Fol. Biol. 2021, 67, 118-125
https://doi.org/10.14712/fb2021067030118
Insulin-Like Growth Factor Binding Protein 5: an Important Regulator of Early Osteogenic Differentiation of hMSCs
References
1. 2008) Multifunctional roles of insulin-like growth factor binding protein 5 in breast cancer. Breast Cancer Res. 10, 212.
< , M., Feng, Y., Wang, H., Chen, K., Hu, L., Sahin, A., Krishnamurthy, S., Ozer, A., Hao, X., Zhang, W. (https://doi.org/10.1186/bcr2116>
2. 2001) IGF-binding protein-5 stimulates osteoblast activity and bone accretion in ovariectomized mice. Am. J. Physiol. Endocrinol. Metab. 281, E283-E288.
< , D. L. (https://doi.org/10.1152/ajpendo.2001.281.2.E283>
3. 2005) Mesenchymal stem cells for bone repair: preclinical studies and potential orthopedic applications. Foot Ankle Clin. 10, 651-665.
< , T. L. (https://doi.org/10.1016/j.fcl.2005.06.004>
4. 2001) Chondrogenic differentiation of mesenchymal stem cells from bone marrow: differentiation-dependent gene expression of matrix components. Exp. Cell Res. 268, 189-200.
< , F., Boynton, R. E., Liu, B., Murphy, J. M. (https://doi.org/10.1006/excr.2001.5278>
5. 2012) The transcriptional profile of mesenchymal stem cell populations in primary osteoporosis is distinct and shows overexpression of osteogenic inhibitors. PloS One 7, e45142.
< , P., Schilling, T., Klein-Hitpass, L., Frey, S. P., Seefried, L., Raaijmakers, N., Krug, M., Regensburger, M., Zeck, S., Schinke, T., Amling, M., Ebert, R., Jakob, F. (https://doi.org/10.1371/journal.pone.0045142>
6. 2017) Serum from postmenopausal women treated with a by-product of olive-oil extraction process stimulates osteoblastogenesis and inhibits adipogenesis in human mesenchymal stem-cells (MSC). Exp. Gerontol. 90, 71-78.
< , A., Túnez-Fiñana, I., Mata-Granados, J. M., Ruiz-Méndez, M. V., Dorado, G., Romero-Sánchez, M. C., Navarro-Valverde, C., Quesada-Gómez, J. M. (https://doi.org/10.1016/j.exger.2017.01.024>
7. 2019) Upregulation of MIIP regulates human breast cancer proliferation, invasion and migration by mediated by IGFBP2. Pathol. Res. Pract. 215, 152440.
< , Y., Wang, P. (https://doi.org/10.1016/j.prp.2019.152440>
8. 2004) Overexpression of insulin-like growth factor binding protein-5 decreases osteoblastic function in vitro. Bone 35, 1256-1262.
< , D., Pereira, R. M., Canalis, E. (https://doi.org/10.1016/j.bone.2004.08.011>
9. 2017) Local application of IGFBP5 protein enhanced periodontal tissue regeneration via increasing the migration, cell proliferation and osteo/ dentinogenic differentiation of mesenchymal stem cells in an inflammatory niche. Stem Cell Res. Ther. 8, 210.
< , N., Zhang, F., Li, G., Zhang, X., Lin, X., Yang, H., Wang, L., Cao, Y., Du, J., Fan, Z. (https://doi.org/10.1186/s13287-017-0663-6>
10. 2007) Stem cells from adipose tissue allow challenging new concepts for regenerative medicine. Tissue Eng. 13, 1799-1808.
< , M. N., Knippenberg, M., Klein-Nulend, J., Wuisman, P. I. (https://doi.org/10.1089/ten.2006.0165>
11. 2009) Insulin-like growth factor binding protein-5 influences pancreatic cancer cell growth. World J. Gastroenterol. 15, 3355-3366.
< , S. K., Haun, R. S. (https://doi.org/10.3748/wjg.15.3355>
12. 2016) Tonsil-derived mesenchymal stem cells promote bone mineralization and reduce marrow and visceral adiposity in a mouse model of senile osteoporosis. Stem Cells Dev. 25, 1161-1171.
< , Y. H., Park, M., Cho, K. A., Kim, B. K., Ryu, J. H., Woo, S. Y., Ryu, K. H. (https://doi.org/10.1089/scd.2016.0063>
13. 2014) Calcium-sensing receptor-mediated osteogenic and early-stage neurogenic differentiation in umbilical cord matrix mesenchymal stem cells from a large animal model. PloS One 9, e111533.
< , N. A., Reshkin, S. J., Ciani, E., Dell’Aquila, M. E. (https://doi.org/10.1371/journal.pone.0111533>
14. 2008) Insulin-like growth factorbinding protein-5 inhibits osteoblast differentiation and skeletal growth by blocking insulin-like growth factor actions. Mol. Endocrinol. 22, 1238-1250.
