Scientific Resources
-
文献Kordon EC and Smith GH (MAY 1998) Development (Cambridge,England) 125 10 1921--30
An entire functional mammary gland may comprise the progeny from a single cell.
Any epithelial portion of a normal mouse mammary gland can reproduce an entire functional gland when transplanted into an epithelium-free mammary fat pad. Mouse mammary hyperplasias and tumors are clonal dominant populations and probably represent the progeny of a single transformed cell. Our study provides evidence that single multipotent stem cells positioned throughout the mature fully developed mammary gland have the capacity to produce sufficient differentiated progeny to recapitulate an entire functional gland. Our evidence also demonstrates that these stem cells are self-renewing and are found with undiminished capacities in the newly regenerated gland. We have taken advantage of an experimental model where mouse mammary tumor virus infects mammary epithelial cells and inserts a deoxyribonucleic acid copy(ies) of its genome during replication. The insertions occur randomly within the somatic genome. CzechII mice have no endogenous nucleic acid sequence homology with mouse mammary tumor virus; therefore all viral insertions may be detected by Southern analysis provided a sufficient number of cells contain a specific insertional event. Transplantation of random fragments of infected CzechII mammary gland produced clonal-dominant epithelial populations in epithelium-free mammary fat pads. Serial transplantation of pieces of the clonally derived outgrowths produced second generation glands possessing the same viral insertion sites providing evidence for self-renewal of the original stem cell. Limiting dilution studies with cell cultures derived from third generation clonal outgrowths demonstrated that three multipotent but distinct mammary epithelial progenitors were present in clonally derived mammary epithelial populations. Estimation of the potential number of multipotent epithelial cells that may be evolved from an individual mammary-specific stem cell by self-renewal is in the order of 10(12)-10(13). Therefore,one stem cell might easily account for the renewal of mammary epithelium over several transplant generations. View Publication -
文献Smith GH (JAN 1996) Breast cancer research and treatment 39 1 21--31
Experimental mammary epithelial morphogenesis in an in vivo model: evidence for distinct cellular progenitors of the ductal and lobular phenotype.
An in vivo transplantation system has been used to evaluate the developmental capacities of specific mouse mammary epithelial cell populations. Specifically,mouse mammary epithelial cells with distinctly limited developmental potentials have been identified using this procedure. Two distinct epithelial cell progenitors have been identified by experiments designed to determine whether basal lobular and ductal phenotypes could develop independently under conditions imposed by a limiting dilution. The prediction that these separate epithelial progenitors must exist was based upon the results from transplantation experiments carried out in epithelium-divested mammary fat pads of syngeneic mice with mammary epithelium from two different transgenic mouse models. The results presented here demonstrate the following points: 1) lobular,i.e. secretory,progenitor cells are present as distinct entities among the mammary epithelial cells found in immature virgin female mice; 2) similarly,ductal epithelial progenitors are present within the same population; 3) lobular progenitors are present in greater numbers,although both cell populations are extremely small; 4) as expected,some inocula produce outgrowths with simultaneous development of both lobular and ductal phenotypes--it is not known whether this indicates cooperative interaction between the two epithelial progenitors or signals the presence of a third progenitor type capable of producing both ductular and lobular committed daughters; 5) these findings have important consequences in the design of experiments aimed at testing the effects of known and putative mammary oncogenes and tumor suppressor genes,using techniques which include cellular transformation in vitro followed by in vivo cultivation and evaluation. View Publication -
文献Shackleton M et al. (JAN 2006) Nature 439 7072 84--8
Generation of a functional mammary gland from a single stem cell.
The existence of mammary stem cells (MaSCs) has been postulated from evidence that the mammary gland can be regenerated by transplantation of epithelial fragments in mice. Interest in MaSCs has been further stimulated by their potential role in breast tumorigenesis. However,the identity and purification of MaSCs has proved elusive owing to the lack of defined markers. We isolated discrete populations of mouse mammary cells on the basis of cell-surface markers and identified a subpopulation (Lin-CD29hiCD24+) that is highly enriched for MaSCs by transplantation. Here we show that a single cell,marked with a LacZ transgene,can reconstitute a complete mammary gland in vivo. The transplanted cell contributed to both the luminal and myoepithelial lineages and generated functional lobuloalveolar units during pregnancy. The self-renewing capacity of these cells was demonstrated by serial transplantation of clonal outgrowths. In support of a potential role for MaSCs in breast cancer,the stem-cell-enriched subpopulation was expanded in premalignant mammary tissue from MMTV-wnt-1 mice and contained a higher number of MaSCs. Our data establish that single cells within the Lin-CD29hiCD24+ population are multipotent and self-renewing,properties that define them as MaSCs. View Publication -
文献Stingl J et al. (MAY 2001) Breast cancer research and treatment 67 2 93--109
Characterization of bipotent mammary epithelial progenitor cells in normal adult human breast tissue.
