Autologous adipose tissue-derived stromal cells for treatment of spinal cord injury

被引:109
|
作者
Kang, Soo-Kyung
Shin, Myung-Joo
Jung, Jin Sup
Kim, Yong Geun
Kim, Cheul-Hong
机构
[1] Pusan Natl Univ, Dept Physiol, Sch Med, Pusan 602739, South Korea
[2] Pusan Natl Univ, Dept Anesthesiol, Coll Med, Pusan 602739, South Korea
关键词
D O I
10.1089/scd.2006.15.583
中图分类号
Q813 [细胞工程];
学科分类号
摘要
Isolated rat adipose tissue-derived stromal cells (rATSCs)contain pluripotent cells that can be differentiated into a variety of cell lineages, including neural cells. Recent work has shown that ATSCs can make neurosphere-like clumps and differentiate into neuron-like cells expressing neuronal markers, but their therapeutic effect is unclear. Here we report that intravenous infusion of oligodendrocyte precursor cells (OPCs) derived from rATSC autograft cells sources improve motor function in rat models of spinal cord injury (SCI). After 4-5 weeks, transplanted rATSC-OPC cells survived and migrated into the injured region of SCI very efficiently (30-35%) and migrated cells were partially differentiated into neurons and oligodendrocyte. Also, we found some of the engrafted OPCs migrated and integrated in the kidney, brain, lung, and liver through the intravenous system. Behavioral analysis revealed the locomotor functions of OPC-autografted SCI rats were significanlty restored. Efficient migration of intravenously engrafted rATSC-OPCs cells into SCI lesion suggests that SCI-induced chemotaxic factors facilitate migration of rATSC-OPCs. Here, we verified that engrafted rATSCs and SCI-induced chemotaxic factors indeed play an important role in proliferation, migration, and differentiation of endogeneous spinal cord-derived neural progenitor cells in the injured region. In transplantation paradigms, the interaction between engrafted rATSC-OPCs and endogeneous spinal cord-derived neuronal progenitor cells will be important in promoting healing through fate decisions, resulting in coordinated induction of cell migration and differentiation.
引用
收藏
页码:583 / 594
页数:12
相关论文
共 50 条
  • [21] Laser-activated autologous adipose tissue-derived stromal vascular fraction restores spinal cord architecture and function in multiple sclerosis cat model
    Farid, Mariam F.
    Abouelela, Yara S.
    Yasin, Noha A. E.
    Al-Mokaddem, Asmaa K.
    Prince, Abdelbary
    Ibrahim, Marwa A.
    Rizk, Hamdy
    STEM CELL RESEARCH & THERAPY, 2023, 14 (01)
  • [22] Clinical study of liver regenerative therapy of cirrhosis using autologous adipose tissue-derived stromal cells and the characterization of the obtained stromal cells
    Sakai, Yoshio
    Seki, Akihiro
    Sunagozaka, Hajime
    Terashima, Takeshi
    Kawaguchi, Kazunori
    Mochida, Hatsune
    Nasti, Alessandro
    Buffa, Geraldine B.
    Yamato, Masatoshi
    Kosuke
    Takamura, Masaaki
    Usui, Soichiro
    Wada, Takashi
    Honda, Masao
    Kaneko, Shuichi
    HEPATOLOGY, 2016, 64 : 601A - 601A
  • [23] Laser-activated autologous adipose tissue-derived stromal vascular fraction restores spinal cord architecture and function in multiple sclerosis cat model
    Mariam F. Farid
    Yara S. Abouelela
    Noha A. E. Yasin
    Asmaa K. Al-Mokaddem
    Abdelbary Prince
    Marwa A. Ibrahim
    Hamdy Rizk
    Stem Cell Research & Therapy, 14
  • [24] Clinical study of liver regenerative therapy of cirrhosis using autologous adipose tissue-derived stromal cells and the characterization of the obtained stromal cells
    Sakai, Yoshio
    Seki, Akihiro
    Sunagozaka, Hajime
    Terashima, Takeshi
    Kawaguchi, Kazunori
    Mochida, Hatsune
    Nasti, Alessandro
    Buffa, Geraldine B.
    Yamato, Masatoshi
    Ishida, Kosuke
    Takamura, Masaaki
    Usui, Soichiro
    Wada, Takashi
    Honda, Masao
    Kaneko, Shuichi
    HEPATOLOGY, 2016, 64 : 601A - 601A
  • [25] Autologous Adipose Tissue-Derived Cells: Are We Talking About Adipose Derived Stem Cells, Stromal Vascular Fraction, or Coleman Fat Grafting? Reply
    Del Papa, Nicoletta
    Di Luca, Gabriele
    Sambataro, Domenico
    Zaccara, Eleonora
    Maglione, Wanda
    Gabrielli, Armando
    Fraticelli, Paolo
    Moroncini, Gianluca
    Beretta, Lorenzo
    Santaniello, Alessandro
    Sambataro, Gianluca
    Ferraresi, Roberto
    Vitali, Claudio
    CELL TRANSPLANTATION, 2015, 24 (12) : 2669 - 2670
  • [26] Adipose Tissue-Derived Stromal Cells Protect Hair Cells From Aminoglycoside
    Yoshida, Atsuhiro
    Kitajiri, Shin-Ichiro
    Nakagawa, Takayuki
    Hashido, Kento
    Inaoka, Takatoshi
    Ito, Juichi
    LARYNGOSCOPE, 2011, 121 (06): : 1281 - 1286
  • [27] Surface protein characterization of human adipose tissue-derived stromal cells
    Gronthos, S
    Franklin, DM
    Leddy, HA
    Robey, PG
    Storms, RW
    Gimble, JM
    JOURNAL OF CELLULAR PHYSIOLOGY, 2001, 189 (01) : 54 - 63
  • [28] Effects of different sera on adipose tissue-derived mesenchymal stromal cells
    Tunaitis, Virginijus
    Borutinskaite, Veronika
    Navakauskiene, Ruta
    Treigyte, Grazina
    Unguryte, Ausra
    Aldonyte, Ruta
    Magnusson, Karl-Eric
    Pivoriunas, Augustas
    JOURNAL OF TISSUE ENGINEERING AND REGENERATIVE MEDICINE, 2011, 5 (09) : 733 - 746
  • [29] Human adipose tissue-derived mesenchymal stromal cells and their phagocytic capacity
    Ruiz, Victor J. Costela
    Rodriguez, Lucia Melguizo
    Montes, Rebeca Illescas
    Recio, Enrique Garcia
    Santiago, Salvador Arias
    Ruiz, Concepcion
    Bertos, Elvira De Luna
    JOURNAL OF CELLULAR AND MOLECULAR MEDICINE, 2022, 26 (01) : 178 - 185
  • [30] Chondrogenic potential of adipose tissue-derived stromal cells in vitro and in vivo
    Erickson, GR
    Gimble, JM
    Franklin, DM
    Rice, HE
    Awad, H
    Guilak, F
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2002, 290 (02) : 763 - 769