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Microfluidic spinning of the fibrous alginate scaffolds for modulation of the degradation profile.


ABSTRACT: In tissue engineering, alginate has been an attractive material due to its biocompatibility and ability to form hydrogels, unless its uncontrollable degradation could be an undesirable feature. Here, we developed a simple and easy method to tune the degradation profile of the fibrous alginate scaffolds by the microfluidic wet spinning techniques, according with the use of isopropyl alcohol for dense packing of alginate chains in the microfiber production and the increase of crosslinking with Ca2+ ion. The degradation profiling was analyzed by mass losses, swelling ratios, and also observation of the morphologic changes. The results demonstrated that high packing density might be provided by self-aggregation of polymer chains through high dipole interactions between sheath and core fluids and that the increase of crosslinking rates could make degradation of alginate scaffold controllable. We suggest that the tunable degradation of the alginate fibrous scaffolds may expand its utilities for biomedical applications such as drug delivery, in vitro cell culture, wound healing, tissue engineering and regenerative medicine. Electronic Supplementary Material:Supplementary material is available for this article at 10.1007/s13770-016-9048-7 and is accessible for authorized users.

SUBMITTER: Mun CH 

PROVIDER: S-EPMC6170856 | biostudies-other | 2016 Apr

REPOSITORIES: biostudies-other

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Microfluidic spinning of the fibrous alginate scaffolds for modulation of the degradation profile.

Mun Cho Hay CH   Hwang Ji-Young JY   Lee Sang-Hoon SH  

Tissue engineering and regenerative medicine 20160405 2


In tissue engineering, alginate has been an attractive material due to its biocompatibility and ability to form hydrogels, unless its uncontrollable degradation could be an undesirable feature. Here, we developed a simple and easy method to tune the degradation profile of the fibrous alginate scaffolds by the microfluidic wet spinning techniques, according with the use of isopropyl alcohol for dense packing of alginate chains in the microfiber production and the increase of crosslinking with Ca<  ...[more]

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