< , A., Rotwein, P. (https://doi.org/10.1210/me.2008-0001>
15. 2020) Ruminal epithelial insulin-like growth factor-binding proteins 2, 3, and 6 are associated with epithelial cell proliferation. Anim. Sci. J. 91, e13422.
< , K., Suzuki, Y., Roh, S. (https://doi.org/10.1111/asj.13422>
16. 2015) Human mesenchymal stem cells retain multilineage differentiation capacity including neural marker expression after extended in vitro expansion. PloS One 10, e0137255.
< , R. K., Camilleri, E. T., Oikari, L. E., Yu, C., Cool, S. M., van Wijnen, A. J., Griffiths, L. R., Haupt, L. M. (https://doi.org/10.1371/journal.pone.0137255>
17. 2013) Mass production of early-stage bone-marrow-derived mesenchymal stem cells of rat using gelatin-coated matrix. Biomed. Res. Int. 2013, 347618.
, Y. H., Yun, J. I., Han, N. R., Park, H. J., Ahn, J. Y., Kim, C., Choi, J. H., Lee, E., Lim, J. M., Lee, S. T. (
18. 1999) Multilineage potential of adult human mesenchymal stem cells. Science 284, 143-147.
< , M. F., Mackay, A. M., Beck, S. C., Jaiswal, R. K., Douglas, R., Mosca, J. D., Moorman, M. A., Simonetti, D. W., Craig, S., Marshak, D. R. (https://doi.org/10.1126/science.284.5411.143>
19. 2019) Investigation of insulin-like growth factors/ insulin-like growth factor binding proteins regulation in metabolic syndrome patients. BMC Res. Notes 12, 653.
< , S., Barmaki, H., Rastegary, M., Lotfi, F., Nabi Afjadi, M. (https://doi.org/10.1186/s13104-019-4492-9>
20. 2012) Foreword: interactions between bone and adipose tissue and metabolism. Bone 50, 429.
< , C., Karsenty, G., MacDougald, O. (https://doi.org/10.1016/j.bone.2011.10.006>
21. 2001) Transforming growth factor-β inhibition of insulin-like growth factorbinding protein-5 synthesis in skeletal muscle cells involves a c-Jun N-terminal kinase-dependent pathway. J. Biol. Chem. 276, 46961-46967.
< , S., Lallemand, F., Montarras, D., Pinset, C., Mazars, A., Prunier, C., Atfi, A., Dubois, C. (https://doi.org/10.1074/jbc.M104440200>
22. 2008) Comparative transcriptomics of human multipotent stem cells during adipogenesis and osteoblastogenesis. BMC Genomics 9, 340.
< , M., Elabd, C., Zaragosi, L. E., Chiellini, C., Hackl, H., Sanchez-Cabo, F., Yadav, S., Duszka, K., Friedl, G., Papak, C., Prokesch, A., Windhager, R., Ailhaud, G., Dani, C., Amri, E. Z., Trajanoski, Z. (https://doi.org/10.1186/1471-2164-9-340>
23. 2015) Mechanical regulation of mesenchymal stem cell differentiation. J. Anat. 227, 717-731.
< , A. J., Kelly, D. J. (https://doi.org/10.1111/joa.12243>
24. 2020) Estrogen stimulation of pleiotrophin enhances osteoblast differentiation and maintains bone mass in IGFBP-2 null mice. Endocrinology 161, bqz007.
< , G., Demambro, V. E., D’Costa, S., Xia, S. K., Cox, Z. C., Rosen, C. J., Clemmons, D. R. (https://doi.org/10.1210/endocr/bqz007>
25. 2009) The pro-fibrotic factor IGFBP-5 induces lung fibroblast and mononuclear cell migration. Am. J. Respir. Cell Mol. Biol. 41, 179-188.
< , H., Yamaguchi, Y., Feghali-Bostwick, C. A. (https://doi.org/10.1165/rcmb.2008-0211OC>
26. 2016) MiR-27a is essential for the shift from osteogenic differentiation to adipogenic differentiation of mesenchymal stem cells in postmenopausal osteoporosis. Cell. Physiol. Biochem. 39, 253-265.
< , L., Pan, L., Chen, L., Gu, W., Chen, J. (https://doi.org/10.1159/000445621>
27. 2016) IGFBP5 enhances osteogenic differentiation potential of periodontal ligament stem cells and Wharton’s jelly umbilical cord stem cells, via the JNK and MEK/Erk signalling pathways. Cell Prolif. 49, 618-627.
< , Y., Jia, Z., Diao, S., Lin, X., Lian, X., Wang, L., Dong, R., Liu, D., Fan, Z. (https://doi.org/10.1111/cpr.12284>