Physician revolutionizes gene research

March 26, 2008

A dramatic new study published in the most recent issue of Nature questions some of the mechanisms underlying a new class of drugs based on Nobel Prize-winning work designed to fight diseases ranging from macular degeneration to diabetes.

Dr. Jayakrishna Ambati, a University of Kentucky researcher and the paper's senior author, has for years been investigating gene silencing, a 1998 discovery that won a Nobel Prize in Physiology or Medicine in unusually quick fashion in 2006.

While the prize-winning discovery remains important, the findings made by Ambati's lab show the mechanisms behind it are not as scientists once believed. In fact, Ambati's work imparts the need for caution in current clinical trials using the technology, as it may have potentially harmful effects on subjects.

Gene Silencing Leads to New Class of Drugs

In short, researchers in 1998 discovered a class of double-stranded RNA (dsRNA) that possessed powerful gene-silencing capabilities, or the ability to "turn off" disease-causing genes in the body.

The technique of targeting these dsRNA for single genes was refined with synthetic molecules called small-interfering RNA (siRNA). siRNA were thought to have the capability to interfere with specific disease-causing genes and prevent them from being expressed.

Because gene-targeted silencing with siRNA does not involve permanent DNA mutations, this approach rapidly gained popularity throughout biomedical research. The breakthrough, with the powerful ability to turn off genes, has become a standard research tool for genetic studies and has resulted in a new class of 21st century drugs designed to silence disease-causing genes in the body or disarm an invading virus by knocking out its genes.

Many diseases including age-related macular degeneration, diabetes, kidney disease, cancer, Lou Gehrig's and Parkinson's have been heralded as candidates for siRNA therapy, creating a wave of on-going clinical trials.

New Discovery Shows Therapies Could Have Harmful Side Effects

Ambati, professor and vice chair of ophthalmology and visual sciences at the University of Kentucky College of Medicine, and his colleagues have made a critical discovery that challenges the view that siRNA’s therapeutic effects are imparted solely through RNA interference.

Ambati and collaborators argue that siRNA functions generically rather than specifically, thus the new class of drugs being formulated may actually adversely affect blood vessel growth in a variety of organs.

"siRNAs are used in every area of biomedical research and are thought to be exquisitely specific in targeting a single gene," Ambati said. "My lab made the surprising discovery that siRNAs, including those in clinical trials, do not enter cells or trigger RNAi. Rather, we found that they generically, regardless of their sequence or target, bind a receptor known as TLR3 on cell surfaces and block blood vessel growth in the eye, skin and a variety of other organs."

Blocking blood vessel growth is beneficial in a variety of diseases. Prime examples include wet AMD, an eye disease hallmarked by the abnormal growth of blood vessels beneath the retina, as well as cancer. However, blocking blood vessel growth by administering siRNA intravenously could be detrimental if it impacts other organs, according to Ambati's study.

Ambati, however, quickly notes the Nobel Prize-winning discovery is still valid.

"RNA interference does, of course, exist," said Ambati, a University Research Professor and the Dr. E. Vernon Smith & Eloise C. Smith Endowed Chair in Macular Degeneration Research. "It is just that siRNA functions differently than commonly believed – not via RNA interference."

Ambati said the main implications of his research are two fold:

1. for researchers to understand how siRNAs actually work
2. for clinical trials of siRNA to be approached with great caution.

Ambati’s lab also showed that people with a mutation in the TLR3 receptor would be resistant to the generic effects of siRNAs, thereby providing hope for personalized medicine in this population.

The next steps, Ambati said, are to better understand the generic mechanism of siRNA that inhibits blood vessel growth and to discover how to render it useful in creating treatments for the many conditions that would benefit from such effects. His lab also will work to refine siRNAs to potentially achieve their promise of precise gene targeting.

Source: University of Kentucky

4.6 /5 (27 votes)  

Filter


Move the slider to adjust rank threshold, so that you can hide some of the comments.


