Retraction notice to "Trehalose restores functional autophagy suppressed by high glucose" [Reprod. Toxicol. 85 (2019) 51-58] [0.03%]
有关“海藻糖恢复高糖抑制的自噬功能”的撤稿声明[生殖毒理学85(2019)51-58]
Cheng Xu,Xi Chen,Wei-Bin Sheng et al.
Cheng Xu et al.
Exposure to toxic metals/metalloids in the environment and in vitro fertilization outcomes in a population group from Romania [0.03%]
环境中的有毒金属/类金属暴露及对罗马尼亚某群体体外受精的影响
Iulia A Neamtiu,Eugen Gurzau,Olivian Marincas et al.
Iulia A Neamtiu et al.
Globally, the infertility prevalence (both genders) has shown a gradual upward trend, with a 0.5%-0.7% annual rise in infertility rates between 1990 and 2021. An increasing proportion of women in Romania experiencing infertility are resorti...
Gadolinium induces Sertoli cell damage: cellular and molecular mechanisms [0.03%]
gadolinium诱导支持细胞损伤:细胞和分子机制研究
Sara Falvo,Giulia Grillo,Gabriella Chieffi Baccari et al.
Sara Falvo et al.
The widespread use of gadolinium (Gd) in industrial and medical applications has raised concerns about its environmental persistence, particularly in water and soil, thereby reaching the human food chain. Once ingested, Gd may have toxic ef...
Influence of Radiofrequency Electromagnetic Radiation on Spermatogenesis and Sperm Function in Rodent Models: A Systematic Review [0.03%]
射频电磁辐射对小鼠模型精子发生和精子功能影响的系统评价
Nushin Naderi,Marziyeh Tavalaee,Parand Heydarian Far et al.
Nushin Naderi et al.
Infertility is increasing worldwide and has been associated with several lifestyle and environmental exposures, including radiofrequency electromagnetic radiation (RF-EMR). Because digital devices are often carried close to the body, possib...
Microplastics as trojan horses: A new perspective on bisphenol toxicity in male infertility and assisted reproduction [0.03%]
微塑料的特洛伊木马效应:双酚类化合物对男性不育和辅助生殖影响的新视角
Giovanna Kugel Marraschi,Otavio Galassi Vitale,Cândida Aparecida Leite Kassuya et al.
Giovanna Kugel Marraschi et al.
Bisphenols are ubiquitous endocrine-disrupting chemicals increasingly implicated in male reproductive dysfunction and adverse assisted reproductive technology (ART) outcomes. Concurrently, micro- and nanoplastics (MNPs) have emerged as perv...
Effects of prenatal pyrethroid pesticides exposure on neurodevelopment of 3-year-old children: A birth cohort study in rural Southwest China [0.03%]
中国西南农村地区儿童出生队列研究:孕期拟除虫菊酯类杀虫剂暴露对3岁儿童神经发育的影响
Lili Zhang,Xia Xiao,Xiaoxiao Song et al.
Lili Zhang et al.
Widespread exposure to pyrethroid pesticides (PYRs) has emerged as a critical public health concern, yet the longitudinal impact of prenatal exposure windows on early childhood neurodevelopment remains to be fully elucidated. This birth coh...
CBD-rich oil nanoemulsion mitigates long-term testicular and endocrine toxicity induced by prenatal valproic acid exposure in rats [0.03%]
富含CBD的油型纳米乳剂缓解孕期戊酸盐诱导的大鼠长期睾丸和内分泌毒性作用
Mariana de França Oliveira da Silva,Fernanda Carolina Ribeiro Dias,Amanda Rodrigues Dos Santos Magnabosco et al.
Mariana de França Oliveira da Silva et al.
Valproic acid is a widely used antiepileptic drug and a recognized model of developmental reproductive toxicity, as exposure during critical periods of testicular development can lead to persistent endocrine and reproductive dysfunction in ...
Jones B Graceli,Leandro Miranda-Alves,Charles S Da Costa
Jones B Graceli
The ovary is a key organ regulator of female reproductive health, coordinating steroid hormone production, follicular development, and ovulation, while also contributing to broader physiological homeostasis. The intricate hormonal networks ...
Corrigendum to "Excess iodine impairs spermatogenesis by inducing oxidative stress and perturbing blood testis barrier" [Reprod. Toxicol. 96 (2020) 128-140] [0.03%]
“碘过量通过诱导氧化应激和干扰血睾屏障干扰生精功能”一文的勘误[生殖毒理学第96卷(2020年)128—140页]
Arijit Chakraborty,Vertika Singh,Kiran Singh et al.
Arijit Chakraborty et al.
YY1/HIF-1α/NDUFA4L2 signaling axis mediates bisphenol A-induced mitochondrial dysfunction and apoptosis in human ovarian granulosa cells [0.03%]
双酚A诱导人卵巢颗粒细胞线粒体功能障碍和凋亡的YY1/HIF-1α/NDUFA4L2信号轴介导机制研究
Libin Xue,Cairong Chen,Yinghe Zhao et al.
Libin Xue et al.
Bisphenol A (BPA) is implicated in impairing ovarian function by disrupting the normal function of granulosa cells (GCs); however, the underlying molecular mechanisms remain unclear. Based on our previous results, this study used KGN cells ...