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The one-step fabrication of porous hASC-laden GelMa constructs using a handheld printing system

Medicine and Health

The one-step fabrication of porous hASC-laden GelMa constructs using a handheld printing system

S. Jo, J. Lee, et al.

This innovative research introduces a handheld 3D printer designed to create porous, cell-laden methacrylated gelatin constructs, achieving an impressive 97% porosity. Through in vitro and in vivo studies with human adipose stem cells, the authors demonstrated promising results in muscle regeneration, highlighting the method's potential for advancing tissue engineering.

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