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Sandeep K. Rajput

Researcher at Michigan State University

Publications -  45
Citations -  661

Sandeep K. Rajput is an academic researcher from Michigan State University. The author has contributed to research in topics: Blastocyst & Follistatin. The author has an hindex of 14, co-authored 44 publications receiving 470 citations. Previous affiliations of Sandeep K. Rajput include National Dairy Research Institute & Chonnam National University.

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Embryonic POU5F1 is Required for Expanded Bovine Blastocyst Formation

TL;DR: The similarity observed in transcriptional regulation of early embryo development between cattle and humans combined with highly efficient gene editing techniques make the bovine a valuable model for human embryo biology with expanded applications in agriculture and assisted reproductive technologies.
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Dynamics of trophoblast differentiation in peri-implantation-stage human embryos.

TL;DR: The studies show that TB associated with human embryos is in rapid developmental flux during peri-implantation period when it must invade, signal robustly to the mother to ensure that the pregnancy continues, and make first contact with the maternal immune system.
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Genome-wide profiling of sperm DNA methylation in relation to buffalo (Bubalus bubalis) bull fertility.

TL;DR: It is suggested that methylation defects of sperm DNA may play a crucial role in determining the fertility of breeding bulls in commercial livestock production system.
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Functional role of AKT signaling in bovine early embryonic development: potential link to embryotrophic actions of follistatin

TL;DR: A potential requirement for AKT for bovine early embryonic development is suggested, and a potential role for follistatin in regulation of AKT signaling in early bovines embryos is suggested.
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Regulation and regulatory role of WNT signaling in potentiating FSH action during bovine dominant follicle selection.

TL;DR: Results support temporal and hormonal regulation and a potential role for WNT signaling in potentiating FSH action during dominant follicle selection.