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  • 1
    In: Tumor Biology, Springer Science and Business Media LLC, Vol. 35, No. 3 ( 2014-3), p. 2081-2086
    Type of Medium: Online Resource
    ISSN: 1010-4283 , 1423-0380
    Language: English
    Publisher: Springer Science and Business Media LLC
    Publication Date: 2014
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    detail.hit.zdb_id: 1483579-4
    SSG: 12
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  • 2
    In: BMC Cell Biology, Springer Science and Business Media LLC, Vol. 12, No. 1 ( 2011-12)
    Abstract: Isolation of mouse MSCs (mMSCs) with normal ploidy from bone marrow remains challenging. mMSCs isolated under 20% O 2 are frequently contaminated by overgrown hematopoietic cells, and could also be especially vulnerable to oxidative damage, resulting in chromosomal instability. Culture under low oxygen or extracellular matrix (ECM) improves proliferation of MSCs in several species. We tested the hypothesis that culture under low oxygen in combination with ECM prepared from mouse embryonic fibroblast (MEF-ECM) could be used to purify proliferative mMSCs, and to reduce oxidative damage and maintain their chromosomal stability. Results Optimization of culture conditions under 20% O 2 resulted in immortalization of mMSCs, showing extensive chromosome abnormalities, consistent with previous studies. In contrast, culture under low oxygen (2% O 2 ) improved proliferation of mMSCs and reduced oxidative damage, such that mMSCs were purified simply by plating at low density under 2% O 2 . MEF-ECM reduced oxidative damage and enhanced proliferation of mMSCs. However, these isolated mMSCs still exhibited high frequency of chromosome abnormalities, suggesting that low oxygen or in combination with MEF-ECM was insufficient to fully protect mMSCs from oxidative damage. Notably, antioxidants (alpha -phenyl-t-butyl nitrone (PBN) and N-acetylcysteine (NAC)) further reduced DNA damage and chromosomal abnormalities, and increased proliferation of mMSCs. mMSCs isolated by the combination method were successfully used to generate induced pluripotent stem (iPS) cells by ectopic expression of Oct4, Sox2, Klf4 and c-Myc. Conclusions We have developed a technique that allows to reduce the number of karyotypic abnormalities for isolation of primary mMSCs and for limited culture period by combination of low oxygen, MEF-ECM, antioxidants and low density plating strategy. The effectiveness of the new combination method is demonstrated by successful generation of iPS cells from the isolated mMSCs. However, a culture system for mMSCs still is needed to prevent all the anomalies, especially after a long-term culture period.
    Type of Medium: Online Resource
    ISSN: 1471-2121
    Language: English
    Publisher: Springer Science and Business Media LLC
    Publication Date: 2011
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    detail.hit.zdb_id: 2041486-9
    SSG: 12
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  • 3
    Online Resource
    Online Resource
    Spandidos Publications ; 2014
    In:  International Journal of Molecular Medicine Vol. 33, No. 5 ( 2014-5), p. 1348-1354
    In: International Journal of Molecular Medicine, Spandidos Publications, Vol. 33, No. 5 ( 2014-5), p. 1348-1354
    Type of Medium: Online Resource
    ISSN: 1107-3756 , 1791-244X
    Language: English
    Publisher: Spandidos Publications
    Publication Date: 2014
    detail.hit.zdb_id: 2083937-6
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  • 4
    Online Resource
    Online Resource
    American Society of Hematology ; 2011
    In:  Blood Vol. 118, No. 21 ( 2011-11-18), p. 4626-4626
    In: Blood, American Society of Hematology, Vol. 118, No. 21 ( 2011-11-18), p. 4626-4626
