Bluesky · Hashtag

#HeartDisease

50
posts · 30d
28
users
2
posts / day
1.8
posts / user
+ 0% vs last week

#HeartDisease is an active hashtag on Bluesky. In the last 30 days, 28 people shared 50 posts with it — around 2 a day. Activity is up 0% versus the previous week, peaking on Jul 16 with 5 posts.

#HeartDisease posts per day (last 30 days)

Posts with #HeartDisease

TEX DAW’S MOBY DICK: “Reader discretion is advised.”
@texdaw.bsky.social
over 1 year ago
We can rebuild him. Celebrating the 8th anniversary of my quintuple bypass. #heartdisease Let there be 🍰!
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Ralf Wittenbrink
@ralfwittenbrink.bsky.social
over 1 year ago
„Wir müssen lernen, die langfristigen Folgen von #Covid19 ernst zu nehmen. Besonders junge Menschen, die glauben, die Infektion gut überstanden zu haben, sollten bei anhaltenden Symptomen nicht zögern, medizinische Hilfe in Anspruch zu nehmen.“ #LongCovid #Coronavirus #ImpfenSchuetzt #HeartDisease
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PLOS Biology
@plosbiology.org
about 13 hours ago
Pathogenic variants of genes involved in non-canonical #TGFB signaling, including TAK1, are linked to disorders such as congenital #heartDisease. This study shows that TAK1 signaling is activated at cells' primary cilium and regulates cardiomyocyte differentiation. 🧪 #AcademicSky plos.io/4wDd1CH
The developing heart depends on precise signaling through the primary cilium - a microscopic, antenna-like organelle that integrates developmental cues. In this issue, Larsen, Christensen and colleagues reveal that the non-canonical TGFβ/BMP signaling kinase TAK1, together with its regulators TAB2 and PKA-Cα, is activated at the primary cilium to direct cardiomyocyte differentiation and normal heart formation. Disease-associated variants in TAK1 impair its ciliary localization, disrupting developmental signaling and providing a mechanistic link between ciliary dysfunction and syndromic congenital heart disease. The image illustrates the embryonic heart from the zebrafish together with the primary cilium as a central signaling hub coordinating the molecular pathways that shape cardiac development and other organs affected in multisystem ciliopathies.

image credit: All authors

We confirm that the image can be published under the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/).
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