Aloe Vera-Derived Gel-Blended PHBV Nanofibrous Scaffold for Bone Tissue Engineering.
Aylin TahmasebiAbbas Shapouri MoghadamSeyed Ehsan EnderamiMaryam IslamiMohamad KaabiEhsan SaburiAmir Daei Farshchi AdliFatemeh SoleimanifarVahid MansouriPublished in: ASAIO journal (American Society for Artificial Internal Organs : 1992) (2021)
Today, composite scaffolds fabricated by natural and synthetic polymers have attracted a lot of attention among researchers in the field of tissue engineering, and given their combined properties that can play a very useful role in repairing damaged tissues. In the current study, aloe vera-derived gel-blended poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV) nanofibrous scaffold was fabricated by electrospinning, and then, PHBV and PHBV gel fabricated scaffolds characterized by scanning electron microscope, protein adsorption, cell attachment, tensile and cell's viability tests. After that, osteogenic supportive property of the scaffolds was studied by culturing of human-induced pluripotent stem cells on the scaffolds under osteogenic medium and evaluating of the common bone-related markers. The results showed that biocompatibility of the PHBV nanofibrous scaffold significantly improved when combined with the aloe vera gel. In addition, higher amounts of alkaline phosphatase activity, mineralization, and bone-related gene and protein expression were detected in stem cells when grown on PHBV-gel scaffold in comparison with those stem cells grown on the PHBV and culture plate. Taken together, it can be concluded that aloe vera gel-blended PHBV scaffold has a great promising osteoinductive potential that can be used as a suitable bioimplant for bone tissue engineering applications to accelerate bone regeneration and also degraded completely along with tissue regeneration.
Keyphrases
- tissue engineering
- bone regeneration
- stem cells
- induced pluripotent stem cells
- bone mineral density
- wound healing
- cell therapy
- mesenchymal stem cells
- soft tissue
- hyaluronic acid
- bone loss
- bone marrow
- gene expression
- endothelial cells
- working memory
- high resolution
- small molecule
- dna methylation
- genome wide
- amino acid
- body composition
- copy number
- climate change
- plant growth