4.6 Article

Sterile and Dual-Porous Aerogels Scaffolds Obtained through a Multistep Supercritical CO2-Based Approach

期刊

MOLECULES
卷 24, 期 5, 页码 -

出版社

MDPI
DOI: 10.3390/molecules24050871

关键词

starch aerogels; zein; supercritical sterilization; supercritical CO2; regenerative medicine

资金

  1. Xunta de Galicia [ED431F 2016/010, ED431C 2016/008]
  2. MINECO [SAF2017-83118-R, RYC2014-15239]
  3. AEI, FEDER
  4. Interreg V-A POCTEP Programme [0245_IBEROS_1_E]
  5. Xunta de Galicia (Conselleria de Cultura, Educacion e Ordenacion Universitaria) [ED481A-2018/014]
  6. FCT-Fundacao para a Ciencia e a Tecnologia [IF/00411/2013, IF/00411/2013/CP1167, UID/Multi/50016/2013]
  7. European Commission [CA18125]
  8. Fundação para a Ciência e a Tecnologia [UID/Multi/50016/2013] Funding Source: FCT

向作者/读者索取更多资源

Aerogels from natural polymers are endowed with attractive textural and biological properties for biomedical applications due to their high open mesoporosity, low density, and reduced toxicity. Nevertheless, the lack of macroporosity in the aerogel structure and of a sterilization method suitable for these materials restrict their use for regenerative medicine purposes and prompt the research on getting ready-to-implant dual (macro + meso)porous aerogels. In this work, zein, a family of proteins present in materials for tissue engineering, was evaluated as a sacrificial porogen to obtain macroporous starch aerogels. This approach was particularly advantageous since it could be integrated in the conventional aerogel processing method without extra leaching steps. Physicochemical, morphological, and mechanical characterization were performed to study the effect of porogen zein at various proportions (0:1, 1:2, and 1:1 zein: starch weight ratio) on the properties of the obtained starch-based aerogels. From a forward-looking perspective for its clinical application, a supercritical CO2 sterilization treatment was implemented for these aerogels. The sterilization efficacy and the influence of the treatment on the aerogel final properties were evaluated mainly in terms of absence of microbial growth, cytocompatibility, as well as physicochemical, structural, and mechanical modifications.

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