Fidalgostemlab

Fidalgostemlab Wellcome to the Fidalgo Group! We aim to develop novel therapeutic strategies for age-related disorders (i.e. cancer) as well as rare diseases (i.e.

Our lab is interested in understanding epigenetic regulation of transcription in the mammalian genome that governs cell fate decisions during embryonic development and human diseases. multiple familial cerebral cavernomatosis).

16/04/2026

Lesion-targeted immune modulation is a feasible strategy to control cardiac fibrosis, and engineered dendritic cells are a promising therapeutic platform for treating cardiac remodelling and heart failure.

16/04/2026

Now online! Electromagnetic field-inducible in vivo gene switch for remote spatiotemporal control of gene expression: The EMF-inducible gene switch (Ei) platform provides precise spatiotemporal control of gene expression through Cyb5b-mediated calcium oscillations. This system enables Ei-OSK-driven in vivo rejuvenation reprogramming, Ei-mutant APP expression in the context of Alzheimer’s disease, and behavioral rescue in depression through Ei-Tph2-mediated neuromodulation.

http://dlvr.it/TS33MV

01/01/2026

KJ Muldoon is part of Nature’s 10, a list of people who shaped science in 2025.

12/11/2025

The milestone makes machine-learning trailblazer Yoshua Bengio the most cited researcher on Google Scholar.

10/11/2025

Science historian Nathaniel Comfort reflects on the “most famous scientist of the 20th century, and the most infamous of the 21st”

09/11/2025

Although China needs to strengthen its leadership in artificial intelligence, semiconductors and energy, say researchers.

09/11/2025

N6-methyladenosine on L1PA governs the trans-silencing of LTRs and restrains totipotency in naive human embryonic stem cells

http://dlvr.it/TP8bqV

08/11/2025

Crosstalk between tissue mechanics and BMP4 signaling regulates symmetry breaking in human gastrula models

http://dlvr.it/TP7VTx

08/11/2025

Fat storage in the body relies on specialized structures called lipid droplets. In a new Science study, researchers identified the microprotein adipogenin as a regulator of adipocyte lipid droplet size, revealing a key mechanism in lipid homeostasis.

Learn more in this week's issue: https://scim.ag/4nDvbyU

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Avenida Barcelona S/n
Santiago De Compostela
15782

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