Different behaviour of implanted stem cells in intact and lesioned forebrain cortices

被引:3
作者
Agoston, V. A.
Zadori, A.
Demeter, K.
Nagy, Z.
Madarasz, E.
机构
[1] Hungarian Acad Sci, Inst Expt Med, Budapest, Hungary
[2] Natl Stroke Ctr, Natl Inst Phychiat & Neurol, Budapest, Hungary
关键词
cold lesion; graft survival; implantation; NE-4C; neural stem cell clone;
D O I
10.1111/j.1365-2990.2007.00845.x
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Cell-replacement therapy promises a useful tool to regenerate compromised brain tissue, but the interaction between grafted cells and host tissues is not well understood. In these studies, the fates of neuroectodermal stem cells were compared in ' healthy ' or damaged mouse forebrains. One-cell derived, fluorescent GFP-4C neural stem cells were implanted into normal and cold-lesioned mouse cortices. The fates of implanted cells were followed by histological and immunocytochemical assays for a 55-day postimplantation period. Cells were recultivated from lesioned cortices and characterized by cell cycle parameters, chromosome numbers, immunocytochemical markers and in vitro inducibility. Their intracerebral fates were checked upon re-implanting into ' healthy ' mouse brain cortices. GFP-4C cells, giving rise to neurones and astrocytes upon in vitro induction, failed to differentiate in either normal or lesioned cortical tissues. The rate of proliferation and the length of the survival, however, depended on the host environment, markedly. In intact cortices, implanted cells formed compact, isolated aggregates and their survival did not exceed 4 weeks. In compromised cortices, GFP-4C cells survived longer than 8 weeks and repopulated the decayed region. The morphology, viability, immunocytochemical properties, in vitro inducibility and chromosome number of cells recultivated from lesioned cortices were identical to those of the master cells. Long-term survival and repopulating capability were due to signals present in the lesioned, but missing from the intact cortical environment. The results underline the importance of host environment in the fate determination of grafted cells and emphasize the need to understand the ' roles ' of recipient tissues for potential cell-replacement methodologies.
引用
收藏
页码:510 / 522
页数:13
相关论文
共 58 条
  • [1] AUTORADIOGRAPHIC AND HISTOLOGICAL EVIDENCE OF POSTNATAL HIPPOCAMPAL NEUROGENESIS IN RATS
    ALTMAN, J
    DAS, GD
    [J]. JOURNAL OF COMPARATIVE NEUROLOGY, 1965, 124 (03) : 319 - &
  • [2] Neuronal replacement from endogenous precursors in the adult brain after stroke
    Arvidsson, A
    Collin, T
    Kirik, D
    Kokaia, Z
    Lindvall, O
    [J]. NATURE MEDICINE, 2002, 8 (09) : 963 - 970
  • [3] Cell replacement therapies for central nervous system disorders
    Björklund, A
    Lindvall, O
    [J]. NATURE NEUROSCIENCE, 2000, 3 (06) : 537 - 544
  • [4] Embryonic stem cells develop into functional dopaminergic neurons after transplantation in a Parkinson rat model
    Björklund, LM
    Sánchez-Pernaute, R
    Chung, SM
    Andersson, T
    Chen, IYC
    McNaught, KS
    Brownell, AL
    Jenkins, BG
    Wahlestedt, C
    Kim, KS
    Isacson, O
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2002, 99 (04) : 2344 - 2349
  • [5] Transplantation of cryopreserved human embryonal carcinoma-derived neurons (NT2N cells) promotes functional recovery in ischemic rats
    Borlongan, CV
    Tajima, Y
    Trojanowski, JQ
    Lee, VMY
    Sanberg, PR
    [J]. EXPERIMENTAL NEUROLOGY, 1998, 149 (02) : 310 - 321
  • [6] PHOSPHOLIPID DEGRADATION AND EDEMA DEVELOPMENT IN COLD-INJURED RAT-BRAIN
    CHAN, PH
    LONGAR, S
    FISHMAN, RA
    [J]. BRAIN RESEARCH, 1983, 277 (02) : 329 - 337
  • [7] Chiasson BJ, 1999, J NEUROSCI, V19, P4462
  • [8] Studies on the use of NE-4C embryonic neuroectodermal stem cells for targeting brain tumour
    Demeter, K
    Zádori, A
    Agoston, VA
    Madarász, E
    [J]. NEUROSCIENCE RESEARCH, 2005, 53 (03) : 331 - 342
  • [9] Fate of cloned embryonic neuroectodermal cells implanted into the adult, newborn and embryonic forebrain
    Demeter, K
    Herberth, B
    Duda, E
    Domonkos, A
    Jaffredo, T
    Herman, JP
    Madarász, E
    [J]. EXPERIMENTAL NEUROLOGY, 2004, 188 (02) : 254 - 267
  • [10] Duncan SA, 1997, DEVELOPMENT, V124, P279