PRESS-NEWS.org - Press Release Distribution
PRESS RELEASES DISTRIBUTION

Regeneration across complete spinal cord injuries reverses paralysis

Scientists at .NeuroRestore, Switzerland, report in Science that they have developed a gene therapy that was proven in mice to stimulate nerve regrowth across spinal cord injuries and guide nerves to reconnect to their natural targets to restore mobility

Regeneration across complete spinal cord injuries reverses paralysis
2023-09-21
(Press-News.org) When the spinal cords of mice and humans are partially damaged, the initial paralysis is followed by the extensive, spontaneous recovery of motor function. However, after a complete spinal cord injury, this natural repair of the spinal cord doesn’t occur and there is no recovery. Meaningful recovery after severe injuries requires strategies that promote the regeneration of nerve fibers, but the requisite conditions for these strategies to successfully restore motor function have remained elusive.

“Five years ago, we demonstrated that nerve fibers can be regenerated across anatomically complete spinal cord injuries,” says Mark Anderson, a senior author of the study. “But we also realized this wasn’t enough to restore motor function, as the new fibers failed to connect to the right places on the other side of the lesion.” Anderson is the director of Central Nervous System Regeneration at .NeuroRestore and a scientist at the Wyss Center for Bio and Neuroengineering.

Working in tandem with peers at UCLA and Harvard Medical School, the scientists used state-of-the-art equipment at EPFL’s Campus Biotech facilities in Geneva to run in-depth analyses and identity which type of neuron is involved in natural spinal-cord repair after partial spinal cord injury. “Our observations using single-cell nuclear RNA sequencing not only exposed the specific axons that must regenerate, but also revealed that these axons must reconnect to their natural targets to restore motor function,” says Jordan Squair, the study’s first author. The team’s findings appear in the 22 September 2023 issue of Science.

Towards a combination of approaches

Their discovery informed the design of a multipronged gene therapy. The scientists activated growth programs in the identified neurons in mice to regenerate their nerve fibers, upregulated specific proteins to support the neurons’ growth through the lesion core, and administered guidance molecules to attract the regenerating nerve fibers to their natural targets below the injury. “We were inspired by nature when we designed a therapeutic strategy that replicates the spinal-cord repair mechanisms occurring spontaneously after partial injuries,” says Squair.

Mice with anatomically complete spinal cord injuries regained the ability to walk, exhibiting gait patterns that resembled those quantified in mice that resumed walking naturally after partial injuries. This observation revealed a previously unknown condition for regenerative therapies to be successful in restoring motor function after neurotrauma. “We expect that our gene therapy will act synergistically with our other procedures involving electrical stimulation of the spinal cord,” says Grégoire Courtine, a senior author of the study who also heads .NeuroRestore together with Jocelyne Bloch. “We believe a complete solution for treating spinal cord injury will require both approaches – gene therapy to regrow relevant nerve fibers, and spinal stimulation to maximize the ability of both these fibers and the spinal cord below the injury to produce movement.”

While many obstacles must still be overcome before this gene therapy can be applied in humans, the scientists have taken the first steps towards developing the technology necessary to achieve this feat in the years to come.

See our video with interviews of the scientists here: https://youtu.be/mtPcWBXjOgk

END

[Attachments] See images for this press release:
Regeneration across complete spinal cord injuries reverses paralysis Regeneration across complete spinal cord injuries reverses paralysis 2 Regeneration across complete spinal cord injuries reverses paralysis 3

ELSE PRESS RELEASES FROM THIS DATE:

The dance of organ positioning: a tango of three proteins

The dance of organ positioning: a tango of three proteins
2023-09-21
In order to keep track of their environment, cells use cilia, antenna-like structures that can sense a variety of stimuli, including the flow of fluids outside the cell. Genetic defects that cause cilia to malfunction and lose their sensory abilities can result in disorders known as “ciliopathies”, including polycystic kidney diseases; but they can also disrupt the correct asymmetric positioning of internal organs during embryonic development – what is known as “organ laterality”. An example of such asymmetry is the heart, which is typically ...

