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1.
Int J Biol Macromol ; 120(Pt A): 915-920, 2018 Dec.
Article in English | MEDLINE | ID: mdl-30071230

ABSTRACT

Recently, many of studies have been attempted to determine how to decrease adhesion. To effectively prevent adhesion, decrease in unnecessary surgical procedures, prevention of contact with other tissue, and drug treatment for inflammation are required. However, current anti-adhesion materials have disadvantages. To solve current problems, we prepared a biocompatible drug-loaded anti-adhesion barrier using a visible-light curable furfuryl gelatin derivative. We used riboflavin as a photo-initiator in the photo-curing process. The biocompatibility of riboflavin was estimated compared with that of Rose Bengal. In addition, the curing ratio was measured to determine whether riboflavin initiated photo-curing. We also evaluated the curing ratio of riboflavin according to the concentration of F-gelatin and the photo-irradiation time. A drug used to decrease inflammation that causes adhesion should not disappear from the surgical site and should also be released consistently. For this, we observed the release profiles of photo-immobilized ibuprofen with different concentrations of F-gelatin. Because an anti-adhesion barrier should protect from bacterial infection we evaluated the protective ability of a barrier formed by F-gelatin. In conclusion, a drug-loaded anti-adhesion barrier was prepared using a visible-light curable furfuryl gelatin derivative, with riboflavin as a photo-initiator. We expect that this drug-loaded anti-adhesion barrier effectively decrease adhesion formation.


Subject(s)
Biocompatible Materials/chemistry , Cell Adhesion/drug effects , Gelatin/pharmacology , Inflammation/drug therapy , Biocompatible Materials/pharmacology , Cell Adhesion/radiation effects , Drug Carriers/chemistry , Drug Carriers/pharmacology , Drug Carriers/radiation effects , Gelatin/chemistry , Humans , Light , Riboflavin/chemistry , Rose Bengal/chemistry , Rose Bengal/radiation effects
2.
Int J Biol Macromol ; 104(Pt B): 1611-1619, 2017 Nov.
Article in English | MEDLINE | ID: mdl-28472689

ABSTRACT

Chitosan, which has many biocompatible properties, is used widely in medical field like wound healing, drug delivery and so on. Chitosan could be used as a biomaterial to immobilize protein-drug. There are many methods to immobilize protein-drug, but they have some drawbacks such as low efficiency and denaturation of protein. Therefore, photo-immobilization method is suggested to immobilize protein-drug. Photo-immobilization method is simple-reaction and also needs no additional crosslinking reagent. There has been some effort to modify chitosan to have an ability of photo-immobilization. Generally, visible and UV light reactive chitosan derivatives were prepared. Various types of photo-curable chitosan derivatives showed possibility for application to medical field. For example, they showed ability for protein-immobilization and some of them showed wound-healing effect, anti-adhesive effect, or property to interact directly with titanium surface. In this study, we introduce many types of photo-curable chitosan derivative and their possibility of medical application.


Subject(s)
Chitosan/chemistry , Immobilized Proteins/chemistry , Ultraviolet Rays , Humans
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