Human ovarian mesothelial cells and methods of isolation and uses thereof
The invention discloses a substantially pure population of human ovarian mesothelial cells and methods of isolating and culturing the ovarian mesothelial cells. By carefully manipulating the microenvironment of the ovarian mesothelial cells, multiple passages are attainable wherein the ovarian mesothelial cells are capable of becoming ovary surface epithelial cells or granulosa cells. In addition, several methods of use of human ovarian mesothelial cells are disclosed herein.
1. A substantially pure population of human ovarian mesothelial cells wherein said ovarian mesothelial cells have a pluripotent capacity to differentiate into ovary surface epithelial cells or granulosa cells.
2. The ovarian mesothelial cells according to claim 1 , wherein said ovarian mesothelial cells maintained in nutrient media retain the pluripotent capacity to differentiate into ovary surface epithelial cells or granulosa cells.
3. The ovarian mesothelial cells according to claim 1 , wherein said ovarian mesothelial cells are identifiable by the expression of at least one cell marker.
4. The ovarian mesothelial cells according to claim 3 , wherein said cell marker is a cytokeratin.
5. The ovarian mesothelial cells according to claim 4 , wherein said cytokeratin is selected from the group consisting of cytokeratin 1, cytokeratin 5, cytokeratin 6, cytokeratin 7, cytokeratin 8, cytokeratin 10, cytokeratin 11, cytokeratin 13, cytokeratin 15, cytokeratin 16, cytokeratin 18, and cytokeratin 19.
6. The ovarian mesothelial cells according to claim 5 , wherein said ovarian mesothelial cells further express vimentin as a cell marker.
7. The ovarian mesothelial cells according to claim 6 , wherein said ovarian mesothelial cells have the morphology of cuboidal epithelial cells.
8. A method of providing a source of ovarian mesothelial tissue-specific biological components for pharmaceutical development of at least one drug, comprising isolating the population of human ovarian mesothelial cells as recited in claim 1 , and using said ovarian mesothelial cells or any part of the cells thereof as targets of the drugs under development.
9. A method of providing a source of nucleic acids or proteins in a development of bioassays comprising isolating nucleic acids or proteins from the human ovarian mesothelial cells as recited in claim 1 and using said nucleic acids or proteins as one or more of the principal component in the bioassays.