Mariana Priotto de Macedo
Overview
Explore the profile of Mariana Priotto de Macedo including associated specialties, affiliations and a list of published articles.
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16
Citations
77
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Recent Articles
1.
de Macedo M, Glanzner W, Gutierrez K, Currin L, Rissi V, Baldassarre H, et al.
J Assist Reprod Genet
. 2025 Mar;
PMID: 40025368
Purpose: Somatic cell nuclear transfer (SCNT) is a valuable tool for investigating reprogramming mechanisms and creating animal clones for applications in production, conservation, companionship, and biomedical research. However, SCNT efficiency...
2.
Glanzner W, da Silva Sousa L, Gutierrez K, de Macedo M, Currin L, Perecin F, et al.
Sci Rep
. 2024 Feb;
14(1):2973.
PMID: 38316940
The nuclear factor erythroid 2-related factor 2 (NRF2) is a crucial transcription factor that plays a central role in regulating oxidative stress pathways by binding antioxidant response elements, but its...
3.
Alemu T, Schuermann Y, Madogwe E, St Yves A, Dicks N, Bohrer R, et al.
Animal
. 2024 Jan;
18(2):101063.
PMID: 38237478
The severe loss of body condition score (BCS) during the early lactation period has been associated with infertility in cows. However, the mechanisms are not fully understood. The aim of...
4.
Baldassarre H, Gutierrez K, Glanzner W, de Macedo M, Currin L, Guay V, et al.
Theriogenology
. 2023 Oct;
214:141-147.
PMID: 37871373
The present study was conducted to establish if laparoscopic ovum pick-up (LOPU) could be adapted to the swine species, and if the developmental competence of LOPU-sourced oocytes from peripubertal gilts...
5.
Da Silva Z, Glanzner W, Gutierrez K, de Macedo M, Guay V, Currin L, et al.
Reproduction
. 2023 Oct;
166(6):401-410.
PMID: 37855431
In Brief: Ubiquitination plays a pivotal role in a multitude of cellular functions; however, the precise contributions of various ubiquitin ligases in governing early developmental processes remain largely unexplored. This...
6.
Currin L, Baldassarre H, de Macedo M, Glanzner W, Gutierrez K, Lazaris K, et al.
Animals (Basel)
. 2022 Dec;
12(24).
PMID: 36552466
Embryos from prepubertal water buffalo can be produced using laparoscopic ovum pickup (LOPU) and in vitro embryo production (IVEP). However, to date, it is unclear what factors and environmental conditions...
7.
Currin L, Baldassarre H, de Macedo M, Glanzner W, Gutierrez K, Lazaris K, et al.
Theriogenology
. 2022 Dec;
197:84-93.
PMID: 36476506
Embryos can be produced from prepubertal donor animals using laparoscopic ovum pickup and in vitro embryo production technologies (LOPU-IVEP). Together, these tools can shorten the interval between generations, rapidly accelerating...
8.
de Macedo M, Glanzner W, Gutierrez K, Currin L, Guay V, Herrera M, et al.
Int J Mol Sci
. 2022 Nov;
23(22).
PMID: 36430635
Combining somatic cell nuclear transfer (SCNT) with genome editing technologies has emerged as a powerful platform for the creation of unique swine lineages for agricultural and biomedical applications. However, successful...
9.
Currin L, Glanzner W, Gutierrez K, de Macedo M, Guay V, Baldassarre H, et al.
Theriogenology
. 2022 Oct;
194:133-143.
PMID: 36244270
Porcine in vitro fertilization often results in low embryo development rates compared to other livestock species, which is often associated with either a low fertilization rate or high incidence of...
10.
Da Silva Z, Glanzner W, Currin L, de Macedo M, Gutierrez K, Guay V, et al.
Int J Mol Sci
. 2022 Sep;
23(17).
PMID: 36077022
DNA damage in early-stage embryos impacts development and is a risk factor for segregation of altered genomes. DNA damage response (DDR) encompasses a sophisticated network of proteins involved in sensing,...