Rare Diseases often Go Undiagnosed or Untreated in Parts of Africa. A Project Seeks to Change That

Neurology student Henriette Dieng examines Abdou Diop, a patient with genetic neuropathy at Pedro Rodriguez's clinic in Dakar, Senegal, Friday, Jan. 10, 2025. (AP Photo/Annika Hammerschlag)
Neurology student Henriette Dieng examines Abdou Diop, a patient with genetic neuropathy at Pedro Rodriguez's clinic in Dakar, Senegal, Friday, Jan. 10, 2025. (AP Photo/Annika Hammerschlag)
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Rare Diseases often Go Undiagnosed or Untreated in Parts of Africa. A Project Seeks to Change That

Neurology student Henriette Dieng examines Abdou Diop, a patient with genetic neuropathy at Pedro Rodriguez's clinic in Dakar, Senegal, Friday, Jan. 10, 2025. (AP Photo/Annika Hammerschlag)
Neurology student Henriette Dieng examines Abdou Diop, a patient with genetic neuropathy at Pedro Rodriguez's clinic in Dakar, Senegal, Friday, Jan. 10, 2025. (AP Photo/Annika Hammerschlag)

Ndeye Lam visits the cemetery often, praying and gently touching the seashells laid out across her daughter’s gravesite.

“Mariama will always be here,” she said, stepping away from the grave and onto a path that winds through rows of monuments outlined with white tile, stone and sand.

At home, Lam and her husband Pathé smiled over an old video clip of their daughter beaming as she celebrated her 13th birthday with cake and sparklers. When the girl was little, she loved to play. By 13, her muscles had weakened, her spine had curved and stiffened and in her last months, she struggled increasingly to breathe.

She visited Fann hospital in Dakar, where neurologist Dr. Pedro Rodriguez Cruz measured her lung capacity. He suspects Mariama had SELENON-related myopathy, a muscular dystrophy that causes severe respiratory compromise. A new BiPAP machine might have helped to ease her breathing, but it was too late.

Globally, more than 350 million people live with rare diseases, most of them caused by a misstep hidden within their genes. Some conditions can be caught early and treated—but in parts of Africa where population data and resources are scarce, many people go undiagnosed. Rodriguez is trying to change that by connecting patients with genetic testing and medical support, while gathering key data from those patients and their families.

“Most rare disease data has been collected from people of European ancestry, so we have very little knowledge about what’s happening in other parts of the world, mainly in Africa,” Rodriguez said, The AP news reported.

His research is funded by organizations including the La Caixa Foundation in Spain and the National Ataxia Foundation in the United States. And he has consulted with scientists in China, France, Boston, and elsewhere around the world, documenting rare diseases and novel disease-causing gene variants.

That research is creating a library of genetic data for scientists and clinicians. Patients in Senegal are benefiting, too, with a path to diagnosis.

Genetic testing and diagnosis can be life-saving In Guediawaye, Fatoumata Binta Sané’s daughter Aissata has glutaric acidemia type I, an inherited disorder in which the body can’t process certain proteins properly. Her arms and legs are tightly drawn up toward her chest. She can’t walk or reach for things, speak, sit on her own or hold her head up. Sané cradles Aissata in her arms constantly, and the 8-year-old smiles at the sound of her mother’s voice.

In the U.S., newborns are screened for treatable genetic conditions. In Senegal, newborn screening is not routine. Infants who appear healthy at birth might go undiagnosed and experience irreversible decline. Glutaric acidemia type I, for example, can cause brain damage, seizures, coma and early death.

Sané is waiting for genetic testing results for Aissata’s one-year-old sister Aminata. Patients can live long, healthy lives if they start treatment before the onset of symptoms. That includes following a strict diet, avoiding protein-rich foods like nuts, fish and meat and taking the supplement L-carnitine. Though consultation with Rodriguez was free, lifelong treatment is not. If Aminata shares her sister’s disease, Sané will need government assistance to buy medication.

Prof. Moustapha Ndiaye, head of the neurology department at Fann, hopes young physicians will graduate prepared to assist rare disease patients not just in Senegal but in other African countries.

“Students travel from across Africa to study here,” Ndiaye said.

At the start of her career, Dr. Henriette Senghor saw patients who were hospitalized for months. Some died, and no one knew why.

“There was this problem—there was this void,” said Senghor, who’s now training with Rodriguez.

