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Rodriguez-Wallberg, K. A.

Publications and source records attributed to Rodriguez-Wallberg, K. A..

2 recordsLinked to original sources

Cyclophosphamide chemotherapy induces early p53-directed cytotoxic gene expression changes in ovarian gonadotoxicity

The alkylating chemotherapeutic cyclophosphamide (CPA) is gonadotoxic, commonly resulting in depletion of ovarian primordial follicles and leading to infertility and premature menopause in female cancer patients. However, the mechanisms underlying the early stages of CPA-induced ovarian damage are unclear, limiting our ability to prevent gonadotoxicity. This study provides a comprehensive temporal exploration of the transcriptomic profiles of ex vivo intact mouse ovaries exposed to CPA. Analyses of CPA responses from 8 to 36 hours revealed an important early role of p53 signaling. Bioinformatic analyses showed early increases in expression of specific gene clusters associated with apoptosis, DNA damage responses, and cell cycling, while expression of autophagy-associated genes was decreased. Several transcription factors, including E2F family members, likely drive early apoptosis-induced damage and p53 pathway activation. These findings provide mechanistic insight into CPA-induced ovarian toxicity, providing new avenues for the development of protective interventions.

pharmacology and toxicology↗

Vitrification-warming delays preimplantation development and impairs mitochondrial function and cytoplasmic lattices integrity in mouse embryos

Vitrification and warming of human embryos have become standardized procedures in assisted reproduction over the past two decades. Although generally considered safe, their full impact on embryo development remains unclear. Epidemiological studies have raised concerns about differences in birth weight and long-term health outcomes between newborns resulting from fresh versus frozen embryo transfers. In this study, we used mouse embryos to investigate the impact of vitrification and warming on developmental kinetics, mitochondrial function, and cytoplasmic lattice integrity. Time-lapse imaging revealed significant developmental delays across all preimplantation stages in vitrified embryos. Additionally, mitochondrial distribution, volume, and membrane potential exhibited signs of impairment. Ultrastructural analysis identified damage such as ruptured mitochondrial membranes, disrupted cytoplasmic lattices during early cell divisions, and underdeveloped mitochondrial cristae at the blastocyst stage. We hypothesize embryo vitrification and warming disrupt mitochondrial function and destabilize cytoplasmic lattice integrity, ultimately contributing to developmental delays in preimplantation embryos.

cell biology↗