ISSN 1662-4009 (online)

ey0019.1-1 | Basic Science and Stem Cells | ESPEYB19

1.1. Deciphering the spatial-temporal transcriptional landscape of human hypothalamus development

X Zhou , Y Lu , F Zhao , J Dong , W Ma , S Zhong , M Wang , B Wang , Y Zhao , Y Shi , Q Ma , T Lu , J Zhang , X Wang , Q Wu

Cell Stem Cell. 2022 Feb 3;29(2):328-343.e5. doi: 10.1016/j.stem.2021.11.009. PMID: 34879244.Brief Summary: By applying single-cell RNA sequencing (scRNA-seq) to 112,376 cells of human hypothalamus ranging from 7–20 gestational weeks (GW7–20), the authors produced a spatiotemporal transcriptome atlas of human hypothalamus development and revealed critical regulatory genes control...

ey0020.2-10 | Long-Acting Growth Hormone (LAGH) | ESPEYB20

2.10. Long-acting PEGylated growth hormone in children with idiopathic short stature

X Luo , S Zhao , Y Yang , G Dong , L Chen , P Li , F Luo , C Gong , Z Xu , X Xu , H Gong , H Du , L Hou , Y Zhong , Q Shi , X Chen , X Chen , L Xu , R Cheng , C Su , Y Ma , L Xu , L Zhang , H Lu

Brief summary: This randomized, multicenter, controlled, phase II study compared the effects of high-dose (HD) once-weekly PEGylated-recombinant human growth hormone (PEG-rhGH) to low-dose (LD) and to an untreated control group of children with idiopathic short stature (ISS) over a period of 52 weeks. PEG-rhGH was effective in increasing height gain in a dose dependent manner with both doses being well tolerated during the observation period.PEG-rhGH is ...

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.<...