Friday, February 14, 2020

Unusually large, bacteria-killing viruses discovered

Scientists have discovered hundreds of unusually large, bacteria-killing viruses with capabilities normally associated with living organisms.

The huge phages were found by scouring a large database of DNA generated from nearly 30 different environments, ranging from the guts of premature infants and pregnant women to a Tibetan hot spring, a South African bioreactor, hospital rooms, oceans, lakes and deep underground.

The phages -- short for bacteriophage because they "eat" bacteria -- are of a size and complexity considered typical of life, carry numerous genes normally found in bacteria and use these genes against their bacterial hosts.

The findings provide new insight into the constant warfare between phages and bacteria.

The study was done by scientists from the University of Melbourne and the University of California, Berkeley, who identified 351 different huge phages, all with genomes four or more times larger than the average genomes of viruses that prey on bacteria.

Among the discovery was the largest bacteriophage to date: its genome, 735,000 base-pairs long, is nearly 15 times larger than the average phage. This largest known phage genome is much larger than genomes of many bacteria.

"We are exploring Earth's microbiomes and sometimes unexpected things turn up," said Professor Jill Banfield, the senior author of the findings now published in Nature. "These viruses of bacteria are a part of biology, of replicating entities, that we know very little about."

Professor Banfield is now at Berkeley in earth and planetary science and environmental science, policy and management but did a significant portion of her work on the phages when she was in the School of Earth Sciences at the University of Melbourne.
 
These huge phages bridge the gap between non-living bacteriophage, on the one hand, and bacteria and Archaea (the diversity of bacteria). There definitely seems to be successful strategies of existence that are hybrids between what we think of as traditional viruses and traditional living organisms."Professor Jill Banfield 

The new findings also have implications for human disease. Viruses in general carry genes between cells, including genes that confer resistance to antibiotics. And since phages occur wherever bacteria and Archaea live, including the human gut microbiome, they can carry damaging genes into the bacteria that colonize humans.

"Some diseases are caused indirectly by phages, because phages move around genes involved in pathogenesis and antibiotic resistance," said Professor Banfield. "And the larger the genome, the larger capacity you have to move around those sorts of genes, and the higher the probability that you will be able to deliver undesirable genes to bacteria in human microbiomes."

Professor Banfield has been studying the diversity of bacteria for more than 15 years.


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Saturday, August 31, 2019

7 Step Baking Soda Solution to Your Troublesome Splinter

Having a splinter is awful. At best it's uncomfortable, at worst it can be horribly painful, particularly to small children. What's more, the thought of removing that wooden intruder with tweezers or a pin is enough to strike any soul with trepidation. But, luckily, here is a simple homemade solution you can make using baking soda. So, whip that magical powder out of its cupboard and let's get to work!
Step 1: Do not squeeze at it!
First, it's important you get a good idea of what kind of splinter you are dealing with, and where precisely it is. Squeezing may cause the splinter to go deeper into your skin, or even break it up into smaller pieces that are even harder to remove. So, refrain from squeezing.
Step 2: Clean the area, using soap and water
Always do this when you have any kind of open wound, to avoid infections. Then dry yourself off with a paper towel. Do so very gently, so as not to aggravate the wound. Remember that wood loves moisture, so keep it as dry as you can. 
Step 3: Look at the splinter using a magnifying glass
Make sure that the splinter is small. The method we are about to use makes the skin swell. This swelling will push out the splinter. But this will only work on small splinters. If yours seems rather large, you will have to consider some other methods.
Step 4: Make Your Baking Soda Paste
Your paste will be made with 1/4 teaspoon of baking soda and a little water. We want a nice thick paste.
Step 5: Apply your paste to the area
The best way to do this is to spread the paste on a bandage and place it over the splinter.
Step 6: Wait 1 day, then take the bandage off
Take the bandage off after one day. If you can see the splinter sticking out, you will then be able to pull it out (step 7) with a pair of tweezers, without penetrating your skin. And if it's sticking out but you can barely see it, it may naturally come out when you take a wash. 
If the splinter is still inside, repeat steps 4-6 as many times as necessary.
Step 7: Apply a topical anesthetic
Once you are ready to pull out the splinter, the area will still fees quite painful, apply some Baby Orajel to the wound. This ointment causes numbing, which should furnish you with the confidence to proceed. Wait just a couple of minutes and then pull it out with some tweezers. Finished.
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/                                                                                                                                                FOR INFO ABOUT KNEE REPLACEMENT, YOU CAN VIEW MY BLOG-                                                                       https:// kneereplacement-stickclub.blogspot.com/                                                                                                                     FOR CROCHET DESIGNS                                                                                                   
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Sunday, August 25, 2019

Blood vessels may turn into bone-like particles with age

Researchers have discovered that blood vessels within bone marrow may progressively turn into bones with advancing age.

The study suggested that ossified particles may contribute to  diseases such as vascular calcification, heart attack, stroke and inadequate blood supply to the limbs.


By examining seemingly unrelated images and linking the details of them together, the author was able to posit the presence of bone-like particles in the blood, she said.


In fact, some of the ossified particles are large enough to clog the smallest blood vessels in the vascular tree, she added.


Approximately 610,000 people die each year from a heart disease-related event, making it the leading cause of death for both men n women in the U.S.


Vascular calcification is a common characteristic and risk factor for morbidity and mortality, she said. These bone-like particles are potentially more dangerous because of their sharp edges.


Some of the ossified particles have sharp tips and edges that could damage the lining of blood vessels, she said. This damage could initiate events leading to atherosclerosis ( build-up of plaque), which can restrict blood flow over time.


The discovery of these bone-like particles could help physicians detect and treat potentially life-threatening conditions.


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/                                                                                                                                                FOR INFO ABOUT KNEE REPLACEMENT, YOU CAN VIEW MY BLOG-                                                                       https:// kneereplacement-stickclub.blogspot.com/                                                                                                                     FOR CROCHET DESIGNS                                                                                                   
                                https://gscrochetdesigns.blogspot.com


When looking for etiologies related to vascular calcification, heart attack and or stroke, perhaps we should consider if and how ossified particles contribute to these diseases, she said.

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