2019
DOI: 10.1088/1758-5090/ab3e16
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Dynamic microfactories co-encapsulating osteoblastic and adipose-derived stromal cells for the biofabrication of bone units

Abstract: Cells with differentiation potential into mesodermal types are the focus of emerging bone tissue engineering (TE) strategies as an alternative autologous source. When the source of cells is extremely limited or not readily accessible, such as in severe injuries, a tissue biopsy may not yield the required number of viable cells. In line, adipose-derived stromal cells (ASCs) quickly became attractive for bone TE, since they can be easily and repeatably harvested using minimally invasive techniques with low morbi… Show more

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Cited by 35 publications
(63 citation statements)
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References 46 publications
(58 reference statements)
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“…In fact, the fluid flow drove cells to adhere to the surface of the microparticles, to proliferate, and to deposit a complex collagen‐rich extracellular matrix in such a way that microparticles were assembled in 3D micro‐constructs. [ 17 ]…”
Section: Methodsmentioning
confidence: 99%
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“…In fact, the fluid flow drove cells to adhere to the surface of the microparticles, to proliferate, and to deposit a complex collagen‐rich extracellular matrix in such a way that microparticles were assembled in 3D micro‐constructs. [ 17 ]…”
Section: Methodsmentioning
confidence: 99%
“…The liquefied core also allows dynamic stimuli by simply using stirring flaks, as we recently demonstrated. [ 17 ] Moreover, the liquefied core confers the ability to adapt to structures with irregular shapes, such as tissue defects, while also allowing minimally implantation procedures by injection. After implantation, the presence of the multilayered membrane avoids the dispersion of the core contents to peripheral regions of the body.…”
Section: Methodsmentioning
confidence: 99%
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