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A robust cell culture system for large scale feeder cell-free expansion of human breast epithelial progenitors.


ABSTRACT: BACKGROUND:Normal human breast epithelial cells are maintained by the proliferation and differentiation of different human breast epithelial progenitors (HBEPs). However, these progenitor subsets can only be obtained at low frequencies, limiting their further characterization. Recently, it was reported that HBEPs can be minimally expanded in Matrigel cocultures with stromal feeder cells. However, variability of generating healthy feeder cells significantly impacts the effective expansion of HBEPs. METHODS:Here, we report a robust feeder cell-free culture system for large-scale expansion of HBEPs in two-dimensional cultures. RESULTS:Using this cell culture system HBEPs can be exponentially expanded as bulk cultures. Moreover, purified HBEP subtypes can also be separately expanded using our cell culture system. The expanded HBEPs retain their undifferentiated phenotype and form distinct epithelial colonies in colony forming cell assays. CONCLUSIONS:The availability of a culture system enabling the large-scale expansion of HBEPs facilitates their application to screening platforms and other cell-based assays.

SUBMITTER: Chatterjee S 

PROVIDER: S-EPMC6172804 | biostudies-other | 2018 Oct

REPOSITORIES: biostudies-other

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A robust cell culture system for large scale feeder cell-free expansion of human breast epithelial progenitors.

Chatterjee Sumanta S   Basak Pratima P   Buchel Edward E   Murphy Leigh C LC   Raouf Afshin A  

Stem cell research & therapy 20181004 1


<h4>Background</h4>Normal human breast epithelial cells are maintained by the proliferation and differentiation of different human breast epithelial progenitors (HBEPs). However, these progenitor subsets can only be obtained at low frequencies, limiting their further characterization. Recently, it was reported that HBEPs can be minimally expanded in Matrigel cocultures with stromal feeder cells. However, variability of generating healthy feeder cells significantly impacts the effective expansion  ...[more]

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