2017
DOI: 10.1088/1748-605x/aa62b0
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Bioamine-crosslinked gellan gum hydrogel for neural tissue engineering

Abstract: Neural tissue engineering and three-dimensional in vitro tissue modeling require the development of biomaterials that take into account the specified requirements of human neural cells and tissue. In this study, an alternative method of producing biomimetic hydrogels based on gellan gum (GG) was developed by replacing traditional crosslinking methods with the bioamines spermidine and spermine. These bioamines were proven to function as crosslinkers for GG hydrogel at +37 °C, allowing for the encapsulation of h… Show more

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Cited by 70 publications
(85 citation statements)
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“…A 3D hydrogel staining protocol optimized previously was used after 2 or 4 weeks of cell culture, and the same protocol was also used for 2D controls. Briefly, cells were fixed in 4% paraformaldehyde for 30 min, and unspecific staining was blocked by 10% normal donkey serum, 0.1% Triton‐X 100, and 1% bovine serum albumin (all from Sigma‐Aldrich) for 1 h at room temperature.…”
Section: Methodsmentioning
confidence: 98%
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“…A 3D hydrogel staining protocol optimized previously was used after 2 or 4 weeks of cell culture, and the same protocol was also used for 2D controls. Briefly, cells were fixed in 4% paraformaldehyde for 30 min, and unspecific staining was blocked by 10% normal donkey serum, 0.1% Triton‐X 100, and 1% bovine serum albumin (all from Sigma‐Aldrich) for 1 h at room temperature.…”
Section: Methodsmentioning
confidence: 98%
“…Compression testing was performed as previously described, using a BOSE Electroforce Biodynamic 5100 machine equipped with a 225 N load sensor and Wintest 4.1 software (Bose Corporation, Eden Prairie, Minnesota, USA). Briefly, HA1‐PVA‐Col and HA2‐PVA hydrogel samples were cast into a homemade cylindrical mold with an approximate height of 6 mm and a diameter of 12 mm and stored overnight before compression testing to ensure complete gelation.…”
Section: Methodsmentioning
confidence: 98%
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