Display comments: newest first

out7x
Mar 27, 2008

Rank: 1 / 5 (3)
First it is necessary to find which genes cause a disease.
superhuman
Mar 27, 2008

Rank: not rated yet
>Physician revolutionizes gene research

No, he points out that in one instance the mechanism of RNAi is different from what is currently believed to be the case. This is a very important discovery but hardly a revolution in gene research!
nano999
Mar 31, 2008

Rank: not rated yet
out7x rarely has anything useful to add and Neil Farbstein is always promoting his crappy company. Anyone else ever notice this?
Rank 4.6 /5 (27 votes)
Tags

Relevant PhysicsForums posts
  • Potential Breakthrough in Seizure Control
    createdMay 26, 2012
  • Popping/Cracked sternum.
    createdMay 25, 2012
  • Which Mental Illness Encompasses This Problem?
    createdMay 25, 2012
  • A question about drug tolerance
    createdMay 23, 2012
  • Poor nutrition leading to overeating?
    createdMay 23, 2012
  • Math and dyslexia?
    createdMay 21, 2012
  • More from Physics Forums - Medical Sciences

More news stories

T cells 'hunt' parasites like animal predators seek prey, study shows

By pairing an intimate knowledge of immune-system function with a deep understanding of statistical physics, a cross-disciplinary team at the University of Pennsylvania has arrived at a surprising finding: T cells use a movement ...

Medicine & Health / Medical research

created 9 hours ago | popularity 5 / 5 (3) | comments 0 | with audio podcast

Same gene that stunts infants' growth also makes them grow too big: research

UCLA geneticists have identified the mutation responsible for IMAGe* syndrome, a rare disorder that stunts infants' growth. The twist? The mutation occurs on the same gene that causes Beckwith-Wiedemann syndrome, which makes ...

Medicine & Health / Genetics

created 9 hours ago | popularity not rated yet | comments 0 | with audio podcast

Almost half of new vets seek disability

(AP) -- America's newest veterans are filing for disability benefits at a historic rate, claiming to be the most medically and mentally troubled generation of former troops the nation has ever seen.

Medicine & Health / Health

created 7 hours ago | popularity not rated yet | comments 0

Color-changing contact lenses to help diabetics (w/ Video)

For the millions of Americans with diabetes, the inconvenient and often painful method of testing blood sugar levels is a way of life. But research and innovative product design by scientists at The University of Akron may ...

Medicine & Health / Diabetes

created May 23, 2012 | popularity 4.4 / 5 (7) | comments 5 | with audio podcast

Missouri opts for untested drug for executions

(AP) -- The same anesthetic that caused the overdose death of pop star Michael Jackson is now the drug of choice for executions in Missouri, causing a stir among critics who question how the state can guarantee ...

Medicine & Health / Medications

created May 24, 2012 | popularity not rated yet | comments 5


Stunning image of smallest possible five-ringed structure

Scientists have created and imaged the smallest possible five-ringed structure – about 100,000 times thinner than a human hair – and you'll probably recognise its shape.

'Unzipped' carbon nanotubes could help energize fuel cells, batteries

Multi-walled carbon nanotubes riddled with defects and impurities on the outside could replace some of the expensive platinum catalysts used in fuel cells and metal-air batteries, according to scientists at ...

Change in developmental timing was crucial in the evolutionary shift from dinosaurs to birds: study

At first glance, it's hard to see how a common house sparrow and a Tyrannosaurus Rex might have anything in common. After all, one is a bird that weighs less than an ounce, and the other is a dinosaur that ...

Computer model used to pinpoint prime materials for efficient carbon capture

When power plants begin capturing their carbon emissions to reduce greenhouse gases – and to most in the electric power industry, it's a question of when, not if – it will be an expensive undertaking.

Land and sea species differ in climate change response: study

(Phys.org) -- Marine and terrestrial species will likely differ in their responses to climate warming, new research by Simon Fraser University and Australia’s University of Tasmania has found.

Yale study concludes public apathy over climate change unrelated to science literacy

Are members of the public divided about climate change because they don't understand the science behind it? If Americans knew more basic science and were more proficient in technical reasoning, would public consensus match ...