Category Health/Medical

Human Lung and Brain Organoids respond differently to SARS-CoV-2 Infection in Lab Tests

brain and lung organoids
UC San Diego School of Medicine researchers found approximately 10-fold higher SARS-CoV-2 infection (green) in lung organoids (left), compared to brain organoids (right).

Findings may help explain the wide variety in COVID-19 symptoms and aid search for therapies. COVID-19, the disease caused by the pandemic coronavirus SARS-CoV-2, is primarily regarded as a respiratory infection. Yet the virus has also become known for affecting other parts of the body in ways not as well understood, sometimes with longer-term consequences, such as heart arrhythmia, fatigue and “brain fog.”

Researchers at University of California San Diego School of Medicine are using stem cell-derived organoids — small balls of human cells that look and act like mini-organs in a laboratory dish — to study how the ...

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Last-itch effort: Fighting the Bacteria that exacerbate Eczema with bacteria

Researchers at UC San Diego School of Medicine use bacteriotherapy to improve symptoms of atopic dermatitis. Image: CDC, Unsplash

In a new study out of University of California San Diego School of Medicine, researchers have identified a universal strain of bacteria derived from healthy human skin that can treat the most common type of eczema, also known as atopic dermatitis.

In the paper published Feb. 22, 2021, in Nature Medicine, the research team investigated the safety and mechanisms of this certain bacteria in a first-in-human, Phase I, double-blinded clinical trial looking to treat people living with eczema. Of the 54 participants, two-thirds reported improvements in their symptoms, including fewer complaints of itchiness and inflammation.

“The main question we wanted to an...

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ALS Neuron Damage Reversed with New Compound

Scientists identify first compound to repair degenerating brain cells in paralyzing disease. Northwestern University scientists have identified the first compound that eliminates the ongoing degeneration of upper motor neurons that become diseased and are a key contributor to ALS (amyotrophic lateral sclerosis), a swift and fatal neurodegenerative disease that paralyzes its victims.

In addition to ALS, upper motor neuron degeneration also results in other motor neuron diseases, such as hereditary spastic paraplegia (HSP) and primary lateral sclerosis (PLS).

In ALS, movement-initiating nerve cells in the brain (upper motor neurons) and muscle-controlling nerve cells in the spinal cord (lower motor neurons) die. The disease results in rapidly progressing paralysis and death.

So...

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‘Walking’ Molecule Superstructures could help create Neurons for Regenerative Medicine

novel regenerative molecules
Bundles of “superstructured” nanofibers can enhance neuron growth.

3D-printed novel biomaterial mimics properties of living tissues. Imagine if surgeons could transplant healthy neurons into patients living with neurodegenerative diseases or brain and spinal cord injuries. And imagine if they could “grow” these neurons in the laboratory from a patient’s own cells using a synthetic, highly bioactive material that is suitable for 3D printing.

By discovering a new printable biomaterial that can mimic properties of brain tissue, Northwestern University researchers are now closer to developing a platform capable of treating these conditions using regenerative medicine.

A key ingredient to the discovery is the ability to control the self-assembly processes of molecules within the m...

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