Thursday, March 05, 2026

What if your nights revealed ALS years in advance?

Researchers at Inserm have taken a significant step forward in understanding Amyotrophic Lateral Sclerosis, also known as Charcot disease, offering hope for a new therapeutic strategy to slow its progression. Their work highlights the role of the hypothalamus and reveals that sleep disturbances may appear long before motor symptoms develop. Even more promising, a molecule that restored sleep in mice helped preserve motor neurons. 

According to the French research team, sleep disorders precede the onset of motor symptoms in ALS. Could treating sleep disturbances help slow the disease? That is precisely what scientists observed in animal models. 

To date, there is no cure for ALS, a neurodegenerative disease that typically leads to death within three to five years of symptom onset. ALS is characterized by the progressive death of nerve cells known as motor neurons. As these cells degenerate, patients experience rapid and progressive muscle atrophy, motor impairments, and loss of independence. Ultimately, damage to the respiratory muscles leads to death. 

As with several other neurodegenerative conditions, researchers from Inserm and the University of Strasbourg wondered whether sleep disorders, often viewed as a consequence of disease progression, might actually precede motor decline. They also questioned whether restoring sleep could slow the disease’s course. 

To explore this, the team analyzed dozens of sleep recordings from groups of people living with ALS at different stages. One group had not yet developed respiratory symptoms. Another carried genetic mutations that increased their risk of developing the disease. Their results were compared with control groups.

The hypothalamus involved in sleep disturbances

“These tests indicate that both groups of individuals experienced the same type of sleep disturbances: increased wakefulness and reduced deep sleep compared with control groups,” the authors explained in a statement released on February 4. The findings, published in Science Translational Medicine, suggest that sleep disorders are present and detectable several years before motor symptoms emerge.

The researchers then looked for the origin of these disturbances in the brain. Their focus turned to orexin neurons, specialized cells in the hypothalamus known to regulate wakefulness. In mouse models of ALS that exhibited similar sleep abnormalities, the team discovered that the neural circuits involving these orexin neurons were altered. Supporting neurons within these circuits had disappeared as the disease progressed.

A promising molecule to slow disease progression

The scientists administered an orexin inhibitor, a drug already prescribed to treat insomnia, to the affected mice. The results were striking. After a single oral dose, the mice’s sleep was restored. Activity in the supporting neurons connected to orexin neurons also improved. After 15 days of treatment, preservation of motor neurons was observed in the mice.

The research team now hopes to test this molecule in patients with ALS. Could restoring sleep slow the progression of the disease?

“Our team’s discoveries are important on two levels,” explained Luc Dupuis, co senior author of the study. “First, they highlight a new timeline of ALS symptoms, once again questioning the origins of the disease, particularly the role of the brain in its development. They also offer a glimmer of hope for patients and those who may develop the disease, by suggesting that acting on its earliest manifestations could slow its extremely rapid progression.”

Did you know?

ALS affects approximately 8,000 people in France, according to the Association for ALS Research. Its annual incidence is 2.7 cases per 100,000 inhabitants. It is a rare neurodegenerative disorder marked by the destruction of motor neurons, the cells responsible for voluntary movement.

The disease typically appears between ages 50 and 70. ALS is progressive and usually leads to death within three to five years after the first signs. In most cases, failure of the respiratory muscles is the cause of death. In about 30 percent of cases, the disease begins with difficulty speaking or swallowing. In others, it starts with weakness or discomfort in an arm, leg, or hand.

Disease progression may include:

• muscle cramps and stiffness in muscles and joints;
• muscle wasting and coordination problems affecting walking, grasping objects, swallowing, or speaking;
• at an advanced stage, respiratory muscles can no longer function adequately.

These findings suggest that sleep, often overlooked in neurodegenerative diseases, may hold a key to understanding and potentially slowing ALS.

 

 

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Friday, December 06, 2024

Brain stimulation can help some people with injured spinal cords walk

Scientists said earlier this week that electrically stimulating a particular region in the brain could help people with injured spinal cords walk more easily, with one patient describing how the technique allowed him to conquer his fear of stairs.

The new technique is intended for people with spinal cord injuries where the connection between their brain and spinal cord has not been totally severed, and who still have some movement in their legs.

Wolfgang Jaeger, one of two patients who took part in an early trial, said that it immediately made a "big difference" to his mobility. "Now when I see a staircase with just a few steps, I know I can handle it on my own," the 54-year-old said in a video released alongside a new study in the journal Nature Medicine.

The research was conducted by a Swiss team that has pioneered several recent advances, including using electrical stimulation of the spinal cord to let several paralysed patients walk again. This time around, the researchers wanted to figure out which region of the brain was most responsible for people recovering from spinal cord injuries.

'I feel the urge to walk'

Using 3-D imaging techniques to map out the brain activity of mice with these injuries, the team created what they called a "brain-wide atlas".

They were surprised to find that the brain region they were looking for was in the lateral hypothalamus, which is otherwise known as a regulator for arousal, feeding and motivation.

A particular group of neurons in this region "appears to be involved in the recovery of walking after spinal cord injury," neuroscientist Gregoire Courtine at Switzerland's Ecole Polytechnique Federale de Lausanne told AFP.

Next, the team sought to amplify the signal from these neurons using a procedure called deep brain stimulation, which is commonly used to treat movement problems in people with Parkinson's disease.

