Extremely happy to announce the publication of our study on renal acid/base handling and the association between our novel urine acid/base score and progression of chronic kidney disease @JASN_News@ASNKidney https://t.co/IMXEMbMboe. A short 🧵 on what we found. Happy to discuss!
A study describes a novel urine acid/base score to assess tubular acid excretion capacity & identify the state of early acid retention in CKD. Early signs of acid retention (low acid/base-score) are associated with markedly higher risk for CKD progression https://t.co/gLf7bbXFIP
ADPKD is characterized by multiple bilateral kidney cysts which gradually enlarge, resulting in a decline in kidney function. This study found P2Y2R was significantly expressed in human and mouse polycystic kidneys https://t.co/WP8oV1B9tT
@LEIP1
Det blev en flot festdag den 29. maj i Aulaen, hvor professor Alexandros Iosifidis modtog Victor Albeck-prisen 2024. På samme tid modtog 5 talentfulde ph.d.’er Aarhus Universitets Forskningsfonds ph.d.-priser. 👏
@AUFF2017
Have a look at our just published review on the gastrointestinal hormone secretin where we outline its role in acid-base balance @PflugersArchiv. Find the full text here: https://t.co/EYwjnhrigh
@LEIP1@Samuel_Svendsen
Trimethoprim, a widely used antibiotic, is known to cause hyperkalemia and metabolic acidosis, especially when used in high doses. In a just published paper @AJPRenal we investigate the effect of trimethoprim on sodium, potassium, and acid excretion. https://t.co/71u62IZWCx
@MLGumz @PAWellingMD I am very sad to hear this. It feels only yesterday that Charles helped us work up the question how benzamil causes acute urine alkalisation. (AJP Renal 2021).
This study suggests that loss of secretin receptor (SCTR) impairs the appropriate increase of renal base excretion during acute base loading and that SCTR is necessary for acute correction of metabolic alkalosis https://t.co/e0Adz84cSX
@LEIP1@berg_peder@Samuel_Svendsen
The secretin receptor (SCTR) stimulates urine alkalization by activating β-ICs. This study suggests loss of SCTR impairs the increase of renal base excretion during acute base loading & SCTR is necessary for acute correction of metabolic alkalosis https://t.co/e0Adz84cSX
AE4 has been implicated in renal NaCl handling. Here, we show that loss of AE4 impedes pendrin regulation and causes severe alkalosis during base loading and acidosis during acid loading. A renal acid-base sensor, or? Read the paper @NatureComms https://t.co/FPMb1GOaCn
Next week at the Sandbjerg Estate in Denmark, the 52nd meeting on Membrane Transport will take place. Please follow @SandbjergM11140 for updates from the meeting and for more information on future meetings.
1/ Two years ago, we suggested quantification of urine bicarbonate excretion following oral sodium-bicarbonate loading as a measure of CFTR function in patients with CF. Today, our clinical follow-up study is online: https://t.co/P04YT9dw0Z #cysticfibrosis@Leip1
A study of patients with #CysticFibrosis has found that challenged urine bicarbonate excretion may offer a new, simple, and safe quantification of CFTR function and the extent of its pharmacologic improvement: https://t.co/uApt9bZfK8