Zobrazeno 1 - 4
of 4
pro vyhledávání: '"Verônica Euclydes"'
Autor:
Verônica Euclydes, Catarina Gomes, Gisele Gouveia, Vinicius Daguano Gastaldi, Arthur Sant’Anna Feltrin, Caroline Camilo, Rossana Pulcineli Vieira, Aloísio Felipe-Silva, Sandra Grisi, Günther Fink, Alexandra Brentani, Helena Brentani
Publikováno v:
Clinical Epigenetics. 14
Background Physiological maternal stress response, such as imbalance in the glucocorticoid pathway and immune system seems to be mediated by DNA methylation (DNAm) and might translate intrauterine stress exposures into phenotypic changes in a sex-spe
Autor:
Gisele Gouveia, Verônica Euclydes, Caio Braga, Kyle Wiley, Caroline Camilo, Guilherme Polanczyk, Helena Brentani
Publikováno v:
European Neuropsychopharmacology. 63:e130-e131
Autor:
Veronica Euclydes, Caio I.S. Braga, Gisele Gouveia, Raquel C.R. Martinez, Caroline Camilo, Sergio N. Simões, David C. Martins-Jr, Lislaine Fracolli, Adriana Argeu, Alexandre Ferraro, Alicia Matijasevich, Daniel Fatori, Euripedes C. Miguel, Guilherme V. Polanczyk, Helena Brentani
Publikováno v:
Brain, Behavior, & Immunity - Health, Vol 40, Iss , Pp 100832- (2024)
Background and objectives: The neurodevelopment of the offspring is suggested to be influenced by the maternal immune system's responses throughout pregnancy, which in turn is also vulnerable to maternal psychosocial stress conditions. Therefore, our
Externí odkaz:
https://doaj.org/article/4e9728a690e849b8beb346d58571e53a
Autor:
Ethan Tietze, Andre Rocha Barbosa, Bruno Araujo, Veronica Euclydes, Bailey Spiegelberg, Hyeon Jin Cho, Yong Kyu Lee, Yanhong Wang, Alejandra McCord, Alan Lorenzetti, Arthur Feltrin, Joyce van de Leemput, Pasquale Di Carlo, Gianluca Ursini, Kynon J. Benjamin, Helena Brentani, Joel E. Kleinman, Thomas M. Hyde, Daniel R. Weinberger, Ronald McKay, Joo Heon Shin, Tomoyo Sawada, Apua C. M. Paquola, Jennifer A. Erwin
Publikováno v:
Scientific Reports, Vol 14, Iss 1, Pp 1-15 (2024)
Abstract Primary human trophoblast stem cells (TSCs) and TSCs derived from human pluripotent stem cells (hPSCs) can potentially model placental processes in vitro. Yet, the pluripotent states and factors involved in the differentiation of hPSCs to TS
Externí odkaz:
https://doaj.org/article/6bb7441979f6437cb464f3a0916c266a