E nurses speak out

Nurses working on the front line of emergency care have spoken to the BBC about pressure they are facing.

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Mum told to give seriously ill son painkillers amid ambulance delay

Brian Rooney is in an induced coma after suffering a cardiac arrest at the doors of a Belfast hospital.

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Glass of milk a day cuts bowel cancer risk – study

Dark leafy greens, bread and non-dairy milks containing calcium were also found to offer protection.

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Ketamine use on the rise in U.S. adults; new trends emerge

A recent study analyzing data from the National Survey on Drug Use and Health (NSDUH) found that past-year recreational ketamine use among adults has increased dramatically since 2015, including significant shifts in associations with depression and sociodemographic characteristics such as race, age and education status. Ketamine use has shown promise in clinical trials therapy for several mental illnesses, including treatment-resistant depression, and the new research suggests that ongoing monitoring of recreational use trends is crucial to balancing these clinical benefits against the risk of unmonitored recreational use.

Key findings include:

  • Overall past-year recreational ketamine use increased by 81.8% from 2015 to 2019 and by 40% from 2021 to 2022.
  • Adults with depression were 80% more likely to have used ketamine in the past year in 2015-2019, but this association weakened in later years. In 2021-2022, ketamine use increased only among those without depression.
  • In 2021-2022, adults aged 26-34 were 66% more likely to have used ketamine in the past year compared to adults aged 18-25. Those with college degrees were more than twice as likely to have used ketamine compared to people with a high school education or less.
  • People were more likely to use ketamine if they used other substances, such as ecstasy/MDMA, GHB, and cocaine.

The researchers recommend expanding prevention outreach to settings like colleges, where younger adults may be at heightened risk, as well as providing education on the harms of polydrug use, particularly in combination with opioids. As medical ketamine becomes more widely available, they also emphasize the need for continued surveillance of recreational ketamine use patterns and further research to understand the factors that contribute to ketamine use.

The study, published online in the Journal of Affective Disorders, was led by Kevin Yang, M.D., a third-year resident physician in the Department of Psychiatry at UC San Diego School of Medicine. The research was supported by the National Institute on Drug Abuse of the National Institutes of Health.

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