Friday, November 22, 2019

New possible treatment for progeria discovered

Progeria is a very rare disease that affects about one in 18 million children and results in premature ageing and death in adolescence from complications of cardiovascular disease.

In a study on mice and human cells, researchers at Sweden's Karolinska Institute and IFOM, the FIRC Institute of Molecular Oncology in Italy, have identified how antisense oligonucleotide therapies could be used as a new possible treatment option for the disease.

Progeria, or Hutchinson-Gilford progeria syndrome as the disease is also called, has genetic causes and is linked to progerin, a defect form of the lamin A protein found in the cell nucleus.

The mutation, which inhibits cell division, was identified in 2003 by researcher Maria Eriksson, co-author in the current study. The affected children usually die in early adolescence from complications of cardiovascular disease.

So far, more than a dozen treatments of progeria have been tested in different ways, but when it comes to clinical trials conducted in patients with progeria, the results have been disappointing.

"We have seen positive effects in the treatment of mice, but in humans, the effect has been too small. We, therefore, need to rethink and find new ways to treat the disease," says Maria Eriksson, professor at the Department of Biosciences and Nutrition at Karolinska Institutet.

In the published study, the researchers used cell samples from children with progeria to show an impaired function in the telomeres at the far end of the chromosomes and the accumulation of so-called telomeric non-coding RNA. By adding antisense oligonucleotides, a treatment used to inactivate harmful genes, the researchers were able to reduce the level of telomeric non-coding RNA (Ribonucleic acid).

This led to a more normalised cell division, which would likely improve patients' conditions and extend their lifespan.

"In a gene-altered mouse model of progeria treated in the same way, we saw a significant increase in both the maximum life expectancy, up 44 per cent, and the average life expectancy, up 24 per cent," says a  co-author of the study. "These results are very promising."

Progerin is also found in healthy subjects and has been observed to increase with age, suggesting the results may also be important for normal ageing and age-related disease.

"More research is needed to assess how the relatively low levels of progerin seen in healthy individuals contribute to ageing and age-related disease," says Eriksson. "It is interesting to note that antisense oligonucleotides are now included as drugs in advanced clinical trials, some of which are already approved by the FDA in the US."

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Thursday, March 21, 2019

Adhesive gel to repair eye injury without surgery

 American scientists have designed an adhesive gel that can seal wound or ulcers on the surface of the eye, thus sparing the need for eye surgery.

The study  showed that the gel packed with light-activated chemicals can not only close the defect but also regenerate it, the news agency reported.

“We wanted this material to allow the cells of the cornea to mesh with the adhesive and to regenerate over time to mimic something as close to the native cornea as possible,” said the paper’s co-corresponding author, a professor of ophthalmology.

The gel is clear and viscous in a dropper or syringe, but when exposed to blue light in a short time, it hardens to take on features of a native cornea, and the the cornea cells gradually grow into and become one with the gel, according to the study.

The gel is the first to use visible blue light as opposed to ultraviolet light, which carries a level of toxicity.

In a pre-clinical study, the researchers administered the gel at 20 per cent concentration to corneal defects of 3 mm, and applied visible light for four minutes, leading to a firm adhesion to the defect.

One day later, they observed a transparent, smooth eye surface without inflammation. Over time, the tissue regenerated and the new tissue showed few differences with the native one, according to the study.

The researchers expected to start clinical trials to test the technology in human patients in approximately one year.

Corneal injuries are a common cause of visual impairment worldwide, with more than 1.5 million new cases of corneal blindness reported every year. Some of them require corneal transplants that carry risks of post-transplant complications like infection or rejection.

