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利用球体培养实验测定体干细胞和肿瘤干细胞的自我更新对称分裂率。

Determination of somatic and cancer stem cell self-renewing symmetric division rate using sphere assays.

机构信息

McKnight Brain Institute, Neurosurgery department, University of Florida, Gainesville, Florida, United States of America.

出版信息

PLoS One. 2011 Jan 5;6(1):e15844. doi: 10.1371/journal.pone.0015844.

Abstract

Representing a renewable source for cell replacement, neural stem cells have received substantial attention in recent years. The neurosphere assay represents a method to detect the presence of neural stem cells, however owing to a deficiency of specific and definitive markers to identify them, their quantification and the rate they expand is still indefinite. Here we propose a mathematical interpretation of the neurosphere assay allowing actual measurement of neural stem cell symmetric division frequency. The algorithm of the modeling demonstrates a direct correlation between the overall cell fold expansion over time measured in the sphere assay and the rate stem cells expand via symmetric division. The model offers a methodology to evaluate specifically the effect of diseases and treatments on neural stem cell activity and function. Not only providing new insights in the evaluation of the kinetic features of neural stem cells, our modeling further contemplates cancer biology as cancer stem-like cells have been suggested to maintain tumor growth as somatic stem cells maintain tissue homeostasis. Indeed, tumor stem cell's resistance to therapy makes these cells a necessary target for effective treatment. The neurosphere assay mathematical model presented here allows the assessment of the rate malignant stem-like cells expand via symmetric division and the evaluation of the effects of therapeutics on the self-renewal and proliferative activity of this clinically relevant population that drive tumor growth and recurrence.

摘要

作为细胞替代的可再生来源,神经干细胞近年来受到了广泛关注。神经球测定法是一种检测神经干细胞存在的方法,但是由于缺乏特异性和明确的标记物来识别它们,因此它们的定量和扩增速度仍然不确定。在这里,我们提出了神经球测定法的数学解释,允许实际测量神经干细胞的对称分裂频率。该模型的算法表明,在球体测定中测量的细胞总体折叠扩张与干细胞通过对称分裂扩张的速度之间存在直接相关性。该模型提供了一种评估疾病和治疗方法对神经干细胞活性和功能的具体影响的方法。我们的模型不仅为评估神经干细胞的动力学特征提供了新的见解,而且还考虑了癌症生物学,因为已经提出癌症干细胞样细胞可以像体细胞干细胞维持组织内稳态一样维持肿瘤生长。事实上,肿瘤干细胞对治疗的耐药性使得这些细胞成为有效治疗的必要靶点。这里提出的神经球测定法数学模型允许评估恶性干细胞样细胞通过对称分裂的扩增速度,并评估治疗方法对驱动肿瘤生长和复发的这种临床相关群体的自我更新和增殖活性的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d488/3016423/3c889f1dfef3/pone.0015844.g005.jpg

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