Sunday, December 01, 2019

Researchers identify deadly microbes and make medical devices infection-free


Researchers have found a way to identify the presence of deadly microbes present on medical devices, such as catheters, and ways to keep them infection-free. This study was conducted as an interdisciplinary collaboration between microbiologists, immunologists, and engineers led by Dr Simon Corrie from Monash University's Department of Chemical Engineering and Professor Ana Traven from the Monash Biomedicine Discovery Institute (BDI).

It was recently published in the American Chemical Society journal -- ACS Applied Interfaces and Material. Candida albicans, a commonly found microbe, can turn deadly when it colonises on devices such as catheters implanted in the human body. While commonly found in healthy people, this microbe can become a serious problem for those who are seriously ill or immune-suppressed.

The microbe forms a biofilm when it colonises using, for example, a catheter as a source of infection. It then spreads into the bloodstream to infect internal organs. "The mortality rate in some patient populations can be as high as 30 to 40 per cent even if you treat people. When it colonises, it's highly resistant to anti-fungal treatments," a Professor  said.

"The idea is that if you can diagnose this infection early, then you can have a much bigger chance of treating it successfully with current anti-fungal drugs and stopping a full-blown systemic infection, but our current diagnostic methods are lacking. A biosensor to detect early stages of colonisation would be highly beneficial," added the Professor.

The researchers investigated the effects of organosilica nanoparticles of different sizes, concentrations and surface coatings to see whether and how they interacted with both C. Albicans and with immune cells in the blood. They found that the nanoparticles bound to fungal cells, but were non-toxic to them. "They don't kill the microbe, but we can make an anti-fungal particle by binding them to a known anti-fungal drug," Professor Traven said.

The researchers also demonstrated that the particles associated with neutrophils -- human white blood cells -- in a similar way as they did with C. Albicans, remaining noncytotoxic towards them. "We've identified that these nanoparticles, and by inference a number of different types of nanoparticles, can be made to be interactive with cells of interest," Dr. Corrie said.

"We can actually change the surface properties by attaching different things; thereby we can really change the interactions they have with these cells -- that's quite significant," added Dr Corrie. Dr Corrie said while nanoparticles were being investigated in the treatment of cancer, the use of nanoparticle-based technologies in infectious diseases lags behind the cancer nanomedicine field, despite the great potential for new treatments and diagnostics.


this is only for your information, kindly take the advice of your doctor for medicines, exercises and so on.     
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Friday, November 01, 2019

A new study throws light on gut function

For the first time, new insights into how the colon functions and actually expels its contents have been revealed.

The results of the study were published in the journal – Physiology.

It promises new diagnostics tools and treatments for gastrointestinal disorders to address problems with bowel movements leading to constipation, diarrhoea and pain, affecting hundreds of millions of people worldwide.

The propulsion of intestinal contents is controlled by millions of neurons within the wall of the gut, known as the enteric nervous system. Capable of operating independently of the brain, a functioning enteric nervous system is essential for life – but exactly how it functions has been a mystery.

By unraveling the neural circuits of the enteric nervous system in guinea pigs and humans researchers are able to understand how the enteric nervous system ensures that food is slowly mixed and propelled along the digestive tube, allowing for absorption of nutrients  and excretion of waste.

“For the first time, we have combined video recording intestinal movements with a pressure-measuring manometric probe, enabling movements, pressures and electrical activities to be recorded all at the same time within the colon,” the Professor said.

“This powerful combination of techniques applied to a guinea pig colon identified several distinct neural mechanisms involved in the propulsion of colonic contents. This answers the deceptively simple question of how neural mechanisms within the colon manage the propulsion of bowel contents,” he said.

The findings also show how studies in humans and animals can be complementary, identifying fundamental mechanisms that are shared across species – in this case, guinea pigs and humans.

“Currently we treat intestinal disorders by addressing the symptoms, such stopping-up diarrhea or softening stools to ease constipation, but as a result of this new understanding of the neural networks of the enteric system, clinicians may be able to develop treatments that treat the cause of the problems,” he added.

this is only for your information, kindly take the advice of your doctor for medicines, exercises and so on.     
https://gscrochetdesigns.blogspot.com. one can see my crochet creations  
https://gseasyrecipes.blogspot.com. feel free to view for easy, simple and healthy recipes    
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Sunday, July 14, 2019

Compassion from carers make HIV patients seek life-saving treatments

A new study has highlighted that if HIV patients are attended with compassion and unconditional empathy, they're more likely to continue longer, life-saving treatments.

The study showed that patients need help in understanding their illness and care needs through an understandable or easy language to translate complex information.


Today, HIV is considered a chronic, treatable condition. However, this study found that many patients continue to view it as a death sentence, said the lead author.


The author added that their challenge is to reach those people diagnosed with HIV and who are retained or engaged in ongoing care.


For the study, researchers included 41 studies published between 1997 and 2017.


The sample populations included adults with HIV and their healthcare providers. All adults with HIV were between the ages of 18 and 65, represented diverse races and ethnicities, sexual orientations and gender identities.


Whereas, their healthcare providers included physicians, nurse practitioner, physician assistants, pharmacists, social workers and others, making a total of 1597 participants.