In 2021, Rodriguez established a partnership between the Cheikh Anta Diop University of Dakar and CNAG, the National Center for Genomic Analysis in Barcelona. Rodriguez collects patients’ blood samples and delivers the extracted DNA to Barcelona, where scientists sequence it, storing the answers it holds in a large database. Almost 1,300 participants—patients and families—have enrolled in his study of rare disease in West Africa.

Families cross borders for care In the Gambia, Fatou Samba’s sons Adama, 8, and Gibriel, 4, like to play soccer and feed the sheep in their backyard. On a recent afternoon, they took turns playing with a toy airplane and a globe. Adama, who hopes to be a pilot, pointed to where he wanted to go: the U.S. Outside, he started to climb a pile of bicycles propped up against the wall, and Gibriel followed.

“We’re climbing Mount Everest,” Adama said.

Standing on a bicycle wheel, Adama hesitated. Samba reached for him, setting him down on solid ground. There is a tiny scar on his forehead where broken skin has been stitched back together. Last year, Samba couldn’t explain his frequent falling, so she sought answers in Dakar. Rodriguez confirmed Adama had Duchenne muscular dystrophy. Gibriel's genetic test results are pending. Children often lose the ability to run or climb stairs first, and later can’t walk or raise their arms. In adulthood, they develop heart and breathing problems.

Both boys are taking corticosteroids, which can slow disease progression for patients diagnosed early.

“Without the medication, it would have been terrible. Once we started, after a few weeks we saw improvement,” Samba said. “Doctors are destined to investigate (the disease) and find a cure ... I pray doctors will find a cure.”

Data is the first step Back at Fann Hospital, Rodriguez and Senghor consult with Woly Diene, 25, and her mother and brother. When Diene was 15, she started falling at school. Soon, she felt pain throughout her body. She couldn’t move. She lost her hearing, the strength in her hands and control of the muscles in her face.

Diene, who comes from a rural village in Senegal, has riboflavin transporter deficiency. High doses of vitamin B2—a supplement available on Amazon—can slow, stop and even reverse damage from this condition that is fatal without treatment.

Diene took her first dose when she was diagnosed in August 2023. She still has some difficulty hearing, but Diene is walking again. She has regained the strength in her face and hands. Diene’s brother Thierno said vitamin B2 is expensive, but he knows his sister needs it for the rest of her life.

“I am happy,” Diene said, smiling. “I hope to keep improving.”

While efforts like these help patients, they also allow doctors to collect data—and that’s vital for rare disease research, policy and drug development, said Lauren Moore, chief scientific officer at the National Ataxia Foundation.

“The most prevalent diseases get the most attention and the most funding,” she said. “Data ... really is the first step.”

A $50,000 grant from the foundation allows Rodriguez and colleagues to enroll study participants in Senegal and Nigeria with inherited ataxias—which can lead to muscle weakness, loss of mobility, hearing and vision difficulties and life-shortening heart problems.

The USAID cuts have not affected his research, but grant awards are limited. Rodriguez, Senghor and Rokhaya Ndiaye, professor of human genetics at the University of Dakar, are making plans to ensure genetic testing continues in Senegal.

Global collaboration is essential, said Ndiaye—and strengthening local infrastructure is just as important.

“The need is there,” she said. “And we have a lot of hope.”



Rocket Re-entry Pollution Measured in Atmosphere for 1st Time

A SpaceX Falcon 9 rocket with the company's Dragon spacecraft on top launches from Space Launch Complex 40 for the Crew-12 mission at Cape Canaveral Space Force Station in Florida on February 13, 2026. (Photo by Jim WATSON / AFP)
A SpaceX Falcon 9 rocket with the company's Dragon spacecraft on top launches from Space Launch Complex 40 for the Crew-12 mission at Cape Canaveral Space Force Station in Florida on February 13, 2026. (Photo by Jim WATSON / AFP)
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Rocket Re-entry Pollution Measured in Atmosphere for 1st Time

A SpaceX Falcon 9 rocket with the company's Dragon spacecraft on top launches from Space Launch Complex 40 for the Crew-12 mission at Cape Canaveral Space Force Station in Florida on February 13, 2026. (Photo by Jim WATSON / AFP)
A SpaceX Falcon 9 rocket with the company's Dragon spacecraft on top launches from Space Launch Complex 40 for the Crew-12 mission at Cape Canaveral Space Force Station in Florida on February 13, 2026. (Photo by Jim WATSON / AFP)

When part of a SpaceX rocket re-entered Earth's atmosphere exactly a year ago, it created a spectacular fireball that streaked across Europe's skies, delighting stargazers and sending a team of scientists rushing towards their instruments.

