The isolation of pure populations of mouse intestinal stem cells (ISCs) is essential to facilitate functional studies of tissue homeostasis, tissue regeneration, and intestinal diseases. However, the purification of ISCs has relied predominantly on the use of transgenic reporter alleles in mice. Here, we introduce a combinational cell surface marker-mediated strategy that allows the isolation of an ISC population transcriptionally and functionally equivalent to the gold standard Lgr5-GFP ISCs. Used on reporter-free mice, this strategy allows the isolation of functional, transcriptionally distinct ISCs uncompromised by Lgr5 haploinsufficiency
Small intestinal (SI) stem cells differentiate into short-lived progeny, except lysozyme-expressing ...
Insertion of reporter cassettes into the Lgr5 locus has enabled the characterization of mouse intest...
Understanding the development and function of an organ requires the characterization of all of its c...
SummaryThe isolation of pure populations of mouse intestinal stem cells (ISCs) is essential to facil...
The isolation of pure populations of mouse intestinal stem cells (ISCs) is essential to facilitate f...
Identification of intestinal stem cells (ISCs) has relied heavily on the use of transgenic reporters...
Critical to the identification of putative stem cell populations is the ability to evalu-ate their f...
SummaryInsertion of reporter cassettes into the Lgr5 locus has enabled the characterization of mouse...
BACKGROUND & AIMS: Intestinal homeostasis and regeneration after injury are controlled by 2 differen...
Insertion of reporter cassettes into the Lgr5 locus has enabled the characterization of mouse intest...
The intestinal epithelium is the most rapidly self-renewing tissue in adult mammals. We have recentl...
The work in this thesis adds to our knowledge of intestinal stem cell physiology. After identificati...
Isolation of quiescent intestinal stem cells (ISCs) has remained a challenge.By side population (SP)...
The recent development of targeted murine reporter alleles as proxies for intestinal stem cell activ...
Continual renewal of the intestinal epithelium is dependent on active- and slow-cycling stem cells t...
Small intestinal (SI) stem cells differentiate into short-lived progeny, except lysozyme-expressing ...
Insertion of reporter cassettes into the Lgr5 locus has enabled the characterization of mouse intest...
Understanding the development and function of an organ requires the characterization of all of its c...
SummaryThe isolation of pure populations of mouse intestinal stem cells (ISCs) is essential to facil...
The isolation of pure populations of mouse intestinal stem cells (ISCs) is essential to facilitate f...
Identification of intestinal stem cells (ISCs) has relied heavily on the use of transgenic reporters...
Critical to the identification of putative stem cell populations is the ability to evalu-ate their f...
SummaryInsertion of reporter cassettes into the Lgr5 locus has enabled the characterization of mouse...
BACKGROUND & AIMS: Intestinal homeostasis and regeneration after injury are controlled by 2 differen...
Insertion of reporter cassettes into the Lgr5 locus has enabled the characterization of mouse intest...
The intestinal epithelium is the most rapidly self-renewing tissue in adult mammals. We have recentl...
The work in this thesis adds to our knowledge of intestinal stem cell physiology. After identificati...
Isolation of quiescent intestinal stem cells (ISCs) has remained a challenge.By side population (SP)...
The recent development of targeted murine reporter alleles as proxies for intestinal stem cell activ...
Continual renewal of the intestinal epithelium is dependent on active- and slow-cycling stem cells t...
Small intestinal (SI) stem cells differentiate into short-lived progeny, except lysozyme-expressing ...
Insertion of reporter cassettes into the Lgr5 locus has enabled the characterization of mouse intest...
Understanding the development and function of an organ requires the characterization of all of its c...