<div><p>Human cells migrate between mother and fetus during pregnancy and persist in the respective host for long-term after birth. Fetal microchimerism occurs also in twins sharing a common placenta or chorion. Whether microchimerism occurs in multiparous mammals such as the domestic pig, where fetuses have separate placentas and chorions, is not well understood. Here, we assessed cell chimerism in litters of wild-type sows inseminated with semen of transposon transgenic boars. Segregation of three independent monomeric transposons ensured an excess of transgenic over non-transgenic offspring in every litter. Transgenic siblings (n = 35) showed robust ubiquitous expression of the reporter transposon encoding a fluorescent protein, and prov...
In this study, based on somatic cell nuclear transfer (SCNT), we used the ear fibroblasts of miniatu...
<div><p>The porcine pluripotent cells that can generate germline chimeras have not been developed. T...
High-resolution molecular programmes delineating the cellular foundations of mammalian embryogenesis...
Human cells migrate between mother and fetus during pregnancy and persist in the respective host for...
Human cells migrate between mother and fetus during pregnancy and persist in the respective host for...
<p>A) Schematic depiction of a monomeric reporter transposon in chromosomal context. The SB transpos...
Genetic engineering can expand the utility of pigs for modeling human diseases, and for developing a...
Recently, we established the Sleeping Beauty transposon system for germ line competent transgenesis ...
Modelling of human disease in genetically engineered pigs provides unique possibilities in biomedica...
Two injection methods were examined for making chimeras between Chinese pigs (Meishan) and European ...
Pigs are an optimal animal for conducting biomedical research because of their anatomical and physio...
Somatic cell nuclear transfer (SCNT) is a powerful tool for production of transgenic animals for var...
Pigs are an optimal animal for conducting biomedical research because of their anatomical and physio...
In humans, fetal cells enter the maternal circulation during all pregnancies and can persist for dec...
Genetic engineering can expand the utility of pigs for modeling human diseases, and for developing a...
In this study, based on somatic cell nuclear transfer (SCNT), we used the ear fibroblasts of miniatu...
<div><p>The porcine pluripotent cells that can generate germline chimeras have not been developed. T...
High-resolution molecular programmes delineating the cellular foundations of mammalian embryogenesis...
Human cells migrate between mother and fetus during pregnancy and persist in the respective host for...
Human cells migrate between mother and fetus during pregnancy and persist in the respective host for...
<p>A) Schematic depiction of a monomeric reporter transposon in chromosomal context. The SB transpos...
Genetic engineering can expand the utility of pigs for modeling human diseases, and for developing a...
Recently, we established the Sleeping Beauty transposon system for germ line competent transgenesis ...
Modelling of human disease in genetically engineered pigs provides unique possibilities in biomedica...
Two injection methods were examined for making chimeras between Chinese pigs (Meishan) and European ...
Pigs are an optimal animal for conducting biomedical research because of their anatomical and physio...
Somatic cell nuclear transfer (SCNT) is a powerful tool for production of transgenic animals for var...
Pigs are an optimal animal for conducting biomedical research because of their anatomical and physio...
In humans, fetal cells enter the maternal circulation during all pregnancies and can persist for dec...
Genetic engineering can expand the utility of pigs for modeling human diseases, and for developing a...
In this study, based on somatic cell nuclear transfer (SCNT), we used the ear fibroblasts of miniatu...
<div><p>The porcine pluripotent cells that can generate germline chimeras have not been developed. T...
High-resolution molecular programmes delineating the cellular foundations of mammalian embryogenesis...