Clonogenic multipotent stem cells in human adipose tissue differentiate into functional smooth muscle cells
- 8 August 2006
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 103 (32) , 12167-12172
- https://doi.org/10.1073/pnas.0604850103
Abstract
Smooth muscle is a major component of human tissues and is essential for the normal function of a multitude of organs including the intestine, urinary tract and the vascular system. The use of stem cells for cell-based tissue engineering and regeneration strategies represents a promising alternative for smooth muscle repair. For such strategies to succeed, a reliable source of smooth muscle precursor cells must be identified. Adipose tissue provides an abundant source of multipotent cells. In this study, the capacity of processed lipoaspirate (PLA) and adipose-derived stem cells to differentiate into phenotypic and functional smooth muscle cells was evaluated. To induce differentiation, PLA cells were cultured in smooth muscle differentiation medium. Smooth muscle differentiation of PLA cells induced genetic expression of all smooth muscle markers and further confirmed by increased protein expression of smooth muscle cell-specific α actin (ASMA), calponin, caldesmon, SM22, myosin heavy chain (MHC), and smoothelin. Clonal studies of adipose derived multipotent cells demonstrated differentiation of these cells into smooth muscle cells in addition to trilineage differentiation capacity. Importantly, smooth muscle-differentiated cells, but not their precursors, exhibit the functional ability to contract and relax in direct response to pharmacologic agents. In conclusion, adipose-derived cells have the potential to differentiate into functional smooth muscle cells and, thus, adipose tissue can be a useful source of cells for treatment of injured tissues where smooth muscle plays an important role.Keywords
This publication has 38 references indexed in Scilit:
- Improvement of Postnatal Neovascularization by Human Adipose Tissue-Derived Stem CellsCirculation, 2004
- Adipose-derived adult stromal cells heal critical-size mouse calvarial defectsNature Biotechnology, 2004
- Characterization of Neuropathic Bladder Smooth Muscle Cells in CultureJournal of Urology, 2004
- Isolation of Bone Marrow Stromal Cell–Derived Smooth Muscle Cells by a Human SM22α PromoterCirculation, 2003
- Human Adipose Tissue Is a Source of Multipotent Stem CellsMolecular Biology of the Cell, 2002
- Phenotypic and Functional Characterization of In Vivo Tissue Engineered Smooth Muscle From Normal and Pathological BladdersJournal of Urology, 2002
- Neurogenic differentiation of murine and human adipose-derived stromal cellsBiochemical and Biophysical Research Communications, 2002
- Chondrogenic Potential of Adipose Tissue-Derived Stromal Cells in Vitro and in VivoBiochemical and Biophysical Research Communications, 2002
- Multilineage Cells from Human Adipose Tissue: Implications for Cell-Based TherapiesTissue Engineering, 2001
- PDGF, TGF-β, and Heterotypic Cell–Cell Interactions Mediate Endothelial Cell–induced Recruitment of 10T1/2 Cells and Their Differentiation to a Smooth Muscle FateThe Journal of cell biology, 1998