Congratulations to @AJPLung March #APSselect winners Betageri, @NCaporarello et al. for “The matricellular protein CCN3 supports lung endothelial homeostasis and function”.
https://t.co/f3cXm68brV
(pictured: Dr. Nunzia Caporarello)
@P_a_link @aj_haak @dtschump1@MayoClinic
🏅Congratulations to Dr. Nunzia Caporarello and coauthors for their #APSselect article “The matricellular protein CCN3 supports lung endothelial homeostasis and function”
Read more: https://t.co/sA64i1kxjJ
@NCaporarello@MayoClinic @budomtweets
CCN3 protein plays an important role in lung endothelial function and could lead to a targeted treatment for fibrosis: https://t.co/YEXwGA2HG1 via @AJPLung. Pictured: author @NCaporarello. #APSselect
Happy to share that our latest manuscript focused on the role of the matricellular protein CCN3 in supporting lung endothelial homeostasis and function is now out! Thanks to all the coauthors @P_a_link @aj_haak @dtschump1 for the great support! Happy reading 🫁
🏅Congratulations to Dr. Andrew J. Haak and colleagues from @MayoClinic and @BUMedicine for their #APSselect article “Pim-1 Kinase is a Positive Feedback Regulator of the Senescent Lung Fibroblast Inflammatory Secretome”
https://t.co/hDUI5Q3GnY
@aj_haak
Happy to announce that our latest paper reporting the impact of aging on pulmonary vasculature and fibrosis is now out on @NatureComms! Thanks to all the co-authors for the great support! Enjoy the reading 🫁
https://t.co/sdRh5NZ89j
#aging#vasculature#lung#fibrosis
This paper is a fabulous demonstration of the combinatorial and compensatory functions of YAP and TAZ. It also gorgeously illustrates the diversity of YAP/TAZ-mediated cytoskeletal feedback across cell types.
Great work @P_a_link, @dtschump1, et al.!
It is my first, first-author publication in the @dtschump1 lab with co-authors Kyoung Choi, @AnaDiazEspinosa, @dakota_jones2, Ashley Gao, @aj_haak and of course @dtschump1.
Very pleased to present my newest work which has been published in @ajplung. We show that YAP and TAZ together regulate a focused gene program in fibroblasts that is essential to contractile function.
https://t.co/mrurwIwmY2.
Our team, @SHWeinbergLab, @beccaheise , and myself, investigated mitosis and Rho GTPase mechanics to suggest that middle-stalk cells undergoing mitosis can disrupt the GTPase cycling of developing vessels.
Does functional angiogenesis require a predetermined mitotic order? Our article in @SpringerNature#bmmb asks this question. Check it out: https://t.co/wP8TKl7TWb
In efforts to understand the role of epigenetic events in establishing mechanical memory, @dakota_jones2, @dtschump1 and colleagues identify a novel role of ZNF416 in mechano-activation of fibroblast gene programs and functions central to tissue fibrosis. https://t.co/RsQE5L76uP