Sunday, January 26, 2020

Scientists Have Created an Artificial Retina Implant That Could Restore Vision to Millions

Scientists have developed a retinal implant that can restore lost vision in rats, and are planning to trial the procedure in humans later this year.

The implant, which converts light into an electrical signal that stimulates retinal neurons, could give hope to millions who experience retinal degeneration – including retinitis pigmentosa – in which photoreceptor cells in the eye begin to break down, leading to blindness.


The retina is located at the back of the eye, and is made up of millions of these light-sensitive photoreceptors. But mutations in any one of the 240 identified genes can lead to retinal degeneration, where these photoreceptor cells die off, even while the retinal neurons around them are unaffected.

Because the retinal nerves remain intact and functional, previous research has looked at treating retinitis pigmentosa with bionic eye devices that stimulate the neurons with lights, while other scientists have investigated using CRISPR gene editing to repair the mutations that cause blindness.

Now, a team led by the Italian Institute of Technology has developed a new approach, with a prosthesis implanted into the eye that serves as a working replacement for a damaged retina.

The implant is made from a thin layer of conductive polymer, placed on a silk-based substrate and covered with a semiconducting polymer.

The semiconducting polymer acts as a photovoltaic material, absorbing photons when light enters the lens of the eye. When this happens, electricity stimulates retinal neurons, filling in the gap left by the eye's natural but damaged photoreceptors.


To test the device, the researchers implanted the artificial retina into the eyes of rats bred to develop a rodent model of retinal degeneration – called Royal College of Surgeons (RCS) rats.

After the rats had healed from the operation 30 days later, the researchers tested how sensitive they were to light – called the pupillary reflex – compared to healthy rats and untreated RCS rats.

At the low intensity of 1 lux – a bit brighter than the light from a full moon – the treated rats weren't much more responsive than untreated RCS rats.

But as the light increased to around 4–5 lux – about the same as a dark twilight sky – the pupillary response of treated rats was largely indistinguishable from healthy animals.

When they retested the rats at six and 10 months after surgery, the implant was still effective in the rats – although all the rats in the tests (including the treated rats, the healthy animals, and the RCS controls) had suffered minor vision impairment due to being older.

Using positron emission tomography (PET) to monitor the rats' brain activity during the light sensitivity tests, the researchers saw an increase in the activity of the primary visual cortex, which processes visual information.

Based on the results, the team concludes that the implant directly activates "residual neuronal circuitries in the degenerate retina", but further research will be required to explain exactly how the stimulation works on a biological level.

"[T]he detailed principle of operation of the prosthesis remains uncertain," they explain in their paper.

While there are no guarantees that the results seen in rats will translate to people, the team is hopeful that it will – and from the sounds of things, it won't be too long until we find out.

"We hope to replicate in humans the excellent results obtained in animal models," says one of the researchers, ophthalmologist Grazia Pertile from the Sacred Heart Don Calabria in Negrar, Italy.

"We plan to carry out the first human trials in the second half of this year and gather preliminary results during 2018. This [implant] could be a turning point in the treatment of extremely debilitating retinal diseases."

The findings are reported in Nature Materials.

 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    
https://kneereplacement-stickclub.blogspot.com. for info on knee replacement
 

Labels: , , , , , , , , , , , ,

Wednesday, September 06, 2017

This gene can cause vision loss in middle-age

According to researchers, chemical changes in the eye can lead to blindness in middle-age.

Their findings aid understanding of a genetic condition that causes sight loss for one in 3,000 people.


The team examined how changes in a gene - known as RPGR - can damage eye cells to cause a disorder known as X-linked retinitis pigmentosa - a chronic hereditary eye disease characterized by black pigmentation and gradual degeneration of the retina.

The condition is incurable and affects night and peripheral vision before gradually causing blindness in middle age.

The team  took skin samples from two patients and transformed stem cells - which can change into any cell type - into light-sensing eye cells known as photo-receptors.

They compared these with cells from healthy relatives of the patients.

Photoreceptors - which decay in retinitis pigmentosa patients - differed in their fundamental structure when compared with those from family members.

Follow-up studies in mice identified key molecules that interact with RPGR to maintain the structure of photoreceptors.

When RPGR is flawed, the structure is compromised and photoreceptors cannot function correctly, leading to sight loss.

Lead researcher said that by furthering the understanding of the RPGR gene and its effects on photoreceptor cells, they hope that these findings bring them closer to developing a possible treatment for this devastating disease.


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-                        
HTTP:GSEASYRECIPES.BLOGSPOT.COM/



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

Labels: , , , , , , , , , , , , ,

Friday, May 05, 2017

First synthetic retina created for the visually impaired

The first synthetic, soft tissue retina developed by Oxford University researchers could offer fresh hope to visually impaired people. Until now, artificial retinas have only been made from hard, rigid materials. The new research is the first to successfully use biological, synthetic tissues, developed in a laboratory environment.

The study could revolutionise the bionic implant industry and the development of new, less invasive technologies that more closely resemble human body tissues, helping to treat degenerative eye conditions such as retinitis pigmentosa. Just as photography depends on camera pixels reacting to light, vision relies on the retina performing the same function.

