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September 1, 1991Journal of Orthopaedic Research®6,523 citations

Mesenchymal stem cells

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ACArnold I. Caplan

Key Points

  • The research explores how mesenchymal stem cells contribute to bone and cartilage formation in embryos and their repair functions in adults.
  • Isolation and study of mesenchymal stem cells from embryos and adults.
  • Investigation of how intrinsic and extrinsic factors influence cell lineage and phenotypes.
  • Analysis of the delivery and expansion techniques for autologous stem cells.
  • Mesenchymal stem cells are crucial for generating cartilage and bone tissue through distinct lineage pathways.
  • Intrinsic genomic potential and extrinsic cues significantly affect cell phenotype and tissue characteristics.
  • Therapeutic application of these cells can lead to improved skeletal tissue repair outcomes.

Abstract

Bone and cartilage formation in the embryo and repair and turnover in the adult involve the progeny of a small number of cells called mesenchymal stem cells. These cells divide, and their progeny become committed to a specific and distinctive phenotypic pathway, a lineage with discrete steps and, finally, end-stage cells involved with fabrication of a unique tissue type, e.g., cartilage or bone. Local cuing (extrinsic factors) and the genomic potential (intrinsic factors) interact at each lineage step to control the rate and characteristic phenotype of the cells in the emerging tissue. The study of these mesenchymal stem cells, whether isolated from embryos or adults, provides the basis for the emergence of a new therapeutic technology of self-cell repair. The isolation, mitotic expansion, and site-directed delivery of autologous stem cells can govern the rapid and specific repair of skeletal tissues.

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Cite This Study

Arnold I. Caplan (1991) studied this question.

synapsesocial.com/papers/69d570b275589c71d767de5chttps://doi.org/10.1002/jor.1100090504
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