Using harmless light to change azobenzene molecules with new supera molecular complex

Using harmless light to change azobenzene molecules with new supera molecular complex
2023-09-21
New discovery allows scientists to change the shape of azobenzene molecules using visible light, which is more practical and safe than previously used ultraviolet light. Azobenzenes are incredibly versatile and have many potential uses, such as in making tiny machines and improving technology as well as making light controllable drugs. This molecule can switch between two different forms by light. However, the two forms are in equilibrium, which means that a mixture present that prevents optimal use for applications. Being able to control them with visible light and enrich only one form opens up new possibilities for these applications, making them more efficient ...

Scientists regenerate neurons that restore walking in mice after paralysis from spinal cord injury

2023-09-21
In a new study in mice, a team of researchers from UCLA, the Swiss Federal Institute of Technology, and Harvard University have uncovered a crucial component for restoring functional activity after spinal cord injury. The neuroscientists have shown that re-growing specific neurons back to their natural target regions led to recovery, while random regrowth was not effective. In a 2018 study published in Nature, the team identified a treatment approach that triggers axons — the tiny fibers that link nerve cells and enable them to communicate — to regrow after spinal cord injury ...

Conversations with plants: Can we provide plants with advance warning of impending dangers?

2023-09-21
Imagine if humans could ‘talk’ to plants and warn them of approaching pest attacks or extreme weather. A team of plant scientists at the Sainsbury Laboratory Cambridge University (SLCU) would like to turn this science fiction into reality using light-based messaging to ‘talk’ to plants. Early lab experiments with tobacco (Nicotiana benthamiana) have demonstrated that they can activate the plant's natural defence mechanism (immune response) using light as a stimulus (messenger). Light serves as a universal means of daily human communication, for example the signalling at traffic lights, pedestrian ...

Chicago’s West Side is air pollution hotspot

2023-09-21
Three independent state-of-the-art datasets reveal that the West Side has more nitrogen dioxide (NO2) pollution than the rest of the city Depending on the month, residents in this area experience 16 to 32% higher NO2 concentrations on average By identifying hotspots, residents and policymakers can be confident about where to prioritize immediate interventions   EVANSTON, Ill. — The western edge of Chicago — including the North and South Lawndale, East Garfield Park, Archer Heights and Brighton Park neighborhoods — experiences up to 32% higher concentrations of nitrogen dioxide (NO2) air pollution compared to the rest of the city, ...

Biophysical Society announces 2024 Society Fellows

2023-09-21
ROCKVILLE, MD – The Biophysical Society is proud to announce its 2024 Society Fellows. This award honors the Society’s distinguished members who have demonstrated excellence in science and contributed to the expansion of the field of biophysics. The Fellows will be honored at the Biophysical Society’s 68th Annual Meeting, being held in Philadelphia, Pennsylvania from February 10-14, 2024. The 2024 Fellows are: Rommie E. Amaro, University of California, San Diego, USA, is named a Biophysical Society Fellow for her work on developing methods to enable the simulation of biological molecules in situ and ...

Wearable optical device shows promise for detecting postpartum hemorrhage

Wearable optical device shows promise for detecting postpartum hemorrhage
2023-09-21
WASHINGTON — Researchers have developed a wearable optical device for early detection of hemorrhage during labor or after childbirth. This serious heavy bleeding can be hard to detect before it becomes an emergency and accounts for almost 30% of maternal deaths globally and just over 10% of maternal deaths in the United States. Studies have shown that early diagnosis and treatment for postpartum hemorrhage is the best way to prevent deaths. The new device is designed to be worn on the wrist, where it uses laser speckle imaging to continuously ...

David Huang, M.D., Ph.D., receives Lasker Award for transformative imaging technology

2023-09-21
PORTLAND, Oregon -- The United States’ most distinguished biomedical research award is being given to Oregon Health & Science University physician-scientist David Huang, M.D., Ph.D., for co-inventing an imaging technology that routinely helps prevent blindness and is increasingly used to diagnose and treat conditions of the heart, brain, skin and more. Huang is receiving the 2023 Lasker-DeBakey Clinical Medical Research Award as a co-inventor of optical coherence tomography, or OCT, the Albert and ...