The retina sits at the back of the human eye, and contains protein cells that convert light into electrical signals that travel through the nervous system, triggering a response from the brain, ultimately building a picture of the scene being viewed.

Vanessa Restrepo-Schild led the team at Oxford University in the UK which developed the synthetic, double layered retina which closely mimics the natural human retinal process. The retina replica consists of soft water droplets (hydrogels) and biological cell membrane proteins. Designed like a camera, the cells act as pixels, detecting and reacting to light to create a grey scale image.

“The synthetic material can generate electrical signals, which stimulate the neurons at the back of our eye just like the original retina,” said Restrepo-Schild.The study, published in the journal Scientific Reports, shows that unlike existing artificial retinal implants, the cell-cultures are created from natural, biodegradable materials and do not contain foreign bodies or living entities.

The implant is less invasive than a mechanical devise, and is less likely to have an adverse reaction on the body.”The human eye is incredibly sensitive, which is why foreign bodies like metal retinal implants can be so damaging, leading to inflammation and/or scarring. “But a biological synthetic implant is soft and water based, so much more friendly to the eye environment,” Restrepo-Schild added.

 At present the synthetic retina has only been tested in laboratory conditions, and researchers want to explore potential uses with living tissues. The next step is vital in demonstrating how the material performs as a bionic implant, researchers said. They have filed a patent for the technology and the next phase of the work will see the Oxford team expand the replica’s function to include recognising different colours. Working with a much larger replica, the team will test the material’s ability to recognise different colours and potentially even shapes and symbols. Further research will expand to include animal testing and then a series of clinical trials in humans.

 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    
https://kneereplacement-stickclub.blogspot.com. for info on knee replacement   

Labels: , , , , , , ,

Wednesday, October 01, 2014

Viagra could affect vision


An active ingredient in the anti-impotence drug Viagra could cause unusual visual responses in people who carry a common mutation for eye disease and may have long-term detrimental effects on their vision, researchers have warned.

The ingredient, Sildenafil, can inhibit an enzyme which is important for transmitting light signals from the retina to the brain, and it is already known from clinical trials of Viagra that its use in high doses can cause transient disturbances in the vision of some healthy people.

"Side effects can include sensitivity to bright light, blurred vision and altered colour vision," said Dr Lisa Nivison-Smith, from the University of New South Wales.


"We are concerned that people who have normal vision but who carry a single copy of the mutant gene for the blinding disease, Retinitis Pigmentosa, could be more susceptible to these changes," Nivison-Smith said.

A team led by Dr Nivison-Smith and UNSW's Professor Michael Kalloniatis studied the effects of a single dose of sildenafil on normal mice and mice with a single copy of the mutant gene.

They found the normal mice had a transient loss of visual function after sildenafil treatment, but this effect was heightened in the mice with the mutation, and the response lasted longer.

They also found early signs of cell death in the eyes of carrier mice, but not in the normal mice, suggesting sildenafil may cause degeneration in carriers of retinal disease.

"These finding are highly significant because about one in 50 people are likely to be carriers of recessive genes which cause retinal disease but are unlikely to know this, because their vision is normal," said Nivison-Smith.

Retinitis Pigmentosa is the most common genetic disease which leads to blindness. It can be caused by a mutation in the gene that produces the enzyme PDE6.

People with two copies of the mutant PDE6 gene get the disease, while carriers, with just one copy, have normal vision, researchers said.

Sildenafil is part of a family of drugs which inhibit the enzyme PDE5, to treat erections, but they can also inhibit PDE6.

This is likely to be a problem for carriers of a mutant PDE6 gene, because they produce less of the enzyme than normal, they said.

To study the eyes of the mice, the team used a technique called electroretinography, which measures the electrical signals of cells in the eye when they are activated by light.

 The study was published in the journal Experimental Eye Research.




Labels: , , , , , , , , , , , ,

Saturday, July 12, 2014

Now, personalized gene therapies for vision loss

A new approach to develop personalized gene therapies for people suffering from retinitis pigmentosa (RP) has been developed by the researchers.

 The RP is one of the major causes of vision loss.
The approach uses induced pluripotent stem cell technology to transform skin cells into retinal cells. These cells are then used by the researchers as a patient-specific model for disease study and preclinical testing.

The researchers from Columbia University Medical Center (CUMC) used this approach to show that a form of RP caused by mutations to the gene MFRP (membrane frizzled-related protein) can disrupt the protein that gives retinal cells their structural integrity.

"The use of patient-specific cell lines for testing the efficacy of gene therapy to precisely correct a patient's genetic deficiency provides yet another tool for advancing the field of personalised medicine," said Stephen H Tsang, the Laszlo Z Bito Associate Professor of Ophthalmology and associate professor of pathology and cell biology.

The RP could also begin during infancy but its first symptoms typically emerge in early adulthood, causing night blindness. In later stages, the photoreceptors in the macula are destroyed by the RP. The photoreceptors are responsible for fine central vision.

"This study provides both in vitro and in vivo evidence that vision loss caused by MFRP mutations could potentially be treated through AAV gene therapy," said coauthor Dieter Egli, an assistant professor at CUMC.

The paper was published in Molecular Therapy, the official journal of the American Society for Gene & Cell Therapy.

 

 

Labels: , , , , , , ,