2016
DOI: 10.1016/j.biomaterials.2016.04.012
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Genipin-crosslinked gelatin microspheres as a strategy to prevent postsurgical peritoneal adhesions: In vitro and in vivo characterization

Abstract: Background. Peritoneal adhesions are a common complication after abdominal surgery. They cause small bowel obstruction, female infertility and chronic abdominal pain. Peritoneal adhesions also hamper uniform drug distribution in the peritoneal cavity, thereby reducing the efficacy of intraperitoneal chemotherapy after cytoreductive surgery.

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Cited by 131 publications
(92 citation statements)
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“…The crosslinking agents can react with the functional groups of gelatin (e.g., –COOH, –NH 2 , –OH, and –CONH–) and form the intramolecular and/or intermolecular gelatin crosspolymers to change the structure of gelatin as well as decrease the thermal and enzymatic degradability (Abd El‐Hady & Albishri, ). Commonly applied crosslinking agents include metal salts, organic acids, genipin, transglutaminase, and dialdehyde carboxymethyl cellulose (De Clercq et al, ; Kaewruang, Benjakul, Prodpran, Encarnacion, & Nalinanon, ; Li, Ye, Li, Li, & Mu, ; Velmurugan, Singam, Jonnalagadda, & Subramanian, ; Wang, Liu, Ye, Wang, & Li, ).…”
Section: Introductionmentioning
confidence: 99%
“…The crosslinking agents can react with the functional groups of gelatin (e.g., –COOH, –NH 2 , –OH, and –CONH–) and form the intramolecular and/or intermolecular gelatin crosspolymers to change the structure of gelatin as well as decrease the thermal and enzymatic degradability (Abd El‐Hady & Albishri, ). Commonly applied crosslinking agents include metal salts, organic acids, genipin, transglutaminase, and dialdehyde carboxymethyl cellulose (De Clercq et al, ; Kaewruang, Benjakul, Prodpran, Encarnacion, & Nalinanon, ; Li, Ye, Li, Li, & Mu, ; Velmurugan, Singam, Jonnalagadda, & Subramanian, ; Wang, Liu, Ye, Wang, & Li, ).…”
Section: Introductionmentioning
confidence: 99%
“…The abundance, availability and low cost of gelatin promote its use in a wide variety of applications . Furthermore, gelatins are materials with excellent biocompatibility, biodegradability, non‐toxicity, which possess a great potential as edible films . However, as gelatins are water‐soluble, gelatin modification is required for specific applications in packaging, pharmaceutical and biomedical fields …”
Section: Introductionmentioning
confidence: 99%
“…[38] Surfactants also control the size of nanoparticles by reducing the size and the aggregation tendency of the gelatin droplets during emulsification process. [39] SEM was used to investigate the morphology as well as the particle size of nanoparticles. Nanoparticles displayed a spherical shape with a smooth surface, and no aggregation was observed.…”
Section: Discussionmentioning
confidence: 99%