ISSN 1662-4009 (online)

ey0018.12-2 | Type 2 Diabetes | ESPEYB18

12.2. Identification of pathognomonic purine synthesis biomarkers by metabolomic profiling of adolescents with obesity and type 2 diabetes

J Concepcion , K Chen , R Saito , J Gangoiti , E Mendez , ME Nikita , BA Barshop , L Natarajan , K Sharma , JJ Kim

PLoS One. 2020 Jun 26;15(6):e0234970. doi: 10.1371/journal.pone.0234970.In brief: Metabolite signatures were compared between children with normal weight, obesity, and both obesity and T2DM, by measuring 273 analytes in fasting plasma and a 24-hour urine sample. Twenty-two urine metabolites were uniquely associated with T2DM. Adolescents with T2DM have altered purine nucleoti...

ey0018.1-5 | Development/Ontogeny | ESPEYB18

1.5. Cellular and molecular properties of neural progenitors in the developing mammalian hypothalamus

X Zhou , S Zhong , H Peng , J Liu , W Ding , L Sun , Q Ma , Z Liu , R Chen , Q Wu , X Wang

Nat Commun. 2020 Aug 13;11(1):4063. doi: 10.1038/s41467-020-17890-2. PMID: 32792525.These researchers proposed the heterogeneity of hypothalamic neural progenitor cells. Other than traditional hypothalamic radial glial (hRG) cells, which are predominantly located in the ventricular zone, there are additional basal progenitors in the mantle zone, which are named as hypothalamic mantle zo...

ey0018.15-14 | (1) | ESPEYB18

15.14. First-in-class humanized FSH blocking antibody targets bone and fat

S Gera , D Sant , S Haider , F Korkmaz , TC Kuo , M Mathew , H Perez-Pen , H Xie , H Chen , R Batista , K Ma

Proc Natl Acad Sci USA. 2020, Nov; 117(46): 28971–28979https://bit.ly/2RQiZlzThe authors report the generation, structure and function of a fully humanized, humanized antibody that profoundly inhibits follicle-stimulating hormone (FSH) actions in cell-based assays. Administration of the antibody to ovariectomized mice prevented bone loss and also accumulation of adipose tissue when fed a high-fat diet (H...

ey0020.8-10 | New Paradigms | ESPEYB20

8.10. Functional and metabolic alterations of gut microbiota in children with new-onset type 1 diabetes

X Yuan , R Wang , B Han , C Sun , R Chen , H Wei , L Chen , H Du , G Li , Y Yang , X Chen , L Cui , Z Xu , J Fu , J Wu , W Gu , Z Chen , X Fang , H Yang , Z Su , J Wu , Q Li , M Zhang , Y Zhou , L Zhang , G Ji , F Luo

Brief summary: Using in-depth multi-omics analyses of human type 1 diabetes (T1D) samples, the authors profiled gut microbial functional and metabolic alterations. The T1D microbiota showed decreased butyrate production and bile acid metabolism and increased lipopolysaccharide (LPS) biosynthesis. Fecal microbiota transplantation in animal models proved that T1D gut microflora is a causative factor in the regulation of glucose metabolism.The etiology of T...