Thursday, January 16, 2020

Using CRISPR to switch off pain gene becomes a possibility with new study

A path-breaking study reports success in disabling an important gene that is responsible for inducing the sensation of pain. This discovery could be of invaluable assistance to millions of patients with chronic pain, helping them to manage their condition better and live with a vastly better quality of life.

The tool - CRISPR

The gene therapy was brought out by scientists from a California startup called Navega Therapeutics. The basis of this technique is gene therapy, making planned and selective alterations in the patient’s DNA to repress the expression of a gene that is responsible for sending the pain signals up the nervous network in the spine.

The tool used to alter the DNA is the powerful CRISPR editor. This has already proved its worth in a host of laboratory gene-editing procedures, but clinically, its use has largely been restricted to rare inherited medical conditions.

For instance, last month, a patient suffering from sickle cell anemia due to the production of abnormal hemoglobin because of a gene defect was successfully reverted to having normal hemoglobin using this method.

CRISPR functions by means of homing molecules that identify and zoom in on a designated or target gene to be edited. Once identified, the target gene is removed neatly, the normal copy is inserted, and the cut ends spliced with the inserted sequence. In effect, a find-and-replace routine has been used.

The study

In the current study, the scientists were able to avoid the potential dangers of cutting out a gene altogether, which include inadvertently removing or interfering with normal neighboring regulatory or coding DNA. This could affect many functions in the body. Instead, they concentrated on regulating the expression of the gene of interest rather than removing it.

To achieve this, they used CRISPR to edit molecules attached to the basic DNA strand, called epigenetic molecules. These molecules are not part of the genetic information in the DNA but have an immense influence on the way the genes are expressed.

This is called epigenome editing and does not carry the same risk of permanently altering the genetic blueprint of the individual. The advantage is that the target gene can be prevented from being activated, or can be activated, according to need, while still remaining intact.

The target

The gene is called SCN9A. It was back in 2006 that certain mutations in this gene were found to deprive the affected individual of the ability to feel pain. This was because the mutated gene down-regulated the passage of the pain signals across the neural pathway, by controlling certain molecules involved in this process, found on the cell surface of the neurons.

The researchers then focused on using this to treat pain without the risks and adverse effects of opioid medication. They tried to edit the epigenetic marker that activated this pathway using CRISPR inserted into a viral vector. The virus used is a harmless one.


These treated viral particles were inserted into the spine so that they can enter the nerve cells there. The scientists hoped that once inside the cell, the virus would release the CRISPR tool as it disassembled itself in preparation for replication. The gene editor would then, presumably, carry out its task of editing the epigenetic marker that activates the SCN9A gene.

The results

The first round of testing of the therapy on mice has successfully concluded, says Moreno. “We are really excited because we have seen, in three different pain models, a decrease in overall pain.” 
Though the researchers found that they could not completely silence the pain because not all nerve cells were penetrated by the viral vector, there was a significant reduction.

Moreover, the degree of pain reduction was tunable, as with conventional pain medication. The more virus they injected, the greater was the pain relief, but it lasted much, much longer than with a painkiller.

The big benefit of the current therapy is that unlike current approaches that focus on relieving pain by administering opioid-based medication, it doesn’t carry the risk of addiction. At present, the US is facing an unprecedented two million-strong caseload of opioid addiction due to improper and over-zealous prescription of opioids for the treatment of pain.

Moreno cites the case of cancer patients who are unable to tolerate chemotherapy because of the intense associated pain, even though they know it could save their lives. The paradox with chemotherapy for cancer is that higher doses of these cytotoxic drugs increase the chances of surviving cancer-free for a longer time – but may leave the survivor with chronic pain.

In many centers, therefore, patients on chemotherapy are given morphine to dull their pain. This may, however, leave them unable to function normally because of the associated somnolence and tiredness.

On the other hand, the effect is reversible, which is important in allowing people treated in this way to feel pain normally once their need for dulled pain is no longer present, such as following the termination of chemotherapy.

The future

The American scientists now want to begin testing it in human patients from the next year. If it is proved to be medically safe and clinically effective, these researchers could have helped to bring about a dramatic reduction in suffering for a vast army of people with terminal painful illnesses and with chronic pain. However, the earliest date at which approval is envisaged is five years from now.

The other side of the discovery was also raised by Urnov: what if people used it to produce humans who could no longer feel pain and could, therefore, fight to the death without fear? In the current world scenario, such a terrifying possibility also needs to be considered for this exciting new discovery– a point not missed by Russian President Vladimir Putin.

