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Reconstituting mouse embryogenesis Ex utero from Gastrulation to fetal development reveals maternally independent metabolic programs

Lokshtanov D, Gao SMax, Xu W, Kosman A, Roncato F, De La Cruz N, Khan NA, Woods A, Campbell I, Woehler A et al..  2026.  Reconstituting mouse embryogenesis Ex utero from Gastrulation to fetal development reveals maternally independent metabolic programs. bioRxiv.

Fatty acid regulation of feeding in Caenorhabditis elegans reveals the potential ancestral origin of a GLP-1-like multiagonist signaling system.

Zhu F, Castillo-Quan JIván, Ogawa T, Wu Z, Ding L, Sura M, Watanabe Y, Lentschat H, L Fernández-Cárdenas P, Dag U et al..  2026.  Fatty acid regulation of feeding in Caenorhabditis elegans reveals the potential ancestral origin of a GLP-1-like multiagonist signaling system.. Proc Natl Acad Sci U S A. 123(14):e2530979123.

Midgestation metabolic constraint in purine metabolism drives distinct strategies for placenta and fetal growth

Xu W, De La Cruz N, Woods A, Lokshtanov D, Gao S, Khan N, Wright S, Florian-Rodriguez ME, McIntire DD, Duryea EL et al..  2026.  Midgestation metabolic constraint in purine metabolism drives distinct strategies for placenta and fetal growth. bioRxiv.