| Literature DB >> 30922407 |
Yang Liu1,2, Lu Feng1, Jia Xu1,3, Zhengmeng Yang1, Tianyi Wu1,3, Jiajun Zhang1, Liu Shi1, Dahai Zhu4, Jinfang Zhang5,6, Gang Li7,8.
Abstract
BACKGROUND: Tendons are a crucial component of the musculoskeletal system and responsible for transmission forces derived from muscle to bone. Patients with tendon injuries are often observed with decreased collagen production and matrix degeneration, and healing of tendon injuries remains a challenge as a result of limited understanding of tendon biology. Recent studies highlight the contribution of miR-378a on the regulation gene expression during tendon differentiation.Entities:
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Year: 2019 PMID: 30922407 PMCID: PMC6440014 DOI: 10.1186/s13287-019-1216-y
Source DB: PubMed Journal: Stem Cell Res Ther ISSN: 1757-6512 Impact factor: 6.832
Fig. 1MiR-378a was inhibited during tenogenic differentiation with TGFβ1 and tendon tissue examination in miR-378 Tg mice. a Sirius Red staining of TDSCs under tenogenic differentiation with TGFβ1 (5 ng/ml) on day 1 and day 7 (n = 3; *p < 0.05 by Student’s t test). b The expression of mir-378a was inhibited during tenogenic differentiation on day 1 and day 7. c H&E and Masson Trichrome staining of tendon tissue in WT and Tg mice (scale bar = 200 μm). d Microstructure of tendon tissue in WT and Tg mice was examined by SEM and TEM (scale bar = 1 μm). e Quantification of diameters of tendon fibrils (n = 4). f Increased interfibrillar space between tendon fibrils in Tg mice compared with that in WT mice (n = 4, *p < 0.05 by Student’s t test)
Fig. 2Tendon injury healing was impaired in miR-378a Tg mice. a H&E and immunohistochemistry staining (Collagen type 1 and Thbs4) of tendon defect in WT and Tg mice at week 2. b Increased cell numbers in defect regions of Tg mice at week 2 (n = 6, *, p < 0.05 by Student’s t test). c, d Semi-quantification of Collagen type I and Thbs4 expression area in the defect region at week 2 (n = 6, *, p < 0.05 by Student’s t test). e H&E and immunohistochemistry staining (Collagen type 1 and Thbs4) of tendon defect in WT and Tg mice at week 4. f Increased cell numbers in defect regions of Tg mice at week 4 (n = 6, *, p < 0.05 by Student’s t test). g, h Semi-quantification of the Collagen type 1 and Thbs4 expression area in the defect region at week 4 (n = 6, *p < 0.05 by Student’s t test). Scale bar = 100 μm
Fig. 3Tenogenic differentiation was suppressed in TDSCs derived from miR-378a Tg mice. a Sirius Red staining and OD value measurement at day 2. b Tenogenic marker expression at day 2. c Sirius Red staining and OD value measurement at day 4. d Tenogenic marker expression at day 4. n = 3; *p < 0.05 by Student’s t test; **p < 0.01 by Student’s t test; ***p < 0.001 by Student’s t test
Fig. 4miR-378a mimics suppressed tenogenic differentiation of TDSCs. a Sirius Red staining and OD value of TDSCs transfected with miR-378a. b Tenogenic marker expression in TDSCs transfected with miR-378a. c Sirius Red staining and OD value of TDSCs transfected with anti-miR-378a. d Tenogenic marker expression in TDSCs transfected with anti-miR-378a. n = 3; *p < 0.05 by Student’s t test; **p < 0.01 by Student’s t test; ***p < 0.001 by Student’s t test
Fig. 5TGFβ2 was a novel target of miR-378a in TDSCs. a The predict binding target of TGFβ2 for miR-378a in mouse and human. b The expression of TGFβ2 in TDSCs from WT and Tg by western blotting assay. c The expression of TGFβ2 in TDSCs from WT and Tg mice by ELISA assay. d The expression of TGFβ2 in TDSCs from WT and Tg under TGFβ1 induction by ELISA assay. e MiR-378a was co-transfected with the TGFβ2 luciferase reporter into TDSCs, and the luciferase activity were measured. f, g The expression of TGFβ2 was examined in miR-378a-transfected TDSCs at mRNA and protein levels. n = 3; *p < 0.05 by Student’s t test; **p < 0.01 by Student’s t test