Cells therapy for Parkinson's disease-so close and so far away

来源 :Science in China(Series C:Life Sciences) | 被引量 : 0次 | 上传用户:liongliong591
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
One of the strategies of treating Parkinson’s disease(PD) is the replacement of lost neurons in the substantia nigra with healthy dapamingergic cells.Potential sources for cells range from autologous grafts of dopamine secreting cells,fetal ventral mesencephalon tissue,to various stem cell types.Over the past quarter century,many experimental replacement therapies have been tried on PD animal models as well as human patients,yet none resulted in satisfactory outcomes that warrant wide applications.Recent progress in stem cell biology has shown that nuclear transfer embryonic stem cells(ntES) or induced pluripotent stem cells(iPS) derived cells can be used to successfully treat rodent PD models,thus solving the problem of immunorejection and paving the way for future autologous transplantations for treating PD.Meanwhile,however,post mortem analysis of patients who received fetal brain cell transplantation revealed that implanted cells are prone to degeneration just like endogenous neurons in the same pathological area,indicating long-term efficacy of cell therapy of PD needs to overcome the degenerating environment in the brain.A better understanding of neurodegeneration in the midbrain appeared to be a necessary step in developing new cell therapies in Parkinson’s disease.It is likely that future cell replacement will focus on not only ameliorating symptoms of the disease but also trying to slow the progression of the disease by either neuroprotection or restoring the micro-environment in the midbrain. One of the strategies of treating Parkinson’s disease (PD) is the replacement of lost neurons in the substantia nigra with healthy dapamingergic cells. Potential sources for cells range from autologous grafts of dopamine secreting cells, fetal ventral mesencephalon tissue, to various stem cell types. Over the past quarter century, many experimental replacement therapies have been tried on PD animal models as well as human patients, yet none resulted in satisfactory outcomes that warrant wide applications. Recent progress in stem cell biology has shown that nuclear transfer embryonic stem cells (ntES ) or induced pluripotent stem cells (iPS) derived cells can be used to successfully treat rodent PD models, thus solving the problem of immunorejection and paving the way for future autologous transplantations for treating PD.Meanwhile, however, post mortem analysis of patients who received fetal brain cell transplantation revealed that implanted cells are prone to degeneration just like endogenous neuro ns in the same pathological area, indicating long-term efficacy of cell therapy of PD needs to overcome the degenerating environment in the brain. A better understanding of neurodegeneration in the midbrain was to be a necessary step in developing new cell therapies in Parkinson’s disease. It is likely that future cell replacement will focus on not only ameliorating symptoms of the disease but also trying to slow the progression of the disease by either neuroprotection or restoring the micro-environment in the midbrain.
其他文献
【教材简说】这是一篇抒情意味很浓的文章,名为写雨则在写秋天。课文的内容丰富多彩,作者抓住秋天的特点,写了秋天缤纷的色彩,香甜的味道,丰收的景象,甚至秋天的动植物。课文
遗传病的遗传方式的判断、遗传病概率的计算一直都是高中生物学习过程中的难点。以下通过一个典型例题去重点分析此类难点的解题方法。尤其是介绍分解相乘法在两种遗传病概率
《语文课程标准》中指出:“各学段的阅读教学都要重视朗读和默读。”朗读是小学语文阅读教学中最常用的方法。通过朗读能培养学生学习语文的兴趣,培养学生的语感,提高语言表达能力,利于学生积累语文知识,提高学生分析、理解课文的能力,丰富学生的想象能力,陶冶学生的情操,以至于能提高学生的听、说和写作水平。如何改进朗读教学,提高朗读教学的效果呢?笔者认为应从以下几点着手:    一、多种途径培养学生的朗读兴趣 
因特网真的无孔不入——它最新的触角已深入到婚姻领域。自去年底今年初以来,美国已出现数家网上公司专门提供“网上婚礼”服务。现在越来越多的美国恋人乐意“上网结婚”。
文以载道,自古而然。一位名人说得好:阅读不能改变人生的长度,但可以改变人生的宽度;阅读不能改变人生的起点,但可以改变人生的终点。新版语文教材在阅读方面改革的力度很大,
《中学生数学》2014年第6(下)期刊登的文章《几个特殊方程的简单解法》,正如编者所说,几个方程的解法简单、美、有趣.恰好笔者手头有几个方程也能用此方法解,可以说是对上文
建立了在真空条件下检测有机污染物挥发组分的新方法.在模拟的真空环境中进行有机污染物的采样、富集.利用纳米纤维作为吸附剂采集真空中的有机污染物,并且用甲醇洗脱.甲醇洗
文物是研究地域及时代文化内容的重要载体,具有着特殊的历史及研究价值。文物藏品是通过文物来研究历史文化的重要物件,但是由于自然和人为的原因,很多藏品受到严重的破坏,且
利用“图解法”解决物理问题时具有清晰、直观的优点,且容易找到物理量之间的几何关系,解决平抛问题非常快捷、方便。物体作平抛运动时可以看做是水平方向上的匀速直线运动和
只要是有一些中国共产党和中华人民共和国历史常识的人,都一定会明白:新中国的成立,是中国共产党人培育并实践延安精神最重大的历史成就;而继承并弘扬延安精神,则是新中国成