| Literature DB >> 29214143 |
Emma Budd1, Shona Waddell1, María C de Andrés1, Richard O C Oreffo1.
Abstract
PURPOSE OF REVIEW: Degenerative skeletal disorders including osteoarthritis (OA) and osteoporosis (OP) are the result of attenuation of tissue regeneration and lead to painful conditions with limited treatment options. Preventative measures to limit the onset of OA and OP remain a significant unmet clinical need. MicroRNAs (miRNAs) are known to be involved in the differentiation of stem cells, and in combination with stem cell therapy could induce skeletal regeneration and potentially prevent OA and OP onset. RECENTEntities:
Keywords: Bone; Cartilage; Osteoarthritis; Osteoporosis; Skeletal stem cell; miRNA
Year: 2017 PMID: 29214143 PMCID: PMC5700219 DOI: 10.1007/s40610-017-0076-4
Source DB: PubMed Journal: Curr Mol Biol Rep ISSN: 2198-6428
MiRNAs identified in chondrogenic differentiation of stem cells, target mRNA, effect of miRNA modulation on chondrogenesis and potential use of identified miRNAs to enhance chondrogenic differentiation
| MiRNA | Expression during chondrogenesis | mRNA targets of miRNA and mRNA function in chondrogenesis | Reported effect of miRNA modulation on chondrogenesis | Potential use of miRNA in inducing chondrogenesis |
|---|---|---|---|---|
| miR-29a | miR-29a was reported to be down-regulated during chondrogenic differentiation of human MSCs (hMSCs) [ | miR-29a was demonstrated to directly target the 3’UTR of | The overexpression of miR-29a in hMSCs, using pre-miR-29a, resulted in inhibition of chondrocyte-specific markers and a suppressive effect on chondrogenic differentiation. [ | Decrease endogenous miR-29a levels with a miR-29a inhibitor. |
| miR-140-3p | miR-140-3p was reported to be up-regulated during chondrogenic differentiation of hMSCs [ | mRNA targets of miR-140-3p remain unknown [ | – | Increase miR-140-3p levels with a miR-140-3p mimic. |
| miR-140-5p | miR-140-5p was reported to be up-regulated during chondrogenesis of hMSCs [ | MiR-140-5p was demonstrated to directly target the 3’UTR of | Inhibition of endogenous miR-140-5p in differentiating hMSCs, using anti-miR-140-5p, resulted in impaired chondrogenesis with an observed down-regulation of SOX9 and aggrecan. Knockdown of RALA resulted in the up-regulation of SOX9 [ | Increase miR-140-5p levels with a miR-140-5p mimic. |
| miR-145 | miR-145 was reported to be down-regulated during chondrogenic differentiation of murine MSCs [ | miR-145 was demonstrated to directly target the 3’UTR of | Overexpression of miR-145 in C3H10T1/2 cells, using pre-miR-146, resulted in the down-regulation of chondrogenic differentiation, evidenced by down-regulation of Sox9 protein and | Decrease endogenous miR-145 levels with a miR-145 inhibitor. |
| miR-146a | miR-146a was reported to be down-regulated in chondrogenic epiphyseal cell populations isolated from the epiphyses of human foetal femora [ | miR-146a was suggested to target positive mediators of chondrogenic signalling, | Overexpression of miR-146a in cells derived from the epiphyses of human foetal femora, using miR-146a mimic, resulted in | Decrease endogenous miR-146a levels with a miR-146a inhibitor. |
| miR-146b | miR-146b was reported to be down-regulated during chondrogenic differentiation of human SSCs [ | miR-146b was suggested to target early chondrogenic transcription factor | Overexpression of miR-146b in human SSCs, using miR-146b mimic, resulted in down-regulation of SOX5 [ | Decrease endogenous miR-146b levels with a miR-146b inhibitor. |
| miR-193b | miR-193b was reported to be up-regulated during chondrogenic differentiation of human adipose-derived stem cells (hADSCs) [ | miR-193b was demonstrated to directly target the 3’UTRs of | Overexpression of miR-193b in ATDC cells, using miR-193b mimic, resulted in the down-regulation of chondrogenic differentiation, evidenced by the down-regulation of early chondrogenic markers | Decrease endogenous miR-193b levels with a miR-193b inhibitor. |
| miR-194 | miR-194 was reported to be down-regulated during chondrogenic differentiation of hADSCs [ | miR-194 was demonstrated to directly target the 3’UTR of | Overexpression of miR-194 in hADSCs, using pre-miR-194, resulted in the down-regulation of chondrogenic differentiation, evidenced by the down-regulation of the chondrogenic markers | Decrease endogenous miR-194 levels with a miR-194 inhibitor. |
| miR-221 | miR-221 was reported to be up-regulated during JNK inhibitor-induced chondrogenic differentiation inhibition in chick limb bud mesenchymal cells [ | miR-221 was demonstrated to directly target | Silencing of miR-211 in hMSCs resulted in the up-regulation of chondrogenic markers such as | Decrease endogenous miR-221 levels with a miR-221 inhibitor. |
| miR-495 | miR-495 was reported to be down-regulated during chondrogenic differentiation of hMSCs [ | miR-495 was demonstrated to directly target the 3’UTR of | Overexpression of miR-495 in hMSCs during chondrogenic differentiation, using miR-495 mimic, resulted in the down-regulation chondrogenic differentiation, evidenced by down-regulation of | Decrease endogenous miR-495 levels with a miR-495 inhibitor. |
