| Literature DB >> 26147426 |
Onju Ham1, Chang Youn Lee2, Ran Kim3, Jihyun Lee4, Sekyung Oh5, Min Young Lee6, Jongmin Kim7, Ki-Chul Hwang8, Lee-So Maeng9, Woochul Chang10.
Abstract
Osteoarthritis (OA) is a chronic, progressive, and irreversible degenerative joint disease. Conventional OA treatments often result in complications such as pain and limited activity. However, transplantation of mesenchymal stem cells (MSCs) has several beneficial effects such as paracrine effects, anti-inflammatory activity, and immunomodulatory capacity. In addition, MSCs can be differentiated into several cell types, including chondrocytes, osteocytes, endothelia, and adipocytes. Thus, transplantation of MSCs is a suggested therapeutic tool for treatment of OA. However, transplanted naïve MSCs can cause problems such as heterogeneous populations including differentiated MSCs and undifferentiated cells. To overcome this problem, new strategies for inducing differentiation of MSCs are needed. One possibility is the application of microRNA (miRNA) and small molecules, which regulate multiple molecular pathways and cellular processes such as differentiation. Here, we provide insight into possible strategies for cartilage regeneration by transplantation of differentiated MSCs to treat OA patients.Entities:
Keywords: differentiation; mesenchymal stem cells; microRNA; osteoarthritis; small molecule
Mesh:
Substances:
Year: 2015 PMID: 26147426 PMCID: PMC4519882 DOI: 10.3390/ijms160714961
Source DB: PubMed Journal: Int J Mol Sci ISSN: 1422-0067 Impact factor: 5.923
Summary of chondrogenic differentiation by miRNA.
| Cell Type | miRNA | Target Gene | Function | References |
|---|---|---|---|---|
| human MSCs | miR-23b | Positive regulation of chondrogenesis | [ | |
| human MSCs | miR-140 | Positive regulation of chondrogenesis | [ | |
| ATDC5 | miR-455 | Positive regulation of chondrogenesis | [ | |
| Mouse MSCs | miR-335 | Positive regulation of chondrogenesis | [ | |
| human MSCs | miR-29a | Negative regulation of chondrogenesis | [ | |
| human MSCs | miR-193b | Negative regulation of chondrogenesis | [ | |
| human MSCs | miR-574 | Negative regulation of chondrogenesis | [ |
Summary of chondrogenic differentiation by small molecules.
| Cell Type | Small Molecule | Target Gene | Function | References |
|---|---|---|---|---|
| human MSCs | H-89 | PKA inhibitor | Positive regulation of chondrogenesis | [ |
| ATDC5 | harmine | Inducer of CCN2 | Positive regulation of chondrogenesis | [ |
| mouse MSCs | BIO | Activation of Wnt signal pathway | Positive regulation of chondrogenesis | [ |
| human MSCs | 5{i,2} | Δ5-2-oxopiperazine core structure | Positive regulation of chondrogenesis | [ |
| MSCs | Smad/p38 | Positive regulation of chondrogenesis | [ | |
| mouse MSCs | Pam3cys | NF-κB | Negative regulation of chondrogenesis | [ |