@PNASNews
!🗞️🆕Perinatally generated regulatory T cells (Tregs) seed visceral adipose tissue and set the metabolic tenor in mice. Early-life Treg layers persist and shape insulin sensitivity later in life! #Perinatal #Tregs #Metabolism #Obesity #Diet
@PNASNews
!🗞️🆕Perinatally generated regulatory T cells (Tregs) seed visceral adipose tissue and set the metabolic tenor in mice. Early-life Treg layers persist and shape insulin sensitivity later in life! #Perinatal #Tregs #Metabolism #Obesity #Diet
Marin-Rodero et al. Sci Immunol 2025
science.org/doi/10.1126/sciimmunol.adu2910
Marin-Rodero et al. Sci Immunol 2025
science.org/doi/10.1126/sciimmunol.adu2910
"The meninges host a distinct compartment of regulatory T cells that preserves brain homeostasis "
CBDM lab @HarvardMed
www.youtube.com/watch?v=eZTP...
"The meninges host a distinct compartment of regulatory T cells that preserves brain homeostasis "
CBDM lab @HarvardMed
www.youtube.com/watch?v=eZTP...
will be taking about new roles of Treg in health and disease from the Diane Mathis & Christophe Benoist Lab
@HarvardMed Registration👇 us02web.zoom.us/j/889479660. hms.harvard.edu/news/regulat...
will be taking about new roles of Treg in health and disease from the Diane Mathis & Christophe Benoist Lab
@HarvardMed Registration👇 us02web.zoom.us/j/889479660. hms.harvard.edu/news/regulat...
📆 Thu, 03/06, 12pm ET/6 pm CET
"The meninges host a distinct compartment of regulatory T cells that preserves brain homeostasis "
🎙️ Speaker: @mmr2.bsky.social Harvard Medical School
📣 Moderator: @eugecc.bsky.social - UNAM
Registration👇
buff.ly/43cGl7q
📆 Thu, 03/06, 12pm ET/6 pm CET
"The meninges host a distinct compartment of regulatory T cells that preserves brain homeostasis "
🎙️ Speaker: @mmr2.bsky.social Harvard Medical School
📣 Moderator: @eugecc.bsky.social - UNAM
Registration👇
buff.ly/43cGl7q
Read the paper from Dr. Miguel Marín-Rodero (@mmr2.bsky.social) and a team in Dr. Diane Mathis' lab: bit.ly/3CMAWJp
Stream the episode: bit.ly/4jUqeB4
Read the paper from Dr. Miguel Marín-Rodero (@mmr2.bsky.social) and a team in Dr. Diane Mathis' lab: bit.ly/3CMAWJp
Stream the episode: bit.ly/4jUqeB4
@immunoeditor.bsky.social
@immunoeditor.bsky.social
@mmr2.bsky.social, Diane Mathis, & colleagues at @harvard.edu & @institutocajal.bsky.social describe specialized meningeal #Treg subsets that promote #homeostasis of the mouse #brain #meninges & #parenchyma!
@mmr2.bsky.social, Diane Mathis, & colleagues at @harvard.edu & @institutocajal.bsky.social describe specialized meningeal #Treg subsets that promote #homeostasis of the mouse #brain #meninges & #parenchyma!
@sciimmunology.bsky.social @mmr2.bsky.social
www.science.org/doi/10.1126/...
@sciimmunology.bsky.social @mmr2.bsky.social
www.science.org/doi/10.1126/...