283
Views
11
CrossRef citations to date
0
Altmetric
Original Articles

SDF-1 preconditioned HPC scaffolds mobilize cartilage-derived progenitors and stimulate meniscal fibrocartilage repair in human explant tissue culture

, , , , , & show all
Pages 338-348 | Received 14 Aug 2019, Accepted 01 Nov 2019, Published online: 19 Nov 2019

References

  • Arnoczky SP, Warren RF. Microvasculature of the human meniscus. Am J Sports Med. 1982 March–April;10(2):90–95. doi:10.1177/036354658201000205.
  • Day B, Mackenzie WG, Shim SS, Leung G. The vascular and nerve supply of the human meniscus. Arthroscopy. 1985;1(1):58–62.doi:10.1016/S0749-8063(85)80080-3.
  • Bochynska AI, Hannink G, Grijpma DW, Buma P. Tissue adhesives for meniscus tear repair: an overview of current advances and prospects for future clinical solutions. J Mater Sci Mater Med. 2016 May;27(5):85,016–5694-5. Epub 2016 Mar 12. doi:10.1007/s10856-016-5694-5.
  • Korpershoek JV, de Windt TS, Hagmeijer MH, Vonk LA, Saris DB. Cell-based meniscus repair and regeneration: at the brink of clinical translation?: A systematic review of preclinical studies. Orthop J Sports Med. 2017 Feb 21;5(2):2325967117690131. doi: 10.1177/2325967117690131.
  • Bilgen B, Jayasuriya CT, Owens BD. Current concepts in meniscus tissue engineering and repair. Adv Healthc Mater. 2018 Mar 5;7(11):e1701407. doi:10.1002/adhm.201701407.
  • Jayasuriya CT, Twomey-Kozak J, Newberry J, Desai S, Feltman P, Franco JR, Li N, Terek R, Ehrlich MG, Owens BD. Human cartilage-derived progenitors resist terminal differentiation and require CXCR4 activation to successfully bridge meniscus tissue tears. Stem Cells. 2018 Oct 24;37(1):102–114. doi:10.1002/stem.2923.
  • Tarafder S, Gulko J, Sim KH, Yang J, Cook JL, Lee CH. Engineered healing of avascular meniscus tears by stem cell recruitment. Sci Rep. 2018 May 25;8(1):8150,018–26545-8. doi: 10.1038/s41598-018-26545-8.
  • Sasaki H, Rothrauff BB, Alexander PG, Lin H, Gottardi R, Fu FH, Tuan RS. In vitro repair of meniscal radial tear with hydrogels seeded with adipose stem cells and TGF-β3. Am J Sports Med. 2018 Aug;46(10):2402–2413. doi:10.1177/0363546518782973.
  • Makris EA, Hadidi P, Athanasiou KA. The knee meniscus: structure-function, pathophysiology, current repair techniques, and prospects for regeneration. Biomaterials. 2011 Oct;32(30):7411–7431. doi:10.1016/j.biomaterials.2011.06.037.
  • Fox AJ, Bedi A, Rodeo SA. The basic science of human knee menisci: structure, composition, and function. Sports Health. 2012 Jul;4(4):340–351. doi:10.1177/1941738111429419.
  • Pereira H, Frias AM, Oliveira JM, Espregueira-Mendes J, Reis RL. Tissue engineering and regenerative medicine strategies in meniscus lesions. Arthroscopy. 2011 Dec;27(12):1706–1719. doi:10.1016/j.arthro.2011.08.283.
  • Muller FA, Muller L, Hofmann I, Greil P, Wenzel MM, Staudenmaier R. Cellulose-based scaffold materials for cartilage tissue engineering. Biomaterials. 2006 Jul;27(21):3955–3963. doi:10.1016/j.biomaterials.2006.02.031.
  • Svensson A, Nicklasson E, Harrah T, Panilaitis B, Kaplan DL, Brittberg M, Gatenholm P. Bacterial cellulose as a potential scaffold for tissue engineering of cartilage. Biomaterials. 2005 Feb;26(4):419–431. doi:10.1016/j.biomaterials.2004.02.049.
  • Williams R, Khan IM, Richardson K, Nelson L, McCarthy HE, Analbelsi T, Singhrao SK, Dowthwaite GP, Jones RE, Baird DM, Lewis H. Identification and clonal characterisation of a progenitor cell sub-population in normal human articular cartilage. PLoS One. 2010 Oct 14;5(10):e13246. doi:10.1371/journal.pone.0013246.
  • McCarthy HE, Bara JJ, Brakspear K, Singhrao SK, Archer CW. The comparison of equine articular cartilage progenitor cells and bone marrow-derived stromal cells as potential cell sources for cartilage repair in the horse. Vet J. 2012 Jun;192(3):345–351. doi:10.1016/j.tvjl.2011.08.036.
  • Walker GD, Fischer M, Gannon J, Thompson RC Jr, Oegema TR Jr. Expression of type-X collagen in osteoarthritis. J Orthop Res. 1995 Jan;13(1):4–12. doi:10.1002/(ISSN)1554-527X.
