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Reconceptualizing Mesenchymal Stromal Cell Sheets: From Delivery Tool to Models of Morphogenesis
期刊文章

Reconceptualizing Mesenchymal Stromal Cell Sheets: From Delivery Tool to Models of Morphogenesis

N.A. Alexandrushkina, V.S. Glazieva, M.A. Vodopetova, R.Y. Eremichev, Y.-C. Hu 和 P.I. Makarevich
Tissue Engineering - Part B: Reviews
2026
Web of Science ID: WOS:001761167600001

摘要

cell sheet connective tissue development mesenchymal condensation MSC self-organization wound healing Biological systems Cell culture Cells Condensation Musculoskeletal system Scaffolds (biology) Tissue Tissue regeneration Cell sheet Cell sheet technologies Cell-based Connective tissue development Connective tissues Mesenchymal condensation Mesenchymal stromal cells Self organizations Tissue development Wound healing connective tissue controlled study epithelium cell extracellular matrix granulation tissue human in vitro study mesenchymal stroma cell mesenchyme morphogenesis nonhuman 評審 tissue engineering tissue regeneration wound healing Flowcharting
Over the past three decades, cell sheet technology has evolved from its original scaffold-free approach developed for epithelial cells into a versatile platform applicable to mesenchymal stromal cells (MSC). Despite numerous experimental achievements and convincing preclinical outcomes, MSC-based cell sheets have yet to reach the stage of a clinically reproducible product. This gap reflects not so much the technological limitations of the method as an incomplete understanding of its biological nature. MSC-based cell sheets represent more than a vehicle for cell delivery; they are self-organizing systems governed by intrinsic biophysical and morphogenetic principles. Their structural maturation involves (1) cellular condensation, (2) extracellular matrix deposition, and (3) contractile remodeling—processes that mirror the early phases of granulation tissue formation. Viewing the cell sheet as an in vitro model of connective tissue regeneration opens new research avenues extending beyond its therapeutic applications. This review summarizes the key milestones in the development of MSC-derived cell sheet technology, identifies major challenges and conceptual inconsistencies, and discusses the potential of studying these constructs as autonomous biological systems. The integration of mechanobiology, spatial omics technologies, and tissue engineering approaches may help reconceptualize MSC-based cell sheets both as tools for translational therapy and as a fundamental model for studying self-organizing regenerative processes. © The Author(s)

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