scholarly journals Mesenchymal origin of multipotent human testis-derived stem cells in human testicular cell cultures

2013 ◽  
Vol 20 (2) ◽  
pp. 155-167 ◽  
Author(s):  
J.V. Chikhovskaya ◽  
S.K.M. van Daalen ◽  
C.M. Korver ◽  
S. Repping ◽  
A.M.M. van Pelt
2012 ◽  
Vol 23 (1-4) ◽  
pp. 153-165 ◽  
Author(s):  
Yusuke Ueda ◽  
Satoshi Fujita ◽  
Tatsuya Nishigaki ◽  
Yusuke Arima ◽  
Hiroo Iwata

2019 ◽  
Vol 9 (1) ◽  
Author(s):  
Koji Kinoshita ◽  
Takuya Munesue ◽  
Fujio Toki ◽  
Masaharu Isshiki ◽  
Shigeki Higashiyama ◽  
...  

AbstractIdentification and quality assurance of stem cells cultured in heterogeneous cell populations are indispensable for successful stem cell therapy. Here we present an image-processing pipeline for automated identification and quality assessment of human keratinocyte stem cells. When cultivated under appropriate conditions, human epidermal keratinocyte stem cells give rise to colonies and exhibit higher locomotive capacity as well as significant proliferative potential. Image processing and kernel density estimation were used to automatically extract the area of keratinocyte colonies from phase-contrast images of cultures containing feeder cells. The DeepFlow algorithm was then used to calculate locomotion speed of the colony area by analyzing serial images. This image-processing pipeline successfully identified keratinocyte stem cell colonies by measuring cell locomotion speed, and also assessed the effect of oligotrophic culture conditions and chemical inhibitors on keratinocyte behavior. Therefore, this study provides automated procedures for image-based quality control of stem cell cultures and high-throughput screening of small molecules targeting stem cells.


2008 ◽  
Vol 396-398 ◽  
pp. 123-126
Author(s):  
Timothy Wilson ◽  
Reeta Viitala ◽  
Mervi Puska ◽  
Mika Jokinen ◽  
Risto Penttinen

The role of silica and macrophages in fibrosis is well documented, but in bone formation it is relatively unknown despite decades of research with bioactive glasses. In this study macrophages were isolated from rat peritoneal and then cultured for five days in the presence of two types of silica microparticles with different solubilities. After the fifth day the culture medium was collected, purified and used as an additive in bone marrow derived rat stem cell cultures. The stem cells were cultured for five days in α-mem containing only 0,5% of FCS, enabling cell survival but disrupting their proliferation. As controls, stem cells were also cultured in α-mem containing silica microparticles. At days one and five the amount of soluble collagen was assayed from the culture medium and the cells were counted. All stem cell cultures with macrophage medium additives were found to be proliferative, with statistically significant difference to controls. However, collagen was only produced in cultures containing medium from macrophages cultured with fast-dissolving silica microparticles. This suggests that silica can induce cell proliferation and extra cellular matrix protein secretion which is mediated by macrophages, and that the solubility of silica is also a major factor in this reaction.


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