MiRNAs identified in osteogenic differentiation of stem cells, target mRNA, effect of miRNA modulation on osteogenesis and potential use of identified miRNAs to enhance osteogenic differentiation
| MiRNA | Expression during osteogenesis | mRNA targets of miRNA and mRNA function in osteogenesis | Reported effect of miRNA modulation on osteogenesis | Potential use of miRNA in inducing osteogenesis |
|---|---|---|---|---|
| miR-23a | miR-23a was reported to be down-regulated during osteogenic differentiation of human BMSCs (hBMSCs) [ | miR-23a was demonstrated to directly target the 3’UTR of | Overexpression of miR-23a, using miR-23a mimic, resulted in the down-regulation of osteogenic differentiation, evidenced by the down-regulation of | Decrease endogenous miR-23a levels with a miR-23a inhibitor. |
| miR-29a | miR-29a was reported to be up-regulated during the osteogenic differentiation of hFOB1.19 cells [ | miR-29a was demonstrated to directly target the 3’UTRs of negative regulators of Wnt signalling: | Inhibition of endogenous miR-29a during osteogenic differentiation of hFOB1.19 cells, using miR-29a inhibitor, resulted in down-regulation of osteogenic differentiation, evidenced by down-regulation of | Increase miR-29a levels with a miR-29a mimic. |
| miR-34a | miR-34a was reported to be up-regulated during osteogenic differentiation of hBMSC; however, miR-34a was found to negatively regulate differentiation [ | miR-34a was observed to target | Inhibition of endogenous miR-34a, using anti-miR-34a, was found to enhance osteogenic differentiation. hBMSCs transfected with anti-miR34a were subcutaneously implanted in mice, with the support of a scaffold. In this in vivo model of bone regeneration, an increase in bone formation was observed in mice which had received miR-34a silenced hBMSCs [ | Decrease endogenous miR-34a levels with a miR-34a inhibitor. |
| miR-138 | miR-138 was reported to be down-regulated during osteogenic differentiation of human MSCs (hMSCs) [ | miR-138 was demonstrated to directly target the 3’UTR of | Inhibition of endogenous miR-138 in hMSCs, using anti-miR-138, resulted in enhanced osteogenic differentiation as measured by an increase in | Decrease endogenous miR-138 levels with a miR-138 inhibitor. |
| miR-146a | miR-146a was reported to be up-regulated in osteogenic diaphyseal cell populations isolated from the diaphysis of human foetal femora [ | miR-146a targets positive regulators of chondrogenesis, | miR-146a overexpression, using miR-146a mimic, resulted in down-regulation of SMAD2 and SMAD3 and an increase in | Increase miR-146a levels with a miR-146a mimic. |
| miR-218 | miR-218 was reported to be up-regulated in MC3T3 cells [ | miR-218 was demonstrated to directly target the 3’UTR of negative regulators of Wnt signalling, | Overexpression of miR-218 in murine BMSCs, using miR-210 lentivirus, resulted in enhanced osteogenic differentiation, evidenced by up-regulation of | Increase miR-218 levels with a miR-218 mimic. |
| miR-346 | miR-346 was reported to be up-regulated during osteogenic differentiation of hBMSCs [ | miR-346 was demonstrated to directly target the 3’UTR of | Overexpression of miR-346 in hBMSCs, using miR-346 mimic, resulted in enhanced osteogenic differentiation, evidenced by up-regulation of | Increase miR-346 levels with a miR-346 mimic. |
| miR-637 | miR-637 was reported to be down-regulated during osteogenic differentiation of hMSCs [ | miR-637 was demonstrated to directly target the 3’UTR of | Overexpression of miR-637 in hMSCs, using a lentiviral- pre-miR-673 vector, down-regulated osteogenic differentiation, evidenced by a decrease in ALP activity and down-regulation of | Decrease endogenous miR-637 levels with a miR-637 inhibitor. |
| miR-2861 | miR-2861 was reported to be up-regulated in BMP2-induced osteogenesis of murine BMSCs [ | miR-2861 was demonstrated to directly target an amino acid coding sequence in | Overexpression of miR-2861 in mice BMSCs, using pre-miR-2861, resulted in enhanced osteogenic differentiation, evidenced by increased ALP activity and osteocalcin secretion and up-regulation of Runx2. An in vivo model reported that injection of anti-miR-2861 in mice resulted in a reduction in femur bone mineral density and reduced osteoblast activity [ | Increase miR-2861 levels with a miR-2861 mimic. |
Fig. 1miRNAs involved in osteogenic and chondrogenic differentiation of SSCs isolated from human bone marrow. Following routine total hip replacement, the femoral head is removed and bone marrow sample donated for isolation of SSCs. From the bone marrow sample, mononuclear cells are isolated by density centrifugation and the cell population enriched for SSCs by magnetic separation. MiRNAs involved in either chondrogenic or osteogenic differentiation are indicated by association with the relevant arrow. MiRNAs in red negatively regulate differentiation and in green positively regulate differentiation