363
Views
0
CrossRef citations to date
0
Altmetric
Review

Tracking the Migration of Cardially Delivered Therapeutic Stem Cells in vivo: State of the Art

, , , , , , , , & show all
Pages 407-422 | Published online: 13 May 2009

Bibliography

  • Orlic D , KajsturaJ, ChimentiSet al.: Bone marrow cells regenerate infarcted myocardium.Nature410 , 701–705 (2001).
  • Kocher AA , SchusterMD, SzabolcsMJet al.: Neovascularization of ischemic myocardium by human bone-marrow-derived angioblasts prevents cardiomyocyte apoptosis, reduces remodeling and improves cardiac function.Nat. Med.7 , 430–436 (2001).
  • Strauer BE , BrehmM, ZeusTet al.: Repair of infarcted myocardium by autologous intracoronary mononuclear bone marrow cell transplantation in humans.Circulation106 , 1913–1918 (2002).
  • Schächinger V , AssmusB, BrittenMBet al.: Transplantation of progenitor cells and regeneration enhancement in acute myocardial infarction. Final one-year results of the TOPCARE-AMI trial.J. Am. Coll. Cardiol.44 , 1690–1699 (2004).
  • Wollert KC , MeyerGP, LotzJet al.: Intracoronary autologous bone-marrow cell transfer after myocardial infarction: the BOOST randomised controlled clinical trial.Lancet364 , 141–148 (2004).
  • Gyöngyösi M , LangI, DettkeMet al.: Combined delivery approach of bone marrow mononuclear stem cells early and late after myocardial infarction: the MYSTAR prospective, randomized study.Nat. Clin. Pract. Cardiovasc. Med.6 , 70–81 (2009).
  • Beeres SL , BengelFM, BartunekJet al.: Role of imaging in cardiac stem cell therapy.J. Am. Coll. Cardiol.49(11) , 1137–1148 (2007).
  • Daldrup-Link HE , RudeliusM, OostendorpRAJet al.: Targeting of hematopoietic progenitor cells with MR contrast agents.Radiology228 , 760–767 (2003).
  • Giesel FL , StroickM, GriebeMet al.: Gadofluorine M uptake in stem cells as a new magnetic resonance imaging tracking method. An in vitro and in vivo study.Invest. Radiol.41 , 868–873 (2006).
  • Modo M , CashD, MellodewKet al.: Tracking transplanted stem cell migration using bifunctional, contrast agent-enhanced, magnetic resonance imaging.Neuroimage17 , 803–811 (2002).
  • Hoshino K , LyHQ, FrangioniJV, HajjarRJ: In vivo tracking in cardiac stem cell-based therapy.Prog. Cardiovasc. Dis.49(6) , 414–420 (2007).
  • Modo M , BeechJS, MeadeTJet al.: A chronic 1 year assessment of MRI contrast agent-labelled neural stem cell transplants in stroke.Neuroimage (2008) (Epub ahead of print).
  • Bulte JW , KraitchmanDL: Iron oxide MR contrast agents for molecular and cellular imaging.NMR Biomed.17 , 484–499 (2004).
  • Kustermann E , RoellW, BreitbachMet al.: Stem cell implantation in ischemic mouse heart: a high-resolution magnetic resonance imaging investigation.NMR Biomed.18(6) , 362–370 (2005).
  • Penn MS : Cell-based gene therapy for the prevention and treatment of cardiac dysfunction.Nat. Clin. Pract. Cardiovasc. Med.4(Suppl.) , S83–S88 (2007).
  • Kraitchman DL , BulteJWM: Imaging of stem cells using MRI.Basic Res. Cardiol.103 , 105–113 (2008).
  • Shapiro EM , SkrticS, SharerK, HillJM, DunbarCE, KoretskyAP: MRI detection of single particles for cellular imaging.Proc. Natl Acad. Sci. USA101(30) , 10901–10906 (2004).
  • Kraitchman DL , HeldmanAW, AtalarEet al.: In vivo magnetic resonance imaging of mesenchymal stem cells in myocardial infarction.Circulation107 , 2290–2293 (2003).
  • Hill JM , DickAJ, RamanVKet al.: Serial cardiac magnetic resonance imaging of injected mesenchymal stem cells.Circulation108 , 1009–1014 (2003).
  • Amsalem Y , MardorY, FeinbergMSet al.: Iron-oxide labeling and outcome of transplanted mesenchymal stem cells in the infarcted myocardium.Circulation116(Suppl. 11) , I38–I45 (2007).
