Results 151 to 160 of about 177,590 (291)
A Novel Cultivation System for Germ Cell Proliferation and Sustaining Whole Testicular Niche
A hydrogel microneedle‐based system enables whole testicular cultivation, supporting spermatogonial proliferation and enhancing spermatogenesis in vitro. This ‘whole testicular spermatogonia pool’ (WTSP) significantly increases spermatid production and fertility potential in mice. This system also promotes spermatogonial expansion in human fetal testes,
Yu Xia+14 more
wiley +1 more source
Male Infertility and Its Correlates in Chuadanga District of Bangladesh. [PDF]
Islam S+4 more
europepmc +1 more source
Employing snRNA‐seq post‐MCAO‐induced retinal ischemia (RI), this study revealed a novel Hmga2‐high Müller cell subpopulation. Hmga2 knockout alleviated neuroinflammation and RI symptoms, potentially by binding PI3K and regulating Müller cell autophagy.
Weihao Lv+11 more
wiley +1 more source
Therapeutic mechanisms of Lycii Fructus in male infertility: a comprehensive review. [PDF]
Ma D+9 more
europepmc +1 more source
Acute restraint stress enhances STAT3Ser727 phosphorylation in dopaminergic neurons in mice. This modification promotes the upregulation of GABBR2 and GABRB3, reduces neuronal activity, and contributes to anxiety‐like behavior and diminished reward‐seeking following stress exposure.
Mingshuo Shao+10 more
wiley +1 more source
The Link Between Oxidative Stress and Male Infertility in Lithuania: A Retrospective Study. [PDF]
Jašinskienė E, Čaplinskienė M.
europepmc +1 more source
Sanggenol L, a flavonoid from mulberry, enhances glioblastoma sensitivity to temozolomide by inhibiting mitophagy and inducing apoptosis through TRIM16‐mediated OPTN degradation. In animal studies, liposomal delivery of Sanggenol L significantly improves the efficacy of its combination with TMZ, providing new insights into glioblastoma treatment ...
Hongbo Chang+11 more
wiley +1 more source
Seminal plasma cfDNA fragmentomics landscape delineates male infertility subtypes. [PDF]
Wu X, Meng F, Zhang H, Li Z, Zhao K.
europepmc +1 more source
FOXQ1 emerges as a master transcriptional regulator of brain endothelial metabolism, orchestrating mitochondrial function through dual control of calcium signaling and cristae organization. This study reveals that brain endothelial cells rely on oxidative phosphorylation rather than glycolysis alone, challenging the current metabolic paradigm and ...
Wenzheng Zou+8 more
wiley +1 more source