The purpose of the present study was to characterize primitive epithelial progenitor populations present in adult normal human mammary tissue using a combination of flow cytometry and in vitro colony assay procedures. Three types of human breast epithelial cell (HBEC) progenitors were identified: luminal-restricted,myoepithelial-restricted and bipotent progenitors. The first type expressed epithelial cell adhesion molecule (EpCAM),alpha6 integrin and MUC1 and generated colonies composed exclusively of cells positive for the luminal-associated markers keratin 8/18,keratin 19,EpCAM and MUC1. Bipotent progenitors produced colonies containing a central core of cells expressing luminal markers surrounded by keratin 14+ myoepithelial-like cells. Single cell cultures confirmed the bipotentiality of these progenitors. Their high expression of alpha6 integrin and low expression of MUC1 suggests a basal position of these cells in the mammary epithelium in vivo. Serial passage in vitro of an enriched population of bipotent progenitors demonstrated that only myoepithelial-restricted progenitors could be readily generated under the culture conditions used. These results support a hierarchical branching model of HBEC progenitor differentiation from a primitive uncommitted cell to luminal- and myoepithelial-restricted progenitors. View Publication
过滤器
筛选结果
品牌
资源类别
细胞类型
- B 细胞 182 项目
- Cardiomyocytes 21 项目
- CD4+ 121 项目
- CD8+ 92 项目
- CHO细胞 3 项目
- Endoderm 18 项目
- Endothelial Cells 12 项目
- Epithelial Cells 29 项目
- HEK-293细胞(人胚肾293细胞) 1 项目
- Hematopoietic Cells 22 项目
- Hepatic Cells 13 项目
- HUVEC细胞(人脐静脉内皮细胞) 1 项目
- Mesenchymal Cells 18 项目
- Mesoderm 18 项目
- Neural Cells 89 项目
- NK 细胞 121 项目
- Other Subsets 21 项目
- PSC-Derived 128 项目
- PSC衍生 27 项目
- Regulatory 34 项目
- T Cells 102 项目
- T 细胞 352 项目
- 上皮细胞 106 项目
- 中胚层 1 项目
- 乳腺细胞 74 项目
- 先天性淋巴细胞 23 项目
- 全血 6 项目
- 内皮细胞 8 项目
- 内皮集落形成细胞(ECFCs) 3 项目
- 前列腺细胞 8 项目
- 单个核细胞 73 项目
- 单核细胞 142 项目
- 多巴胺能神经元 3 项目
- 多能干细胞 1859 项目
- 小胶质细胞 3 项目
- 巨噬细胞 25 项目
- 巨核细胞 8 项目
- 心肌细胞 15 项目
- 成骨细胞 6 项目
- 星形胶质细胞 2 项目
- 杂交瘤细胞 83 项目
- 树突状细胞(DCs) 91 项目
- 气道细胞 73 项目
- 淋巴细胞 33 项目
- 癌细胞及细胞系 130 项目
- 白细胞单采样本 12 项目
- 白血病/淋巴瘤细胞 14 项目
- 真皮细胞 2 项目
- 神经元 165 项目
- 神经干/祖细胞 420 项目
- 神经细胞 6 项目
- 粒细胞及其亚群 76 项目
- 红系细胞 9 项目
- 肌源干/祖细胞 9 项目
- 肝细胞 25 项目
- 肠道细胞 61 项目
- 肾细胞 3 项目
- 肾脏细胞 4 项目
- 肿瘤细胞 11 项目
- 胰腺细胞 12 项目
- 脂肪细胞 6 项目
- 脑肿瘤干细胞 87 项目
- 血小板 4 项目
- 血浆 16 项目
- 血管生成细胞 2 项目
- 调节性细胞 9 项目
- 软骨细胞 7 项目
- 造血干/祖细胞 875 项目
- 间充质基质细胞 13 项目
- 间充质干/祖细胞 156 项目
- 间充质细胞 1 项目
- 骨髓基质细胞 2 项目
- 骨髓瘤细胞 4 项目
- 髓系细胞 116 项目
- 鼠胚胎成纤维细胞 1 项目
- 白细胞 9 项目
- 其它细胞系 5 项目
- 红细胞 10 项目