It involves a surgeon implanting electrodes in the brain region, which are connected to a device implanted in the patient's chest. When switched on, the device sends electrical pulses up to the brain.

First, the team tested their theory on rats and mice, finding that it "immediately" improved walking, the study said.

The first human participant of the 2022 Swiss trial was a woman who, like Jaeger, has an incomplete spinal cord injury. Neurosurgeon Jocelyne Bloch told AFP that when the women's device was turned on for the first time, she said: "I feel my legs." When they turned up the electrical current, the women said, "I feel the urge to walk," according to Bloch.

The patients could turn on their device whenever they needed, and also went through months of rehab and strength training.

The woman's goal was to walk independently without a walker, while Jaeger's was to climb stairs by himself.

"Both of them reached their goal," Bloch said.

‘No problem’

Jaeger, who is from the Swiss municipality of Kappel, spoke about facing eight steps down to the sea during a holiday last year.

 

With the device turned on, "walking up and down the stairs was no problem," he said. "It's a great feeling when you don't have to rely on others all the time."

Over time, he "became faster and could walk longer" even when the device was switched off, he added.

More research is still needed -- and this technique will not be effective for all patients, Courtine emphasised. Because it depends on boosting the brain's signal to the spinal cord, it depends how much signal was getting through in the first place.

And while deep brain stimulation is now fairly common, some people are not so "comfortable with someone operating on their brain," Courtine added.

The researchers believe that in the future, the best option for recovering from these kinds of injuries could be stimulating both their spinal cord and lateral hypothalamus.

 

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Friday, January 17, 2020

Soybean oil diet may trigger genetic changes in brain

Widely consumed soybean oil not only leads to obesity and diabetes but may also affect neurological conditions like autism, Alzheimer’s disease, anxiety and depression, report researchers .

In a study conducted on mice, the scientists found pronounced effects of the soybean oil on the hypothalamus where a number of critical processes take place.

The research team discovered nearly 100 genes – including the ‘love hormone’ oxytocin produced in hypothalamus — affected by the soybean oil diet.

“The hypothalamus regulates body weight via your metabolism, maintains body temperature, is critical for reproduction and physical growth as well as your response to stress,” said  an associate professor of neuroscience and lead author on the study.

The research team has not yet isolated which chemicals in the oil are responsible for the changes they found in the hypothalamus.

“But they have ruled out two candidates. It is not linoleic acid, since the modified oil also produced genetic disruptions; nor is it stigmasterol, a cholesterol-like chemical found naturally in soybean oil,” the study noted.

Identifying the compounds responsible for the negative effects is an important area for the team’s future research.

“This could help design healthier dietary oils in the future,” said Poonamjot Deol, first author on the study.

“If there’s one message I want people to take away, it’s this: reduce consumption of soybean oil,” Deol added.

The team compared mice fed three different diets high in fat: soybean oil, soybean oil modified to be low in linoleic acid, and coconut oil.

They believe this discovery could have ramifications not just for energy metabolism, but also for proper brain function and diseases such as autism or Parkinson’s disease.

“However, it is important to note there is no proof the oil causes these diseases,” the authors wrote.




Te same research team found in 2015 that soybean oil induces obesity, diabetes, insulin resistance, and fatty liver in mice. Then in a 2017 study, the same group learned that if soybean oil is engineered to be low in linoleic acid, it induces less obesity and insulin resistance.

The team said the findings only apply to soybean oil — not to other soy products or to other vegetable oils.

“Do not throw out your tofu, soymilk, edamame, or soy sauce,” said Frances Sladek, a UCR toxicologist and professor of cell biology.

“Many soy products only contain small amounts of the oil, and large amounts of healthful compounds such as essential fatty acids and proteins”.

This study utilized male mice. Because oxytocin is so important for maternal health and promotes mother-child bonding, similar studies need to be performed using female mice.

Coconut oil, which contains saturated fats, produced very few changes in the hypothalamic genes, said the researchers.


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Wednesday, December 11, 2019

Birth control pills may shrink the region that controls sex drive in women

In addition to preventing pregnancy, these birth control pills are also prescribed by medical professionals to treat irregular menstruation, cystic acne, PCOS (Polycystic ovary syndrome) and painful periods. 

The side-effects of contraceptive pills
However, since contraceptive pills work by introducing hormones in the body, it may cause disruption in the balance of hormones present in the body. This could result in irregular menstrual cycle and delayed periods. Some women may also experience nausea and vomiting when they start taking the pill. It may also cause tenderness in the breast, weight gain and mood swings.



Drastic impact on the brain

Sadly, this is not all. A recent study, presented at the 105th annual meeting of Radiological Society of North America 2019 found a shocking difference in the brain scans of women who took the pill and those who didn’t. To conduct the study, scientists examined the brains of 50 women, 21 of which were on the pill.

The doctors found that women who were taking the contraceptive pills had a dramatic difference in the hypothalamus volume when compared to those who did not take the pill. For the uninitiated, the hypothalamus is a key region of the brain which is responsible for taking care of sex drive, sleep cycle, mood swings and appetite.

Lead author of the study and professor of radiology at the Gruss Magnetic Resonance Research Center, Dr Lipton said, "This initial study shows a strong association and should motivate further investigation into the effects of oral contraceptives on brain structure and their potential impact on brain function."

The bottom line
The scientists maintained that the results were still preliminary and required more research, in-depth studies need to be conducted to further understand the impact of oral contraceptives on the brain. 


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