标题: | 超顺磁奈米粒子之强磁场诱发线虫之细胞自然凋亡并影响其行为 Induction of apoptosis and reduced mobility for Caenorhabditis elegans by super-paramagnetic nanoparticles enhanced magnetic field |
作者: | 叶礼阁 Li-Ko Yeh 黄国华 Guewha Steven Huang 材料科学与工程学系奈米科技硕博士班 |
关键字: | 线虫;磁场;自然凋亡;C.elegans;magnetic field;apoptosis |
公开日期: | 2006 |
摘要: | 在现代生活中,我们周遭都有磁场,而且是不可避免的。一般的家电用品、手机、医疗的NMR等,都会产生磁场,且磁场是超距力,说我们的生活在磁场底下真的ㄧ点也不为过。就我们的经验,我们知道磁场可能会对生物造成不良的影响,但ㄧ直缺乏科学上的证据,在过去20几年,科学家不断希望找出磁场对生物的影响,但到目前为止,仍然没有找到直接的科学证据。 现在我们利用线虫(C.elegans)这种简单的模式生物,用简单的强磁装置加上超顺磁奈米粒子,我们模拟生物在强磁下的环境,观察行为与基因表现的差异,找出磁场对生物影响的生理因子,我们发现了磁场会导致自然凋亡(apoptosis),并提出基因表现的证据。 Intuitively, the environmental electro-magnetic field may cause bad influence and bring abnormalities to life, such as cancer. For decades, scientist worked hard to look for the association between elctro-magnetic field and diseases desperately. The direct evidence, however, is yet to be identified. In the current study, we employed Caenorhabditis elegans as a model and applied localized strong magnetic field through administration of super-paramagnetic nanoparticles fed into the worms. We found that the 3-day treatment of magnetic field caused significant retardation to the mobility of C. elegans. A reduction of 50 % in mobility was observed to the N2 L4 worm treated with localized magnetic field for 3 days. To investigate possible molecular mechanisms underlying the retardation of mobility, real-time reverse transcriptase polymerase chain reaction (RT-RT PCR) was performed using more than 100 pairs of primer specific to genes directly associated with apoptosis, oncogenesis, and oxidative stress. Expression levels were altered for at least 8 folds for more than 50 genes tested in this study. To validate the correlation between magnetic field and apoptotic genes, ced-3, ced-6, and cbp-1mutant worms were obtained from CGC and were tested for their sensitivity to the magnetic field. Ced-3 mutant worm was insensitive to magnetic field, while ced-6 and cbp-1 mutant worms were sensitive to magnetic field. The lost of sensitivity to magnetic field in the ced-3 mutant strongly suggested that apoptosis was caused by the magnetic field and since ced-3 is lack of apoptosis thus is insensitive to the magnetic field. Sensitivity of ced-6 and cbp-1mutants was expected due to their assistant role in the apoptosis. In conclusion, the current study provided direct evidences that magnetic field caused apoptosis which led to the retardation for the mobility. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT009452520 http://hdl.handle.net/11536/82028 |
显示于类别: | Thesis |
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