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Updated: Jan 27, 2026

Efficient Generation Human Induced Pluripotent Stem Cells from Human Somatic Cells with Sendai-virus
Published on: April 23, 2014
Cell therapy in orthopaedics: where are we in 2019?
1The Hospital for Special Surgery, New York, New York, USA.
Abstract:
Stem cells are defined by their potential for self-renewal and the ability to differentiate into numerous cell types, including cartilage and bone cells. Although basic laboratory studies demonstrate that cell therapies have strong potential for improvement in tissue healing and regeneration, there is little evidence in the scientific literature for many of the available cell formulations that are currently offered to patients. Numerous commercial entities and 'regenerative medicine centres' have aggressively marketed unproven cell therapies for a wide range of medical conditions, leading to sometimes indiscriminate use of these treatments, which has added to the confusion and unpredictable outcomes. The significant variability and heterogeneity in cell formulations between different individuals makes it difficult to draw conclusions about efficacy. The 'minimally manipulated' preparations derived from bone marrow and adipose tissue that are currently used differ substantially from cells that are processed and prepared under defined laboratory protocols. The term 'stem cells' should be reserved for laboratory-purified, culture-expanded cells. The number of cells in uncultured preparations that meet these defined criteria is estimated to be approximately one in 10 000 to 20 000 (0.005% to 0.01%) in native bone marrow and 1 in 2000 in adipose tissue. It is clear that more refined definitions of stem cells are required, as the lumping together of widely diverse progenitor cell types under the umbrella term 'mesenchymal stem cells' has created confusion among scientists, clinicians, regulators, and our patients. Validated methods need to be developed to measure and characterize the 'critical quality attributes' and biological activity of a specific cell formulation. It is certain that 'one size does not fit all' - different cell formulations, dosing schedules, and culturing parameters will likely be required based on the tissue being treated and the desired biological target. As an alternative to the use of exogenous cells, in the future we may be able to stimulate the intrinsic vascular stem cell niche that is known to exist in many tissues. The tremendous potential of cell therapy will only be realized with further basic, translational, and clinical research. Cite this article: Bone Joint J 2019;101-B:361-364.
Insights
The term "stem cells" should be reserved for laboratory-purified cells. Current unproven cell therapies lack evidence, leading to confusion and unpredictable outcomes in regenerative medicine.
Area of Science:
- Regenerative Medicine
- Cell Therapy
- Tissue Engineering
Background:
- Basic laboratory studies show strong potential for cell therapies in tissue healing and regeneration.
- Limited scientific evidence exists for many commercially available cell formulations used in patients.
- Aggressive marketing of unproven cell therapies by commercial entities causes confusion and unpredictable outcomes.
Purpose of the Study:
- To clarify the definition and application of stem cells in regenerative medicine.
- To address the confusion arising from the marketing and use of unproven cell therapies.
- To highlight the need for standardized definitions and validated methods for cell formulations.
Main Methods:
- Review of current scientific literature on cell therapy efficacy.
- Analysis of the heterogeneity and variability in available cell formulations.
- Discussion of the distinction between minimally manipulated and laboratory-processed cells.
Main Results:
- Significant variability exists in cell formulations, hindering efficacy conclusions.
- The term 'stem cells' should apply only to laboratory-purified, culture-expanded cells.
- Undiluted bone marrow and adipose tissue contain very few cells meeting these criteria.
Conclusions:
- Refined definitions for stem cells are necessary to reduce confusion.
- Validated methods are needed to characterize cell formulations and their biological activity.
- Future cell therapy success depends on basic, translational, and clinical research, with personalized approaches.
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