推荐文章(文章为近两年的文章,共4121篇;总点击量为:90404)
  • Wang, Tiantian; Chen, Jiehao; Qu, Bo; Zhou, Dong; Hong, Zhen
    CELL PROLIFERATION 2025年第58卷第4期 DOI:10.1111/cpr.13790
    关键词: HIGH GLUCOSE; STEM-CELLS; NRF2; PROLIFERATION; DISEASE; TARGET; INJURY
    摘要: Currently, there is no specific treatment for diabetes-induced osteoporosis (DOP). Our study identified diabetes-induced cellular senescence, marked by elevated activity of senescence-associated beta-galactosidase. Targeting senescent cells holds promise for osteoporosis treatment. We demonstrated that scutellarin (SCU) effectively mitigated bone loss in DOP mice, and co-treatment with SCU significantly reduced diabetes-induced senescence in LepR+MSCs. Furthermore, our research highlighted the role of Nrf2 in SCU's anti-senescence effects on bone. The deletion of Nrf2 impaired SCU's ability to alleviate DOP. Mechanistically, SCU enhances Ezh2 expression and increases H3K27me3 activity at the Keap1 promoter region, leading to Keap1 repression and enhanced Nrf2-ARE signalling. Additionally, SCU notably inhibited cellular senescence and diabetes-related osteoporosis, these effects were significantly reduced in Ezh2LepRcre conditional knockout models. These findings suggest that the Ezh2-Nrf2 signalling axis is crucial for mediating SCU's beneficial effects in this context. Overall, our discoveries provide insights into the mechanisms underlying DOP and propose a potential preventive strategy for this condition.

  • Yao, Wantao; Wei, Zhaohui; Tian, Xinning; Tan, Jin; Liu, Jingwen
    CELL PROLIFERATION 2025年第58卷第3期 DOI:10.1111/cpr.13765
    关键词: LEFT-RIGHT AXIS; GROWTH
    摘要: During the embryonic developmental stage in vertebrates, internal organs are arranged along the left-right axis. Disruptions in this process can result in congenital diseases or laterality disorders. The molecular mechanisms of left-right asymmetry in vertebrate development remain largely unclear. Due to its straightforward structure, zebrafish has become a favoured model for studying early laterality events. Here, we demonstrate that growth and development factor 11 (Gdf11) is essential for left-right development via TGF-beta signalling. Morphological analysis showed that gdf11 morphants and mutants displayed clear heart and liver laterality disorders in a Nodal signal-dependent manner. Additionally, we found that Kupffer's vesicle formation and ciliogenesis were impaired following gdf11 deletion. We also observed that Gdf11 may form a heterodimer with Spaw, which promotes Smad2/3 phosphorylation and activates TGF-beta signalling. Subsequently, Gdf11 promotes left-right laterality by stimulating Foxj1a and its target gene expression. In summary, we reveal a critical role of Gdf11 in left-right patterning, providing fundamental insights into the developmental process of left-right asymmetry.

  • Wang, G.; Pan, J.; Zhang, L.; Wei, Y.; Wang, C.
    CELL PROLIFERATION 2024年第57卷第8期 DOI:10.1111/cpr.13690
    关键词:
    摘要: G. Wang, J. Pan, L. Zhang, Y. Wei, C. Wang, Long Non-Coding RNA CRNDE Sponges miR-384 to Promote Proliferation and Metastasis of Pancreatic Cancer Cells through Upregulating IRS1, Cell Proliferation 50, no. 6 (2017): e12389, The above article, published online on 21 September 2017 in Wiley Online Library (), has been retracted by agreement between the authors, the Deputy Editor-in-Chief, Yunfeng Lin, and John Wiley and Sons Ltd. The retraction has been agreed following a request by the authors to retract the article due to unreliable results and a lack of original data. Further investigation revealed multiple images previously published elsewhere in a different scientific context. Thus, the editors consider the conclusions of this manuscript substantially compromised. The corresponding author Cheng Wang agrees with this decision on behalf of all authors.

