Jim Johnson 🇨🇦

@jimjohnsonsci.bsky.social

Physiologist, Mentor, Collaborator. Posts =/= employers’ views.

Extremely dark days for science, for freedom of speech, and for America. If the US ADA is not safe for its flagship journal editor in chief, then imagine how un-safe it is for others. One of many reasons I’m not at the #ada2026 . Missing my friends/colleagues but not the pervasive fascism.

Sscience-resist.bsky.social@science-resist.bsky.social · 2mo ago

Editor-in-Chief of Diabetes Care, @sekahn.bsky.social, and colleagues have been removed from the #ADA2026 SciSessions for doing journal outreach. #resist #freedomofspeech #diabetes #NIH

“Terrible things are happening outside. Poor helpless people are being dragged out of their homes. Families are torn apart. Men, women, and children are separated. Children come home from school to find that their parents have disappeared.” Diary of Anne Frank January 13, 1943

If you want to hear from Jane Goodall tonight given the news, this podcast interview she did for Wiser Than Me earlier this year was really good.

Dr. Kat Napaaqtuk❄️@napaaqtuk.bsky.social · 2y ago

Nearing the end of my ♀️ podcast 🧵! Wiser Than Me: Louis-Dreyfuss interviews♀️who lived rich lives. Linking Jane Goodall bc it was so good and is 🧪 related. lemonadamedia.com/podcast/juli... Finally, Lost ♀️ of 🧪 is the science history podcast you didn't know you needed. www.lostwomenofscience.org

Based on studies of autophagy in non-obese, insulin secretory-deficient KATP-GOF mice the authors propose that #IntermittentFasting prevents the gradual loss of beta cell identity by enhancing autophagy link.springer.com/article/10.1...

Restoration of pancreatic beta cell identity and autophagy in KATP-induced diabetes by intermittent fasting - Diabetologia

Aims/hypothesis The loss of pancreatic beta cell mass and identity is a hallmark of diabetes. While factors such as beta cell overwork (insulin hypersecretion) and elevated intracellular calcium have been implicated, beta cell identity loss also occurs in KATP gain-of-function (KATP-GOF) mice, a model of human neonatal diabetes, even in the absence of these factors. This suggests additional underlying mechanisms. Autophagy, a key process for cellular homeostasis, is impaired in the islets and beta cells of both type 1 and type 2 diabetes, but its role in monogenic diabetes with insulin secretory deficiency remains unclear. We hypothesise that autophagy dysfunction contributes to beta cell identity loss in KATP-GOF mice, and that intermittent fasting (IF) can restore autophagic flux, thereby preserving functional beta cell mass. Methods To test this, adult tamoxifen-inducible KATP-GOF mice and littermate controls were randomly assigned to two groups: (1) chow diet ad libitum; and (2) chow diet with alternate-day IF. Results KATP-GOF mice fed ad libitum developed severe hyperglycaemia due to impaired insulin secretion. This was followed by a reduction in insulin content, disruption of beta cell autophagic flux, autophagosome accumulation and, ultimately, the loss of beta cell identity and dedifferentiation. In contrast, KATP-GOF mice subjected to alternate-day IF exhibited lower blood glucose levels, improved mitochondrial morphology, restoration of autophagic flux and reestablishment of beta cell identity. Conclusions/interpretation This study provides the first evidence of autophagy impairment in non-obese, insulin secretory-deficient, KATP-induced diabetes mice and demonstrates that IF restores both autophagic flux and beta cell identity. This finding suggests that similar mechanisms may contribute to beta cell dysfunction in other forms of diabetes. Graphical Abstract

link.springer.com