| Literature DB >> 28274269 |
Yaoyao Zhang1,2,3, Xi Xia1,4, Jie Yan1,2,3, Liying Yan1,2,3, Cuilin Lu1,2,3, Xiaohui Zhu1,2,3, Tianren Wang1,2,5, Tailang Yin1,2,3, Rong Li1,2,3, Hsun-Ming Chang6, Jie Qiao7,8,9.
Abstract
BACKGROUND: We have recently reported that human bone marrow-derived mesenchymal stem cells (MSCs) facilitate angiogenesis and prevent follicle loss in xenografted human ovarian tissues. However, the mechanism underlying this effect remains to be elucidated. Thus, determining the paracrine profiles and identifying the key secreted factors in MSCs co-transplanted with ovarian grafts are essential for the future application of MSCs.Entities:
Keywords: Angiogenin; Fertility preservation; Follicle survival; Mesenchymal stem cell; Ovarian tissue transplantation
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Year: 2017 PMID: 28274269 PMCID: PMC5343383 DOI: 10.1186/s12958-017-0235-8
Source DB: PubMed Journal: Reprod Biol Endocrinol ISSN: 1477-7827 Impact factor: 5.211
Fig 1Angiogenin level is significantly increased in co-transplanted of ovarian tissues and MSCs. a List of antibodies against angiogenesis related cytokine factors by RayBiotech human antibody array; b Comparison of the panel of protein expression profiles in ovarian graft and MSCs co-transplantation (Graft + MSC group) versus Graft group. (Left) Heat maps were developed with the hierarchical clustering algorithm between the two groups. For each protein, signals from all conditions were averaged to generate the baseline. Signals above baseline are red; signals below baseline are green. The heat map key shows log2-fold changes from baseline. (Right) Lists of differential expressed protein that was abundant in Graft + MSC group or in MSC group. MSC, mesenchymal stem cells. POS, positive control. NEG, negative control
Fig 2Angiogenin-blockade suppressed MSCs-stimulated ovarian angiogenesis. a Representative figures showing microvascular density of ovarian tissues in shRNA blockage analysis, as determined by CD31 immunoactivity, at post-transplantation day-7 in each group. b Quantitative analysis of microvascular densities between different groups in shRNA blockage analysis, c Representative figures showing microvascular density of ovarian tissues in antibody blockage experiment, as determined by CD31 immunoactivity, at post-transplantation day-7 in each groups. d Quantitative analysis of microvascular density between different groups in antibody blockage experiment. Data shown are means ± SEM of triplicates in a representative experiment. MSC, mesenchymal stem cells; ANG, angiogenin; CTRL, control; Ab, antibody; shANG, ANG specific short hairpin RNA; shCTRL, control short hairpin RNA, * P < 0.05. Scale bar = 100 μm
Fig 3Blockade of angiogenin neutralized MSC-stimulated follicular survival after co-transplantation of MSCs. a Representative images of HE-stained section showing number of primodial follicles in ovarian tissue at post-transplant day-7 of each group in the shANG blockage experiment. b Quantitative analysis of follicular numbers in different groups in shANG blockage experiment. c Representative images of HE-stained section showing number of primodial follicles in ovarian tissue at post-transplant day-7 of each group in antibody blockage experiment. d Quantitative analysis of primodial follicular numbers in different groups in antibody blockage experiment. Data shown are means ± SEM of triplicates in a representative experiment. MSC, mesenchymal stem cells; ANG, angiogenin; CTRL, control; Ab, antibody; shANG, ANG specific short hairpin RNA; shCTRL, control short hairpin RNA, * P < 0.05. Scale bar = 50 μm
Fig 4Blockade of angiogenin increased primordial follicular apoptosis after co-transplantation of MSC. a Representative images showing primordial follicular apoptosis as determined by AC3 staining of ovarian tissues at post-transplantation day-7 in different groups in shANG blockage experiment. b Quantitative analysis of primordial follicular apoptosis between different groups in shANG blockage experiment. c Representative images showing primordial follicular apoptosis as determined by AC3 staining of ovarian tissues at post-transplantation day-7 in different groups in antibody blockage experiment. d Quantitative analysis of primordial follicular apoptosis between different groups in antibody blockage experiment. Data shown are means ± SEM of triplicates in a representative experiment. MSC, mesenchymal stem cells; ANG, angiogenin; Ab, antibody, shANG, ANG specific short hairpin RNA, shCTRL, control short hairpin RNA, * P < 0.05. Scale bar = 50 μm