Showing posts with label Cell (biology). Show all posts
Showing posts with label Cell (biology). Show all posts

Thursday, October 15, 2015

The Cords Not Cut After Birth Of a Child

BY CARL ZIMMER


A team of pathologists Leiden University Medical Center in the Netherlands recently carried out an experiment that might seem doomed to failure.

They collected tissue from 26 women who had died during or just after pregnancy. All of them had been carrying sons. The pathologists then stained the samples to check for Y chromosomes.

The scientists were looking for male cells in female bodies. And their search was successful.

As reported in the journal Molecular Human Reproduction recently, the researchers found male cells in every female organ they studied: brains, hearts, kidneys and others.

In the 1990s, scientists found the first clues that cells from both sons and daughters can escape from the uterus and spread through a mother’s body. They called the phenomenon fetal microchimerism, after the chimera, a monster from Greek mythology that was part lion, goat and dragon.

But fetal cells don’t just drift passively. Studies of female mice show that fetal cells that end up in their hearts develop into cardiac tissue.

“They’re becoming beating heart cells,” said Dr. J. Lee Nelson, an expert on microchimerism at the Fred Hutchinson Cancer Research Center in Seattle.

The new study suggests that women almost always acquire fetal cells each time they are pregnant.
They have been detected as early as seven weeks into a pregnancy. In later layers, the cells may disappear, but sometimes the cells settle in for a lifetime.

In a 2012 study, Dr. Nelson and her colleagues examined the brains of 59 deceased older women and found Y chromosomes in 63 percent of them. (Many studies on fetal microchimerism focus on the cells left behind by sons, because they are easier to distinguish from the cells of their mother.)

Experts now believe that microchimerism is far from rare.

“Most of us think that it’s very common, if not universal,” Dr. Nelson said. But it remains quite mysterious.

In recent years, researchers have found many clues suggesting that microchimerism can effect a woman’s health. Tumors may be loaded with fetal cells, for example, suggesting that they might help drive cancer. Yet other studies have suggested that fetal microchimerism protects women against the disease.

“In each instance of a disease, it seems like there is this paradox,” said Amy M.Boddy, a postdoctoral fellow at Arizona State University.

Fetal microchimerism has been found in a number of mammal species, including dogs, mice and cows.

It’s likely that fetal cells have been a part of maternal life for tens of millions of years.

Microchimerism is something that humans have been evolving with since before we were humans, “said Melissa Wilson Sayres, a biologist at Arizona State.

During that time, fetal cells could have evolved into more than just bystanders. Writing in the journal  in August, Dr. Boddy, Dr.Sayres and their colleagues suggested that fetal cells may produce chemicals that influence the mother’s biology, allowing fetuses to manipulate her from within.

Some cells may help maintain the health of the mother- For example, by healing wounds. But there is also an evolutionary conflict of interest between mothers and their young.

A mother’s reproductive success depends on the total number of children she raises to adulthood over the course of her life. Devoting too many resources to a single child may leave her too frail to care for later children.

If a child can somehow coax its mother to provide more resources, on the other hand, he or she may be more likely to survive to adulthood and reproduce. Fetal cells may let children manipulate their mothers to this end, Dr. Sayres and her colleagues suggest.

Fetal cells are frequently found in breast tissue, even in milk, for instance. The researchers argue that children might thrive more if their fetal cells drove up milk production.

Mothers also nurture their babies with body heat. The thyroid gland, located in the neck, acts like a thermostat, and fetal cells in the thyroid gland in theory could cause mothers to generate more heat than they would otherwise.

This biological tension might help explain how fetal microchimerism sometimes causes harm to a mother. It may simply be an occasional side effect of the cells ‘manipulations.

There are some clues that mothers, too, pull hard in this evolutionary tug of war. The immune system kicks into high gear after giving birth, possibly to clear away left-over fetal cells. This defense may pose its own risks: Women with auto immune disorders such as rheumatoid arthritis can have relapses after pregnancy.

Some straightforward experiments could put all of these ideas to the test. Scientists could look at which genes become active in fetal cells in different parts of the body, for example. They could then see how the activity of the genes influenced a mother’s physiology, such as the production of milk.

If the preliminary results hold up, Dr. Boddy and her colleagues suggest scientists should consider how fetal cells in the brain might influence women’s behavior.