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Friday, August 23, 2019

Silent stroke can cause progressive brain damage, say experts: Know how to deal with it

When a person suffers from a silent stroke, he or she may not exhibit any signs usually associated with a stroke. But this does not mean that there are no dangers. This kind of stroke can still damage the brain and increase the possibility of an overt stroke. It is usually caused by a blood clot that interrupts blood flow in the brain. Now a new study says that people who have had surgery may have a higher risk of silent strokes.

Canadian researchers have discovered that covert or ‘silent’ strokes are common in older individuals after they have elective, non-cardiac surgery and this doubles their risk of cognitive decline one year later.

A silent stroke causes obvious symptoms, such as weakness in one arm or speech problems that last more than a day. This is not obvious except on brain scans, such as a MRI. Each year, approximately 0.5 per cent of the 50 million people around the age of 65 years or more, who have major, non-cardiac surgery, will suffer an overt stroke, say researchers. But until now little was known about the incidence or impacts of silent stroke after surgery.


Older people at greater risk of silent stroke: Experts

The research team found that one in 14 people over age 65 who had elective, non-cardiac surgery had a silent stroke. This suggests that as many as three million people in this age category globally suffer a covert stroke after surgery each year.

The study involved 1,114 patients aged 65 years and older from 12 centres in North and South America, Asia, New Zealand, and Europe. All patients received an MRI within nine days of their surgery to look for imaging evidence of silent stroke. The research team followed patients for one year after their surgery to assess their cognitive capabilities. They found that people who had a silent stroke after surgery were more likely to experience cognitive decline, perioperative delirium, overt stroke or transient ischaemic attack within one year, compared to patients who did not have a silent stroke.

Over the last century, surgery has greatly improved the health and the quality of life of patients around the world. Surgeons can now operate on older and sicker patients thanks to improvements in surgical and anesthetic techniques. Despite the benefits of surgery, there is the need to understand the risks, say researchers.


Silent stroke: Know how to deal with it

A stroke, as per recent data, is the leading cause of disability and the 3rd leading cause of death, especially amongst the elderly in India. “A stroke is an obstruction of blood supply to the brain due to a blocked blood vessel or a ruptured blood vessel. Sometimes strokes occurs without the person even realising it or remains asymptomatic, this is also known as silent strokes,” says a Neurologist. He also suggests treatment for it.

The prevalence of a stroke has increased by over 50 per cent in the past 2 decades in India. The contribution of this disease to total deaths and disease burden in the country has almost doubled in the past 25 years. The risk of a stroke is same for men and women until the age of 50 years, post which, women are at higher risk of suffering a stroke.

Silent strokes have the potential to cause permanent damage to the brain; they are usually missed as their symptoms are difficult to recognize. It is noted that, individuals over the age of 60 years and those with high blood pressure, diabetes, high cholesterol and those on oral contraceptives are at a high risk of experiencing a silent stroke.


Early signs of a stroke that should not be ignored

Transient Ischemic Attacks(TIAs) are mini strokes that occur just before a major Stroke; they are also called as ‘Warning Strokes’ and carry a significant risk for the patient. Most patients who have TIAs are highly prone to getting a major Stroke if not treated immediately. A Stroke can be easily diagnosed through a physical examination, medical tests, MRI, echocardiography or angiography. Depending on the diagnosis of the patient’s condition, a treatment plan is prescribed by the doctor.




    Unexplained severe headaches
    Numbness or weakness in the arms, face, or leg, usually on just one side
    Difficulty seeing with one or both eyes
    Difficulty in staying or walking in coordinated or balanced manner
    Drooping on one side of the face
    Slurred speech
    Dizziness
    Trouble swallowing
    Confusion or loss of memory
    Loss of sensation in any part of the body
    Muscle stiffness
     Behavioural changes


Treatment options


The patient can be started on regular medication, depending on the location, cause, type and severity of the stroke/attack. In case the patient requires surgery, a carotid endarterectomy for people with a narrow carotid artery in the neck, can help in clearing the artery of any fatty deposits before another stroke. Additionally, a carotid angioplasty or stenting is also an alternative treatment option which might help to prevent a major stroke.


Prevention of silent strokes

Due to the gradual rise in the stroke risks in a country like ours, it is essential to create awareness on the fact that stroke is treatable and preventable. It is extremely easy to cut down on the risk of a stroke by making a few lifestyle changes.

Eat a healthy diet. Avoid high cholesterol foods and consume sufficient amounts of vegetables. Regular exercise helps.  You must exercise ideally for 30 minutes every day. Weight management is also very important. Avoid intake of alcohol and stay away from smoking. It can help prevent a stroke. And, manage your blood pressure and cholesterol level.


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