| Literature DB >> 34407863 |
Chuan Tian1,2, Jie He1,3, Yuanyuan An3, Zailing Yang1,2, Donghai Yan1, Hang Pan1,2, Guanke Lv1,3, Ye Li1,3, Yanying Wang1, Yukun Yang1, Gaohong Zhu3, Zhixu He2, Xiangqing Zhu4, Xinghua Pan5,6,7.
Abstract
BACKGROUND: Female sex hormone secretion and reproductive ability decrease with ageing. Bone marrow mesenchymal stem cells (BMMSCs) have been postulated to play a key role in treating ovarian ageing.Entities:
Keywords: BMMSCs; Macaque; Ovarian ageing
Mesh:
Year: 2021 PMID: 34407863 PMCID: PMC8371769 DOI: 10.1186/s13287-021-02486-4
Source DB: PubMed Journal: Stem Cell Res Ther ISSN: 1757-6512 Impact factor: 6.832
Fig. 1Evaluation of elderly macaques as research models of ovarian ageing. a Facial features of young macaques. b Facial features of elderly macaques. c Back features of young macaques. d Back features of elderly macaques. e Ovarian morphology of young macaques. f Ovarian morphology of elderly macaques. g HE staining of a young macaque ovary (100×). h HE staining of a young macaque ovary (400×). i HE staining of an elderly macaque ovary (100×). j HE staining of an elderly macaque ovary (400×). k Statistical analysis of ovarian organ index of young and elderly macaques. l Statistical analysis of sex hormone secretion levels in young and elderly macaques
Fig. 2Morphology of BMMSCs. a Primary generation of BMMSCs (100×); b P4 BMMSCs (100×); c E-GFP-labelled BMMSCs (100×)
Fig. 3Changes in ovarian structure and function after BMMSC treatment. a PECT-CT was used to observe the changes in ovarian SUVmax and volume and the CT value; white areas represent the ovarian volume, and red areas represent metabolically active regions. b Statistical analysis of CT value, volume, and SUVmax. c Changes in hFSH, hLH, Testo, Prog, PRL, E2, and AMH levels at 3, 6, and 8 months after BMMSC treatment
Fig. 4Ovarian histopathological observation after BMMSC treatment. a The morphology of ovaries. b HE staining was performed to observe ovarian structure (100 μm). c Masson staining was performed to observe the degree of fibrosis (50 μm). d TUNEL assay was performed to analyse apoptosis (100 μm). e Immunohistochemical staining was performed to observe the density of blood vessels (50 μm). f Immunofluorescence staining was performed to track BMMSCs in the ovary (50 μm). g Statistical analyses of the degree of fibrosis, the percentage of apoptotic cells, the density of blood vessels, and the ovarian organ index (p < 0.05, p < 0.01, and p < 0.001)
Fig. 5Transcriptome sequencing of ovarian tissues. a Cluster plot showing the 1258 genes differentially expression. b 3D-PCA analysis of ageing-related genes, light green represents the young control group, purple represents the elderly model group, and dark blue represents the elderly treatment group. c ClueGO analysis functional enrichment of 1258 genes. d Trajectory analysis the ovarian expression characteristics of 415 upregulated genes with age and BMMSC treatment, and the GO enrichment. e Trajectory analysis of the ovarian expression characteristics of 843 downregulated genes with age and BMMSC treatment, and the GO enrichment. f Cytohub screened the top20 PPI. g PPI top 20 gene function and pathway