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P-glycoprotein regulates chemosensitivity in early developmental stages of the mouse
L Elbling1, W Berger, A Rehberger
1Institute for Tumor Biology-Cancer Research, University of Vienna, Austria.
Abstract:
The multidrug resistance (MDR) P-glycoprotein (P-gp) is an active transporter associated with chemoresistance of tumor cells. A fundamental aspect not yet entirely clarified is the physiological role of MDR-P-gp in normal mammalian tissues. In this paper we report that multidrug (chemo)resistance is already present in mouse oocytes and early cleavage embryos. Expression of MDR-specific P-gp is detectable by antibody (C219) staining from the primary oocyte onward to the eight-cell embryo. MDR-mRNA is demonstrated in mature oocytes using an Mdr1-specific cDNA probe. Functional activity of P-gp is shown by the efficacy of MDR reversers (verapamil or quinidine) in enhancement of: 1) drug accumulation (daunomycin) in all stages investigated, 2) drug cytotoxicity (daunomycin or mitomycin c-induced developmental impairment) in two-cell embryos cultured for 24 h, and 3) drug cytokinesis-blocking activity (cytochalasin D; our recent findings demonstrate cytochalasins to be substrates for P-gp and to indicate the presence of MDR by their microfilament-disrupting action on cycling cells) in four- and eight-cell embryos cultured for 24 h. Furthermore, functional involvement of P-gp in vivo is demonstrated. Concurrent administration of verapamil increases doxorubicin-induced developmental impairment in the zygote stage during the first cleavage cycle in pregnant females. Results provide evidence that MDR-P-gp has an efficient protective function in early reproduction.
Insights
Multidrug resistance P-glycoprotein (P-gp) protects mouse oocytes and early embryos from chemotherapy drugs. This protective function is essential for early reproduction, demonstrating P-gp
Area of Science:
- Reproductive Biology
- Molecular Biology
- Developmental Biology
Background:
- Multidrug resistance (MDR) P-glycoprotein (P-gp) is crucial for tumor chemoresistance.
- The physiological role of MDR-P-gp in normal mammalian tissues remains unclear.
Purpose of the Study:
- To investigate the presence and function of MDR-P-gp in mouse oocytes and early embryos.
- To determine the protective role of MDR-P-gp during early reproductive stages.
Main Methods:
- Antibody staining (C219) to detect P-gp expression.
- mRNA detection using Mdr1-specific cDNA probe.
- Functional assays using MDR reversers (verapamil, quinidine) and cytotoxic drugs (daunomycin, mitomycin C, cytochalasin D).
- In vivo studies with pregnant females and doxorubicin.
Main Results:
- MDR-P-gp expression is present from primary oocytes to eight-cell embryos.
- Functional P-gp activity enhances drug accumulation and cytotoxicity in early embryos.
- In vivo administration of verapamil exacerbates doxorubicin-induced developmental impairment.
Conclusions:
- MDR-P-gp plays a significant protective role in early mammalian reproduction.
- This transporter is crucial for safeguarding oocytes and embryos against xenobiotics.