Tamoxifen Inducible K14 Creert

Tamoxifen-inducible K14 CreERT is a conditional genetic tool that enables time-controlled DNA recombination in keratin 14-expressing epithelial cells, particularly those of the epidermis, for studying tissue development and homeostasis. In this system, Cre recombinase is fused to a modified estrogen-receptor domain and remains inactive in the cytoplasm until tamoxifen triggers its nuclear entry, where it recognizes loxP sites and excises or activates a floxed gene. This temporal and cell-type-specific control helps developmental biologists trace epithelial lineages, investigate gene function during skin formation and repair, and analyze how altered signaling affects tissue organization without disrupting earlier developmental stages.

Tamoxifen Inducible K14 Creert - Related Videos

Research

JoVE EoE - Genome Editing Techniques

CreER-LoxP System-Based Target Gene Inactivation: A Tamoxifen-Inducible Cre Recombinase System for Target Gene Knockout in a Mouse Model

0 Views •

2025

This video describes a procedure for target gene knockout using a tamoxifen-inducible Cre-recombinase system following intraperitoneal injection of tamoxifen in a mouse model.

Enhancement of Apoptotic and Autophagic Induction by a Novel Synthetic C-1 Analogue of 7-deoxypancratistatin in Human Breast Adenocarcinoma and Neuroblastoma Cells with Tamoxifen

0 Views •

Cited by 10 •

2012

We have synthesized a novel analogue of pancratistatin with comparable anti-cancer activity as native pancratistatin; interestingly, combinatory treatment with tamoxifen yielded a drastic enhancement in apoptotic and autophagic induction by mitochondrial targeting with minimal effect on noncancerous fibroblasts. Thus, JCTH-4 in combination with tamoxifen could provide a safe anti-cancer therapy.

A Practical Approach to Genetic Inducible Fate Mapping: A Visual Guide to Mark and Track Cells In Vivo

0 Views •

Cited by 16 •

2009

Genetic Inducible Fate Mapping (GIFM) marks and tracks cells with fine spatial and temporal control in vivo and elucidates how cells from a specific genetic lineage contribute to developing and adult tissues. Demonstrated here are the techniques required to fate map E12.5 mouse embryos for epifluorescent and explant analysis.

Research

JoVE Journal - Medicine
Free Sample

Utilizing Murine Inducible Telomerase Alleles in the Studies of Tissue Degeneration/Regeneration and Cancer

0 Views •

Cited by 3 •

2015

Telomere and telomerase play essential roles in ageing and tumorigenesis. The goal of this protocol is to show how to generate two murine inducible telomerase knock-in alleles and how to utilize them in the studies of tissue degeneration/regeneration and cancer.

Transplantation of Induced Pluripotent Stem Cell-derived Mesoangioblast-like Myogenic Progenitors in Mouse Models of Muscle Regeneration

0 Views •

Cited by 30 •

2014

Induced pluripotent stem cell (iPSC)-derived myogenic progenitors are promising candidates for cell therapy strategies to treat muscular dystrophies. This protocol describes transplantation and functional measurements required to evaluate the engraftment and differentiation of iPSC-derived mesoangioblasts (a type of muscle progenitors) in mouse models of acute and chronic muscle regeneration.

View All Results

FAQs

Related Topics