New study reveals a long history of violence in ancient hunter-gatherer societies

New study reveals a long history of violence in ancient hunter-gatherer societies
2023-09-21
Violence was a consistent part of life among ancient communities of hunter-gatherers, according to a new study co-authored by a Tulane University researcher that looked for signs of trauma on 10,000-year-old skeletal remains from burial sites in northern Chile. The study was published in the journal PLOS ONE. Archaeological research has shown that interpersonal violence and warfare played an important role in the lives of hunter-gatherer groups over time. Still, many questions remain about the factors that influence such violence. The record of human populations in northern Chile extends across 10,000 years, providing a valuable opportunity to study patterns in violence over time. John ...

How climate warming could disrupt a deep-rooted relationship

How climate warming could disrupt a deep-rooted relationship
2023-09-21
Children are taught to leave wild mushrooms alone because of their potential to be poisonous. But trees on the other hand depend on fungi for their well-being. Look no further than ectomycorrhizal fungi, which are organisms that colonize the roots of many tree species where the boreal ecosystem (zone encompassing Earth’s northernmost forests) and the temperate ecosystem (zone between the tropical and boreal regions) meet. This area features a mix of boreal trees including needle-leaved evergreens and temperate tree species including maple and oak. Just like a healthy human relationship, trees and fungi work well together because they help one another. When the ectomycorrhizal ...

LAST 30 PRESS RELEASES:

Oceanic life found to be thriving thanks to Saharan dust blown from thousands of kilometers away

Analysis sheds light on COVID-19-associated disease in Japan

Cooler heads prevail: New research reveals best way to prevent dogs from overheating

UC Riverside medical school develops new curriculum to address substance use crisis

Food fussiness a largely genetic trait from toddlerhood to adolescence

Celebrating a century of scholarship: Isis examines the HSS at 100

Key biomarkers identified for predicting disability progression in multiple sclerosis

Study: AI could lead to inconsistent outcomes in home surveillance

Study: Networks of Beliefs theory integrates internal & external dynamics

Vegans’ intake of protein and essential amino acids is adequate but ultra-processed products are also needed

Major $21 million Australian philanthropic investment to bring future science into disease diagnosis

Innovating alloy production: A single step from ores to sustainable metals

New combination treatment brings hope to patients with advanced bladder cancer

Grants for $3.5M from TARCC fund new Alzheimer’s disease research at UTHealth Houston

UTIA researchers win grant for automation technology for nursery industry

Can captive tigers be part of the effort to save wild populations?

The Ocean Corporation collaborates with UTHealth Houston on Space Medicine Fellowship program

Mysteries of the bizarre ‘pseudogap’ in quantum physics finally untangled

Study: Proteins in tooth enamel offer window into human wellness

New cancer cachexia treatment boosts weight gain and patient activity

Rensselaer researcher receives $3 million grant to explore gut health

Elam named as a Fellow of the Electrochemical Society

Study reveals gaps in access to long-term contraceptive supplies

Shining a light on the roots of plant “intelligence”

Scientists identify a unique combination of bacterial strains that could treat antibiotic-resistant gut infections

Pushing kidney-stone fragments reduces stones’ recurrence

Sweet success: genomic insights into the wax apple's flavor and fertility

New study charts how Earth’s global temperature has drastically changed over the past 485 million years, driven by carbon dioxide

Scientists say we have enough evidence to agree global action on microplastics

485 million-year temperature record of Earth reveals Phanerozoic climate variability

[Press-News.org] Regeneration across complete spinal cord injuries reverses paralysis
Scientists at .NeuroRestore, Switzerland, report in Science that they have developed a gene therapy that was proven in mice to stimulate nerve regrowth across spinal cord injuries and guide nerves to reconnect to their natural targets to restore mobility