  • Mei, Feng; Guo, Yaru; Wang, Yu; Zhou, Yingying; Heng, Boon Chin; Xie, Mengru; Huang, Xiaofei; Zhang, Shihan; Ding, Shuai; Liu, Fangyong; Deng, Xuliang; Chen, Lili; Yang, Cheng
    CELL PROLIFERATION 2024年第57卷第8期 DOI:10.1111/cpr.13640
    关键词: ACTIVATION; COMPONENTS
    摘要: Macrophages play a pivotal role in the immunological cascade activated in response to biomedical implants, which predetermine acceptance or rejection of implants by the host via pro- and anti-inflammatory polarisation states. The role of chemical signals in macrophage polarisation is well-established, but how physical cues regulate macrophage function that may play a fundamental role in implant-bone interface, remains poorly understood. Here we find that bone marrow-derived macrophages (BMDM) cultured on polyacrylamide gels of varying stiffness exhibit different polarisation states. BMDM are 'primed' to a pro-inflammatory M1 phenotype on stiff substrates, while to an anti-inflammatory M2 phenotype on soft and medium stiffness substrates. It is further observed that matrix stiffening increases Piezo1 expression, as well as leads to subsequent activation of the mechanotransduction signalling effector YAP, thus favouring M1 polarisation whilst suppressing M2 polarisation. Moreover, upon treatment with YAP inhibitor, we successfully induce macrophage re-polarisation to the M2 state within the implant site microenvironment, which in turn promotes implant osseointegration. Collectively, our present study thus characterises the critical role of the Piezo1-YAP signalling axis in macrophage mechanosensing and stiffness-mediated macrophage polarisation and provides cues for the design of immuno-modulatory biomaterials that can regulate the macrophage phenotype.

  • Zhao, Ning; Huang, Yixuan; Cheng, Xu; Xie, Li; Xiao, Wenlin; Shi, Bing; Li, Jingtao
    CELL PROLIFERATION 2024年第57卷第6期 DOI:10.1111/cpr.13610
    关键词: NEURAL CREST CELLS; TOOTH DEVELOPMENT; STEM-CELLS; DIFFERENTIATION; EPITHELIUM; INDUCTION
    摘要: Orofacial muscle defect due to congenital anomalies, tumour ablation or traumatic accident that exceeds endogenous regeneration capacity may lead to sustained deficits in masticatory function and nutrition intake. Functional recovery has always been the goal of muscle tissue repair, but currently, there is no suitable model for quantitative analyses of either functional consequences or treatment efficacy of orofacial muscle defect. This study proposed a critical size volumetric muscle loss (VML) model in mouse masseter with impaired mastication on nutrition. Full-thickness VML defects in diameter of 1.0, 1.5, 2.0 and 3.0 mm were generated in the centre of the mouse masseter using a biopsy punch to determine the critical size for functional impairment. In the VML region, myogenesis was dampened but fibrogenesis was activated, as long with a reduction in the density of the neuromuscular junction and an increase in vascular density. Accordingly, persistent fibrosis was observed in the centre region of VML in all diameters. The 2.0 mm diameter was the critical threshold to masticatory function impairment after VML in the masseter. VML of 3.0 mm diameter led to a significant impact on nutrition intake and body weight gain. Autologous muscle graft effectively relieved the fibrosis and functional deficit after VML injury in the masseter. This model serves as a reliable tool in studying functional recovery strategies for orofacial muscle defects. In this study, we presented for the first time an injury model in the orofacial masticatory muscle with function impairment and systemic impact, along with comprehensive quantitative histological analysis, muscle repair effector cell proliferative activity and masticatory function analysis, providing a powerful tool for testing and developing tissue engineering and regenerative medicine approaches for orofacial muscle repair. image