The German team managed to measure the pollution the rocket's upper stage emitted in our planet's difficult-to-study upper atmosphere -- the first time this has been achieved, according to a study published on Thursday.

It is vital to learn more about this little-understood form of pollution because of the huge number of satellites that are planned to be launched in the coming years, the scientists emphasized.

In the early hours of February 19, 2025, the upper stage of a Falcon 9 rocket was tumbling back to Earth when it exploded into a fireball that made headlines from the UK to Poland.

"We were excited to try and test our equipment and hopefully measure the debris trail," the team led by Robin Wing and Gerd Baumgarten of the Leibniz Institute of Atmospheric Physics in Germany told AFP via email.

In particular, the scientists wanted to measure how the rocket polluted what they call the "ignorosphere" -- because it is so difficult to study.

This region between 50 to 100 kilometers (31 to 62 miles) above Earth includes the mesosphere and part of the lower thermosphere.

- 'Harbinger' -

The team used technology called LIDAR, which measures pollution in the atmosphere by shooting out lots of laser pulses and seeing which bounce back off something.

They detected a sudden spike in the metal lithium in an area nearly 100 kilometers above Earth. This plume had 10 times more lithium than is normal in this part of the atmosphere.

The team then traced the plume back to where the rocket re-entered the atmosphere, west of Ireland.

For the first time, this proves it is possible to study pollution from re-entering rockets at such heights before it disperses, the scientists said.

But the impact from this rocket pollution remains unknown.

"What we do know is that one ton of emissions at 75 kilometers (altitude) is equivalent to 100,000 tons at the surface," they said.

The study warned the case was a "harbinger" of the pollution to come, given how many rockets will be needed to launch all the satellites that Earth is planning to blast into space.

Currently, there are around 14,000 active satellites orbiting our planet.
In the middle of last month, China applied for permission to launch around 200,000 satellites into orbit.

Then at the end of January, billionaire Elon Musk's SpaceX applied for permission to launch one million more.

Eloise Marais, a professor of atmospheric chemistry at University College London not involved in the new study, told AFP the research was "really important".

"There is currently no suitable regulation targeting pollution input into the upper layers of the atmosphere," she explained.

"Even though these portions of the atmosphere are far from us, they have potentially consequential impacts to life on Earth if the pollutants produced are able to affect Earth's climate and deplete ozone in the layer protecting us from harmful UV radiation."

The study was published in the journal Communications Earth & Environment.


Deep-sea Fish Break the Mold with Novel Visual System

A close-up showing the shiny silver-green photophores (light organs) on the lower head of the deep-sea fish Maurolicus muelleri from the Red Sea, seen in this photograph released on February 11, 2026. Dr. Wen-Sung Chung/Handout via REUTERS
A close-up showing the shiny silver-green photophores (light organs) on the lower head of the deep-sea fish Maurolicus muelleri from the Red Sea, seen in this photograph released on February 11, 2026. Dr. Wen-Sung Chung/Handout via REUTERS
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Deep-sea Fish Break the Mold with Novel Visual System

A close-up showing the shiny silver-green photophores (light organs) on the lower head of the deep-sea fish Maurolicus muelleri from the Red Sea, seen in this photograph released on February 11, 2026. Dr. Wen-Sung Chung/Handout via REUTERS
A close-up showing the shiny silver-green photophores (light organs) on the lower head of the deep-sea fish Maurolicus muelleri from the Red Sea, seen in this photograph released on February 11, 2026. Dr. Wen-Sung Chung/Handout via REUTERS

For more than a century, biology textbooks have stated that vision among vertebrates - people included - is built from two clearly defined cell types: rods for processing dim light and cones for bright light and color. New research involving deep-sea fish shows this tidy division is, in reality, not so tidy.

Scientists have identified a new type of visual cell in deep-sea fish that blends the shape and form of rods with the molecular machinery and genes of cones. This hybrid type of cell, adapted for sight in gloomy light conditions, was found in larvae of three deep-sea fish species in the Red Sea, Reuters reported.