“It’s the most exciting part, but it’s the part where there’s the least research at the moment,” said Athena Aktipis, a psychologist at Arizona State and an author of the Bioessays article.” There may be a role of microchimerism in postpartum mental health.”

Dr. Nelson, who was not involved in the new paper, said that is raised a lot of ideas worth pursuing. “It’s going to be interesting to see how the data coming in over the next several years stacks up,” she said.




Taken from TODAY Saturday Edition, The New York Times International Weekly, October 3, 2015

Saturday, April 11, 2015

Ageless Youth

English: Embryonic Stem Cells. (A) shows hESCs...
English: Embryonic Stem Cells. (A) shows hESCs. (B) shows neurons derived from hESCs. (Photo credit: Wikipedia)
11-April-2015


I have been watching on the development of stem cell researches, and while the promise of healing and becoming young (again), and keeping young seems within reach, results seem elusive.

Then there was adult stem cell, where stem cells are taken from an adult person's fat extracts, and this gave almost everybody the instant hope of being healthy and youthful once again. Like it isn't long ago that umbilical cords were frozen in time, to be taken out for use when needed, but that the majority of the population in the world doesn't even have their umbilical cords in store.

So adult stem cell becomes the most viable solution.

Now, that dream may already be a reality. I attended a seminar that showed videos of the said beauty products and supplements, and even saw it with my own eyes when 3 volunteers were called up front, and Instantly Ageless was put to use!

Unbelievable?

Similar videos are found in YouTube. You gotta see it to believe it.

And if you want to try it, and any other products, you can get it here.

Can we hear from you? I'm excited, and I'll be waiting.

Till then!

Sunday, November 14, 2010

Scientists uncover cancer-fighting "death" protein

Another breakthrough! Will it be enough? Will it deliver?
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Cancer Prevention - Breakthrough! [VHS]Wuyi Rock Oolong (Wu Long) Tea - Ta Hung Pao Loose Leaf Tea -4.5 OzProstate Cancer: Prevention, Diagnosis, and TreatmentColon Cancer: Prevention & TreatmentEat To Beat Cancer: A Research Scientist Explains How You and Your Family Can Avoid Up to 90% of All CancersA Cancer Prevention Guide for the Human Race (Reduce Your Risk of Cancer by 60% or More)Foods to Fight Cancer: Essential foods to help prevent cancerAvoiding Cancer One Day At A Time: Practical Advice For Preventing CancerSYDNEY: Australian and British scientists have uncovered a "death" protein that destroys rogue cells in what could be breakthrough for the fight against cancer, malaria and diabetes, researchers said Monday.

The protein, perforin, targets wayward cells and punches a hole in their membranes to let in killer enzymes, project leader James Whisstock said, adding the discovery "answers a really fundamental mystery of immunity".

"Perforin is our body's weapon of cleansing and death," said Whisstock, from Australia's Monash University.

"It breaks into cells that have been hijacked by viruses or turned into cancer cells and allows toxic enzymes in, to destroy the cell from within," he said. "Without it, our immune system can't destroy these cells."

High-powered microscopes in Australia and at London's Birkbeck College had allowed scientists to examine perforin's structure and function, Whisstock said, revealing a "powerful molecule" that targets malignant or infected cells.

Without perforin the body was unable to fight infections, with studies involving mice which linked defective perforin to leukaemia and heightened cell malignancy.

The discovery also had implications for autoimmune diseases such as juvenile type 1 diabetes and for transplant patients, with the protein linked to both the elimination of healthy cells and tissue rejection, he added.

"Now we know how it works, we can start to fine-tune it to fight cancer, malaria and diabetes," Whisstock said.

The 10-year study found that perforin shared a number of molecular similarities with bacterial toxins like anthrax, listeria and streptococcus, and had a blueprint that was close to two billion years old.

Researchers were now looking for ways to inhibit and boost perforin and use it to "deliver toxic cargoes into cells by choice", he added, hoping to pave the way for new drugs.

"I have worked on this for a long time and it answers a really fundamental mystery of immunity," Whisstock told ABC radio.

"So I think just from a fundamental science perspective, I think it is really, really important and it is actually also a really cool story."

-AFP/wk


From ChannelNewsAsia.com; source article is below:
Scientists uncover cancer-fighting "death" protein
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Tuesday, March 9, 2010

Papaya and its benefits

University of FloridaImage via Wikipedia
Researchers back cancer-fighting properties of papaya
AFP - Wednesday, March 10

MIAMI (AFP) - Researchers said Tuesday that papaya leaf extract and its tea have dramatic cancer-fighting properties against a broad range of tumors, backing a belief held in a number of folk traditions.