  • Zhao M , BeauregardDA, LoizouL, DavletovB, BrindleKM: Non-invasive detection of apoptosis using magnetic resonance imaging and a targeted contrast agent.Nat. Med.7 , 1241–1244 (2001).
  • Zhu J , ZhouL, XingWuF: Tracking neural stem cells in patients with brain trauma.N. Engl. J. Med.355(22) , 2376–2378 (2006).
  • de Vries IJ , LesterhuisWJ, BarentszJOet al.: Magnetic resonance tracking of dendritic cells in melanoma patients for monitoring of cellular therapy.Nat. Biotechnol.23(11) , 1407–1413 (2005).
  • Morawski AM , LanzaGA, WicklineSA: Targeted contrast agents for magnetic resonance imaging and ultrasound.Curr. Opin. Biotechnol.16 , 89–92 (2005).
  • Liang HD , BlomleyMJ: The role of ultrasound in molecular imaging.Br. J. Radiol.76(Spec No 2) , S140–S508 (2003).
  • Kofidis T , LeblDR, SwijnenburgRJ, GreeveJM, KlimaU, RobbinsRC: Allopurinol/uricase and ibuprofen enhance engraftment of cardiomyocyte-enriched human embryonic stem cells and improve cardiac function following myocardial injury.Eur. J. Cardiothorac. Surg.29(1) , 50–55 (2006).
  • Bengel FM : Nuclear imaging in cardiac cell therapy.Heart Fail. Rev.11(4) , 325–332 (2006).
  • Frangioni JV , HajjarRJ: In vivo tracking of stem cells for clinical trials in cardiovascular disease.Circulation110(21) , 3378–3383 (2004).
  • Acton PD , ZhouR: Imaging reporter genes for cell tracking with PET and SPECT.Q. J. Nucl. Med. Mol. Imaging49(4) , 349–360 (2005).
  • Gambhir SS , HerschmanHR, CherrySRet al.: Imaging transgene expression with radionuclide imaging technologies.Neoplasia2 , 118–1388 (2000).
  • Ray P , WuAM, GambhirSS: Optical bioluminescence and positron emission tomography imaging of a novel fusion reporter gene in tumor xenografts of living mice.Cancer Res.63 , 1160–1165 (2003).
  • Miyagawa M , AntonM, HaubnerRet al.: PET of cardiac transgene expression: comparison of 2 approaches based on herpesviral thymidine kinase reporter gene.J. Nucl. Med.45 , 1917–1923 (2004).
  • Gyöngyösi M , BlancoJ, MarianTet al.: Serial non-invasive in vivo positron emmission tomographyc (PET) tracking of percutaneously intramyocardially injected autologous porcine mesenchymal stem cells modified for transgene reporter gene expression.Circ. Cardiovascular Imaging1 , 94–103 (2008).
  • Wu JC : Molecular imaging. Antidote to cardiac stem cell controversy.J. Am. Coll. Cardiol.52 , 1161–1164 (2008).
  • Krishnan M , ParkJM, CaoFet al.: Effects of epigenetic modulation on reporter gene expression: implications for stem cell imaging.Faseb J.20(1) , 106–108 (2006).
  • Cao F , LinS, XieXet al.: In vivo visualization of embryonic stem cell survival, proliferation, and migration after cardiac delivery.Circulation113 , 1005–1014 (2006).
  • Wu JC , ChenIY, SundaresanGet al.: Molecular imaging of cardiac cell transplantation in living animals using optical bioluminescence and positron emission tomography.Circulation108 , 1302–1305 (2003).
  • Barton KN , TysonD, StrickerHet al.: GENIS: gene expression of sodium iodide symporter for noninvasive imaging of gene therapy vectors and quantification of gene expression in vivo.Mol. Ther.8(3) , 508–518 (2003).
  • Groot-Wassink T , AboagyeEO, WangY, LemoineNR, ReaderAJ, VassauxG: Quantitative imaging of Na/I symporter transgene expression using positron emission tomography in the living animal.Mol. Ther.9(3) , 436–442 (2004).
  • Niu G , GautAW, PontoLLet al.: Multimodality noninvasive imaging of gene transfer using the human sodium iodide symporter.J. Nucl. Med.45(3) , 445–449 (2004).