  • Higashikawa A, Saito T, Ikeda T, Kamekura S, Kawamura N, Kan A, Oshima Y, Ohba S, Ogata N, Takeshita K, Nakamura K. Identification of the core element responsive to runt-related transcription factor 2 in the promoter of human type X collagen gene. Arthritis Rheum. 2009 Jan;60(1):166–178. doi:10.1002/art.v60:1.
  • Bertrand J, Cromme C, Umlauf D, Frank S, Pap T. Molecular mechanisms of cartilage remodelling in osteoarthritis. Int J Biochem Cell Biol. 2010 Oct;42(10):1594–1601. doi:10.1016/j.biocel.2010.06.022.
  • Majewski M, Susanne H, Klaus S. Epidemiology of athletic knee injuries: A 10-year study. Knee. 2006 Jun;13(3):184–188. doi:10.1016/j.knee.2006.01.005.
  • Clayton RA, Court-Brown CM. The epidemiology of musculoskeletal tendinous and ligamentous injuries. Injury. 2008 Dec;39(12):1338–1344. doi:10.1016/j.injury.2008.06.021.
  • Shen W, Chen J, Zhu T, Chen L, Zhang W, Fang Z, Heng BC, Yin Z, Chen X, Ji J, Chen W. Intra-articular injection of human meniscus stem/progenitor cells promotes meniscus regeneration and ameliorates osteoarthritis through stromal cell-derived factor-1/CXCR4-mediated homing. Stem Cells Transl Med. 2014 Mar;3(3):387–394. doi:10.5966/sctm.2012-0170.
  • Liu H, Xue W, Ge G, Luo X, Li Y, Xiang H, Ding X, Tian P, Tian X. Hypoxic preconditioning advances CXCR4 and CXCR7 expression by activating HIF-1alpha in MSCs. Biochem Biophys Res Commun. 2010 Oct 29;401(4):509–515. doi: 10.1016/j.bbrc.2010.09.076.
  • Kitaori T, Ito H, Schwarz EM, Tsutsumi R, Yoshitomi H, Oishi S, Nakano M, Fujii N, Nagasawa T, Nakamura T. Stromal cell-derived factor 1/CXCR4 signaling is critical for the recruitment of mesenchymal stem cells to the fracture site during skeletal repair in a mouse model. Arthritis Rheum. 2009 Mar;60(3):813–823. doi:10.1002/art.v60:3.
  • Lataillade JJ, Clay D, Dupuy C, Rigal S, Jasmin C, Bourin P, Le Bousse-Kerdiles MC. Chemokine SDF-1 enhances circulating CD34(+) cell proliferation in synergy with cytokines: possible role in progenitor survival. Blood. 2000 Feb 1;95(3):756–768. doi: 10.1182/blood.V95.3.756.
  • Cheng Z, Ou L, Zhou X, Li F, Jia X, Zhang Y, Liu X, Li Y, Ward CA, Melo LG, Kong D. Targeted migration of mesenchymal stem cells modified with CXCR4 gene to infarcted myocardium improves cardiac performance. Mol Ther. 2008 Mar;16(3):571–579. doi:10.1038/sj.mt.6300374.
  • Zhang D, Fan GC, Zhou X, Zhao T, Pasha Z, Xu M, Zhu Y, Ashraf M, Wang Y. Over-expression of CXCR4 on mesenchymal stem cells augments myoangiogenesis in the infarcted myocardium. J Mol Cell Cardiol. 2008 Feb;44(2):281–292. doi:10.1016/j.yjmcc.2007.11.010.
  • Kim M, Kim DI, Kim EK, Kim CW. CXCR4 overexpression in human adipose tissue-derived stem cells improves homing and engraftment in an animal limb ischemia model. Cell Transplant. 2017 Feb 16;26(2):191–204. doi: 10.3727/096368916X692708.
  • Wei L, Kanbe K, Lee M, Wei X, Pei M, Sun X, Terek R, Chen Q. Stimulation of chondrocyte hypertrophy by chemokine stromal cell-derived factor 1 in the chondro-osseous junction during endochondral bone formation. Dev Biol. 2010 May 1;341(1):236–245. doi: 10.1016/j.ydbio.2010.02.033.
  • Chiu YC, Yang RS, Hsieh KH, Fong YC, Way TD, Lee TS, Wu HC, Fu WM, Tang CH. Stromal cell-derived factor-1 induces matrix metalloprotease-13 expression in human chondrocytes. Mol Pharmacol. 2007 Sep;72(3):695–703. doi:10.1124/mol.107.036541.
  • Xu W, Xu R, Li Z, Wang Y, Hu R. Hypoxia changes chemotaxis behaviour of mesenchymal stem cells via HIF-1alpha signalling. J Cell Mol Med. 2019 Mar;23(3):1899–1907. doi:10.1111/jcmm.14091.
  • Schioppa T, Uranchimeg B, Saccani A, Biswas SK, Doni A, Rapisarda A, Bernasconi S, Saccani S, Nebuloni M, Vago L, Mantovani A. Regulation of the chemokine receptor CXCR4 by hypoxia. J Exp Med. 2003 Nov 3;198(9):1391–1402. doi:10.1084/jem.20030267.
  • Liu H, Liu S, Li Y, Wang X, Xue W, Ge G, Luo X. The role of SDF-1-CXCR4/CXCR7 axis in the therapeutic effects of hypoxia-preconditioned mesenchymal stem cells for renal ischemia/reperfusion injury. PLoS One. 2012;7(4):e34608.doi:10.1371/journal.pone.0034608.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.