Cultured adherent cells from marrow can serve as long-lasting precursor cells for bone, cartilage, and lung in irradiated mice.

RF Pereira, KW Halford, MD O'hara… - Proceedings of the …, 1995 - National Acad Sciences
RF Pereira, KW Halford, MD O'hara, DB Leeper, BP Sokolov, MD Pollard, O Bagasra
Proceedings of the national academy of sciences, 1995National Acad Sciences
Cells from transgenic mice expressing a human mini-gene for collagen I were used as
markers to follow the fate of mesenchymal precursor cells from marrow that were partially
enriched by adherence to plastic, expanded in culture, and then injected into irradiated
mice. Sensitive PCR assays for the marker collagen I gene indicated that few of the donor
cells were present in the recipient mice after 1 week, but 1-5 months later, the donor cells
accounted for 1.5-12% of the cells in bone, cartilage, and lung in addition to marrow and …
Cells from transgenic mice expressing a human mini-gene for collagen I were used as markers to follow the fate of mesenchymal precursor cells from marrow that were partially enriched by adherence to plastic, expanded in culture, and then injected into irradiated mice. Sensitive PCR assays for the marker collagen I gene indicated that few of the donor cells were present in the recipient mice after 1 week, but 1-5 months later, the donor cells accounted for 1.5-12% of the cells in bone, cartilage, and lung in addition to marrow and spleen. A PCR in situ assay on lung indicated that the donor cells diffusely populated the parenchyma, and reverse transcription-PCR assays indicated that the marker collagen I gene was expressed in a tissue-specific manner. The results, therefore, demonstrated that mesenchymal precursor cells from marrow that are expanded in culture can serve as long-lasting precursors for mesenchymal cells in bone, cartilage, and lung. They suggest that cells may be particularly attractive targets for gene therapy ex vivo.
National Acad Sciences