ISSN 1662-4009 (online)

ey0019.8-4 | Important for Clinical Practice | ESPEYB19

8.4. A multi-classifier system to identify and subtype congenital adrenal hyperplasia based on circulating steroid hormones

L Ye , Z Zhao , H Ren , W Wang , W Zhou , S Zheng , R Han , J Zhang , H Li , Z Wan , C Tang , S Sun , W Wang , G Ning

J Clin Endocrinol Metab. 2022; dgac271. PMID: 35512387 https://pubmed.ncbi.nlm.nih.gov/35512387/Brief Summary: This study, in a series of independent patient cohorts, developed and validated a clinical score, based on the circulating concentrations of 13 major steroid hormones, to detect and subtype Congenital Adrenal Hyperplasia (CAH).Steroidogenesis is a complex proc...

ey0015.10-23 | Therapy and interventions | ESPEYB15

10.23 Effect of financial incentives on glucose monitoring adherence and glycemic control among adolescents and young adults with T1DM: a randomized clinical trial

CA Wong , VA Miller , K Murphy , D Small , CA Ford , SM Willi , J Feingold , A Morris , YP Ha , J Zhu , W Wang , MS Patel

To read the full abstract: JAMA Pediatr. 2017;171:1176-1183Adolescence is certainly the most difficult age for reaching T1DM treatment and HbA1c goals. In this age group, most patients have deteriorated metabolic control, and higher risk for acute complications, such as severe hypoglycemia and DKA. Getting into therapeutic contact is very hard in this period of life for diabetes teams ...

ey0020.8-14 | New Hopes | ESPEYB20

8.14. Glucose-responsive microneedle patch for closed-loop dual-hormone delivery in mice and pigs

C Yang , T Sheng , W Hou , J Zhang , L Cheng , H Wang , W Liu , S Wang , X Yu , Y Zhang , J Yu , Z Gu

Brief summary: In this experimental study, a transdermal polymeric microneedle (MN) patch for glucose-responsive closed-loop insulin and glucagon delivery was developed. In chemically-induced type 1 diabetes (T1D) mouse and minipig models, this glucose-responsive dual-hormone MN patch demonstrated tight regulation in blood glucose.The interplay between insulin and glucagon is essential for blood glucose regulation in individuals with or without diabetes....

ey0015.8-8 | Important for Clinical Practice | ESPEYB15

8.8 Noninvasive prenatal diagnosis of 21-hydroxylase deficiency using target capture sequencing of maternal plasma DNA

D Ma , Y Yuan , C Luo , Y Wang , T Jiang , F Guo , J Zhang , C Chen , Y Sun , J Cheng , P Hu , J Wang , H Yang , X Yi , W Wang , Asan , Z Xu

To read the full abstract: Sci Rep. 2017; 7(1): 7427Prenatal dexamethasone treatment has been suggested over three decades ago to prevent virilization of a female fetus affected with 21-hydroxylase deficiency due to genetic mutations in the CYP21A2 gene. However, current treatment guidelines for CAH regard this treatment still as experimental, mainly because follow-up studies of treated fetu...

ey0019.10-15 | Pathogenesis | ESPEYB19

10.15. Single-cell multi-omics analysis of human pancreatic islets reveals novel cellular states in type 1 diabetes

M Fasolino , GW Schwartz , AR Patil , A Mongia , ML Golson , YJ Wang , A Morgan , C Liu , J Schug , J Liu , M Wu , D Traum , A Kondo , CL May , N Goldman , W Wang , M Feldman , JH Moore , AS Japp , MR Betts , Consortium HPAP , RB Faryabi , A Naji , KH Kaestner , G Vahedi

Nat Metab. 2022 Feb;4(2):284-299. https://pubmed.ncbi.nlm.nih.gov/35228745/Brief Summary: This study used three high-throughput single-cell technologies to generate a pancreatic islet cell atlas from 24 organ donors with type 1 diabetes (T1D), autoantibody positive and healthy donors. The most remarkable finding was that a subset of exocrine ductal cells appears to acquire a signature of to...

ey0020.8-12 | New Mechanisms | ESPEYB20

8.12. ZnT8 loss-of-function accelerates functional maturation of hESC-derived beta cells and resists metabolic stress in diabetes

Q Ma , Y Xiao , W Xu , M Wang , S Li , Z Yang , M Xu , T Zhang , ZN Zhang , R Hu , Q Su , F Yuan , T Xiao , X Wang , Q He , J Zhao , ZJ Chen , Z Sheng , M Chai , H Wang , W Shi , Q Deng , X Cheng , W Li

Brief summary: In this experimental study, genome editing and in vitro pancreatic differentiation of human pluripotent stem cells (SC) were used to generate ZNT8 loss-of-function (LOF) SC-β-cells. These cells showed accelerated functional maturation, increased insulin secretion and improved resistance to metabolic stress. Transplantation of ZnT8 LOF SC-β-cells into mice with preexisting diabetes significantly improved their glucose levels.<...