98%
921
2 minutes
20
Natural ovarian aging is one of the major causes for declining fertility in female animals, which has become an insurmountable issue in human reproduction clinics and assisted reproductive technology procedures. Nevertheless, the molecular basis of oocyte aging remains poorly understood, and feasible improvement strategies are unavailable. In the present study, in vivo supplementation of pyrroloquinoline-quinone effectively elevated the fecundity of reproductively aged mice by balancing hormonal secretion, harmonizing the estrus cycle, and eliminating ovarian fibrosis. Moreover, oocyte quality also increased in aged mice after pyrroloquinoline-quinone administration from various aspects, including nuclear and cytoplasmic maturation competency, fertilization capacity, and pre-implantation embryonic development potential. Transcriptomic analysis identified target pathways that might mediate pyrroloquinoline-quinone's effects in aged oocytes. Specifically, it was demonstrated that pyrroloquinoline-quinone supplementation restored the mitochondrial dynamics and lysosomal function to remove excessive reactive oxygen species and suppress apoptosis in aged oocytes. Jointly, these findings demonstrate pyrroloquinoline-quinone administration is an efficacious method to restore the compromised ovary function and damaged oocyte quality in reproductively aged mice, which might be a potential clinical therapy for women of advanced maternal age with infertility.
Download full-text PDF |
Source |
---|---|
http://dx.doi.org/10.1093/biolre/ioae174 | DOI Listing |
Pestic Biochem Physiol
November 2025
Zhejiang Provincial Key Laboratory of Biometrology and Inspection & Quarantine, Key Laboratory of Microbiological Metrology, Measurement & Bio-product Quality Security, State Administration for Market Regulation, School of Life Sciences, China Jiliang University, Hangzhou 310018, China. Electronic a
The brown planthopper (BPH) Nilaparvata lugens is one of the most destructive pests of rice, and its management has primarily relied on chemical insecticides. Currently, the chemical management of BPH is facing challenges due to the development of pesticide resistance. RNA interference (RNAi) provides attractive alternative to chemical insecticides, provided that suitable target genes are identified.
View Article and Find Full Text PDFStudy Question: Can patient age and ovarian reserve tests predict the number of cryopreserved oocytes in patients undergoing one or more ovarian stimulation cycles for elective oocyte cryopreservation (EOC)?
Summary Answer: A predictive model incorporating patient age, antral follicle count (AFC), anti-Müllerian hormone (AMH), and FSH levels achieved the greatest predictive accuracy.
What Is Known Already: As a consequence of societal evolution, women are increasingly delaying starting a family. However, the natural decline in ovarian reserve and oocyte quality as age advances can increase the risk of age-related fertility decline (ARFD) and involuntary childlessness.
Hum Reprod
September 2025
IVIRMA Global Research Alliance, Genera, Clinica Valle Giulia, Rome, Italy.
Study Question: Do IVF laboratory workflows influence the mean blastulation rate per cohort of inseminated metaphase II oocytes (m-BR)?
Summary Answer: Neither the total number of procedures nor the workload per operator affected m-BR; instead, each additional hour in the interval from ovulation trigger to oocyte denudation (range 36-44 h) was associated with a measurable decline, especially beyond the 40-h threshold.
What Is Known Already: Control of laboratory conditions and standardized protocols are essential for optimizing m-BR in IVF. While advancements in technology and culture systems have improved ART outcomes, the effect of laboratory managerial decisions and procedural timing on embryological outcomes remains unclear.
Hum Reprod
September 2025
Boston IVF-IVIRMA Global Research Alliance, Waltham, MA, USA.
Study Question: Does a high proportion of immature oocytes impact embryo development and live birth rates in IVF-ICSI cycles?
Summary Answer: While a high proportion of immature oocytes is associated with lower blastocyst formation and reduced preimplantation genetic testing for aneuploidy (PGT-A) utilization, live birth rates remain comparable when key confounders-such as age, BMI, gonadotropin dosage, and metaphase-II (MII) count-are balanced, but cycles with a very low MII proportion resulted in fewer embryo transfers, which is quantitatively limiting, even if embryo quality appears unaffected.
What Is Known Already: Previous studies have linked a lower proportion of mature oocytes (MII) to decreased fertilization rates, abnormal embryo development, and lower pregnancy and live birth rates. However, it remains unclear whether these outcomes are due to quantitative limitations (fewer mature oocytes available) or qualitative deficiencies (intrinsic oocyte quality issues).
Biol Reprod
September 2025
Département des sciences animales, Faculté des sciences de l'agriculture et de l'alimentation, Université Laval, Québec, Qc, Canada.
Deep 3D imaging of oocytes shows several difficulties. Their large size, spherical shape causes depth-dependent artefactual shadow in the middle, resulting from refractive index mismatches induced by turbid organelles and lipid droplets. These mismatches lead to optical aberrations, increasing the laser spot size at the confocal pinhole plan and causing significant attenuation of fluorescence intensity making difficult to clearly image fine structures such as the transzonal projections (TZPs) connecting cumulus cells and the oocyte.
View Article and Find Full Text PDF