2021
DOI: 10.1038/s41368-021-00126-4
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A narrative overview of utilizing biomaterials to recapitulate the salient regenerative features of dental-derived mesenchymal stem cells

Abstract: Tissue engineering approaches have emerged recently to circumvent many limitations associated with current clinical practices. This elegant approach utilizes a natural/synthetic biomaterial with optimized physiomechanical properties to serve as a vehicle for delivery of exogenous stem cells and bioactive factors or induce local recruitment of endogenous cells for in situ tissue regeneration. Inspired by the natural microenvironment, biomaterials could act as a biomimetic three-dimensional (3D) structure to hel… Show more

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Cited by 14 publications
(5 citation statements)
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References 180 publications
(137 reference statements)
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“…Biomaterial-based platforms can be engineered to provide spatial and temporal control over autophagic processes, promoting tissue regeneration or selectively targeting autophagy in diseased cells. These advances pave the way for personalized medicine approaches, tailoring autophagy modulation strategies to individual patient needs [ 201 ]. In the field of cancer therapy, biomaterials offer exciting prospects for autophagy modulation.…”
Section: Conclusion and Future Perspectivesmentioning
confidence: 99%
“…Biomaterial-based platforms can be engineered to provide spatial and temporal control over autophagic processes, promoting tissue regeneration or selectively targeting autophagy in diseased cells. These advances pave the way for personalized medicine approaches, tailoring autophagy modulation strategies to individual patient needs [ 201 ]. In the field of cancer therapy, biomaterials offer exciting prospects for autophagy modulation.…”
Section: Conclusion and Future Perspectivesmentioning
confidence: 99%
“…Biomaterials are one of the essential components in making scaffolds. By combining scaffolds with different stem cells, tissue bioengineering offers promising results in regenerating damaged tissues [ 152 ].…”
Section: Biomaterials and Scaffolds Used With Dscsmentioning
confidence: 99%
“…Numerous ECM analogs have been developed that mimic the physiological 3D microenvironment to support cellular function, including synthetic scaffolds derived from polymeric substrates and natural biopolymers [13,14]. Although these ECM analogs have been extensively studied for applications in tissue engineering, they lack the complex biochemical properties and three-dimensional structure of the native ECM.…”
Section: Introductionmentioning
confidence: 99%