  • Li, Xiaokai; Zeng, Sha; Chen, Li; Zhang, Yu; Li, Xuemin; Zhang, Biwei; Su, Duo; Du, Qinjiao; Zhang, Jiaman; Wang, Haoming; Zhong, Zhining; Zhang, Jinwei; Li, Penghao; Jiang, Anan; Long, Keren; Li, Mingzhou; Ge, Liangpeng
    CELL PROLIFERATION 2024年第57卷第3期 DOI:10.1111/cpr.13552
    关键词: BINDING-PROTEIN-ALPHA; NUCLEAR HORMONE-RECEPTORS; PPAR-GAMMA; C/EBP-ALPHA; GENE-EXPRESSION; CHROMATIN INTERACTIONS; TRANSCRIPTION FACTORS; GLUCOSE-METABOLISM; RNA; BETA
    摘要: Cebpa is a master transcription factor gene for adipogenesis. However, the mechanisms of enhancer-promoter chromatin interactions controlling Cebpa transcriptional regulation during adipogenic differentiation remain largely unknown. To reveal how the three-dimensional structure of Cebpa changes during adipogenesis, we generated high-resolution chromatin interactions of Cebpa in 3T3-L1 preadipocytes and 3T3-L1 adipocytes using circularized chromosome conformation capture sequencing (4C-seq). We revealed dramatic changes in chromatin interactions and chromatin status at interaction sites during adipogenic differentiation. Based on this, we identified five active enhancers of Cebpa in 3T3-L1 adipocytes through epigenomic data and luciferase reporter assays. Next, epigenetic repression of Cebpa-L1-AD-En2 or -En3 by the dCas9-KRAB system significantly down-regulated Cebpa expression and inhibited adipocyte differentiation. Furthermore, experimental depletion of cohesin decreased the interaction intensity between Cebpa-L1-AD-En2 and the Cebpa promoter and down-regulated Cebpa expression, indicating that long-range chromatin loop formation was mediated by cohesin. Two transcription factors, RXRA and PPARG, synergistically regulate the activity of Cebpa-L1-AD-En2. To test whether Cebpa-L1-AD-En2 plays a role in adipose tissue development, we injected dCas9-KRAB-En2 lentivirus into the inguinal white adipose tissue (iWAT) of mice to suppress the activity of Cebpa-L1-AD-En2. Repression of Cebpa-L1-AD-En2 significantly decreased Cebpa expression and adipocyte size, altered iWAT transcriptome, and affected iWAT development. We identified functional enhancers regulating Cebpa expression and clarified the crucial roles of Cebpa-L1-AD-En2 and Cebpa promoter interaction in adipocyte differentiation and adipose tissue development.

  • Wang, Y.; Li, J. H.; Wang, Z. Q.; Li, J.; Wang, Z.; Liu, Y.; Wang, T.; Zhang, M.; Xia, C.; Zhang, F.; Huang, D.; Zhang, L.; Zhao, Y.; Liu, L.; Zhu, Y.; Qi, H.; Zhu, X.; Qian, W.; Hu, F.; Wang, J.
    CELL PROLIFERATION 2025年第58卷第10期 DOI:10.1111/cpr.70098
    关键词:
    摘要:

  • Wu, Jiaqi; Zhao, Xuehan; Fang, Ying; Wang, Cong; Tian, Yichang; Tu, Wan; Wu, Qiqian; Yan, Long; Yang, Xiaokui
    CELL PROLIFERATION 2025年第58卷第9期 DOI:10.1111/cpr.70024
    关键词: MITOCHONDRIA; PREVALENCE; FAILURE; FISSION; FUSION; NAD(+); DAMAGE
    摘要: Diminished ovarian reserve (DOR) is a pathological condition characterised by reduced ovarian function, which refers to the decreased quality and quantity of oocytes, potentially causing female infertility and various health issues. Follicular fluid (FF) serves as the microenvironment for follicular development and oocyte maturation, gaining an in-depth understanding of the metabolic state of FF will help us uncover the key biological processes involved in ovarian aging, while the specific underlying pathogenic mechanisms are not fully understood. In this study, we utilised pseudotargeted metabolomic analysis of FF to reveal the glycerophospholipid metabolism dysfunction mediated by GPD1L in DOR patients. We also found that GPD1L was downregulated in granulosa cells (GCs) of DOR patients, resulting in increased cell apoptosis and mitochondrial dysfunction. Moreover, our results demonstrated that the downregulated expression of GPD1L could induce follicular atresia and impair oocyte quality in mouse ovaries. Altogether, our research suggested that GPD1L in GCs and the key metabolites in the glycerophospholipid metabolism pathway could potentially act as novel biomarkers of DOR diagnosis, paving the way for a new theoretical basis for understanding the pathogenesis of DOR.

  • Zhou, Xinyi; Gao, Chen; Zhao, Wenxuan; Wei, Xinhua; Yu, Dawei; Zou, Huiying; Du, Weihua
    CELL PROLIFERATION 2025年第58卷第8期 DOI:10.1111/cpr.70008
    关键词: IN-VITRO; GENERATION; MOUSE; DERIVATION; ESTABLISHMENT
    摘要: Livestock pluripotent stem cells, derived either from early embryos or induced through somatic cell reprogramming technology, possess the unique ability to self-renew, maintain an undifferentiated state and differentiate into various cell types. Consequently, the generation of PSCs from agricultural animal species holds great potential for applications in livestock breed improvement, rapid propagation, disease modelling and xenotransplantation. However, compared to the great achievements made in mouse and human pluripotent stem cells research, the generation of livestock pluripotent stem cells still remains challenging. This article offers an overview of the classification, regulatory mechanisms of pluripotency, and developmental history of livestock pluripotent stem cells, while also anticipating their future application prospects. These insights provide valuable references for the reproduction and breeding of large livestock.

  • Liu, Guo; Liu, Tiannan; Tan, Junkai; Jiang, Xiaoyan; Fan, Yudi; Sun, Kuanxiang; Liu, Wenjing; Liu, Xuyang; Yang, Yeming; Zhu, Xianjun
    CELL PROLIFERATION 2025年第58卷第2期 DOI:10.1111/cpr.13751
    关键词: GENE; CELLS; ROD
    摘要: Transmembrane protein 184b (Tmem184b) has been implicated in axon degeneration and neuromuscular junction dysfunction. Notably, Tmem184b exhibits high expression levels in the retina; however, its specific function within this tissue remains poorly understood. To elucidate the role of Tmem184b in the mammalian visual system, we developed a Tmem184b knockout (KO) model for further investigation. Loss of Tmem184b led to significant decreases in both a and b wave amplitudes of scotopic electroretinogram (ERG) and reduced b wave amplitudes of photopic ERG, respectively, reflecting damage to both the photoreceptors and secondary neuronal cells of the retina. Histologic analyses showed a progressive retinal thinning accompanied by the significantly loss of retinal cells including cone, rod, bipolar, horizontal and retinal ganglion cells. The expression levels of photo-transduction-related proteins were down-regulated in KO retina. TUNEL (terminal deoxynucleotidyl transferase-mediated biotinylated Uridine-5'-triphosphate [UTP] nick end labelling) and glial fibrillary acidic protein (GFAP)-labelling results suggested the increased cell death and inflammation in the KO mice. RNA-sequencing analysis and GO enrichment analysis revealed that Tmem184b deletion resulted in down-regulated genes involved in various biological processes such as visual perception, response to hypoxia, regulation of transmembrane transporter activity. Taken together, our study revealed essential roles of Tmem184b in the mammalian retina and confirmed the underlying mechanisms including cell death, inflammation and hypoxia pathway in the absence of Tmem184b, providing a potential target for therapeutic and diagnostic development.