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BioWorld - Monday, June 22, 2026
Home » Authors » Mar de Miguel

Mar de Miguel

Articles

ARTICLES

Illustration of a nerve cell with DNA double helix
Neurology/psychiatric

Molecular signatures show subtypes in neurodegenerative diseases

March 30, 2026
By Mar de Miguel
No Comments
Parkinson’s disease is a progressive neurodegenerative disorder best known for its motor symptoms. However, a proportion of patients also develop dementia as the condition advances. Yet the biological divide between those who experience this cognitive decline and those who do not has remained an open question. Are they different conditions or simply stages of the same disease?
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Comparison of neurons in a healthy brain and nerve cells in neurodegenerative disease with amyloid plaques
Neurology/psychiatric

Small-molecule TREM2 agonist advances to treat Alzheimer’s

March 27, 2026
By Mar de Miguel
No Comments
Microglia play a central role in the neuroinflammation associated with Alzheimer’s disease (AD). At the 20th International Conference on Alzheimer’s and Parkinson’s Diseases (AD/PD), scientists focused on TREM2, a microglial receptor that regulates immune responses, exploring new ways to address neuroinflammation. 
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Comparison of neurons in a healthy brain and nerve cells in neurodegenerative disease with amyloid plaques
Neurology/psychiatric

Small-molecule TREM2 agonist advances to treat Alzheimer’s

March 26, 2026
By Mar de Miguel
No Comments
Microglia play a central role in the neuroinflammation associated with Alzheimer’s disease (AD). These cells act as the brain’s immune system and respond to damage signals such as amyloid accumulation. When the process starts, the initial microglial response can be protective. However, in later stages, this response becomes dysfunctional and contributes to disease progression. At the 20th International Conference on Alzheimer’s and Parkinson’s Diseases (AD/PD), scientists focused on TREM2, a microglial receptor that regulates immune responses, exploring new ways to address neuroinflammation. 
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Art concept for Parkinson's disease
Neurology/psychiatric

Emerging therapeutic strategies for Parkinson’s at ADPD 2026

March 23, 2026
By Mar de Miguel
No Comments
Parkinson’s disease (PD) involves the progressive loss of dopaminergic neurons, particularly in the substantia nigra. This neurodegeneration is linked to the abnormal accumulation of α-synuclein, a protein that forms toxic aggregates and spreads between cells, damaging them. At the 20th International Conference on Alzheimer’s and Parkinson’s Diseases (AD/PD), held from March 17 to 21, 2026, in Copenhagen, several strategies were presented that aim to modify the course of the disease and offer real alternatives to purely symptomatic treatments.
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Illustration of Alzheimer's disease in the brain

ADPD 2026: Three inflection points to target Alzheimer’s disease

March 20, 2026
By Mar de Miguel
No Comments
A new way of understanding Alzheimer’s disease, based on biological inflection points that mark decisive moments in the progression of the disorder, could change how new drugs are developed to achieve more effective therapies. This new perspective could rethink strategies that depend not so much on the target itself, but on the precise moment at which it is addressed.
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Illustration of Alzheimer's disease in the brain
Neurology/psychiatric

ADPD 2026: Three inflection points to target Alzheimer’s disease

March 19, 2026
By Mar de Miguel
No Comments
A new way of understanding Alzheimer’s disease, based on biological inflection points that mark decisive moments in the progression of the disorder, could change how new drugs are developed to achieve more effective therapies. This new perspective could rethink strategies that depend not so much on the target itself, but on the precise moment at which it is addressed.
Read More
MRI image brain on black background
Neurology/psychiatric

ADPD 2026: Can we prevent dementia? Scientists quantify it

March 18, 2026
By Mar de Miguel
No Comments
Neurodegenerative disease and cognitive decline cannot be explained by a single process. Beta-amyloid plaques, hyperphosphorylated tau, alpha-synuclein, activated microglia and astrocytes, altered receptors such as TREM2, mitochondrial dysfunction, epigenetic changes and cerebrovascular alterations all seem to contribute to the development of dementia in Alzheimer’s disease (AD). While scientists attempt to address each of these elements, prevention is growing as a primary goal.
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A simulated cell in the early stages of division.
Drug design, drug delivery & technologies

Digital model simulates the first fully functioning living cell

March 16, 2026
By Mar de Miguel
No Comments
Entering a cell and watching its entire inner machinery at work, how DNA is copied, how proteins are assembled, or how it splits in two, has been, for decades, an impossible dream. Now, scientists at the University of Illinois have recreated everything that happens inside a cell at molecular scale in an unprecedented computational model. Syn3A is the first 4D digital cell, capable of combining time and space to simultaneously represent all the internal processes that drive the life cycle of a minimal prokaryotic organism.
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Illustration showing aqueous humor drainage from the eye
Ocular

Resident macrophages reveal the immune side of glaucoma

March 12, 2026
By Mar de Miguel
No Comments
Scientists at Duke University have uncovered how macrophages help maintain intraocular pressure and have found that a specific type, resident macrophages, is essential for proper drainage of intraocular fluid. When these cells are removed, drainage becomes impaired and intraocular pressure rises, contributing to the development of glaucoma.
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Illustration of brain cross-section showing the pineal gland
Cancer

Three pediatric brain cancer types share a pineal gland origin

March 11, 2026
By Mar de Miguel
No Comments
Similarities among three pediatric brain tumors that arise in different structures of the CNS – pineoblastoma, retinoblastoma and Group 3 medulloblastoma – have been linked to their shared origin during pineal gland development. Scientists at St. Jude Children’s Research Hospital have identified the molecular signatures that drive these tumors from pinealocyte progenitor cells that conserve a common differentiation program, providing a shared therapeutic target for these three cancer types.
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View All Articles by Mar de Miguel

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