    Abstract: Abstract 4626 Introduction: Mangiferin is a natural antioxidant predominantly distributed in Mangifera indica L (Mango). Mangiferin also inhibits carcinogen-induced lung cancer or colon cancer (Rajendran et al, 2008; Yoshimi et al, 2001). However, the molecular mechanism of its chemopreventive activity remains incompletely understood. Moreover, whether mangiferin can prevent leukemia remains unexplored. Nuclear factor erythroid 2-related factor 2 (Nrf2)-mediated antioxidant signaling is the promising target for cellular protection and chemoprevention. According to the lately suggested mechanisms, Nrf2 protein localized predominantly in the nucleus of various cells. The activation of Nrf2 is most likely a result of its stabilization, leading to its accumulation in the nucleus. Nrf2 controls the transcriptional activation of its downstream target genes including Phase II detoxifying enzymes such as NAD(P)Hquinone oxidoreductase 1 (NQO1). Up-regulation of these Phase II detoxifying enzymes contributes to inhibiting carcinogenesis. The present study aimed to investigate the effects of mangiferin on chemical carcinogen-induced DNA damage and Nrf2-mediated signaling in hematopoietic cells. Methods: Mononuclear human umbilical cord blood (MNC hUCB) cells were incubated with or without mangiferin prior to etoposide, a well-known chemical carcinogen for therapy-related leukemia. DNA damage in MNC hUCB cells was evaluated by comet assay and micronucleus assay. In order to explore whether mangiferin activated Nrf2-mediated signaling, MNC hUCB cells were treated with mangiferin and then the nucleus accumulation of Nrf2 was examined by confocal microscopy and western blotting. The regulation of mangiferin on the expression of NQO1 was investigated by western blotting. Results: i) Mangiferin reduced etoposide-induced DNA damage in MNC hUCB cells. Etoposide induced DNA damage in MNC hUCB cells in a dose-dependent manner. However, etoposide-induced DNA damage significantly alleviated when the cells were pre-incubated with 50 μ mol/L mangiferin for 4h. For example, the olive tail moment value significantly enhanced to 26.3-fold of control when treating with 100 μ g/ml etoposide (p=0.001), but mangiferin pre-treatment reduced the olive tail moment value to 13.4-fold of control which was only 50.8% of the single etoposide treatment group (p=0.003) in comet assay. Micronucleus frequency also significantly increased in a dose-dependent manner after etoposide treatment. Nevertheless pre-incubation with mangiferin significantly inhibited the formation of etoposide-induced micronucleus. ii) Mangiferin induced the nuclear accumulation of Nrf2 in MNC hUCB cells. In the present study, it was also observed that Nrf2 protein mainly located in nuclear area in non-treated cells under confocal microscope. The fluorescence intensity in nucleus enhanced after mangiferin treatment in a dose-dependent and time-dependent manner. Meanwhile, the western blotting results revealed that the nuclear level of Nrf2 protein significantly increased following mangiferin treatment as well. These results showed that mangiferin induced the nuclear accumulation of Nrf2 which indicated activation of Nrf2-mediated signaling. iii) The western blotting results demonstrated that mangiferin treatment increased the expression of NQO1, a downstream target gene of Nrf2 pathway, in MNC hUCB cells. Conclusion: Mangiferin protects hematopoietic cells from chemotherapeutic agent via activating Nrf2-mediated signaling. This newly identified Nrf2 activator can be a potential chemopreventive agent against therapy-related leukemia which deserves further study. Disclosures: No relevant conflicts of interest to declare.
    Type of Medium: Online Resource
    ISSN: 0006-4971 , 1528-0020
    RVK:
    RVK:
    Language: English
    Publisher: American Society of Hematology
    Publication Date: 2011
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  • 5
    Online Resource
    Online Resource
    Wiley ; 2011
    In:  Development, Growth & Differentiation Vol. 53, No. 3 ( 2011-04), p. 347-356
    In: Development, Growth & Differentiation, Wiley, Vol. 53, No. 3 ( 2011-04), p. 347-356
    Type of Medium: Online Resource
    ISSN: 0012-1592
    Language: English
    Publisher: Wiley
    Publication Date: 2011
    detail.hit.zdb_id: 2020067-5
    SSG: 12
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