We pulled membrane tethers directly from living cells with optical tweezers, and measured how copper and its chelation by TTM reshapes surface mechanics, alongside F-actin architecture and ROS levels https://t.co/wYAlHvI5Av
Copper is essential but toxic in excess. Our new paper in AJP-Cell finds copper-driven redox signaling remodels the actin cytoskeleton and alters the mechanics of human kidney proximal tubule cells measured directly by optical tweezers. 🧬🔬
https://t.co/5Mi0Lsrun1
@APSPhysiology
Our pilot study shows jaboticaba peel—a Brazilian superfruit—may protect hemodialysis patients from inflammation. From traditional fruit to potential therapeutic ally 🫐➡️🔬
Read what we discovered: https://t.co/OuyDmqfONp #mdpifoods via @Foods_MDPI
Proud to announce our new publication 📄 in the International Journal of Molecular Sciences (@IJMS_MDPI)!
We provide the first characterization of Ceramide Kinase in the basolateral membranes (BLM) of kidney proximal tubules. 🔬
https://t.co/BB1TDWC0wN #mdpiijms via @IJMS_MDPI
Excited to announce our new paper on sphingosine 1-phosphate (S1P) and its protective effects on kidney cells under ischemia!🚀S1P boosts cell survival—promising insights for acute kidney injury. Read it here: https://t.co/ffKlVdEL35 #KidneyResearch#S1P#RenalPhysiology
🎉 Thrilled to announce my paper "Protein Kinases in Copper Homeostasis: A Review on Cu+-ATPase Modulation" is now published! 🧬🔬 Dive into how protein kinases regulate copper balance in cells. Check it out: https://t.co/tM1k6LZjBD #mdpikinasesphosphatases via @MDPIOpenAccess 🌟
Saiu nosso novo artigo, uma colaboração com o maior responsável por transplantes renais no país, Dr. Ricardo Ribas: "Clinical outcomes prediction in kidney transplantation by use of biomarkers from hypothermic machine perfusion" @MEinicker@biomembranas https://t.co/XMf6Jmqmcy