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3. Chemically induced hypoxia by dimethyloxalylglycine (DMOG)-loaded nanoporous silica nanoparticles supports endothelial tube formation by sustained VEGF release from adipose tissue-derived stem cells. Issue 5 (14th August 2021)

4. Perfusion promotes endothelialized pore formation in high concentration fibrin gels otherwise unsuitable for tube development. Issue 2 (February 2021)

5. Pressure-compacted and spider silk–reinforced fibrin demonstrates sufficient biomechanical stability as cardiac patch in vitro. (January 2022)