University of Florida researcher Nam Dang and colleagues in Japan, in a report published in the Journal of Ethnopharmacology, documented papaya's anticancer effect against tumors of the cervix, breast, liver, lung and pancreas.

The researchers used an extract made from dried papaya leaves, and the effects were stronger when cells received larger doses of papaya leaf tea.

Dang and the other scientists showed that papaya leaf extract boosts the production of key signaling molecules called Th1-type cytokines, which help regulate the immune system.

This could lead to therapeutic treatments that use the immune system to fight cancers, they said in the February issue of the journal and released Tuesday by the university.


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A street vendor prepares papaya for her daily customers in Yangon. Researchers said Tuesday that papaya leaf extract and its tea have dramatic cancer-fighting properties against a broad range of tumors, backing a belief held in a number of folk traditions.
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Papaya has been used as a folk remedy for a variety of ailments in many parts of the world, especially Asia.

Deng said the results are consistent with reports from indigenous populations in Australia and his native Vietnam.

The researchers said papaya extract did not have any toxic effects on normal cells, avoiding a common side effect of many cancer treatments.

Researchers exposed 10 different types of cancer cell cultures to four strengths of papaya leaf extract and measured the effect after 24 hours. Papaya slowed the growth of tumors in all the cultures.

Dang and a colleague have applied to patent the process to distill the papaya extract through the University of Tokyo. 


From Yahoo.sg News; see the source article here.
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Friday, May 15, 2009

How the flu virus works

I came across this substantial info on the swine flu virus; a primer, a basic, a fundamental. Knowing is half the battle… though not very recent, it is still valuable.
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CNA - Posted: 30 April 2009 0903 hrs 

090430-HowSwineFluWorks A nurse displays equipment used detecting the swine flu virus at a hospital 

PARIS : The influenza virus is a tiny, redoubtable foe that survives by stealth and sheer numbers.

Seen through an electron microscope, it resembles a spiky ball, comprising a protective shell studded with rods. It measures around 100 nanometres (100 billionths of a metre, 0.000004 of an inch) across, which is about a thousand times smaller than a bacterium.

Because it is so minute, the virus is unable to carry around the enzyme toolkit that it needs to reproduce. Instead, it hijacks the machinery of cells in the throat, nose and lungs to do this.

It first enters the nose or mouth, inhaled in droplets expelled by a cough or a sneeze by an infected person.

A virus can also survive on surfaces for up to 72 hours, depending on the type of surface, temperature and humidity.

This means the virus can picked up on the fingers and transferred to the mucous membranes if the person touches their nose, eyes or mouth.

The virus uses its spike to bind to, and then invade, an epithelial cell in the respiratory tract.

Once inside, it releases a package of genetic instructions, called RNA, that use the cell's machinery to make parts for new virus particles.

The parts are knitted together to form hundreds of new virus particles that then burst out of the now wrecked cell and go on to infect other cells.

Cells that are attacked in the throat, lungs and muscles give rise to the classic symptoms of a sore throat, respiratory wheeze and muscle ache.

The high fever that is also a hallmark of flu is a response of the immune system against the invader. This defensive reaction continues until the viruses are eliminated.

Most people recover without complications after a week or two, but the disease can be dangerous for people with a chronic condition such as asthma or heart disease, or for the elderly, very young and others with a weaker immune system.

It can also lead to bacterial infection, such as bronchitis or life-threatening pneumonia.

Flu viruses fall into three main families.

Type A, the commonest, not only circulates among humans but also among birds and pigs, providing a unique opportunity to acquire new genetic variants that can leap the species barrier and spark a pandemic.

Type B can also cause epidemics, but usually produces a milder disease than Type A. Type C viruses, like Type B, are humans-only pathogens but have never been associated with a large epidemic.

Virus families are further sub-divided according to their two surface proteins, haemagglutinin (H) and neuraminidase (N).

Mexico's swine flu virus has sparked alarm because it it presents a new genetic mix for which there may be no immunity and for which it will take months to devise and produce a vaccine.

It is a substrain of H1N1, presenting a new pattern of genes that resulted from a mix of existing viruses of human, pig and avian flu. Still unclear, though, is how contagious and virulent it is.

Source: AFP

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