In vivo tracking of 111In-labeled bone marrow mesenchymal stem cells in acute brain trauma model

被引:35
作者
Yoon, Joon-Kee [2 ,3 ]
Park, Bok-Nam [2 ]
Shim, Woo-Young [1 ,3 ,4 ]
Shin, Jin Young [3 ]
Lee, Gwang [3 ,4 ,5 ]
Ahn, Young Hwan [1 ,3 ]
机构
[1] Ajou Univ, Sch Med, Dept Neurosurg, Suwon 442749, South Korea
[2] Ajou Univ, Sch Med, Dept Nucl Med & Mol Imaging, Suwon 442749, South Korea
[3] Ajou Univ, Sch Med, Inst Neuroregenerat & Stem Cell Res, Suwon 442749, South Korea
[4] Ajou Univ, Dept Mol Sci & Technol, Suwon 442749, South Korea
[5] Ajou Univ, Sch Med, Brain Dis Res Ctr, Suwon 442749, South Korea
关键词
In-111-tropolone; Mesenchymal stem cells; Cell tracking; Traumatic brain; Radiotoxicity; MYOCARDIAL-INFARCTION; PROGENITOR CELLS; TISSUE DISTRIBUTION; ADULT-RAT; DIFFERENTIATION; IN-111; SPECT; DELIVERY; THERAPY; TRANSPLANTATION;
D O I
10.1016/j.nucmedbio.2009.12.001
中图分类号
R8 [特种医学]; R445 [影像诊断学];
学科分类号
1002 ; 100207 ; 1009 ;
摘要
Introduction: This study was to evaluate the in vivo distribution of intravenously transplanted bone marrow-derived mesenchymal stem cells (BMSCs) in an acute brain trauma model by In-111-tropolone labeling. Methods: Rat BMSCs were labeled with 37 MBq In-111-tropolone. Their labeling efficiency and in vitro retention rate were measured. The viability and proliferation of labeled BMSCs were evaluated for 14 days after labeling. The biodistribution of In-111-labeled BMSCs in trauma models was compared with those of sham-operated rats and normal rats on gamma camera images. The migration of In-111-BMSCs to the traumatic brain was evaluated using confocal microscope. Results: The labeling efficiency of In-111-BMSCs was 66+/-5%, and their retention rate was 85.3% at 1 h after labeling. There was no difference in the number of viable cells between In-111-BMSCs and controls at 48 h after labeling. However, the proliferation of In-111-BMSCs was inhibited after the third day of labeling, and it did not reach confluency. On gamma camera images, most of the In-111-BMSCs uptake was observed in the liver and spleen at the second day of injection. The brain uptake of In-111-BMSCs was detected prominently in trauma models (1.4%) than in sham-operated (0.5%) or normal rats (0.3%). Radiolabeled BMSCs were observed at the traumatic brain on the con focal microscope as they have a homing capacity, although its proliferation capacity was suppressed. Conclusion: Although growth inhibition by In-111-labeling need to be evaluated further prior to use in humans, In-111-labeled BMSCs are useful for the tracking of intravenously transplanted mesenchymal stem cells in brain disease models. (C) 2010 Elsevier Inc. All rights reserved.
引用
收藏
页码:381 / 388
页数:8
相关论文
共 36 条
  • [11] NEUTROPHIL LABELING WITH IN-111 - TROPOLONE VS OXINE
    GUNTER, KP
    LUKENS, JN
    CLANTON, JA
    MORRIS, PJ
    JANCO, RL
    ENGLISH, D
    [J]. RADIOLOGY, 1983, 149 (02) : 563 - 566
  • [12] Monitoring of bone marrow cell homing into the infarcted human myocardium
    Hofmann, M
    Wollert, KC
    Meyer, GP
    Menke, A
    Arseniev, L
    Hertenstein, B
    Ganser, A
    Knapp, WH
    Drexler, H
    [J]. CIRCULATION, 2005, 111 (17) : 2198 - 2202
  • [13] Intravenous infusion of immortalized human mesenchymal stem cells protects against injury in a cerebral ischemia model in adult rat
    Honma, T.
    Honmou, O.
    Iihoshi, S.
    Harada, K.
    Houkin, K.
    Hamada, H.
    Kocsis, J. D.
    [J]. EXPERIMENTAL NEUROLOGY, 2006, 199 (01) : 56 - 66
  • [14] Radiolabeling rhesus monkey CD34+ hematopoietic and mesenchymal stem cells with 64Cu-pyruvaldehyde-bis(N4-methylthiosemicarbazone) for microPET imaging
    Huang, Joanne
    Lee, C. Chang I.
    Sutcliffe, Julie L.
    Cherry, Simon R.
    Tarantal, Alice F.
    [J]. MOLECULAR IMAGING, 2008, 7 (01): : 1 - 11
  • [15] Determining the minimum number of detectable cardiac-transplanted 111In-tropolone-labelled bone-marrow-derived mesenchymal stem cells by SPECT
    Jin, Y
    Kong, HF
    Stodilka, RZ
    Wells, RG
    Zabel, P
    Merrifield, PA
    Sykes, J
    Prato, FS
    [J]. PHYSICS IN MEDICINE AND BIOLOGY, 2005, 50 (19) : 4445 - 4455
  • [16] Kang WJ, 2006, J NUCL MED, V47, P1295
  • [17] Mesenchymal Stem Cell Homing: The Devil Is in the Details
    Karp, Jeffrey M.
    Teol, Grace Sock Leng
    [J]. CELL STEM CELL, 2009, 4 (03) : 206 - 216
  • [18] Synthesis and characterization of porous carbon nanofibers with hollow cores through the thermal treatment of electrospun copolymeric nanofiber webs
    Kim, Chan
    Jeong, Young Il
    Ngoc, Bui Thi Nhu
    Yang, Kap Seung
    Kojima, Masahito
    Kim, Yoong Ahm
    Endo, Morinobu
    Lee, Jae-Wook
    [J]. SMALL, 2007, 3 (01) : 91 - 95
  • [19] Dynamic imaging of allogeneic mesenchymal stem cells trafficking to myocardial infarction
    Kraitchman, DL
    Tatsumi, M
    Gilson, WD
    Ishimori, T
    Kedziorek, D
    Walczak, P
    Segars, P
    Chen, HH
    Fritzges, D
    Izbudak, I
    Young, RG
    Marcelino, M
    Pittenger, MF
    Solaiyappan, M
    Boston, RC
    Tsui, BMW
    Wahl, RL
    Bulte, JWM
    [J]. CIRCULATION, 2005, 112 (10) : 1451 - 1461
  • [20] The SPECT imaging shows the accumulation of neural progenitor cells into internal organs after systemic administration in middle cerebral artery occlusion rats
    Lappalainen, Riikka S.
    Narkilahti, Susanna
    Huhtala, Tuulia
    Liimatainen, Timo
    Suuronen, Tiina
    Narvanen, Ale
    Suuronen, Riitta
    Hovatta, Outi
    Jolkkonen, Jukka
    [J]. NEUROSCIENCE LETTERS, 2008, 440 (03) : 246 - 250