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Saturday, March 22, 2014

Stem cells may help cure bladder issues

Scientists have now managed to produce tissue from human stem cells that could be transplanted into patients with defective or diseased bladder, says a study.
For the first time, scientists have succeeded in coaxing laboratory cultures of human stem cells to develop into the specialized, unique cells needed to repair a patient's defective or diseased bladder.
The breakthrough was developed at the University of California's (UC) Davis Institute for Regenerative Cures and published in the scientific journal Stem Cells Translational Medicine.
It is significant because it provides a pathway to regenerate replacement bladder tissue for patients whose bladders are too small or do not function properly, such as children with spina bifida and adults with spinal cord injuries or bladder cancer, reported Science Daily.
"Our goal is to use human stem cells to regenerate tissue in the lab that can be transplanted into patients to augment or replace their malfunctioning bladders," said Eric Kurzrock, professor and head of the division of paediatric urologic surgery at UC Davis Children's Hospital and lead scientist of the study.
Another benefit of the UC Davis study is the insight it may provide about the pathways of bladder cancer, which is diagnosed in more than 70,000 Americans each year, according to the National Cancer Institute.

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Monday, January 27, 2014

Long-living breast stem cells may cause cancer

Breast stem cells and their "daughters" can live for a long time and harbour genetic defects or damage that could lead to breast cancer later, reveals a new research. 

Researchers from Melbourne's Walter and Eliza Hall Institute have discovered that breast stem cells and their "daughters" have a much longer lifespan than previously thought, and are active in puberty and throughout life. 

"Given that these stem cells - and their 'daughter' progenitor cells - can live for such a long time and are capable of self renewing, damage to their genetic code could lead to breast cancer 10 or 20 years later," said Professor Geoff Lindeman

The team has discovered that breast stem cells actively maintain breast tissues for most of an individual's life and contribute to all major stages of breast development, said the research published in the journal Nature. 

The finding is also integral to identifying the "cells of origin" of breast cancer and the ongoing quest to develop new treatments and diagnostics for the disease. 

"We hope that it would lead to the development of new treatment and diagnostic strategies in the clinic to help women with breast cancer in the future," the researchers added. 

According to co-researcher Professor Jane Visvader, understanding the hierarchy and development of breast cells was critical for identifying the cells that give rise to breast cancer, and how and why these cells become cancerous. 

The project should also confirm that breast stem cells were "true" stem cells capable of renewing themselves and making all the cells of the mammary gland, the study said.



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Wednesday, July 31, 2013

Genetic mutation linked to congenital heart disease identified

A new study led by a researcher has found that a mutation in a gene crucial to normal heart development plays a role in some types of congenital heart disease.

The findings, could help narrow the search for genes that contribute to this defect, which affects as many as 40,000 newborns a year.

Several hundred genes have been implicated in the formation of the heart, and a mutation in any of them could potentially contribute to a cardiac defect.

Identifying which of these genes is involved in human congenital heart disease has been a challenge for scientists in the field.

"We have to ask ourselves, what subset of the more than 20,000 genes that make up the human genome are contributing to congenital heart disease?" he said.


"Right now, we don`t know enough about a lot of those genes, so this study provides another piece of the puzzle," he said.  That piece is FOXP1, a member of a large gene family that helps regulate tissues throughout the body, including in the heart, lungs and brain.

ps- this is only for information, always consult you physician before having any particular food/ medication/exercise/other remedies.


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Monday, June 24, 2013

Antidepressants during pregnancy affect babies

Some popular antidepressants in early pregnancy could double the risk of an unborn child developing a heart defect, an expert has warned. 

The expert  said that evidence suggests that there is a risk associated with the Selective serotonin re-uptake inhibitor (SSRI)

He said that a lot of effort is put in to dissuade women from smoking or drinking alcohol during pregnancy, however, its not the same with antidepressant medication, which may be carrying similar - if not greater - risks. 

He said that the guidance is now going be re-written to take in to account evidence that the SSRI antidepressants, as a group, are associated to heart defects in babies. 

He asserted that the risk of a child being born with a heart defect is around two in 100; but the new evidence shows that if the mother took an SSRI during early pregnancy the risk raises to around four in 100.





ps- this is only for information, always consult you physician before having any particular food/ medication/exercise/other remedies.




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for info about knee replacement, you can view my blog-


http://Knee replacement-stick club.blogspot.com/


for crochet designs


http://My Crochet Creations.blogspot.com/


I've not given details about designs, but those interested are free to mail me for the same.


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