  • Swijnenburg RJ , van der Bogt KEA, Sheikh AY, Cao F, Wu JC: Clinical hurdles for the transplantation of cardiomyocytes derived from human embryonic stem cells: role of molecular imaging. Curr. Opin. Biotechnol.18 , 38–45 (2007).
  • Carr CA , StuckeyDJ, TattonLet al.: Bone marrow-derived stromal cells home to and remain in the infarcted rat heart but fail to improve function: an in vivo cine-MRI study.Am. J. Physiol. Heart Circ. Physiol.295 , 533–542 (2008).
  • Guo C , Haider HKh, Wang C et al.: Myoblast transplantation for cardiac repair: from automyoblast to allomyoblast transplantation. Ann. Thorac. Surg.86 , 1841–1848 (2008).
  • Doyle B , KempBJ, ChareonthaitaweePet al.: Dynamic tracking during intracoronary injection of 18F-FDG-labelled progenitor cell therapy for acute myocardial infarction.J. Nucl. Med.48 , 1708–1714 (2007).
  • Barbash IM , ChouraquiP, BaronJet al.: Systemic delivery of bone marrow-derived mesenchymal stem cells to the infarcted myocardium: feasibility, cell migration, and body distribution.Circulation108(7) , 863–868 (2003).
  • Aicher A , BrennerW, ZuhayraMet al.: Assessment of the tissue distribution of transplanted human endothelial progenitor cells by radioactive labeling.Circulation107(16) , 2134–2139 (2003).
  • Chin BB , NakamotoY, BulteJW, PittengerMF, WahlR, KraitchmanDL: 111In oxine labelled mesenchymal stem cell SPECT after intravenous administration in myocardial infarction.Nucl. Med. Commun.24(11) , 1149–1154 (2003).
  • Rodrigquez-Porcel M , BrintonTJ, ChenIYet al.: Reporter gene imaging following percutaneous delivery in swine model toward clinical applications.J. Am. Coll. Cardiol.51 , 595–597 (2008).
  • Bengel FM , AntonM, RichterTet al.: Noninvasive imaging of transgene expression by use of positron emission tomography in a pig model of myocardial gene transfer.Circulation108 , 2127–2133 (2003).
  • Hofmann M , WollertKC, MeyerGPet al.: Monitoring of bone marrow cell homing into the infarcted human myocardium.Circulation111(17) , 2198–2202 (2005).
  • Penicka M , WidimskyP, KobylkaP, KozakT, LangO: Images in cardiovascular medicine. Early tissue distribution of bone marrow mononuclear cells after transcoronary transplantation in a patient with acute myocardial infarction.Circulation112(4) , e63–e65 (2005).
  • Kang WJ , KangHJ, KimHS, ChungJK, LeeMC, LeeDS: Tissue distribution of 18F-FDG-labelled peripheral hematopoietic stem cells after intracoronary administration in patients with myocardial infarction.J. Nucl. Med.47 , 1295–1301 (2006).
  • Ebert SN , TaylorDG, NguyenHLet al.: Noninvasive tracking of cardiac embryonic stem cells in vivo using magnetic resonance imaging techniques.Stem Cells25 , 2936–2944 (2007).
  • Mani V , AdlerE, Briley-SaeboKCet al.: Serial in vivo positive contrast MRI of iron oxide-labeled embryonic stem cell-derived cardiac precursor cells in a mouse model of myocardial infarction.Magn. Reson. Med.60 , 73–81 (2008).
  • Kraitchman DL , TatsumiM, GilsonWDet al.: Dynamic imaging of allogeneic mesenchymal stem cells trafficking to myocardial infarction.Circulation112 , 1451–1461 (2005).
  • Brenner W , AicherA, EckeyTet al.: 111In-labeled CD34+ hematopoietic progenitor cells in a rat myocardial infarction model.J. Nucl. Med.45 , 512–518 (2004).
  • Hou D , YoussefEAS, BrintonTJet al.: Radiolabeled cell distribution after intramyocardial, intracoronary, and intertitial retrograde coronary venous delivery: implications for current clinical trials.Circulation112 , I150–I156 (2005).
  • Freyman T , PolinG, OsmanHet al.: A quantitative, randomized study evaluating three methods of mesenchymal stem cell delivery following myocardial infarction.Eur. Heart J.27 , 1114–1122 (2006).

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.