4.7 Article

Fabrication of Porous Scaffolds with a Controllable Microstructure and Mechanical Properties by Porogen Fusion Technique

Journal

INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES
Volume 12, Issue 2, Pages 890-904

Publisher

MDPI AG
DOI: 10.3390/ijms12020890

Keywords

tissue engineering; composite scaffolds; mechanical property; porogen fusion technique

Funding

  1. national science foundation of china [NSFC-50603019]
  2. Nano Science and Technology Special Funding of Shanghai Science and Technology Commission [0952nm03600, 1052nm05400]
  3. Shanghai Science and Technology Commission [08JC1416200]

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Macroporous scaffolds with controllable pore structure and mechanical properties were fabricated by a porogen fusion technique. Biodegradable material poly (D, L-lactide) (PDLLA) was used as the scaffold matrix. The effects of porogen size, PDLLA concentration and hydroxyapatite (HA) content on the scaffold morphology, porosity and mechanical properties were investigated. High porosity (90% and above) and highly interconnected structures were easily obtained and the pore size could be adjusted by varying the porogen size. With the increasing porogen size and PDLLA concentration, the porosity of scaffolds decreases, while its mechanical properties increase. The introduction of HA greatly increases the impact on pore structure, mechanical properties and water absorption ability of scaffolds, while it has comparatively little influence on its porosity under low HA contents. These results show that by adjusting processing parameters, scaffolds could afford a controllable pore size, exhibit suitable pore structure and high porosity, as well as good mechanical properties, and may serve as an excellent substrate for bone tissue engineering.

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