The species studied were: a hatchetfish, with the scientific name Maurolicus mucronatus; a lightfish, named Vinciguerria mabahiss; and a lanternfish, named Benthosema pterotum. The hatchetfish retained the hybrid cells throughout its life. The other two shifted to the usual rod-cone dichotomy in adulthood.

All three are small, with adults measuring roughly 1-3 inches (3-7 cm) long and the larvae much littler. They inhabit a marine realm of twilight conditions, with sunlight struggling to penetrate into the watery depths.

The vertebrate retina, a sensory membrane at the back of the eye that detects light and converts it into signals to the brain, possesses two main types of light-sensitive visual cells, called photoreceptors. They are named for their shape: rods and cones.

"The rods and cones slowly change position inside the retina when moving between dim and bright conditions, which is why our eyes take time to adjust when we flick on the light switch on our way to the restroom at night," said Lily Fogg, a postdoctoral researcher in marine biology at the University of Helsinki in Finland and lead author of the research published in the journal Science Advances.

"We found that, as larvae, these deep-sea fish mostly use a mix-and-match type of hybrid photoreceptor. These cells look like rods - long, cylindrical and optimized to catch as many light particles - photons - as possible. But they use the molecular machinery of cones, switching on genes usually found only in cones," Fogg said.

The researchers examined the retinas of fish larvae caught at depths from 65 to 650 feet (20 to 200 meters). In the type of dim environment they inhabit, rod and cone cells both are usually engaged in the vertebrate retina, but neither works very well. These fish display an evolutionary remedy.

"Our results challenge the longstanding idea that rods and cones are two fixed, clearly separated cell types. Instead, we show that photoreceptors can blend structural and molecular features in unexpected ways. This suggests that vertebrate visual systems are more flexible and evolutionarily adaptable than previously thought," Fogg said.

"It is a very cool finding that shows that biology does not fit neatly into boxes," said study senior author Fabio Cortesi, a marine biologist and neuroscientist at the University of Queensland in Australia. "I wouldn't be surprised if we find these cells are much more common across all vertebrates, including terrestrial species."

All three species emit bioluminescence using small light-emitting organs on their bodies, mostly located on the belly. They produce blue-green light that blends with the faint background light from the sun above. This strategy, called counterillumination, is a common form of camouflage in the deep sea to avoid predators.

"Small fish like these fuel the open ocean. They are plentiful and serve as food for many larger predatory fishes, including tuna and marlin, marine mammals such as dolphins and whales, and marine birds," Cortesi said.

These kinds of fish also engage in one of the biggest daily migrations in the animal kingdom. They swim near the surface at night to feed in plankton-rich waters, then return to the depths - 650 to 3,280 feet (200 to 1,000 meters) - during daytime to avoid predation.

"The deep sea remains a frontier for human exploration, a mystery box with the potential for significant discoveries," Cortesi said. "We should look after this habitat with the utmost care to make sure future generations can continue to marvel at its wonders."


Japan City Gets $3.6 Mn Donation in Gold to Fix Water System

FILE PHOTO: Factories line the port of Osaka, western Japan October 23, 2017. REUTERS/Thomas White/File Photo
FILE PHOTO: Factories line the port of Osaka, western Japan October 23, 2017. REUTERS/Thomas White/File Photo
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Japan City Gets $3.6 Mn Donation in Gold to Fix Water System

FILE PHOTO: Factories line the port of Osaka, western Japan October 23, 2017. REUTERS/Thomas White/File Photo
FILE PHOTO: Factories line the port of Osaka, western Japan October 23, 2017. REUTERS/Thomas White/File Photo

Osaka has received an unusual donation -- 21 kilograms of gold -- to pay for the maintenance of its ageing water system, the Japanese commercial hub announced Thursday.

The donation worth $3.6 million was made in November by a person who a month earlier had already given $3,300 in cash for the municipal waterworks, Osaka Mayor Hideyuki Yokoyama told a press conference.

"It's an absolutely staggering amount," said Yokoyama, adding that he was lost for words to express his gratitude.

"I was shocked."

The donor wished to remain anonymous, AFP quoted the mayor as saying.

Work to replace water pipes in Osaka, a city of 2.8 million residents, has hit a snag as the actual cost exceeded the planned budget, according to local media.