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SP7 gene silencing dampens bone marrow stromal cell hypertrophy, but it also dampens chondrogenesis.
- Source :
-
Journal of tissue engineering [J Tissue Eng] 2023 Jun 21; Vol. 14, pp. 20417314231177136. Date of Electronic Publication: 2023 Jun 21 (Print Publication: 2023). - Publication Year :
- 2023
-
Abstract
- For bone marrow stromal cells (BMSC) to be useful in cartilage repair their propensity for hypertrophic differentiation must be overcome. A single day of TGF-β1 stimulation activates intrinsic signaling cascades in BMSCs which subsequently drives both chondrogenic and hypertrophic differentiation. TGF-β1 stimulation upregulates SP7 , a transcription factor known to contribute to hypertrophic differentiation, and SP7 remains upregulated even if TGF-β1 is subsequently withdrawn from the chondrogenic induction medium. Herein, we stably transduced BMSCs to express an shRNA designed to silence SP7 , and assess the capacity of SP7 silencing to mitigate hypertrophy. SP7 silencing dampened both hypertrophic and chondrogenic differentiation processes, resulting in diminished microtissue size, impaired glycosaminoglycan production and reduced chondrogenic and hypertrophic gene expression. Thus, while hypertrophic features were dampened by SP7 silencing, chondrogenic differentation was also compromised. We further investigated the role of SP7 in monolayer osteogenic and adipogenic cultures, finding that SP7 silencing dampened characteristic mineralization and lipid vacuole formation, respectively. Overall, SP7 silencing affects the trilineage differentiation of BMSCs, but is insufficient to decouple BMSC hypertrophy from chondrogenesis. These data highlight the challenge of promoting BMSC chondrogenesis whilst simultaneously reducing hypertrophy in cartilage tissue engineering strategies.<br />Competing Interests: The author(s) declared the following potential conflicts of interest with respect to the research, authorship, and/or publication of this article: K.F. and M.R.D. co-founded a company, Microwell-mesh.com, to share the culture device described in this paper.<br /> (© The Author(s) 2023.)
Details
- Language :
- English
- ISSN :
- 2041-7314
- Volume :
- 14
- Database :
- MEDLINE
- Journal :
- Journal of tissue engineering
- Publication Type :
- Academic Journal
- Accession number :
- 37362901
- Full Text :
- https://doi.org/10.1177/20417314231177136