2013
DOI: 10.1504/ijbet.2013.057260
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Cytotoxicity and biocompatibility evaluation of chitosan-beta glycerol phosphate-hydroxyethyl cellulose hydrogel on adult rat liver for cell-based therapeutic applications

Abstract: The pace of developing cell-based therapeutic systems by application of cellular scaffolds has been steady though slow. In present study, a chitosan based scaffold, CH-β-GP-HEC, was implanted into the rat liver to evaluate its biocompatibility, and particularly to test its cytotoxic effects during six months after implantation. The injected rats showed no obvious inflammatory responses during examination. Histological analyses revealed no difference between sections of the livers of test, vehicle and control g… Show more

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Cited by 3 publications
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“…Various studies have used Chitosan--β-glycerolphosphate-Hydroxyethyl cellulose (to make thermosensitive hydrogels for use in tissue engineering). Due to its low cytotoxicity, this hydrogel can be used as a stem cell carrier for liver tissue engineering (Haddad-Mashadrizeh et al, 2013). Karimpour Malekshah and colleagues also found that CH-βGP-HEC can be used for induction chondrogenic differentiation in adipose tissue-derived mesenchymal stem cells (Karimpour Malekshah et al, 2016).…”
Section: Introductionmentioning
confidence: 99%
“…Various studies have used Chitosan--β-glycerolphosphate-Hydroxyethyl cellulose (to make thermosensitive hydrogels for use in tissue engineering). Due to its low cytotoxicity, this hydrogel can be used as a stem cell carrier for liver tissue engineering (Haddad-Mashadrizeh et al, 2013). Karimpour Malekshah and colleagues also found that CH-βGP-HEC can be used for induction chondrogenic differentiation in adipose tissue-derived mesenchymal stem cells (Karimpour Malekshah et al, 2016).…”
Section: Introductionmentioning
confidence: 99%