Findings from the study indicated that many patients experienced stigma and a lack of compassion that is often grounded in primary care provider's ignorance about HIV and transmission risks.


The poor communication between providers and patients results in many patients' failure to seek or remain in care and adhere to antiretroviral therapy medications.


Patients reported feeling grilled by providers who often assumed they're not taking medications.
Researchers found that patients were more inclined to adhere to HIV treatment when their primary care providers showed empathy, true listening, trust, consideration of the whole person and involvement in decision making.


Providers should use common language, not medical jargon, to educate patients about HIV, medications and how they can live a healthy life, he said.


They should thoroughly teach them about the disease, the medications and side-effects and the meaning of the tests, he added.


The researchers noted that providers who help patients navigate the health system, offer, one-stop location of services and provide connections to psychological support, health insurance, medicine, transportation and other services, can help their patients stay engaged in care.


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Saturday, July 06, 2019

Now doctors may predict accurate treatment for patients

A recent research may enable doctors to use the genetic profiles of patients to predict with great accuracy which treatment and prevention protocols will work for them, but requires greater inclusion of ethnic minorities as well. An anthropologist, and bio-ethicist said that to improve medical care researchers need more data about the individual differences that make each of us unique.

“Without engaging underrepresented communities in genetic studies, efforts to move precision science forward may recapitulate ongoing inequities in health care and limit and bias the research. The early stages of precision medicine offer a critical window in which to intervene before research practices and their consequences become locked in,” she said in the study which was published recently.

Precision medicine relies on the collection of bio-specimens, electronic records and other sources of behavioral and environmental data, she said.

Diseases can present differently among ethnic groups. They may, for example, appear at an earlier age, or they may progress more rapidly or respond disparately to treatment.

The study will explore how these centres recruit participants and collect, measure and share data. It will also examine how they communicate the findings of their research.

“We are looking to see if there are unintended consequences that would limit researchers’ ability to meet diversity recruitment goals, address social and biological causes of health disparities, and distribute the benefits of precision medicine equitably,” she said.

She warned that building a diverse genetic database may prove challenging. He also stressed that, as a result, recruiting for diverse participation alone is not nearly enough.

“An ethics of inclusion demands transparency and a culture of openness. Precision medicine studies must open themselves up to multidisciplinary teams that include social scientists, ethicists, and policymakers who can identify and implement practices that respect the histories and concern of diverse populations-and recognize where reform is needed,” she said.

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Tuesday, April 09, 2019

Grass pollen can help predict asthma, hay fever

The presence of different strains of grass pollen in the atmosphere can help predict when hay fever and asthma could strike, researchers have found.

A team of researchers, tracked grass pollen for seasonal variations and found it was released into the atmosphere later in areas further from the equator.

“Using this method, we may be able to better predict when allergenic pollen is present and allow people affected by asthma, chronic obstructive pulmonary disease (COPD) and rhinitis to more effectively manage their condition,” said an Associate Professor.

“(And) with the advent of personalized medicine, more and more people are becoming aware of which allergen is responsible for their allergy,” the Associate Prof. said.

He said the research would help allergy sufferers prepare for the hay fever season and doctors to prescribe more personalised treatments.

“People who fail to manage their asthma are at greater risk of asthma attack and being forced to visit hospital emergency departments,” he said.

“Having a more accurate forecast of when a patient is at risk will allow people to better manage their disease.”

Scientists hope to expand on the research to create a unique profile of each grass pollen species to determine the most harmful strains.

For this, they are examining hospital and GP records and seeing if demand for these services involving asthma and rhinitis correlates with the presence of one grass species over another.

“Eventually – possibly within three to four years – we hope this will allow us to produce a better forecast of when and where exposure to pollen occurs,” he added.

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Saturday, February 09, 2019

Researchers discover genes that help bacteria prevent treatment

Researchers have discovered two genes that make some strains of harmful bacteria resistant to treatment by copper, which is a powerful and frequently used antibacterial agent, says a new study. The discovery showed that Staphylococcus aureus bacteria, which is highly resistant to antibiotics, can acquire additional genes that promote infections and antibacterial resistance and may open new paths for the development of antibacterial drugs.

The study,  showed the two genes, named copl and copl, in some strains of S. aureus bacteria protect the germs from copper. The genes may promote the survival of S. aureus in settings, such as in hospitals, that could lead to infections or they may lead to S. aureus strains with higher copper resistance.

Recently, hospitals began using it against bacteria found on medical instruments and other surfaces. It has also been used for thousands of years to sterilise wounds and drinking water. But the two newly discovered genes encode proteins that help remove copper from S. aureus cells and prevent it from entering.

The findings, revealed that some strains of S. aureus have newly acquired genes embedded in their genome in pieces of DNA called transposons. Transposons aid in the spread of genes that can give rise to bacteria that are resistant to antibiotics and more likely to cause disease. The newly discovered genes are encoded within a transposon, said the study.

THIS IS ONLY FOR INFORMATION, ALWAYS CONSULT YOU PHYSICIAN BEFORE HAVING ANY PARTICULAR FOOD/ MEDICATION/EXERCISE/OTHER REMEDIES.                                    PS- THOSE INTERESTED IN RECIPES ARE FREE TO  VIEW MY BLOG-                                                                                           https://gseasyrecipes.blogspot.com/       
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